Showing posts with label beverages. Show all posts
Showing posts with label beverages. Show all posts

Sunday, May 17, 2026

The world is awash in American whiskey

Bad news! For whom?

"The world is awash in bourbon. That’s a problem for Big Booze.
Consumption of American whiskey—including bourbon, Tennessee whiskey, rye and single malts—has slowed. Distillers who added capacity during the pandemic are suffering a hangover as more Americans pinch pennies and join the ranks of the sober-curious. Kentucky, the birthplace of bourbon, is sitting on enough of the stuff to last as long as 10 years, according to industry estimates."

Wall Street Journal What's news

Thursday, December 04, 2025

Welches Land ist der größte Bier-Exporter der Welt? Nicht Deutschland

Wahrscheinlich saufen die Deutschen zu viel, da bleibt nicht viel übrig für den Export! Vorsicht: Satire!

Die größten Bier-Exportländer - iwd.de "Deutschlands Brautradition ist weltberühmt. Doch beim Export des Gerstensafts laufen andere Länder der Bundesrepublik den Rang ab, vor allem die mexikanische Produktion enteilt immer weiter."




Friday, November 07, 2025

Beer yeast waste spun into a promising sustainable yarn 50% stronger than wool and sold as "zero hunger"

I toast to that! Let's have another round of beer please! 😊 Or is this a case of being drunken with environmental virtue signalling?

I have my doubts whether this is cost effective and competitive.

Invented by students of the Pennsylvania State University. How many beers did they have before the light bulb went on?

"Yeast waste from breweries have been spun into textile fibres at a cost that could be affordable for clothing. A group in the US has reported that the fermented yeast proteins can be extracted and spun into a fibre stronger than wool. ...

at Pennsylvania State University, and his group have created an enzymatic process that breaks down cell walls in brewer’s yeast (Saccharomyces cerevisiae) and converts the released proteins into insoluble aggregates. It taps a commercial enzyme mix used in food processing. ...

After the enzyme treatment, the protein pulp was dissolved, along with cellulose, in the aqueous organic solvent, N-methyl morpholine N-oxide. This is used in the industrial lyocell process that converts forestry pulp into fibres for more sustainable textiles. ..."

From the significance and abstract:
"Significance
Zero Hunger [???] requires innovative solutions that address the intricate relationships between food, water, and land use. One promising approach is to replace plant-based fibers, such as cotton, with fermentation-based fibers. By leveraging biomanufacturing, we can produce sustainable, high-performance fibers that do not compete with food crops for land, water, or nutrients. This shift would free up arable land for food production, enhance crop yields, and promote more efficient use of water resources. Moreover, fermentation-based fibers offer a reduced environmental footprint, lowering greenhouse gas emissions and mitigating the impact of textile production on ecosystems. By embracing biomanufacturing, we can make significant strides toward achieving the “Zero Hunger” goal, ensuring everyone can access nutritious food while promoting sustainable development goals.

Abstract
Biomanufactured fibers produced through fermentation processes provide a promising pathway to decouple textile production from agricultural land. This would free up arable land for food cultivation and contribute to the United Nations Sustainable Development Goal 2: Zero Hunger [???].
Protein fibers from natural sources such as cocoon silk, collagen, and soy have attracted attention since the last century. However, commercial production declined with the rise of cheaper synthetic fibers and competition for food crops. Recently, renewed interest in protein fibers has emerged as a means to minimize plastic pollution, fueled by advances in fermentation, even though challenges related to yield, costs, and industrial spinning persist.
Here, we studied a lyocell-based technique for spinning protein fibers using yeast biomass purified through an enzymatic method. We demonstrated that the enzymatic approach produces insoluble proteins that can be continuously spun for over 100 h of production time.
Pilot-scale production exhibited stable spinning behavior with high viscosity and consistency quality. We achieved fiber fineness between 1.7 and 2.2 dtex, with strength values reaching 23 cN/tex, which is 50% higher than those of natural protein fibers such as wool.
Life cycle assessment indicates that fermentation-based protein fibers require significantly less land and water [???] than natural fibers while providing a reduced environmental footprint.
Techno-economic analysis indicates a cost of $6 per kilogram at a production rate of 6,750 t annually. Adopting biomanufacturing-based protein fibers marks a significant advancement toward a future where fiber needs are fulfilled without compromising the planet’s capacity to nourish its growing population."

Brewery waste yeast spun into affordable textile fibres stronger than wool | Chemistry World

Fermentation waste used to make natural fabric (original news release) "Fermented fibers could help reduce world hunger, fashion waste, researchers find"

Impact of biomanufacturing protein fibers on achieving sustainable development (no public access)


Beer waste to cover her waist! 😊 (Pardon my bad taste!)
"The yeast-based textile has a similar appearance to wool and clothes made from it are already being sold under the Sonachic brand"


Tuesday, August 26, 2025

A new study has found that drinking coffee in the morning significantly improves mood, but only in the morning.

