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Daily produced biogas increased from 40 to 170 L/d during the trials, and the estimated mean biogas yield coefficient was 0.14 ± 0.04 m3biogas/kgCODremoved (35 ± 3 °C).
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In this study, an average biogas yield of 350 m3/t of co-digested dry bio-waste is considered based on the biogas yield data presented in Table 2.
During period III, the methane concentration in the biogas was 51.2 ± 14.5%, and the average specific biogas yield was 505 ± 40 mLN/(gVS*d).
The average biogas production was 1.2 m3biogivingy, giving average volumetric production rate of 0.16 m3biogandm3digester dayieldsd yields of 0.18 m3biogas/kg VS respectively.
Throughout the whole experiment, the specific biogas yield reached 647 ± 71 mLN/(gVS*d) with a mean methane content of 51%.
Specific biogas yield [mL/(gVS*d)].
( {dot{V}}_{mathrm{biogas}} ) biogas yield in m3 biogas/day.
Feedstock available and batch loading are also important parameters for efficient biogas plant operation and help to maximize biogas yield.
Row spacing had same level of biogas yield, methane yield and methane concentration of sorghum.
The biogas yield was calculated via addition of the biogas yield of the single substrates depending on the amount of input.
Minimum stands for the lowest biogas yield available in literature, and no change refers to the biogas yield of the reference feedstock (i.e., dung).
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