It's super cool but spoiler alert: just youtube aquaponics, it's not new (thank's reddit). People have been doing it even commercially for over a decade. That said I think what he says about future generations learning and getting excited about farming techniques is important and it's a really awesome concept. I'd be lying if I said that I didn't think about building one of these after first learning about it! Also t…
Arduino-based, urban aquaponics in Oakland
21–30 of 46 posts
Re: Arduino-based, urban aquaponics in Oakland
#22Re: Arduino-based, urban aquaponics in Oakland
#23The land in West Oakland where Eric Maundu is trying to farm is covered with freeways, roads, light rail and parking lots so there’s not much arable land and the soil is contaminated. There is no light rail in Oakland. BART is heavy rail.
The American Public Transit Association defines light rail and heavy rail respectively as follows:
Light Rail is a mode of transit service (also called streetcar, tramway, or trolley) operating passenger rail cars singly (or in short, usually two-car or three-car, trains) on fixed rails in right-of-way that is often separated from other traffic for part or much of the way. Light rail vehicles are typically driven electrically with power being drawn from an overhead electric line via a trolley or a pantograph; driven by an operator on board the vehicle; and may have either high platform loading or low level boarding using steps.
Heavy Rail is a mode of transit service (also called metro, subway, rapid transit, or rapid rail) operating on an electric railway with the capacity for a heavy volume of traffic. It is characterized by high speed and rapid acceleration passenger rail cars operating singly or in multi-car trains on fixed rails; separate rights-of-way from which all other vehicular and foot traffic are excluded; sophisticated signaling, and high platform loading.
Reference: http://metro-cincinnati.org/?p=1566
Re: Arduino-based, urban aquaponics in Oakland
#24I really enjoy seeing how the simplicity and power of Arduino empower people. Also how objects become an active medium instead of becoming a consumed things.
On the other hand it would seem that this guy would have been empowered even without arduino. In the video he mentioned he has a background in robotics.
Re: Arduino-based, urban aquaponics in Oakland
#25If I understand correctly, this 'aquaponics' solution: * does not require arable land, because the plants grow on containers filled with stones through which water constantly circulates; * uses an order of magnitude less water than traditional agriculture, because the water is constantly recycled back from a nearby fish tank, and because the rock layer prevents water from evaporating; * allows plant density (i.e., nu…
Indeed, the economics of hydroponics would suggest that it should already dominate commercial vegetable production. The main reason they're not, is because municipalities greatly undervalue water, and because agriculture is so highly subsidized and so it's hard for hydroponics to compete. 1. Underselling water Municipal water prices set by local government greatly undervalue the actual rarity of water. With so many a…
Where does the other 89% go?
Re: Arduino-based, urban aquaponics in Oakland
#26Earlier quoted context omitted.
Indeed, the economics of hydroponics would suggest that it should already dominate commercial vegetable production. The main reason they're not, is because municipalities greatly undervalue water, and because agriculture is so highly subsidized and so it's hard for hydroponics to compete. 1. Underselling water Municipal water prices set by local government greatly undervalue the actual rarity of water. With so many a…
> Right now the only pressure to reduce water use seems to be on consumers (watering policies, low-water use appliances), but they only use 11% of it. Where does the other 89% go?
Re: Arduino-based, urban aquaponics in Oakland
#27If I understand correctly, this 'aquaponics' solution: * does not require arable land, because the plants grow on containers filled with stones through which water constantly circulates; * uses an order of magnitude less water than traditional agriculture, because the water is constantly recycled back from a nearby fish tank, and because the rock layer prevents water from evaporating; * allows plant density (i.e., nu…
That's what we're trying to do with our project, AutoMicroFarm (http://automicrofarm.com/).
Re: Arduino-based, urban aquaponics in Oakland
#28If I understand correctly, this 'aquaponics' solution: * does not require arable land, because the plants grow on containers filled with stones through which water constantly circulates; * uses an order of magnitude less water than traditional agriculture, because the water is constantly recycled back from a nearby fish tank, and because the rock layer prevents water from evaporating; * allows plant density (i.e., nu…
Re: Arduino-based, urban aquaponics in Oakland
#29If I understand correctly, this 'aquaponics' solution: * does not require arable land, because the plants grow on containers filled with stones through which water constantly circulates; * uses an order of magnitude less water than traditional agriculture, because the water is constantly recycled back from a nearby fish tank, and because the rock layer prevents water from evaporating; * allows plant density (i.e., nu…
Indeed, the economics of hydroponics would suggest that it should already dominate commercial vegetable production. The main reason they're not, is because municipalities greatly undervalue water, and because agriculture is so highly subsidized and so it's hard for hydroponics to compete. 1. Underselling water Municipal water prices set by local government greatly undervalue the actual rarity of water. With so many a…
This is just what I needed to see after the front page of HN was dominated by bullshit about Surface and iPad mini. Finally, technology used to make something other than toys for bored rich people.
Re: Arduino-based, urban aquaponics in Oakland
#30If I understand correctly, this 'aquaponics' solution: * does not require arable land, because the plants grow on containers filled with stones through which water constantly circulates; * uses an order of magnitude less water than traditional agriculture, because the water is constantly recycled back from a nearby fish tank, and because the rock layer prevents water from evaporating; * allows plant density (i.e., nu…
All it needs now is for a talented entrepreneur to come in, find an early-adopter market for it, and turn the technology into a standardized product that can be sold at scale. That's what we're trying to do with our project, AutoMicroFarm ( http://automicrofarm.com/ ).
The two early-adopter markets I would explore first are: (1) restaurants/hotels, who are always interested in "fresh produce at 10% of the cost" and are always looking for ways to differentiate from competitors ("our produce is fresher because it's grown in-house with hydroponics"); and (2) large grocery stores in urban areas, who will have the space and staff to install and manage AutoMicroFram and are also always interested in fresher produce at a lower cost.
I suspect that if AutoMicroFarm is packaged as a standard product (e.g., the same modular box for everyone) that truly delivers value from day one (e.g., the box is delivered with grown plants of the buyer's choosing) to these two market segments, you would get much faster adoption.
PS. Obviously this would require a meaningful amount of venture capital.