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This study analyzes the GHG mitigation potential of using biogas based on cattle slurry and corn (Zea mays L). to produce electrical and thermal energy.
The results are quite consistent between average rank and R-TT, indicating that biogas based on waste is the best option of the cases analyzed in this paper.
The production of biogas based on biomass generates the reduction of fossil fuel use and enables the lowering of CO2-levels with fossil C origin, in accordance with EU directives regarding the climate changes and supporting the reduction of the green house gases emission especially, not mentioning the use of a local energy resource.
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The net energy output from biogas systems based on raw materials that have high water content and low biogas yield (e.g. manure) is relatively low.
In comparison to the calculated theoretical biogas potentials based on the batch experiments (Table 7), the continuous experiments showed higher biogas yields regarding GW and LJ.
During summer it functions as a biomass based biogas plants operating in the three-zone mode while in winter, feeding biomass is suspended and high strength coffee processing wastewater is let into the fermentor achieving over 90% BOD reduction.
Field experience shows that biogas plants based on green/dried weeds can be constructed in rural India and made to produce biogas, which has the potential to alleviate the drudgery of cooking.
This paper identifies and explores critical points related to biogas production by reviewing LCA studies and comparing them to actual choices made at Finnish biogas plants based on stakeholder interviews.
The composition of the biogas differs based on the particular microbial species used in the digester, as well as the substrate the microbes are feeding on.
Energy balances are analysed from a life-cycle perspective for biogas systems based on 8 different raw materials.
This study explores German farmers' willingness to grow sugar beets for biogas production based upon the analysis of a discrete choice experiment conducted with 118 arable farmers.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com