Showing posts with label summer special. Show all posts
Showing posts with label summer special. Show all posts

Sunday, 16 August 2009

Ice versus hop

More from Lager pioneer Charles Graham. This time, his reasoning for why Lager could be made more cheaply than Ale. It's all to do with preservation.

"Hitherto, the great cost of ice has seemed an insuperable difficulty in regard to brewing lager beers in England. As to the quantity of ice required for the cooling of the wort, keeping the primary fermentation at the right temperature, and providing for several month s of subsequent lagering, this necessarily varies with the nature of the cellars; we may, however, take the total amount of ice needed on an average for a hectolitre of beer as 200lb., or 3cwt. for one barrel of 36 gallons. The ice-making machine of Professor Linde, of Wiesbaden, of which there is a drawing on the screen, is an improved form of the ammonia machines. This apparatus has successfully established its value in several of the largest breweries in Germany, Austria, and elsewhere. Thus Dreher, of Vienna, Sedlmayer, of Munich, Jacobsen, of Copenhagen, and many others are now using this machine. In Munich. Stuttgart, Frankfort, Amsterdam, and Paris, works have been established for making crystal ice for sale to brewers and others. The manufactory at Munich turns out 50 tons of ice daily. We see, therefore, that ice thus made can compete with natural ice. and that in Munich and Stuttgart, Frankfort and Mayence, where the cold in winter is far greater than here, and where coal is dearer, yet it pays brewers there to use this method. The cost of ice in London, including wear and tear, interest and renewal charges, would be under 6s. per ton, and therefore the cost in London for the 3cwt. of ice required for 36 gallons of lager beer would be about l0d.; I will however take Is. as the maximum cost. In doing so I am exceeding the estimate made by Professor Linde and Herr Rhens, who are members pi this Society, and who have supplied me with the information in question. The ice cost, then, of a barrel of Bavarian beer would be 1s. Let us see, however, whether there be no compensating advantages. First, then, in regard to the hops. A quarter of malt yields 4 barrels of 1057 gravity, or what would be a more useful conversation beer, 5 barrels of 1045 gravity. If this were a bitter ale the hops used would be some 16lb. in the copper, and 2lb. in the cask in dry hopping, together 18lb. The German system substitutes ice in place of so much hop as a means of preserving the beer, and .only employs for the same weight of malt—

For Schenck (Anglice running) ales, 4lb.
For Bavarian Lager beers, 3.75 lb. to 5 lb.
For Pilsen ales, 6 lb. to 7.5 lb.; in rare cases 9 lb.

Taking 6lb. of hops as the amount in extra hopped Bavarian beer arising from a quarter of malt, we see that there would be a saving of 12lb. of hops. If, on the other hand, we take Pilsen beer, or a Vienna beer, we would still save some 9lb. of hops, in the least. I have taken bitter ale of 1045 gravity as a standard in comparing the relative cost of hops and ice as preserving agents ; because a mild ale of 1045 cannot be a store beer, it will not keep long. Even if we take a mild beer of 1057 gravity we must yet employ in the copper and cask some 8lb. to l0lb. of hops, if we desire to keep the beer for some months. Hops vary in price from one season to another, and hence it is rather difficult to obtain an average price; but I think I am not far wrong if I take Is. per Ib. as the average price of new hops of the best quality, taking one year with another. Thus the cost of the ice method of preserving compared with hops will become : 5 barrels of English bitter ale of 1045 sp.gr. require 18lb. of hops, and a similar quantity and gravity of Bavarian would require 6lb., a saving here of 12s.; from this must be deducted 1s. per barrel for the ice, we have a balance of 7s. left in favour of the ice process over hops as a preserving medium. This is not all Owing to the low initial heat, and repeated boiling of the goods, more albuminous matters are left in the beer, and therefore a greater fulness on the palate is produced. Such a source of fulness is carefully avoided in the English process which uses hard water, high initial heat, heavy hopping, and low attenuation, in order to lessen the albuminoids in the beer. Not only are these precautions taken. We find English brewers competing with each other for the finest barleys, that is, those with the least yield of soluble albuminoids, in the Saale, Saumur, and other districts. They thus raise the price of these high-class barleys to an extent which astonishes the German brewer, who is at the same time buying his barleys at a much lower figure. The introduction of the ice method for the preservation of beer, if it were to become at all general, would be of benefit to our second class barleys grown on heavy land and to our Scotch barleys generally. The ice process, therefore, gives the brewer a considerable advantage in regard to the cost of malt; this, of course, means that by competition the public would reap the benefit.

What are the consumers' interests in this ice versus hop method of preserving beer ? Hops contain narcotic substances ; indeed, formerly, and now sometimes, hops were used in place of opium to produce sleep, and not only do we use far too much in our ales, especially the bitter ales, but we also gather our hops too late. In Bohemia and Bavaria the hops are gathered before the strobiles open and before the seed forms, and this is done in order to avoid too much of the narcotic substances, which increase with the formation and ripening of the seed. Professor Sell, of Berlin, has recently pointed out the great increase in the narcotic substance, which takes place if the seeds are allowed to ripen. In England we wait until the seeds are ripe, and thus secure more of these narcotic substances in our ales. Again, the Bavarian or Austrian brewer never employs hops in the cask ; Germans, indeed, object strongly to dry hopping, as making the beer narcotic. The ice process is therefore, from an hygienic point of view, better than the hop process.

To sum up the chief characteristics of the Bavarian store or lager beer, we find it less attenuated and therefore less alcoholic, richer in dextrine and albuminoids and carbonic acid, and that little or none of the narcotic action of the hop arises from its use. Thus it follows that a German can drink much more of his beer than we can of ours. We cannot use ours for conversational purposes, and in hot weather it is not a safe beverage to quench thirst. In fact. I do not suppose that there are many gentlemen in this room who would venture to drink more than a pint of ale in the middle of the day if he had head work to do in the afternoon. Many persons cannot even take half a pint at luncheon if work is to follow. Now it would require much more Bavarian beer to have the same soporific effect.

. . . . .

In conclusion, I must add that the unpleasant pitch flavour, which some people take for garlic, is not essential to the lager beer process, since we have other means of preserving the wood of the cask without using pitch for the purpose. The Germans have become accustomed to the flavour, but lager beer brewed for Englishmen should omit this flavour. English ales will hold their position for a long time to come, since we have become accustomed to the alcohol and hops, and a change in the public taste must ever be a slow process; and, in addition, there are many who in winter time would much prefer English ale at dinner or luncheon to Bavarian or Bohemian; for conversation purposes, and for a summer beverage, I think the ice-cold, delicate flavoured lager beer is sure to come into favour in England as it has elsewhere; and I shall be glad to find that my explanation of the German process and the character of the beer produced may lead some among us to consider the question of lager beer brewing in some of the large towns in this country. "
"Journal of the Society of Chemical Industry" 1882, pages 23 - 25

I've never seen it argued before that ice could replace hops. It's a fascinating argument. Of course, British beer no longer has anything like the alcohol or hop content of the Ales Graham describes. Nor is ice used to preserve it. Sort of undermines his argument a bit.

