Kombucha cultures can be turned into flexible electric circuit boards
arstechnica.com
arstechnica.com
Granted, the hard science is helpful in getting to the next level and achieving a product that's consistent from batch to batch.
That was the part that was eye opening. It's one thing if I'm making something in my kitchen for my use, it's another when you have already achieved regional distribution of a product but clearly have no idea what's actually in it.
I've been trying to find info about the science of fermentation of soy sauce, and I haven't been able to get much info. I suspect we don't really know what's in those cultures either.
From an outsider perspective, they might be indistinguishable, but I would be shocked if the biggest brands have not done their own research.
https://patents.google.com/patent/WO2017153618A1/en
https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8348054/
Apparently similar applies to Whiskey:
https://qz.com/907619/the-many-scientific-ways-to-age-whiske...
https://www.pastemagazine.com/drink/whiskey-/rapidly-aging-w...
https://robbreport.com/food-drink/spirits/distilleries-using...
https://homedistiller.org/forum/viewtopic.php?t=66552
SACRILEGE!
The actual SCOBY is in the kombucha itself, not the cellulose. It's pretty easy to prove; when I made kombucha I would throw out the mat after every batch and save some of the liquid to use as starter for the next.
On the other extreme: if one has an old enough continuous ferment, a lot of yeast will settle at the bottom, potentially affecting the end result.
I’m going to go out on a limb here and say, yes.
> In the US, a single fab, Intel’s 700-acre campus in Ocotillo, Arizona, produced nearly 15,000 tons of waste in the first three months of this year, about 60% of it hazardous. It also consumed 927m gallons of fresh water, enough to fill about 1,400 Olympic swimming pools, and used 561m kilowatt-hours of energy. (source https://www.theguardian.com/environment/2021/sep/18/semicond...)
Kombucha on the other hand, yes produces CO2 as a waste product, but it is very easy to see a kombucha SCOBY being carbon neutral. That is the source of it's sugars being carbon energy free, and the manufacturing process of SCOBY circuits as well. Then it's carbon neutral
Doing a CPU out of a scoby would be real bio computing :)
On the other hand, buying a gadget that dissolves when it gets just a bit wet might not be a smart thing...
But i can totally see them selling "biodegradable" flashing LED bracelets (or similar single-use crap), where the bracelet iself is biodegradable, and the rechargable battery (without an actual charging circuit) and plastic potted LEDs are not....
Disposable cups, plates, forks, spoons, etc? Sure... eat whatever was in them, throw them wherever, and they'll rot very fast.
Electronics.. mostly not. Maybe some light-up bracelets for a festival, but those also contain batteries and LEDs, but it's still better if at least the strap degrades and rot.
Sometimes the result smells ok.
Eventually somebody is curious enough to try it.
Or "just" hungry enough
As we've reported previously, making kombucha merely requires combining tea and sugar with a kombucha culture known as a SCOBY (symbiotic culture of bacteria and yeast), aka the "mother"—also known as a tea mushroom, tea fungus, or a Manchurian mushroom. It's akin to a sourdough starter. A SCOBY is a firm, gel-like collection of cellulose fiber (biofilm), courtesy of the active bacteria in the culture creating the perfect breeding ground for the yeast and bacteria to flourish. Dissolve the sugar in non-chlorinated boiling water, then steep some tea leaves of your choice in the hot sugar-water before discarding them.
Once the tea cools, add the SCOBY and pour the whole thing into a sterilized beaker or jar. Then cover the beaker or jar with a paper towel or cheesecloth to keep out insects, let it sit for two to three weeks, and voila! You've got your own home-brewed kombucha. A new "daughter" SCOBY will be floating right at the top of the liquid (technically known in this form as a pellicle).
Beyond the popularity of the beverage, kombucha cultures hold promise as a useful biomaterial. For instance, in 2016, an Iowa State professor of apparel, merchandising, and design named Young-A Lee gained attention for her proof-of-concept research in using dried SCOBY as a sustainable leather substitute for biodegradable SCOBY-based clothing, shoes, or handbags. In 2021, scientists at Massachusetts Institute of Technology and Imperial College London created new kinds of tough "living materials" that could one day be used as biosensors, helping purify water or detect damage to "smart" packing materials. Experiments last year by researchers at Montana Technological University (MTU) and Arizona State University (ASU) showed that membranes grown from kombucha cultures were better at preventing the formation of biofilms—a significant challenge in water filtration—than current commercial membranes.
