So in a symbiotic bacteria/fungi/plant ecosystem, I can understand why CO2, H2O, and O2 might be able to remain in balance. But decomposition produces not only CO2, but CO, CH4, nitrate chemistry... I have trouble understanding why this cycle isn't at least a little bit leaky, since it seems like some of the trace gasses wouldn't automatically have all of the biological, solar, and marine sinks available in nature. I…
The reason it's difficult to understand is because this article is not true.
A sealed bottle garden thriving after 40 years without fresh air or water
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Re: A sealed bottle garden thriving after 40 years without fresh air or water
#122So in a symbiotic bacteria/fungi/plant ecosystem, I can understand why CO2, H2O, and O2 might be able to remain in balance. But decomposition produces not only CO2, but CO, CH4, nitrate chemistry... I have trouble understanding why this cycle isn't at least a little bit leaky, since it seems like some of the trace gasses wouldn't automatically have all of the biological, solar, and marine sinks available in nature. I…
It really depends on the bacterial flora present in the container. Bacteria are incredibly diverse, and just as one decomposer may be a methanogen [1], a different species of bacteria present may be a methanotroph [2]. So given the right bacterial "mixture," a self-sustaining CH4 cycle is not unreasonable. Additionally, CO is a metabolite for some methanogenic bacteria, specifically in production of acetyl CoA [3]. M…
Re: A sealed bottle garden thriving after 40 years without fresh air or water
#123So in a symbiotic bacteria/fungi/plant ecosystem, I can understand why CO2, H2O, and O2 might be able to remain in balance. But decomposition produces not only CO2, but CO, CH4, nitrate chemistry... I have trouble understanding why this cycle isn't at least a little bit leaky, since it seems like some of the trace gasses wouldn't automatically have all of the biological, solar, and marine sinks available in nature. I…
That said, even if it falls short of a 100% perfect hermetic seal it's still darn impressive.
Re: A sealed bottle garden thriving after 40 years without fresh air or water
#124What if we build a huge sealed bottle garden and send to Mars, can humans live in it!
No. First, every kilogram we send to Mars will be hugely expensive, so low mass will be prioritized over long-term sustainability for research and exploration missions. Second, the plants chosen for bottle gardens are very sturdy and tolerant of non-optimal environments. Humans are a lot more sensitive. If you're interested in the topic, read "The Martian" by Any Weird, a very well-researched SF story about an astron…
Re: A sealed bottle garden thriving after 40 years without fresh air or water
#125Future of clean energy ?
Re: A sealed bottle garden thriving after 40 years without fresh air or water
#126Earlier quoted context omitted.
The reason it's difficult to understand is because this article is not true.
You don't happen to care to elaborate, do you? I've looked all over the google and can't find anything that points to this being false.
Re: A sealed bottle garden thriving after 40 years without fresh air or water
#127Earlier quoted context omitted.
It really depends on the bacterial flora present in the container. Bacteria are incredibly diverse, and just as one decomposer may be a methanogen [1], a different species of bacteria present may be a methanotroph [2]. So given the right bacterial "mixture," a self-sustaining CH4 cycle is not unreasonable. Additionally, CO is a metabolite for some methanogenic bacteria, specifically in production of acetyl CoA [3]. M…
In other words, the secret to having a viable sealed terrarium is in the compost. Get the right compost, with the right population of bacteria, and the whole thing will run forever.
Re: A sealed bottle garden thriving after 40 years without fresh air or water
#128Re: A sealed bottle garden thriving after 40 years without fresh air or water
#129So in a symbiotic bacteria/fungi/plant ecosystem, I can understand why CO2, H2O, and O2 might be able to remain in balance. But decomposition produces not only CO2, but CO, CH4, nitrate chemistry... I have trouble understanding why this cycle isn't at least a little bit leaky, since it seems like some of the trace gasses wouldn't automatically have all of the biological, solar, and marine sinks available in nature. I…
They can be pretty small and made to fit in nicely. The cheapest way to power them would probably be to use a simple coated electrical cable (through a layer of wax, or through something less leaky), I suppose.
Having them relay data in some fashion while having all the electronics not be exposed to erosion/etc might be a bit tricky.. ideally, just the actual sensor surfaces themselves would reside within; coated wires would all go through the seal, etc. Or, the devices could be (not very easily) shielded, and just the sensor surfaces be exposed..
Of course the most fun way to do this would be to have a whole self-sustaining arduino/whatever running inside, relaying data wirelessly, and having it be powered by small solar panels (would still need to take care of erosion/etc.)
Collect all data, plot it (including the light levels), and see if you can make anything out of it. :)
edit actually, I can now imagine a really large aquarium, with not much light passing into the very middle; for mostly entertainment purposes, it would be nice to also be able to place a cheapo camera there which could take (infrequent, like once every 5min or 20min) timelapses. Another camera with IR lens if needed, for neat composite images.. etc etc. Not sure of possible scientific value re: the latter, but hey!