Rule #1: Never brew in socks.

Monday, April 9, 2012

French Saison (4/8/12)

Saisons are bone-dry, peppery beers with champagne-like carbonation traditionally brewed in the farmhouses of Wallonia (southern Belgium) and northern France. We've never attempted to brew a saison before, in part because the best-known saison yeast, sourced from Brasserie Dupont, has a reputation for being finicky about temperature and failing to ferment to completion.

For this beer we elected to use the Wyeast French Saison yeast (3711) instead, which is supposed to be more reliable. It's sourced from a French microbrewery east of Calais named Brasserie Thiriez, who are known for their particularly hoppy saisons. We followed our standard procedure for pale Belgians, omitting specialty grains, and adding sugar two days into fermentation.


Batch Size:2.5 gal
Boil Volume: 3.5 gal
Calculated OG: 1.073
Measured FG: 1.005
Estimated ABV: 8.9
Calculated IBUs (Tinseth): 41.5


Pitching Temperature: 68F
Yeast: Wyeast French Saison 3711
Starter: None
Fermentation vessel: Bucket
Carbonation: 3.0 volumes of CO2

Other Fermentables Amount % Max Pts.
DME 3.25 75% 42.00
Corn Sugar 1.1 25% 42.00
Hops/Additions Amount Time AA% IBU's
Nugget 0.5 60 12.5% 41.5

This beer dried out way more than expected. 93% attenuation, wow! We'd heard that this yeast was really attenuative, but this is more than anything we've ever experienced. This beer was supposed to be in the neighborhood of 7.7% ABV, but it's way above that now. This is the first beer we've made that turned out too dry.

L'Appel du Vide (4/1/12)

After learning that we could acquire yeast sourced from De Dolle Brouwers, one of our favorite Belgian breweries, we knew we had to brew something with it. The yeast will take the lead in this beer, producing lots of spicy phenols and fruity esters. We added some sugar to the recipe, as we are wont to do with Belgians, in order to prevent the beer from ending up too sweet. (Funny how brewing works, sometimes.)


On a whim, we also added a very small amount of grains of paradise, a pepper-like African spice used in some Belgian-style beers, such as Chimay Grand Reserve (Blue) and Ommegang's Rare Vos. This being our first time brewing with spices, we only used a quarter of a gram, or about 20 seeds, crushed and added at the end of the boil. Grains of paradise have an intense and complex pepper/lemon/ginger flavor, which we hope will complement the flavors contributed by the yeast.


Batch Size: 2.5 gal
Boil Volume: 3.5 gal
Calculated OG: 1.073
Measured FG: 1.016
Calculated ABV: 7.5
Calculated IBUs (Tinseth): 40
Pitching Temperature: 63F
Yeast: Wyeast 3942 (De Dolle)
Starter: none
Fermentation vessel: Bucket


Other Fermentables Amount % Max Pts. Color
DME 3.25 75% 42.00 2.00
Corn Sugar 1.1 25% 42.00 0.00

Hops/Additions Amount Time AA% IBU's
Nugget 0.5 60 12.5% 40
Grains of Paradise 0.25g 5
0.00

Temperature dropped to 61F the night after pitching, and the beer showed no signs of fermentation after 12 hours. We warmed the beer up to 70 the next day, and it has fermented steadily since then. Sugar added on the third day of fermentation.

Tasting notes 5/2/12: Pepper, lemon, pear, watermelon, rose. Lingering spicy note in the finish. Balanced bitterness. Still fairly cloudy. Could be drier, but still very crisp and drinkable. Delicious.

Sunday, April 1, 2012

The Bloom, first week in March

Our third IPA was brewed to celebrate the first bloom of spring in Seattle. Floral and pine, the Bloom combines Chinook and Citra for a distinctly spring-like flavor. We used Chinook for bittering in this beer. Chinook is one of those high alpha hops known to impart more of a harsh, lingering bitterness, and is pretty different from our typical go-to bittering hop, Horizon. Horizon produces a strong, clean bitterness that we really like, but we'd had some criticism that our IPAs weren't bitter enough. The Bloom is our attempt to amend that.

We hope that by using one of these older, harsher hops, the perceived bitterness will increase. The choice to use Chinook to dry hop as well was really just for kicks. We have experience using both Chinook and Citra for dry hopping separately, and I liked the results from both. However, they were used in very different beers, and the choice to use them together here was a pretty big risk. Without further ado, here is the recipe.