Is this not a self fulfilling prophecy? Many coffee drinkers claim they can not function without a cup of coffee in the morning.

When science confirms the obvious! 😊

From the abstract:
"Caffeine is well known for its stimulant effects on the central nervous system, leading to enhanced cognitive performance and changes in affective states. While these effects have been extensively studied in controlled laboratory settings, caffeine’s influence on affect in everyday life remains comparatively underexplored.
This study aims to bridge this gap by examining the associations between momentary caffeine consumption and affective states in naturalistic settings, while also accounting for potential moderators such as time of the day, individual differences, and contextual factors.
Employing an experience sampling methodology (ESM), we analyzed data from 115 participants aged 18–25 in Study 1 and 121 participants aged 18–29 in Study 2. Study 1 lasted 14 days yielding 8335 completed surveys and Study 2 lasted 28 days yielding 19,960 completed surveys.
Our findings indicate that caffeine intake was associated with subsequent increases in positive affect, while associations with decreases in negative affect were less consistent. The association between caffeine consumption and positive affect was strongest within the first 2.5 h after awakening (i.e., in the morning). Tiredness and social context moderated this association. Overall, the findings of this ESM study suggest that caffeine may play an important role in modulating affective states in everyday life."

Extremely unsurprising news about morning coffee drinkers


Credits: The Flyover

Sunday, July 06, 2025

Researchers discover how caffeine could slow down ageing process at the cellular level

Good news! There are so many good reasons why to drink coffee or is this a commercial dressed up as science?

"... But in their latest study, the scientists made a surprising discovery: caffeine doesn’t act on this growth switch directly. Instead, it works by activating another important system called AMPK, a cellular fuel gauge that is evolutionarily conserved in yeast and humans.

“When your cells are low on energy, AMPK kicks in to help them cope,”  ... “And our results show that caffeine helps flip that switch.”

Interestingly, AMPK is also the target of metformin, a common diabetes drug that’s being studied for its potential to extend human lifespan together with rapamycin.

Longevity benefits

Using their yeast model, the researchers showed that caffeine's effect on AMPK influences how cells grow, repair their DNA, and respond to stress—all of which are tied to ageing and disease. ..."

From the abstract:
"Caffeine can modulate cell cycle progression, override DNA damage checkpoint signalling and increase chronological lifespan (CLS) in various model systems.
Early studies suggested that caffeine inhibits the phosphatidylinositol 3-kinase-related kinase (PIKK) Rad3 to override DNA damage-induced cell cycle arrest in fission yeast. We have previously suggested that caffeine modulates cell cycle progression and lifespan by inhibiting the Target of Rapamycin Complex 1 (TORC1).
Nevertheless, whether this inhibition is direct or not, has remained elusive. TORC1 controls metabolism and mitosis timing by integrating nutrients and environmental stress response (ESR) signalling. Nutritional or other stresses activate the Sty1-Ssp1-Ssp2 (AMP-activated protein kinase complex, AMPK) pathway, which inhibits TORC1 and accelerates mitosis through Sck2 inhibition. Additionally, activation of the ESR pathway can extend lifespan in fission yeast. Here, we demonstrate that caffeine indirectly activates Ssp1, Ssp2 and the AMPKβ regulatory subunit Amk2 to advance mitosis. Ssp2 is phosphorylated in an Ssp1-dependent manner following exposure to caffeine.
Furthermore, Ssp1 and Amk2, are required for resistance to caffeine under conditions of prolonged genotoxic stress. The effects of caffeine on DNA damage sensitivity are uncoupled from mitosis in AMPK pathway mutants.
We propose that caffeine interacts synergistically with other genotoxic agents to increase DNA damage sensitivity.
Our findings show that caffeine accelerates mitotic division and is beneficial for CLS through AMPK.
Direct pharmacological targeting of AMPK may serve towards healthspan and lifespan benefits beyond yeasts, given the highly conserved nature of this key regulatory cellular energy sensor."

Researchers discover how caffeine could slow cellular aging

Caffeine could slow cellular ageing: new research shows how (original news release) "A new study ... reveals how caffeine —the world’s most popular neuroactive compound—might do more than just wake you up. The study in the journal Microbial Cell shows how caffeine could play a role in slowing down the ageing process at a cellular level."



The charts in this research paper were very poorly done. This is part F of a larger chart that appears towards the end of the paper (on page 11 of 16), but it contains the summary of the study. Part F should have been a separate chart at the beginning of the article.


Saturday, November 02, 2024

East Frisian Tea: The German Tea Culture You’ve Never Heard Of

Very recommendable! The east Frisians are special characters! Not anyone's cup of tea?

Highest per capita tea consumption in the world