It's ironic that, by the time Lager became dominant in Britain that it was actually stronger than most Ales. Lager as a healthy, more responsible option. Not many in the media would claim that now.

Saturday, 15 August 2009

Why Lager?

Why lager? It's costly and time-consuming, so why bother?

One of the traditional reasons is to obtain a very high CO2 concentration in the beer. I'll let Charles Graham explain.

"There remains, however, a still more important factor in giving fulness to beers of medium original gravity, and that is the carbonic acid. Beer cooled to a few degrees above the melting point of ice must necessarily contain more carbonic acid than at 60° F., which may be taken as the average temperature of English beer as consumed. We all know that draught or bottled ales, if allowed to stand some hours, become insipid and flat, and taste as if several pounds per barrel less in the original gravity. The important influence of carbonic acid in making beers taste fuller and rounder has long been carefully attended to by the German brewer, whose great aim has been to secure as large an amount as possible. Hence an important part of the duty of a German brewer is to have his beers in perfect condition in the cellar, so that with a fortnight's closing of the bung- hole, a sufficient amount of carbonic acid shall be formed and retained. For the same object one often finds in restaurants and beer kellers, air or carbonic acid forcing pumps to increase the amount of gas when the beer becomes too flat. The greater amount of carbonic acid in German beer is partly due to the greater amount of saccharine and albuminoid matters, but chiefly to the low temperature. The influence of temperature in the lager cellar upon the amount of carbonic acid has been the subject of some experiments by Professor Langer and Dr. Schultze. The beer they experimented on was made from a wort showing 10 degrees Balling, and had been attenuated 60 per cent. The carbonic acid found in 100 volumes of beer was at—

0.4º C 0.332 by weight 100 volumes by volume
1.6 º C 0.320 by weight 96.4 volumes by volume
2.8 º C 0.311 by weight 93.7 volumes by volume
4.0 º C 0.297 by weight 89.5 volumes by volume
4.7 º C 0.285 by weight 85.8 volumes by volume

Thus an elevation of 4'3° C. in the cellar temperature reduced the carbonic acid by one-seventh of the original volume, or nearly 15 per cent Hence the reason for keeping the temperature of the lager cellar as low as possible ; so that more carbonic acid may be kept in solution."
“Journal of the Society of Chemical Industry” 1882, page 31.

Did you spot the early reference to top-pressure dispense? I wonder why no-one uses the expression "carbonic acid forcing pumps" today? It sounds so much more quaint than "keg pump". Those silly Germans. Didn't they realise the inherent superiority of cask beer?

Thanks to Gary Gillman for pointing out this article to me. You can never know too much about Lager.

Charles Graham was the man behind Graham's Golden Lager, later known as Skol. We all owe him a deep debt of thanks.

Monday, 20 July 2009

Bohemian Salvator

Thanks to Evan Rail for pointing this one out to me. It's an advert from 1891 for various Prague breweries. The interesting bit is the U Medvídků ad. "We recommend the beer brewed according to the Munich method, 'Salvator'" is what it says.

So Zacherl really were taking the piss when they trademarked Salvator. It was already a style brewed internationally. I wonder how they got away with it?

You can read more about the lost breweries of Prague in Evan's original post.

Now that U Medvídků has a brewery again, Should they consider brewing a Salvator? When did Zacherl get the trademark? After 1891, I'm sure. (I really should be able to provide the exact date here. But my tea is already on the table and it's best to eat with the whole family. Like the Simpsons.)

Who would win in court? "The one with the most money!" You're a cynical lot.

Monday, 22 June 2009

Summer theme

I need a good theme for the summer. Something like the decoction mashing series from last year. (If you can remember that far back.)

I'm not usually short on ideas. In fact, the opposite is more often true. That I have way too many ideas. Time for some author-reader interaction. Can any of you lot think of a good theme for the summer? Preferably something I can stretch out to a minimum of a dozen posts.

I suppose there will be a prize for the winner. One of my books, as usual. There's a choice available at the moment. "Trips!", "Numbers" and, by the time the competition is finished, probably "Trips! East", too. Or is the next volume scheduled for release "Trips! South"? Trips something, anyway.

Saturday, 12 July 2008

The Bohemian method of decoction mashing

This is more like it. Jumping over the Bayerischer Wald into Bohemia. Exciting, isn't it? Well, I'm excited, even if you aren't. This is taken from "Schule der Bierbrauerei" pages 306-308.

In Bohemia decoction mashing is carried out differently to in Bavaria and provides an interesting practical example of dispensing with the last starch rest.

Before discussing this method in more detail we first need to learn more about the division of the brewing water. For 100 kg of malt 750 kg of water is required. Of this amount, a quarter is used for the Nachguß (sparge) and the rest for mashing, except for one thirtieth, which is used to dilute the first wort. Of the remaining mash water, four fifths is used for Ausschütten (pouring) and one fifth for the following temperature rises (Zubrühen). The 750 kg are divided like this:

435 kg pouring
108 kg warming
19 kg diluting the first wort
188 kg Nachguß

The water required for pouring [Ausschütten] is boiled in the kettle (a highly wasteful and unnecessary practice; rational brewers heat just a little water and put cold water into the mash tun) and put into the mash tun where it is allowed to cool (to 33º C in summer, 40º C in winter). The warming [Zubrühen] water is now put into the kettle and brought to the boil.

The ground malt is added to the cooled water in the mash tun and mashed well for 5 or 6 minutes, after which the boiling Zubrühen water is added and stirred in well. Then about a third of the mashed grains are moved to one side of the mash tun and transferred to the kettle as Dickmaische. There it is careful brought to the boil (to prevent burning or boiling over) and simmered for 30 minutes. The foam that accompanies saccharification then appears. As soon as this foam starts to disappear and the pale colour of the wort starts to turn brownish-yellow (as a result of the transformation of proteins) the Dickmaische is considered to have boiled long enough and is returned to the mash tun. There it is mixed in well. Now another Dickmaische is assembled, but from another side of the mash tun (why "from another side?" Hasn't it been mashed properly?) put into the kettle, boiled for 20 to 24 minutes (why not again until the appearance of signs of saccharification, as with the first Dickmaische?) and returned to the mash tun. Finally there is a third Dickmaische which is boiled for 20 minutes.

Through the three boils, the temperature in the mash tun is raised to 71-75º C. The remaining one thirtieth of the mashing water is now put into the kettle.

The wort is run off into the underback until it becomes clear. The cloudy wort (which is full of starch) is added to the boiling water in the kettle and boiled for several minutes (whereby the starch is gelatinised). It is returned to the mash tun, but without disturbing the sediment which has already settled. Then the saccharification is left to complete.