Batch Size: 5 gal
Boil Volume: 4 gal
Calculated OG: 1.071
Expected FG: 1.014
Calculated ABV: 7.5
Calculated IBUs (Tinseth): 145
Pitching Temperature: 66F
Yeast: Wyeast 1056 x2
Starter: none
Fermentation vessel: glass carboy
Other Fermentables Amount % Max Pts. Color
DME 6 73% 42.00 2.00
Cane Sugar 2.25 27% 46.00 0.00
Total 8.25 100% 355.50 2.40
Hops/Additions Amount Time AA% IBU's
Horizon 1 60 11.0% 59.57
Chinook 2 60 12.0% 129.97
Ahtanum 0.5 30 6.0% 12.49
Citra 0.5 20 12.0% 19.68
Ahtanum 0.5 10 6.0% 5.89
Dry hopped with 2oz of Chinook and 1.5oz of Citra for 11 days

We forgot to make a starter, and ended up just pitching two packets of yeast. It worked out fine, but it was an extra $7. The beer itself though is just awesome.

It opens with citrus, fading into pine and resin. The finish grows more bitter with each sip. What starts as a fairly dry, fruity beer quickly becomes fiercely bitter as the lingering bitterness of the Chinook builds over time. The dry hopped character is an intense blend of fruity and pine flavors, with citrus winning out. The resulting flavor strongly mimics the fresh bloom of spring. It's almost like rolling around in a garden on a bed of pine needles.

Wednesday, February 1, 2012

Introduction

The first alcoholic beverage humans made probably wasn't beer. The first fermented drink of which chemical traces have been found was made from a mixture of ingredients that included rice, honey, and wild grapes. Beer has, however, become the most consumed alcoholic beverage on Earth. To get a sense of the sheer scale of brewing today, consider that annual production volumes of major breweries are reported in millions of hectoliters (100 liters each), or millions of beer barrels (117 liters each).

Most other fermented beverages—such as wine, cider, or mead—simply cannot be produced on such a scale. Barley's crop yield is unmatched among ingredients well-suited for producing alcoholic drinks. Understanding why other high-yield ingredients—such as wheat, corn, or rice—are not generally used in beer, except in combination with barley, requires understanding the basic chemistry of the malting process.

Malted barley is composed of barley grains which have been steeped in water to initiate the germination process, in which the barley seed prepares to sprout. The grains are then rapidly dried with hot air to halt the germination process before the grains actually sprout. The goal of this process is to activate certain enzymes, namely alpha- and beta-amylase, which can break down the starches—which yeast cannot ferment into alcohol—into sugars, which yeast can ferment. Barley has a much higher enzyme content (or diastatic power) than other cereal grains like corn and rice, and is therefore much more capable of converting its starch into sugar in the mashing process.

Mashing is the first stage of brewing—brewers usually leaving the malting up to the maltsters. In the mash, malted barley is introduced to water between 140 and 160 degrees farenheit, and held at this temperature for a period of time, often 60 minutes. The heat and moisture allow the enzymes present in the barley to convert its starches to sugars. Mashing is performed in a large insulated container known as a mash tun.

After draining the hot liquor from the mash tun, the grains are often rinsed, or sparged, with more hot water. The sugary malt solution, which is now called wort ("wert"), is transferred to a large kettle and brought to a boil. At this point, beer's third ingredient (after barley and water) is added.

Hops. In the western United States, they've become something of a fetish, but hops weren't a common ingredient in beer until the Middle Ages. Before then, a variety of different plants were used to flavor and preserve beer, such as sweet gale, wild rosemary and yarrow. Recently, some American brewers have again begun to produce beers using these herbs. These ales are known as gruits, but they're still quite rare—for now the hop remains king.

Hops serve two functions. First of all, they make beer taste better (i.e., bitter). The bitterness they provide balances the sweetness of the malted barley, and the spicy, floral, or fruity flavors they contribute are often pleasant, sometimes divine. Secondly, hops contain alpha acids that are toxic to gram-positive bacteria such as Lactobacillus and Pediococcus, which often spoil beer, so hopped beer is less prone to infection and the off-flavors resulting from infection.

