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The image presents a flow diagram depicting the process of anaerobic digestion. Various feedstock inputs such as "Livestock Waste", "Crops", "Waste Water", and "Food Waste" are directed into an "Anaerobic Digester." The digester outputs "Biogas," which can be then converted into "Biomethane." Diagram arrows indicate the conversion of biogas to "Heat" and "Electricity." The "Biomethane" is used as "Fuel" for vehicles and can also be supplied to the "Gas Grid." Additionally, the anaerobic digestion process produces "Digestate" used as "Fertilizer," "Soil amendments," and "Livestock bedding." No numerical data or percentages are displayed, only process flow and usage of outputs from the digester.
Given the complexity of the image, the above description may not be entirely accurate.
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The chart entails the manifacturing steps of Bio gas .It walks us through the preliminary steps of waste collection , the treatment of waste in the anerobic digester into either biogas or digestate, all the way to the final products intended.
In the beginning , waste is collected from various organic sources to be mixed in an anaerobic digester that is utilized to produce biogas and digstate separately.
The two products are used in a different domains . For instance, digestate is used in the agricutlure industry to serve as fertilizer , soil amendments and bedding for livestock , while biogas is used for heating and electricity generation . Furthermore, Biogas can be further treated into Biomethane typically used in transportation as vehicle fuel or gas grid .
Overall , the process of bio gas requires various steps and treatment , but nevertheless , it gives away to plenty of products in several vital industries.
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