If, however, the intended complete saccharification can ever take place is doubtful, since, as Balling has shown, the temperature in the mash tun is already over 75º C after the third Dickmaische and is now raised even further.

It's pretty obvious from the snide comments that the author isn't too impressed with this method. I wonder if this is how they mashed at Pilsner Urquell 150 years ago? As some of the wort is boiled four times, I suppose this is a quadrupel decoction.

Tuesday, 8 July 2008

Decoction mashing in Munich

More from "Schule der Bierbrauerei" by Conrad Schneider, 1875, page 300-301. This time it's Altbayern's turn. Will the fun never end?

Let's get straight on with the description.

This method is mostly common in Altbayern. In Munich the following method is employed. The ground malt is tipped into the mash tun, which already contains cold water. And, while being regulalrly stirred, is left to stand for 3 or 3 hours. Meanwhile, the rest of the mash water is brought to the boil. This is introdusced into the mash tun from below. When all the water is in the tun, the temperature should be 31-37º C. Then the first Dickmaisch is transferred to the kettle and boiled. As soon as the grains begin to rise due to the vigorous boil, enough Dickmaische is returned to the mash tun, whilst mashing all the time, to raise the temperature to 47-51º C. The second Dickmaische is then transferred to the kettle and quickly brought to the boil and boiled for 45-60 minutes. When moved back to the mash tun, the temperature rises to 60-62º C. After standing for 15 minutes, most of the Lautermaische is transferred to the kettle and boiled for 15 minutes. When returned to the mash tun, the temperature of 72-75º C is reached.

The amoount of Dickmaische which needs to be boiled varies greatly. The size of the mash tun also plays a role, because of how it cools down. This is an example for approximately 1000 kg of malt.

4700 l of cold water are put into the mash tun. A further 2150 l are heated in the kettle, of which 1600 l are put into the tun. Temperature 35-37º C. 2550 l are removed from the mash tun for the first Dickmaische and brought to the boil in the kettle. After boiling for 45 minutes, enough Dickmaische is returned to the mash tun to raise the temperature to 47-50º C. For the second Dickmaische, 2600 l is boiled for 60 minutes in the kettle. During this time, the underback is half filled with Lautermaische. As soon as the second Dickmaische has been returned to the mash tun and a temperature of 60-62º C achieved, the Lautermaische in the underback, topped up with the same amount from the mash tun, is transferred to the kettle and boiled. In total, 6000 l are put into the kettle and boiled for 15 minutes. When returned to the mash tun, the temperature is 72-74º C. Brewers put great stock in hitting precise temperatures in the mash tun. For example, the rise in temperature of the mash from 33.75º C at Einteigen to 53.75, 64 and 74-75º C in the Dreher brewery in Schwechat next to Vienna has been copied by many breweries, who believe it to be the secret of the Vienna brewery's success.

I'm pleased to finally see a mention of an Austrian brewery. Very few details of Austrian brewing of this period have come my way. I've just ordered an Austrian brewing manual published in 1914. Hopefully that will help fill some of the many gaps in my knowledge.

Friday, 4 July 2008

More decoction mashing fun

Today were going to take a look a variation on decoction mashing, Lautermaisch. It's taken from "Schule der Bierbrauerei" by Conrad Schneider of 1875, pages 298-299.

It's a great book. I could only afford a copy because I bought an example with a broken spine. (What do I care if the book is perfect or not? It's only the information that I'm interested in. I'm not a collector. The broken spine has the advantage of making the book easier to lay flat on the scanner.)

Back to the book itself. It has one of the longest chapters on mashing I've seen, describing British, French, Dutch, Swedish and Belgian methods in addition the German ones you would expect.

Did I mention that I'd tried to get in touch with the Carslberg archivist? To ask some questions about Carlsberg's mashing techniques in the 19th century. Unfortunately she's on holiday at the moment.

The Lautermaish method has its home in the Bamberg area, but is also employed in Belgium and Holland.

The distiguishing feature of this method is that the rise in temperature in the mash tun is not achieved through the addition pure water (as in an infusion mash), but though heating tapped wort (Lautermaisch). This is partly cloudy, full of starch which boiling gelatinises. This hot Kleister wort is put back into the tun. Sometimes clear wort is also used to transfer heat this way.

The execution of this method varies widely.

The Bambergers work with cloudy Lautermaisch. The ground malt is put into the mash tun dry, lower in the middle and higher around the edges. Boiling water in the kettle is mixed with enough cold water to give it a temperature of 80º C. This water is let into the mash tun from below, through the underlet, so that the malt is lifted and swimms like a cake on the surface. It is left for 30 minutes to soak through. The tap is then opened, so that a cloudy broth (like buttermilk) pours out. This is put immediately into the kettle and brought to the boil. Finally a fairly clear wort flows out and this is put into the underback.

The Lautermaisch in the kettle, whose starch is gelatinised, gives off an aromatic smell and a scum forms, which is a sign of saccharification. Care has to be taken that it does not boil over, which Lautermaisch tends to do. It is left to boil for 75 minutes. After this part of the Lautermaisch is put back into the mash tun from below to gelatinise the starch deposits (Unterteig") that have formed there. The rest of the Lautermaisch is poured over the grains, mashed well and left to stand. The wort in the underback is put into the kettle to protect the bottom from burning.

In Kulmbach they work with clear Lautermaisch. The ground malt is put into the mash tun and mixed with enough water at 50º C to wet evenly it through. It is then left to stand for an hour. Then enough boiling water is let into the tun through the underlet so that after a half hour mashing the temperature is 54 to 56º C. After the grains have settled, the clear wort is drawn off, put into the kettle and brought to the boil. After putting the Lautermaisch back into the tun the temperature is raised to 70-72º C. After 45 minutes mashing the mash is left to rest.

I was quite surpised to learn that they didn't use a classic Dickmaisch in Bamberg. But why should they use the same techniques as in Munich? Franconia had only become part of Bavaria 50 years earlier.

The book has many more pages on mashing. I'll be working my way through them next week.

Summer of Lager update

I'm delighted with my choice of Lager as a summer theme. It wasn't something I'd ever looked at in any great detail. I've already learnt so much.

Of course, I understood the concept of decoction mashing, but I hadn't realised how many variations there were. I've still only looked in three books and I'm already up to around a dozen methods. Should be perfect for driving people away at parties. "Don't you find decoction mashing fascinating. I certainly do. I read about this great single decoction method the other day . . . Where are you going? I've only just started."

There's so much to discover. I haven't really got past mashing yet. There's boiling, fermentation and lagering to come. Perhaps I should have called it Year of Lager.

I'm kicking myself for not having started before my last trip to Franconia. There are so many questions I would ask the brewers now. Mostly about their mashing schema. I wonder how many do a Dickmaische? Given the great variation in ingredients and fermentation methods, I would guess that their mashing systems are equally diverse.