Hops are usually added to beer during the boil. Beer—or, more precisely, wort—is boiled for a long period of time, usually 60-90 minutes, which, among other things, isomerizes the alpha acids in the hops. This is important because alpha acids do not taste bitter as they are found in nature—only isomerized alpha acids provide bitterness. Hops boiled for a longer period of time will therefore contribute more bitterness, but the long boil will also destroy much of the hops' other flavors. Brewers often distinguish between bittering hops, added early in the boil, and flavor or aroma hops, which are boiled for a shorter period of time. Adding hops anytime after the wort has cooled, a technique known as dry hopping, contributes negligible bitterness but lots of hop flavor.

Once the beer has cooled, the wort is transferred into a fermentation vessel. The brewer usually pitches a single strain of ale yeast, Saccharomyces cerevisiae, either from a lab or harvested from a previous batch of beer. Notable exceptions include lagers, which require lager yeast, Saccharomyces pastorianus, and wild beers, which make use of a variety of wild yeasts and bacteria.

Even within S. cerevisiae, there are as many different yeast strains as there are breweries, due to the speed at which yeast evolves. Yeast strains crucially differ in how much they attenuate, that is, what percentage of the malt sugars they can convert into alcohol, as well as in what flavor compounds they produce as byproducts of fermentation. Belgian ale strains, for example, tend to be highly attenuative and produce pungent flavor compounds.
The yeast convert the malt sugars into alcohol over the course of a week or two in a stage known as primary fermentation. At the end of this stage the yeast begin to flocculate, or clump together, and drop to the bottom of the fermenter. Most brewers employ at least a short conditioning period following primary fermentation to allow the beer to clear of yeast and the yeast to clean up some less pleasant byproducts of fermentation, such as diacetyl and acetaldehyde.

After conditioning, the beer is ready to be carbonated. Most commercial breweries carbonate their beers mechanically, while most homebrewers and Belgians use a process known as bottle conditioning. In this process, the brewer adds a precisely measured amount of sugar to the beer immediately before bottling. The yeast ferment the sugar in the sealed bottle, producing only a very small amount of alcohol, but enough carbon dioxide to make a crisp, fizzy beverage. Bottle conditioned beers often have a small but significant amount of yeast at the bottom, so decanting the beer carefully into a glass, leaving the yeast with the last 1/4 inch of beer, is generally recommended to preserve clarity of appearance and flavor.

Monday, January 30, 2012

2011 Cider

Way back in early November, we procured two gallons of fresh, unpasteurized apple juice from an orchard north of Seattle that grows both culinary and cider apples. Cider apples are unfavored for eating, due to attributes such as tough skin, small size, or high levels of tannins or acidity—or all of the above. When making hard cider, size and toughness of skin are of little consequence, and tannins and acidity are actually desirable in cider (up to a point), since they contribute mouthfeel and flavor.

We fermented one gallon of the cider with a cider yeast, and one gallon with a German hefeweizen yeast. Roughly 3 months later, we bottled the two gallons, one (the hefeweizen cider) in the French style, i.e. at a very high level of carbonation, and the other at a more moderate level of carbonation.

The hefeweizen cider reached a final gravity of 1.008, which is very dry for beer but only semi-dry for cider. It has a soft, creamy mouthfeel with a Granny Smith aroma, and noticeable sweetness from the apples and yeast byproducts. I expect this will benefit from being highly carbonated, in order to enhance its aromatics and provide a crisper finish.

The cider yeast cider reached a final gravity of 1.006—a bit drier than the other. It has a stronger acidity and a more balanced mouthfeel. The taste is definitely less sweet, more reminiscent of a dry or semi-dry white wine. On first tasting I preferred the other, but at bottling this stands out as being a more balanced, complex, and drinkable cider. I think a lower level of carbonation will allow the excellent flavor and mouthfeel of this cider shine through.

Friday, January 13, 2012

The Wild Child (1/6/12)

This idea has been gestating for a while now, and we're excited to announce that we have officially brewed our first batch of wild beer. Traditional to Belgium (at least since brewers elsewhere began taming yeast), wild beers are fermented using wild yeast and bacteria, producing a host of flavors unheard of in other styles. The introduction of wild yeast like Brettanomyces and bacteria like Lactobacillus and Pediococcus creates character that runs the gamut from fruity and tart to barnyard-y, cheesy, and harshly acidic. Development of balanced flavors resulting in a drinkable beverage requires a lot of patience and luck. Harder still is producing good beer using spontaneous fermentation (fermentation that occurs without the pitching cultures of yeast and bacteria), the practice used by traditional producers of lambic and Flemish sours. We have gone ahead and inoculated our wort with a lambic culture developed by Wyeast for that purpose. Even still, the results are uncertain, as wild beer is affected by a host of factors beyond the introduction of appropriate critters, among them fermentation temperature, and accessibility of oxygen, both of which are basically out of our control.

