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home battery pack How To Generate Electricity From Plants

home battery pack How To Generate Electricity From Plants

Power generation from the factory is not brand new.But the concept of the company's factory-Building a working concept into a relatively simple consumer product is entirely new.Plant-E. patented the idea in 2007, originally developed by the Agricultural University of Wageningen, Netherlands.
Wageningen Agricultural University is one of the most innovative agricultural universities in the world.The basic principle is that the roots of plants are secreted by organic substances decomposed by bacteria.In this process of decomposition, the bacteria will secrete protons and electrons.
Then, electricity is generated by conducting electrons between the two platesAnode and cathode.These plants are suitable because they can withstand the soaked soil for a long time.In addition, it is more appropriate for plants that do not develop flower formation, because when plants do not grow flowers, the amount of organic secretions is greater.
To generate enough energy with solar energy without using the network, such as a washing machine, you need enough square meters to provide the required capacity.When you are off the grid, a battery pack can calm down the peaks and drops.For example, the average power of the washing machine is about 1000 W, reaching the peak and falling.
It takes about 2500 W (peak) when the machine is heated)It consumes about 500 W (dip) when the machine only turns.Peaks and drops must be flattened by a battery pack capable of providing at least 2500 W.The battery pack must be designed for maximum output.
When you are on the grid, the remaining energy can be delivered (returned) to the grid in return for compensation per kWh.When you don't have enough solar energy, you can extract the required power from the grid due to cloudy weather.How many plants does my new off-grid family need?You need a lot of square meters to provide enough power for your off-grid home.
But the square meter in the yard is easier to create by itself than the square meter of solar panels.This is a big difference.Solar panels cannot be made by themselves.Must be purchased from the factory.The plant-The E principle is relatively simple, which allows you to build this generator yourself.
It's also a big difference!Dedication and perseverance are needed.For off-grid situations, factory-The E generator must produce an average power of about 1000 W.This energy flows first to the battery pack and then to the socket.
Generate 1000 W.
You are able to generate a huge amount of energy that is completely independent and only supply your off-grid family from plants.You can even send energy to your neighbors in a barter way.When you put two copper wires in the wet soil, as in the photo, you will see a direct result --a low voltage.
Voltage of about 0.
4 V low, too low to be used as a serious app.The lowest serious application starts about 5 v, like USB.There are two ways to increase the voltage.
By using a boost converter.
By linking the factory in a serial array like a battery.To do so, plants must grow in separate electrical isolation boxes.Increasing current is necessary to increase the total power output and is done by connecting boxes box in parallel.
For example, creating a voltage of 220 V must be done by linking about 550 factories.When it takes about 2 inch per plant box, you need a chain of about 23 yards.By adding many of these rows in parallel to the chain, you will increase the current without increasing the voltage.
So you can arrange the generator yourself.You may have to try to create the best environment for yourself as there are other output specifications for each plant and for each region.Sun intensity, temperature and climate are the main components produced by the plant matrix.
In most cases, the matrix of 23x23 yards is strong enough to meet all your power needs.About 30,000 plants.There are a lot of plants, of course, but you can maintain yourself completely.Don't forget that plants that generate electricity must remain moist enough.
This may mean that the plant substrate is best isolated from the surrounding soil and watered from large water tanks or ponds.Irrigation of 30,000 plants requires a lot of water.Therefore, it may be beneficial to install the box above the groundwater level.
Only when the local water level drops, irrigation is required from a nearby pond or water tank.These plants do not need to be watered frequently.Depending on the climate, the type of plant box structure and the type of plant, it is expected to be enough to water it twice a day.
Multiple tunnels can be a great solution when your climate is not warm enough.This will also reduce evaporation, thus keeping the soil moist.Plant-The price of standard products is too high at present, which is considered interesting for a large off-grid consumer market.
DIY, for example-The current cost of a box (or gift) for education is £ 98.VAT and freightIt will be at least $1250 for the United States.It's expensive but for the money you have the most awesome latest green gadget.
This package has only been new in the market since October.I expect prices to drop quickly as they become more successful.The price of these products is still too high for serious applications.
So the DIY version (currently) is the best solution.Plant-E has been busy developing newer and better technologies to incorporate them into nature with as little disruption as possible.The latest innovation is the factory.The E-tube system is a tubular system based on existing factoriese technology.
The system is developed by using biological plants (such as peat soil, mangrove forests and rice fields) that are more suitable for wet habitats for large-scale power generation.For a truly green future, this way of generating electricity looks very promising, especially for Third World countries living in nature

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