Andy at BeerMania! has been trying to persuade me to go back to Franconia in July. Unfortunately, the kids are on holiday then. No chance of Dolores releasing me. Providing him with a list of prepared questions might be an idea.

"Gebrauchen Sie eine Dekoktionsverfahren?"

"Eine Einzel-, Doppel- oder Dreimaischverfahren?"

"Auf welche Temperatur maischen Sie ein?"

"Welche Rasten machen sie und für wie lange? Eine Eiweissrast? Eine Verzuckerungsrast?"

"Was ist die Temperatur der Gesamtmaische nach dem erste Kochen?"

"Was ist die Temperatur der Gesamtmaische nach dem zweite Kochen?"

"Was ist die Temperatur der Gesamtmaische nach dem dritte Kochen?"

"Für wie lange kochen Sie die Maische?"

"Kochen Sie die Dickmaische oder die Dünnmaische?"

"Was is die abmaisch Temperatur?"

I think that covers the most important points. If any of you happen to be in a German brewery in the near future, feel free to ask these questions for me. I've honestly no idea how they do these things nowadays.

Tuesday, 1 July 2008

Braunbier decoction 1826

This is fun, isn't it? Looking at all these methods of decoction. I can't remember the last time I enjoyed myself so much.

You're not stupid. If you've bothered to read the title, you have a fair idea of what this post will be about: decoction mashing in a Braunbier brewery in 1826. This will be a first. Our first foray into the time before thermometers. Before they used them in Germany, at least. In Britain, thermometers were popular amongst brewers before 1800. The practice took a while to spread to the Continent.

The source is "Beschreibung der Braunbierbrauerei" by Benno Scharl, 1826, pages 63-65.

The ground malt is tipped into the mash tun, which already contains cold water. The two are thoroughly mixed together with a mashing shovel. This process is called Einmaischen. The mixture is left to stand for 3 - 4 hours before mashing begins.

First Dickmaisch. As soon as the water in the kettle is boiling vigourously, the Dickmaisch can begin. Some let it boil longer than others.

The boiling hot water is ladled* from the kettle into the mash tun. While this is happening, mashing occurs in the tun. Mashing is performed in the same way as Einmaischen, the grains and water being mixed thoroughly with a mashing shovel. Mashing continues until the kettle is empty. The mixture, as much as possible of the malt, is transferred to the kettle until it is full. Now the first Dickmaisch is in the kettle. The rest remains in the mash tun. During this time the fire is stoked so that the Dickmaisch comes to the boil quickly.

In the beginning the malt has to be stirred so that it doesn't fall to the bottom of the kettle and burn. When the heat increases, the malt rises of its own accord. When the Dickmaisch comes to the boil, the fire shoukld be reduced so that it does not boil over. It is boiled for 1.5 hours.

Second Dickmaisch. When the first Dickmaish has boiled for 1.5 hours, it's ladled back into the mash tun. The procedure is now the same as for the first Dickmaisch, except that none of the thick part in the kettle is ladled back into the mash tun. When mashing of the second Dickmaisch is over, it's left to stand for 15 minutes.

Half an hour earlier, at the beginning of the second Dickmaisch, about three Eimer of clear wort is tranferred to the underback. When the kettel has been cleaned of the spent grains, this wort is put into the kettle so that it doesn't burn before the Lautermaisch begins.

Lautermaisch. After the mash has stood in the run for 30 minutes, the tap is opened and the Lautermaisch run into the underback. when the kettel is full, it's heated again until the Lautermaisch comes to the boil.

As son as the Lautermaisch comes to the boil, it's ladled back into the mash tun and there's more mashing, as described above.

As this is the last mash, mashing is longer, about 30 minutes. Meanwhile more water is heated in the kettle, enough to make a Nachbier.

When the last mash is over, the mix in the tun is left to stand for at least one or two hours.

Without the help of pumps, that sounds like an awful lot of hard, physical labour, moving all that wort around. It's recognisably a classic triple decoction, but with a couple of twists. Not returning the grains in the second Dickmaisch to the mash tun is a new one. Not sure what the point of that is. And, at an hour and a half, the boiling time of the two Dickmaisch is much longer than in later descriptions.

I can't say that I would want to attempt brewing just using these instructions. There's no indication of how much wort is put into the kettle and boiled. Which would help, in the absence of temperatures. I would assume that the aim is to hit around 50º C after the first Dickmaisch, 65º C after the second and 78º C after the Lautermaisch. But that's just my guess.

Notice my correct translation of Grand (underback) in this piece. It's wonderful to actually know what it means. Any suggestions for the English equivalent of Einmaisch?

How consistent were their mashing temperatures? Possibly more than you would expect. Experience would have taught brewers how much water/wort to boil to obtain the best results. Volume was easy enough for them to measure.

I've another thermometer-free description. I'm not sure if I should include it, as it isn't a decoction mash. What do you reckon? Maybe I'll take a look at the Barclay Perkins lager logs instead. That's decoction mashing. What about a decoction-mash Mild? I've a log for one somewhere. An experimental brew from, I believe, 1916.


* I've translated the German "geschöpft" as "ladled". You know the two crossed things you always see on German beermats. Those two things with the long handles. One looks like a shovel with holes in it, the other like a bucket on a stick. I think "geschöpft" means using the bucket on a stick. If you have a better translation. please let me know.

Monday, 30 June 2008

1930's decoction mashing

I warned you that I had loads more of this stuff. This is from "Brauerhandbuch" by Karl Hennies, 1937, pages 124-127. I was most surprised to see a mention of Satz. I hadn't expected any 20th century references to it. I've another book by Hennies, written after the war, that also talks of Satz.

The big difference in the methods described here are the protein and saccharification rests taken in the kettle.
Triple decoction mash
This is typified by a part of the mash being pumped into the mash kettle on three separate occasions. There it is kept at a specific temperature before being boiled. In is then returned to the mash tun. The total duration of the process is 4.5 to 5 hours.

Einmaisch teperature is 35 - 38º C. Then the first mash (about a third of the total) is pumped into the mash kettle. This mash should be as thick as possible.

(First Dickmaische.) The temperature in the kettle should rise slowly; at 50º C a 10 minute protein rest can be taken, between 65 and 70º C there is a 15-25 minute saccharification rest; the mash is then brought to the boil and boiled for 45 minutes. The mash is then pumped back into the tun and reunited with the remaining two thirds of the mash. The contents of the tun are constantly stirred, starting before the boiled mash is returned (vormaischen), while the wort is being pumped back and after all the mash is back in the tun (nachmaischen). As a result of the addition of the first boiled wort the temperature of the whole mash is raised to 50-53º C.

After this the second Dickmaische is pumped into the kettle and boiled for 20-30 minutes. (While this is happening there is a protein rest in the mash tun at 50-53º C.) Through the return of the second mash the temperature in the mash tun is raised to 62-65º C.