I have no notions of recreating Cantillon; to produce something acidic and drinkable would be a success. Our recipe reflects the resources available to us. The mashtun is still unfinished, so we brewed with extract. And we don't yet have any wooden barrels, so it will be aged in glass. We used a 50% wheat malt extract in exchange for unmalted wheat (a stretch, I know).

Batch Size: 5 gal
Boil Volume: 4 gal
Calculated OG: 1.053
Expected FG: 1.003
Calculated ABV: 6.6
Calculated IBUs (Tinseth): 14
Pitching Temperature: 65F
Yeast: Wyeast Belgian Lambic Blend 3278 and Wyeast 1056
Starter: none
Fermentation vessel: 5 gal glass carboy
Other Fermentables Amount % Max Pts.
DME 6 95% 42.00
Dextrin Powder 0.33 5% 40.00
Hops/Additions Amount Time AA% IBU's
UK Fuggles 1 60 4.2% 14.00


Wild beer represents a new realm of brewing for Angry Monocle, beyond brewer's yeast, and we really have no idea how its going to come out. Traditional wild beers brewed in Belgium are aged for at least a year, more often than not two or three, and we don't expect to have much in the way of results in 2012.

We opted to pitch both the lambic blend and the 1056. This follows the schedule used by Russian River in their sours, and ought to help lower attenuation and prevent any unwanted infection from Enterobacter. We plan to continue pitching yeast from the bottom of unfiltered wild ales we like. So far we have tossed in the bottom of Cantillon's St. Lamvinus and Beersel's Oud Kriek. We do not plan on racking the beer to secondary, as dead and autolysized yeast provide good nutrients for Brettanomyces. More updates to come!

Thursday, December 22, 2011

The Aphrodisiac (12/22/11)

While Jack was in Nashville for December break, I brewed a batch of raspberry chocolate ale with Greg from Peet's. Named 'The Aphrodisiac' for its invigorating flavors—we hope it will last until Valentine's day. The recipe is based on our previous batch of raspberry stout, but we're adding some cacao nibs to the fermenter after fermentation is complete. For the raspberry, we're adding 3 lbs of Vintner's Harvest raspberry puree a couple of days into fermentation, as we did the first time. The only difference between this recipe and the last, besides the cacao nibs, is that the local homebrew shop was out of pale chocolate malt, so instead of half a pound of regular chocolate malt and half a pound of pale chocolate malt, we added a full pound of regular chocolate malt.

The raspberry is very slightly cooked in the canning process, so it has a slightly jammy taste. I wouldn't want this flavor in all fruit beers (e.g., fruit lambics), but I think that in dark, viscous beers it works quite well. The cacao nibs should add a rich, natural chocolate flavor and bitterness. I expect this beer to taste like a raspberry chocolate truffle, with carbonation. And alcohol.

Batch Size: 5 gal
Boil Volume: 4 gal
Calculated OG: 1.069
Measured FG: 1.019
Calculated ABV: 6.5
Calculated IBUs (Tinseth): 40
Pitching Temperature: 65F
Yeast: Nottingham
Starter: none
Fermentation vessel: Bucket

Malts Mashed Amount %
Chocolate 1 11%
Roasted Barley 0.25 3%
Crystal 60 0.75 8%
Other Fermentables Amount %
DME 7 78%
Hops/Additions Amount Time AA%
Kent Goldings 1 60 6.7%
Kent Goldings 1 5 6.7%

12/26/11: Added raspberry puree.

1/6/12: Racked into secondary, on top of 6 oz of cacao nibs from Theo Chocolate, which I cracked with a rolling pin and soaked in rye whiskey to sanitize.

1/7/12: Gravity of 1.019. For some reason, the beer did not attenuate as well this time. Perhaps the yeast wasn't as viable, or preferred the temperature or water at Hampshire.

Bottled 1/22/12 to 2.4 volumes of C02.