“Nowadays kombucha is emerging as a promising candidate to produce sustainable textiles to be used as eco-friendly bio wearables,” co-author Andrew Adamatzky, of the University of the West of England in Bristol, told New Scientist. “We will see that dried—and hopefully living—kombucha mats will be incorporated in smart wearables that extend the functionality of clothes and gadgets. We propose to develop smart eco-wearables which are a convergence of dead and alive biological matter.”
Adamatzky previously co-authored a 2021 paper demonstrating that living kombucha mats showed dynamic electrical activity and stimulating responses, as well as a paper last year describing the development of a bacterial reactive glove to serve as a living electronic sensing device. Inspired by the potential of kombucha mats for wearable electronics, he and his latest co-authors have now demonstrated that it's possible to print electronic circuits onto dried SCOBY mats.
The team used commercially sourced kombucha bacteria to grow their mats, then air-dried the cultures on plastic or paper at room temperature. The mats don't tear easily and are not easily destroyed, even when immersed in water for several days. One of the test mats even survived oven temperatures up to 200° C (392° F), although the mats will burn when exposed to an open flame. Adamatzky et al. were able to print conductive polymer circuits onto the dried kombucha mats with an aerosol jet printer and also successfully tested an alternative method of 3D printing a circuit out of a conductive polyester/copper mix. They could even attach small LEDs to the circuits with an epoxy adhesive spiked with silver, which were still functioning after repeatedly being bent and stretched.
According to Adamatzky et al., unlike the living kombucha mats he worked with previously, the dried SCOBY mats are non-conductive, confining the electrical current to the printed circuit. The mats are also lighter, cheaper, and more flexible than the ceramic or plastic alternatives. Potential applications include wearable heart rate monitors, for instance, and other kombucha-based devices. "Future research will be concerned with printing advanced functional circuits, capable for detecting—and maybe recognizing—mechanical, optical, and chemical stimuli," the authors concluded.
Edit: Ignore. As commenter pointed out it's still paywalled.
As someone that enjoys some (but not all) sodas and kombuchas I really recommend people try several. Don't think all wines/sodas/teas/smoothies etc... are the same. They can be made from just about anything (fortunately/unfortunately)
Those two products have tens of thousands of flavor profiles, it's strange to me that you can dismiss them entirely.
I had a red velvet cheesecake craft beer the other day and there was no hint of "beer" in it.
I like everything, and I've never had kombucha, so this thread has me excited to try it... Many times, for the various flavors!
This goes for all fermented products, such as sauerkraut, yogurt, kefir, and tempeh. Homemade is where all the flavors are preserved.
I am brewing 5 flavors right now in my house. I assure you, they are delicious.
Guava Jasmine is my current favorite.
But keep hating on it if you like, you're missing out on something great.
This is the basic recipe I use: https://www.reddit.com/r/kombucha/wiki/how_to_start#wiki_mas...
For more information, The Big Book of Kombucha will have everything you need and more.
Have fun! :)
https://www.youbrewkombucha.com/scoby-care-hotel
(Just passing by; I have no personal interest in kombucha, was simply unaware of the term.)
Also, try placing the bottle in a container or bowl, then hold another (slightly narrower container) over the top of the bottle. You should be able to catch all of the liquid in the bowl to pour into a glass.
If you added a bunch of sugar and/or flavoring into the secondary fermentation / bottles, you added too much. If you didn't add anything, then you didn't let the primary fermentation go long enough.
You can also swap black tea for green tea or other liquids. I'm think that kombucha does not care, all it needs is sugar and tea is for human (although I might be wrong about it).
I actually liked it, but it requires too much housekeeping, so I abandoned it.
See how that works?
If you brewed it at home, then you should know that yes, acetobacter the bacteria part of the SCOBY converts the alcohol that the yeast creates from the sugar into acetic acid. Vinegar is 5-8% acetic acid.
This isn't secret, sacred knowledge. Sounds like you over did it, no need to spread your FUD around.