Then a third mash is pumped into the kettle. This time not a Dickmaische, but a Lautermaische, which is as thin as possible. The Lautermaische is quickly brought to the boil and boiled for 25 minutes. (During this time: the temperature in the mash tun is 62-65º C = saccharification rest.) When the 3rd mash is pumped back into the tun, the temperature rises to 76-78º C (= mashout temperature). Now mashout occurs, that is the complete mash is pumped into the lauter tun.

Sometimes a "Maischrest" is employed. When the mash is pumped back into the tun a remainder is left in the kettle. When the next mash is pumped into the kettle into the boiling-hot Maischrest, as a result of the higher temperature, more unfermentable dextrines are formed than fermentable sugars.


Double decoction mash
Einmaisch is with warm water at 50º C or the Einmaish is cold and then wqarmed to 50º C. The first Dickmaische (about half the total mash) is boiled for up to 30 minutes. After being pumped back the temperature of the whiole mash in the tun rises to about 65º C. Then a second Dickmaische (about one third of the total mash) is drawn off and boiled. When pumped back into the tun the mashout temperature of 75-78º C is reached. When the malt demands it, during both Dickmaische a longer or shorter protein rest and saccharification rest are taken. Double decoction is often used with pale, well-modified malt.


Single decoction mash
There are different ways of performing this method. This is the so-called "Kesselmaisch" [Kettle mash] method.

Mashing occurs in the kettle and the complete mash, after a protein rest, is warmed to the saccharification temperature. Stirring is stopped and the thin (enzyme rich) part of the mash, the so-called "Satz" pumped into the mash tun. The thick remainder is boiled in the kettle and then pumped into the tun with the thin part and kept at saccharification temperature for 30 minutes. The whole mash is then pumped into the kettle and brought to mashout temperature.


The Hochkurz [High fast] mashing method
This is used with very well-modified malt. Einmaisch is at the higher temperature of 62º C (avoiding a protein rest). The first mash is only boiled for a short time - 5 minutes.After pumping back the boiled mash the temperature rises to 72º C. This temperature is maintained for an hour. Then another mash is drawn off and again boiled for just 5 minutes and mashout is at 78º C.


Springmaisch method
The einmaisch temperature is 37º C. The mash is then added to boiling hot water. The temperature of the mash is so raised to 70º C. The temperatures between are skipped. This method is used with over-modified malt which saccharifies too quickly.


Schmitz method
You can mash any way you like. Abläutern, separating the wort from the spent grains, occurs not at normal mashout temperature (76-78º C) but at boiling point. Wort obtained this way needs to be cooled a little and undergo more saccharifcation. To this aim, "cold Satz", a watery malt extract (diastase extract) obtained after einmaschen, is run off earlier in the process. By mixing the Satz and the wort at saccharifcation temperature saccharification takes place.

I'll probably be going back in time for the next installment. To the pre-thermometer time.

Saturday, 28 June 2008

1950's decoction mashing in the DDR

Who says this blog is willfully obscure? Taking a break from 19th century decoction techniques, let's return to another of my obsessions, the DDR. The source is one of my favourite books, Dickscheit's "Leitfaden für den Brauer und Mälzer", 1953, pages 64 - 66.

The DDR was a bit of a time warp. The techniques described here, though the book was published in the 1950's, are probably unchanged from at least the 1930's.

Today I've not one, not two, not three, not even four decoction methods, but five for your delectation. I never realised there were so many different ways of performing a decoction mash.

Decoction mashing is standard practice in Germany. It is not employed because it gives a better yield - an infusion mash with well-modified malt can be just as efficient - but because of the flavour of it lends to the finished beer. Beers brewed by the decoction method taste more powerful and heartier. Because boiling darkens the colour of the wort, for very pale beers the quantity of wort boiled should be kept to a minimum.

The classic decoction method is triple decoction. It is used for Munich beers, but rarely for very pale beers because it darkens the wort. However it is used at Pilsner Urquell. Beers brewed by triple decoction usually have a lower degree of attenuation than those using a double decoction because of the early destruction of the diastase.

The triple decoction mashing scheme for a pale beer can look like this:

Length of mash 3.5 to 5 hours
The main mashing temeratures are 37, 54, 65 and 76º C
Einmaischen at 37º C
Draw off first mash and without a rest bring to the boil
Boil first mash
The Restmaische remains at 37º C
Aufmaischen at 54º C
The combined wort stands at 54º C (protein rest)
Draw off second mash and bring to the boil
Boil second mash
The Restmaische remains at 54º C
Aufmaischen at 65º C
Draw off third mash and bring to the boil
Boil third mash
The Restmaische remains at 65º C
Aufmaischen at 76º C and mashout

It should be remarked that triple decoction can be performed in many different ways. The rests can be longer or shorter, the Kochmaische can be pumped quickly or slowly, Dickmaische or Lautermaische can be drawn off. However there are always three boils of the mash and the temperatures are always the same. Though, in the case of a cold Einmaischen, they can vary by 2 or 3º C.


Double decoction is the most widely used method in Germany. It is suitable for the production of pale beers and is more rational as it uses less coal and time. Beers brewed by double decoction are paler than those made using triple decoction. The mashing temperatures are 50, 70 and 76º C. When using poorly modified malt a rest at the start temperature, 50º C, is recommended. As an example, this is a method of double decoction employed by Schönfeld in the Hochschulbrauerei in Berlin. This method is typified by the care which is taken.

Duration of the process 3 hours and 5 minutes.

Einmaischen at 35º C 5 minutes
Warm whole mash to 52º C 20 minutes
Rest whole mash at 52º C (protein rest) 15 minutes
Draw off first mash and without a rest bring to the boil 30 minutes
Boil first mash 10 minutes
The Restmaische remains at 52º C 40 minutes
Aufmaischen at 70º C 25 minutes
Rest whole mash at 70º C (saccharification rest) 30 minutes
Draw off second mash and without a rest bring to the boil 15 minutes
Boil second mash 10 minutes
Aufmaischen at 76º C and mashout 20 minutes

In addition to double and triple decoction there is a series of other methods

The Hoch-Kurzmaische method is characterised by a high Einmaisch temperature. The decoction effect is small and beers produced this way resemble those from an infusion mash. Attenuation of 80 - 84% is achieved with this method. Well-modified malt is essential

The process takes about 2 hours.
Einmaischen at 62º C
Draw off first mash and quickly bring to the boil
Boil first mash for 5 minutes
Aufmaischen at 70º C
Rest whole mash at 70º C (saccharification rest)
Draw off second mash and quickly bring to the boil
Boil second mash for 5 minutes
Aufmaischen at 76º C and mashout



The standard single decoction method is scarcely used in practice. The decoction effect is very small. Beers made this way taste similar to those made using an infusion mash.

