Earlier quoted context omitted.
“Stacking a bunch of plants on top of each other cannot change that the lower plants must receive less power, and therefore cannot grow as much“ That assumes all light comes from straight up. That isn’t even true if the sun is straight overhead, and definitely not true close to the poles. I don’t know whether it’s profitable, but I would think the economics of vertical farming on Iceland (sun lower in the sky, greenh…
No, it assumes that power is delivered based on surface area with respect to the sun . Vertical/3d farming can't work more than ~2 plants deep, where "depth" is measured as the number of plants between a given plant and the sun . Sure, build it vertically on the north pole, but it's still gonna be essentially "flat". You can't magically get power deep into a 3D farm when there 20 other plants on every side that would…
What vertical farming and ag startups don't understand about agriculture
211–220 of 321 posts
Re: What vertical farming and ag startups don't understand about agriculture
#212Earlier quoted context omitted.
I imagine space is a factor, but energy will be a big one as well. Calorie dense foods will likely need more space and energy (light) inputs. Vertical farms are very water efficient, so I don't think that matters much. Vertical farms make a lot more sense with fresh vegetables like leafy greens that grow quickly, command high prices if grown organically, and benefit from being closer to market. Potatoes are the exact…
Can you expand on this? I get that to store a calorie in a potato I need to supply a calorie of energy from somewhere else. But why is fusion power required instead of better UV lamps in my vertical farm? (Assuming I had enough electricity to run them)
Re: What vertical farming and ag startups don't understand about agriculture
#213My father is an ag soil chemist of 50+ years. I'm an industrial systems eng. w/ a specialty in polymer-textile-fiber engineering. (Mostly useless skillsets in the US now) Gonna share a few lessons here about agriculture that I try to convey to EECS, econ, Neuroscience, and the web developer crowd. - You can only grow non-calorically dense foods in vertical farms - It takes 10-14 kwh/1000 gallons of water to desalinat…
Purslane (Portulaca oleracea) grows on the sidewalk already, and often next to some wild amaranth (Amarathus Hybridus). What is the point of more efficiently producing specific crops, when there are all these underutilized nutritious plants growing without any human input (or should I say growing despite human input)? This is another problem that I see with the technification of food production in general (including the Green Revolution). Some food wants to be free, but people keep looking for whatever makes the land produce more money in the short term, not what makes it produce more nutrition, etc., because the latter does not adapt so well to the market.
Re: What vertical farming and ag startups don't understand about agriculture
#214Earlier quoted context omitted.
I imagine space is a factor, but energy will be a big one as well. Calorie dense foods will likely need more space and energy (light) inputs. Vertical farms are very water efficient, so I don't think that matters much. Vertical farms make a lot more sense with fresh vegetables like leafy greens that grow quickly, command high prices if grown organically, and benefit from being closer to market. Potatoes are the exact…
Can you expand on this? I get that to store a calorie in a potato I need to supply a calorie of energy from somewhere else. But why is fusion power required instead of better UV lamps in my vertical farm? (Assuming I had enough electricity to run them)
Re: What vertical farming and ag startups don't understand about agriculture
#215The author here has a good premise, although glosses over many things. Yes, "vertical farming" is over-hyped. That said, the author didn't mention weather or pesticides/fertilizers at all. Statements such as "Current agriculture doesn’t need an artificial energy source" are plain wrong. Producing fertilizers takes quite a bit of artificial energy and the bulk of the corn and soybean farmers the author is pointing to…
I would like to build on top of your point: - Indoor farming would not have to worry about things like drought. As a water feeding system can be led all the way to the ocean and the salt removed using pure sunlight as power. - Indoor farming has shown to yield crops with 96% less water in many cases, again solving the problem mentioned previously. - Many areas don't have ready access to tons of water so these water c…
Re: What vertical farming and ag startups don't understand about agriculture
#216My father is an ag soil chemist of 50+ years. I'm an industrial systems eng. w/ a specialty in polymer-textile-fiber engineering. (Mostly useless skillsets in the US now) Gonna share a few lessons here about agriculture that I try to convey to EECS, econ, Neuroscience, and the web developer crowd. - You can only grow non-calorically dense foods in vertical farms - It takes 10-14 kwh/1000 gallons of water to desalinat…
Great comment, thanks. HN just keeps delivering. It is almost impossible to believe how much embedded technical knowledge is lurking here. You could colonise Mars with it.
Of course, in this context you should be prepared for the possibility that if you could tap all that expertise what you'd actually get is "reasons that colonizing Mars actually can't work". ...hopefully not, of course, but beware mixing hopes and dreams and reality.
Re: What vertical farming and ag startups don't understand about agriculture
#217Earlier quoted context omitted.
Re: Which brings up another issue, which is energy density/m2 of land. To support industrialization/high density urbanism the only fuel sources that do this are currently fossil fuels, or nuclear, but none of the renewable fuels have the energy density. So if these countries want to increase the amount of MWh/capita, the most efficient (only?) pathway is through high-energy density fuel sources, which right now is be…
Why is energy density important in that context? If all other variables were identical between a high density an a low density solution, the high density one would of course be preferable. But if the low density solution is cheaper and relies less on pre-existing long-distance grid infrastructure, why would high density still be considered the most efficient, or possibly the only viable pathway?
Re: What vertical farming and ag startups don't understand about agriculture
#218My father is an ag soil chemist of 50+ years. I'm an industrial systems eng. w/ a specialty in polymer-textile-fiber engineering. (Mostly useless skillsets in the US now) Gonna share a few lessons here about agriculture that I try to convey to EECS, econ, Neuroscience, and the web developer crowd. - You can only grow non-calorically dense foods in vertical farms - It takes 10-14 kwh/1000 gallons of water to desalinat…
Re: What vertical farming and ag startups don't understand about agriculture
#219One thing missed by a lot of the comments: Indoor systems tend to be incredibly fragile affairs. If you've ever been in a well managed commercial greenhouse, you will notice a ton of sanitation procedures. There are greenhouse pests and diseases which are never an issue in the field, in large part because there is an entire ecological system of checks and balances working out in a field. Even in modern intensive ag fields. The truth is an agricultural field is an amazingly complex system which we don't fully understand (we are only starting to explore soil ecosystems and plant roots). Vertical farms are disconnected from this, though the costs might not be obvious. As a consultant, I watched a "trendy" aquaponics startup crash and burn because they underestimated this.
Re: What vertical farming and ag startups don't understand about agriculture
#220Around 6 years ago I quit my job as a developer to dive into agriculture. I learned about syntropic agriculture systems and felt in love with it because: - You are able to work with space and time in a way to maximize yield (not 1 crop yield, but but multi crop) - It focus on being biodiverse - It builds forests So in this systems you will see rows of trees intercalated with rows of beans, corn, soy anything "weedy"…
I am thinking of a similar route, as a data scientist i am eager to know what graduate level courses would you recommend ? Especially for agriculture in cold climate (Canada )