A standard single decoction mash goes something like this:

Einmaischen at 50º C
Warm whole mash to 70º C
Draw off mash and bring to the boil
Aufmaischen at 76º C and mashout


The Kesselmaische method, where the whole Dickmaische is boiled, is a single decoction method with a strong decoction effect. In a four-hour mash, it generally gives a better yield than a triple or double decoction mash of the same length. In the hands of a skilled professional, it's a very elegant method which can achieve everything desired. Both well- and poorly-modified malt can be used. The enzymes in the Dunnmaische drawn off earlier are enough to guarantee a complete saccharification. Also the Abmaisch temperature isn't high enough to quickly kill the enzymes. Even during Ablauteren there are still enzymes in the wort.

This method need to be adapted according to the quality of the malt.

A Kesselmaische method goes something like this:

Einmaischen at 50º C
Rest at 50º C approx. 30 minutes
Warm whole mash to 64º C
Rest at 64º C approx. 30 minutes
Draw off mash and bring to the boil
Warm whole mash to 70º C
First saccharification rest at 70º C until iodine normality reached
Draw off the Dünnmaische
Boil the Dickmaische
Aufmaischen at 76 - 78º C
Second saccharification rest

What am I saying, 1930's? The Schönfeld method is probably pre-WW I. If you'll remember, he was the author of "Die Herstellung obergähriger Biere", published in 1908.

Friday, 27 June 2008

The Kulmbach method of decoction

Yet another Bavarian method of decoction from Otto (("Handbuch der Chemischen Technologie: Die Bierbrauerei" by Dr. Fr. Jul. Otto, published in 1865, page 128).

As soon as the water in the kettle reaches 50º C, as much as is needed is put into the mash tun to Einteigen.

After an hour, when the rest of the water has come to the boil in the kettle, this is added to the mash. The temperature of the mash should be 53.75 - 56.25º C. A small amount of water should remain in the kettle so that the temperature of the mash is correct. Or a small amount of cold water is added to the mash. When, after resting, the wort in the mash tun has cleared, this is run off and boiled in the kettle. After just a few minutes boiling, this Lautermeisch is added back to the tun and mashed for 45 minutes. The temperature of the mash should be 71.25 - 72.5º C.

Usually a small quantity of wort is left in the kettle and boiled with all the hops for 10 to 12 minutes (hopfenrösten).

The mash in the tun is left to rest for 90 minutes, then it is drawn off and added to the kettle where it interrupts the rösten.

The wort from the first lot of cold water poured over the grains is usually used for topping up the kettle.

Just to be clear, Kulmbach is also in Franken. Another single decoction. And no Dickmeisch. Life's full of surprises.

Thursday, 26 June 2008

The Franconian method of decoction

Otto ("Handbuch der Chemischen Technologie: Die Bierbrauerei" by Dr. Fr. Jul. Otto, published in 1865, pages 127 and 128) has yet another Bavarian system of decoction. The Franconian method. It's another one where they do something funny with the hops. I know people love that. Fiddling about with the hops in a weird way.

For 100 pounds of grain, depending on the strength of the beer, between 600 and 700 pounds of water are used.

The crushed grain is put into the mash tun dry. As soon as the water in the kettle has boiled, cold water is added to cool it down to 82.5 - 87.5º C. The water is then mixed with the grains. This shouldn't occur too quickly, so that the temperature of the grain rises slowly. This is important as all 600-700 pounds of water are used at this first mash. The temperature after all the water has been added should be 62.5º C.

After a short rest, the first wort is transferred to the kettle and boiled for 45 minutes. This Lautermeisch is put mack into the tun and the temperature of the whole mash should then be 75º C. After mashing well, the mixture is left to rest for an hour. After this the finished wort is drawn off.

In Franconia, very frequently the hops are boiled for half an hour with a small quantity of the first wort to be drawn off. This gives the beer their distinctive taste. It's called "Rösten" the hops.

Cold water is poured over the spent grains to remove the remaining extract. In the Bamberg area this wort is called Hansla and is used to make a weak beer. In volume, this is almost half the amount of the full-strength beer.


I hadn't expected them to have used a single decoction like this in Franconia. My guess would have been triple decoction.

Still not quite done with Bavaria. There's also the Kulmbach method.

Tuesday, 24 June 2008

Augsburg method of decoction

I told you that I hadn't forgotten about lager. Distracted. That's what I was. Time for the Summer of Lager again.

This is another decoction method, loosely translated from pages 125 to 127 of "Handbuch der Chemischen Technologie: Die Bierbrauerei" by Dr. Fr. Jul. Otto, published in 1865.
For 100 pounds of malt 600-700 pounds of water are used.

Einteigen occurs with cold water. Very often, though, another method is used. Some hops are sprinkled on the bottom of the mash tun and the grains put over them. The cold water is then poured onto the grains without being worked in. The hops are to stop the smaller parts of the crushed grain falling through the holes in the bottom of the tun and to prevent souring.

After Einteigen, the mash is left to stand for 4 or 5 hours. The liquid which has gathered below the false bottom of the mash tun is drawn off. This liquid, called Satz [sediment or deposit], contains loose parts from the malt, including protein. When the water in the kettle boils a few Maaß of Satz are added to the kettle and the water is boiled for another half hour or so, depending on how hard or soft it is. The protein from the Satz helps remove impurities. The scum is removed.

The purified water is added to the mash and mashed. The temperature should now be 60-62.5º C. The mash is left to stand for 15 minutes.

The water is added slowly to the grains so that the temperature doesn't rise too quickly. Many brewers take a break at thus point to allow the grains to soften completely.

When enough water has been drawn off from the kettle for the first mash, the remainder of the cold Satz is put into the kettle.

The first wort is drawn off into the Grand [no idea what this is] and from there put in the kettle.

Of the clear wort, about 15 to 20 Maas isn't boiled, but quickly cooled. The wort, called the warm Satz, is later, before the boil with hops, reunited with the rest of the wort. The use of warm Satz makes the finished beer milder and clearer by encouraging a more powerful fermentation. The quality of the warm Satz determines the quality of the beer. It should be crystal clear and have a pure, sweet taste. The quality of the malt can be judged very precisely from the Satz.

Usually only about two thirds of the wort is drawn off and slowly brought to the boil. Any scum is skimmed off. (Lautermeisch.)

The boiled wort is put back into the mash tun and mixed with the grains, raising the temperature to 62.5 - 65º C. The mash is stirred vigourously to ensure a gradual rise in temperature.

After mashing, the thick part of the mash is transferred to the kettle. The Dickmeisch is brought quickly to the boil, whilst being stirred continuously so that it doesn't burn. It is simmered for one hour. Signs that it has simmered for long enough are: when no more scum is formed, when a test sample of the liquid quickly clears.

After sufficient simmering, the Dickmeisch is added back to the remaining thin wort in the mash tun and mixed well. Constant agitation helps separate the large and small particles and so helps obtain a clear wort.

If there is a second Lautermeisch, which is unnecessary and not usually done, the wort is drawn off immediately after the Dickmeisch is added back to it. This clear mash is brought to the boil and then immediately added back to the mash tun, where it is left to rest for 60 - 90 minutes.

The Satz is put into the kettle and the hops added to it. The wort is slowly drawn off (so that it is perfectly clear) and added to the hops and and Satz in the kettle. This is slowly brought to the boil.

To extract the remaining sugars from the grains, cold or hot water is poured over them. The wort so extracted is not usually used in Sommerbier, but used instead to make a weak beer. Some of this weak wort is used in Winterbier.

This method is most used in Schwaben, though quite often without warm Satz. Brewers fear problems with unboiled wort in warm weather.
Next is the Franconian method. After that, who knows. I may go modern, if the latest version of Kunze I just ordered has arrived.

Saturday, 14 June 2008

Austro-Hungarian beer production 1887-1893

Yesterday was very exciting. The postman delivered more books. You can never have enough books. I'm not sure Dolores agrees.

Three books came. One is a particular favourite of mine: "Zeitschrift für das gesammte Brauwesen". The 1889 edition. It never disappoints. Just quickly flicking through I found half a dozen tables of enthralling statistics. Stuff very relevant to one of my summer themes: Lager.

That's no coincidence, of course. I deliberately ordered the book because I knew it would be packed with bottom-fermenting delights. It's a wonderfully information-rich source for a period (the end of the 19th century) when central European brewing techniques were starting to conquer the world.

I've always had a fascination for the Austro-Hungarian Empire. Probably connected with the way in which one of the largest countries in Europe disappeared overnight at the end of WW I. Or how its legacy refuses to disappear.

Judging by the wonderfully detailed figures, the Austro-Hungarian beer taxation system must have been based on gravity. Lucky for me. And you. It means we can see exactly how much of each strength of beer was brewed. You think that's dull? Then I think you're reading the wrong blog. Try Stonch's. He has more populist stuff about strippers and Hollyoaks.

So just us serious saddoes left. I won't count how many of us there are. Let's just say we won't need to rent a bus.


The vast majority - 95% - of beer produced was in the range 10-13º Balling (1040 - 1052). Over 50% was 10º Balling. What does that tell us? That not much has changed in the strength of beer brewed in the Czech Republic over the last 120 years. The situation today is remarkably similar. It might surprise some that the classic gravity of 12º is so poorly represented.

Here are the raw numbers. This is for the hardcore only.


While this is typical for central Europe, a similar table for Britain would look very different. In the 19th century, little British-brewed beer had a gravity below 1052 (13º Balling). A Pale Ale of the period would have been 1060-1065 (16º Balling). In 1900, the average gravity of all beer brewed in Britain was almost 14º Balling, a hefty 3º Balling higher than in Austria-Hungary.

The original figures are broken down by province. Which is why I can now focus in on two specific parts of the Austro-hungarian Empire: Bohemia and Moravia (the Czech Lands or the modern Czech Republic) and modern Austria. The latter is only an approximation, as part of Tirol is now in Italy.


The preponderance of 10º is even greater in the Czech lands - 72%. The tiny amount of 12º brewed is a surprise. Remember Pilsen is in Bohemia and 12º is the classic Pilsener gravity. As you can see from the table below, the situation is still quite similar today.

Beer production by beer type
beer type 2004 2005
výcepní (10º)
61.3% 59.8%
ležák (11-12º)
34.4% 35.8%
specialní (13º +)
1.05%
non-alcoholic beer 1.1% 1.25%
Source:
Český svaz pivovarů a sladoven

The distribution by gravity is quite different for Austria:


Here almost as much 12º and 13º was brewed as 10º. There's also considerable variation between the different Austrian provinces. In Steiermark almost two thirds of production was 13º or higher. In Niederösterreich (which included Vienna) little other than 10º and 14º was brewed.

How does that compare to modern Austrian beer production. Well let's have a look:


There's been a dramatic shift towards the middle. Whereas in 1888 the most popular gravity was below 11º, today 85% of beer is between 11º or 12º.

Ten Amsterdam pubs to visit this summer

Here's a list of Amsterdam's essential pubs. According to me, at least. Places you shouldn't miss if you're in the city this summer.

Wildeman
One of the world's top beer pubs. And they have loads of quality German lagers, perfect for cooling you down on a hot day. There's a no-smoking room, too, but that won't matter after July 1st, when smoking will be banned in Dutch pubs. Will that affect my sitting habits?


Arendsnest
The world of Dutch beer at your fingertips. The canalside tables are very pleasant at this time of year. Perhaps an ice-cold jenever might go down nicely, too. When the smoking ban arrives, drinking inside may bceome a possibility, too.





Blijburg
Hang out with the hippies at Amsterdam's coolest beach. If the weather's good, you could almost be in Negril. Get there this year, because the kill-joy council plan closing it forever at the end of the summer. Just love that driftwood bar with the Buddha head. Shame about the dogs, though.




Scharrebier
Another pub with a relaxing canalside terrace. Handy for NeMo, too. I would have also included a mention of the Scheepvartsmuseum, but that's currently undergoing renovation (like many myuseums in the city). A recent cheerful correspondent told me my Amsterdam pub guide was a bunch of tourist hellholes, with the exception of Scharrebier and Druif. See if you agree.


Haven van Texel
A full range of microbrewery Texelse beers and a terrace with some of the best views in town. When the sun goes down or it gets chilly, it's just a few steps to Olofspoort. Shit, that's eleven pubs now. Can't be arsed to change the title, mind.




Wijnand Fockink
The garden has reopened! This unique outdoor space is a real summer treat. Don't miss it. The perfect place for pickling yourself in jenever. Ever wonder what's around the back of the 17th century houses in the centre of Amsterdam? This is your chance to find out.



Wildschut
Located on Amsterdam's most beautiful square. Wonder at Boterenbrood's wilful asymmetricity. Wonder at the Rutger's curving brick balconies. The Van Gogh and Rijksmuseum are close by, too. There's plenty of space indoors and out in this substantial 1930's pub. The art deco interior matches the Amsterdamse School exterior perfectly.


Dopey's Elixir
Nothing particularly summery about Dopey's. I just thought it deserved a mention. And you wanted an excuse to visit De Pijp, didn't you? No? Well, you should do. It's full of all the ethnic and trendy stuff I imagine my readers going for. Don't know why. Imagine you like that sort of thing. You're probably a bunch of fat old blokes like me.



Brouwerj Het Ij
On a warm summer afternoon, nothing's more soothing than hiding inside Het Ij while everyone else mobs the beer garden. Dirt cheap, too. See if you can spot the join where the bar was recently extended.




Alverna
One of the few places in Amsterdam West where you can enjoy a beer outside and not be crammed on the pavement next to a main road. They have a few decent beers to make the experience extra special.




(This has been a post in the series "Get More Hits for my Website" and "Keep Mike Happy".)

Friday, 13 June 2008

Decoction mashing in the DDR

I own a few East German brewing manuals. They were some of the first technical books I obtained. My mother-in-law got them from some of her many contacts back in the days when the DDR was still a country. Until now, I'd not paid much attention to the sections on decoction mashing.

Wolfgang Kunze's "Technologie für Brauer und Mälzer" is a wonderful book. It describes in minute detail how to run a VEB brewery. He's pretty good on the technical stuff. Which explains why a later version of this book, produced after reunification, is still a standard text.

This information comes from pages 198 and 199 of the 1961 edition.

It's always the Dickmaische which is boiled. The Dunnmaische or Lautermaische is very enzyme rich as the enzymes are soluble.

The amount of the mash to be boiled (Kochmaische) is one third and two thirds of the total. [There then follows a series of formulae for calculating the exact amount]

hl Kochmaische = (desired rise in temperature * hl total mash)/(90 - Restmaische hl)

Restmaische = total mash - Kochmaische

Example: you've got 130 hl of mash at 50º C that needs to be heated to 64º C

hl Kochmaische = (14 * 130)/40 = 45.5 hl


The time the mash should be boiled varied, depending on the type of beer:

pale beer - 10-20 minutes
dark beer - 20-30 minutes
adjunct mashing - 30 - 40 minutes

The Kochmaische should be pumped into the Restmaische (and not the other way around) so that the temperature of the Restmaische rises slowly and the enzymes aren't destroyed.

Triple decoction
This is the oldest method of decoction.

einmaischen 35º C
1st Kochmaische 50º C
2nd Kochmaische 65º C
3rd Kochmaische 72-74º C

Triple decoction is very intensive, time-consuming and requires much more energy than double or single decoction. The gains are very small in comparison to the extra effort and consequently is no longer much practised.


Double decoction

einmaischen 50º C
1st Kochmaische 65º C
2nd Kochmaische 72-74º C

You may have noticed that the triple decoction is very similar to the Munich method I told you about earlier. Don't worry about all the entries for this series looking very similar. The Augsburg method is very different. That makes use of Saz. Never heard of Saz? Don't worry. Neither had I before yesterday.

Thursday, 12 June 2008

Salvator

The Summer of Hate, sorry, Summer of Lager continues with a look at Salvator. One of the most famous beeers of the 19th century. Today, it's a trademark of Paulaner, but back then it was used as a generic term for all Doppelbocks.

Because of its fame, I've plenty of hard evidence about Salvator. I collect numbers. I can't help it. Occasionally, like now, it does come in handy. If I weren't such a saddo, I wouldn't all the fascinating figures with which I'm about to regale you. So don't mock me.


The first data I have comes from the 1850's. The beer was brewed by Zacherl, the forerunner of Paulaner, so it's the real deal. It has a massive OG of 23.5º Balling (approx. 1095), but a relatively puny alcohol content of just over 6% ABV. Let's be honest, the attenuation is crap. Less than 50% apparent. With an FG higher than the OG of most beers today, it must have been pretty thick and sweet. No wonder they used it as a meal substitute.

The 1858 version (not sure if it's from Paulaner or another Munich brewery) has a substantially lower gravity (19.8º Balling, or around 1080) , but almost as high an ABV (5.74%). As a consequence, the apparent attenuation has increased from a pathetic 46% to a still unimpressive 53%.

By 1870, the gravity has dropped further, to 18.5º Balling (approx 1074), but the ABV has remained about the same (5.64%). Apparent attenuation has again increased and is 56%.

Unfortunately for me, I have no idea which breweries the 1930's samples come from. However, the first in the list looks rather like a Doppelbock to me. Assuming that it is, we can see a further slight reduction in the OG (17.99º Balling, approx 1072), but a similar ABV (5.8%). Consequently, apparent attenuation is up to 60%.

Finally we see the present incarnation of Salvator. This has a much higher alcohol contente - 7.5% ABV - than any of the older versions. Which has a big impact on the apparent attenuation, which is now a respectable 75%.

So how does modern Salvator compare with the 19th century versions? It has a 22% lower OG, but a 25% higher ABV. The difference in body is enormous. The FG in the 1850's was more than double what it is now. To sum up, modern Salvator is less full-bodied, less sweet and sticky, but more alcoholic.

Another difference is the colour. Though I don't have enough numbers to do a precise analysis, I know from personal observation that Salvator has become paler over the last 15 years. And generally pretty crap, but that's a subjective opinion.

I suppose I should try and dig out an old description of Salvator brewing. My guess would be that the 19th-century method was a triple decoction Dickmeisch. If you've been paying attention you should know all about that. Don't tell me you've forgotten already? Really.


(Published as part of my one-interesting-to-one-boring_post initiative.)

Wednesday, 11 June 2008

Gravity Tables - Lager

I was surprised to discover at least one fan of my tables of beer gravities. I don't know why I was so shocked. I could stare at them for hours. Quite often, I do.

Just a small one this time. German Bocks from the early 1950's. These are probably some of the first strong beers brewed in Germany after WW II. What can I say. The attenuation is higher than in 19th century Doppelbocks.


Hang on. I said this was going to be the Summer of Lager, didn't I? You deserve more than one table. And it's a while since I did any. How about far more tables than you'll be able to absorb in one sitting? Sounds perfect.

Here's some German Pilsners.




1950's Lager

Let's take a look at Lager in various European countries in the 1950's. That should be fun, shouldn't it? At least until I swamp you with numbers.


Belgium
As I can't be bothered to think of a clever way of organiosing them, let's look at the different countries alphbatically. We start with Belgium.


They're all Pilsners, you may have noticed. Nothing particularly unusual about them, either. Except that the Stella Artois bought in Belgium is stronger than the others. The weaker ones may have been bought in Britian, which would explain them being weaker.


Czechoslovakia
Beer from just one Czech brewery, Pilsner Urquell. Only one of them appears to be the classic 12º Ležák. That looks the same as it always does in analyses, from the 19th century up until the present. Though it would be interesting to compare the colour with the modern version.



Denmark
Just beers from Denmark's Big Two, Carlsberg and Tuborg, when they were still separate companies (and still each had a brewery).


From the feeble gravities of just over 1030 of many of the examples, it's clear that both were already brewing versions especially for the UK.


Holland
Again beers from the countries largest brewers - Amstel, Heineken, Oranjeboom and ZHB.


All are under 1040 and presumably brewed for the UK market. In the 1950's Heineken brewed three versions of its Pils: one for the Dutch market, one for the USA and one for the UK. Only the UK Pils was piss-weak.


Norway and Sweden
I was shocked to see three Norwegian breweries represented. But only one Swedish. Can't have everything, I suppose.


Given their strengths, I doubt any of these were intended for the UK market. Note that the Swedish beer is just a shade under the 5.6% ABV maximum which was at that time in force in Sweden.