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A methane yield of 0.18 0.2 L per gTVS of fed microalgae was estimated.
The methane yield of 52 wt% was obtained with CoMoAl2O3 catalyst at 730°C.
Without the acid phase digesters, the specific methane yield of waste activated sludge (WAS) was 190 L/kgVSadded, whereas a specific methane yield of WAS of 231 L/kg VSadded was observed from sludge sampled from the acid phase digester.
A design of experiments was applied to evaluate different strategies to enhance the methane yield of macroalgae Gracilaria vermiculophylla.
The methane yield of AnOMEBR was about 0.281 L/g COD, and it almost increased by 11.07% compared with AnOMBR.
This corresponds to an OLR of 2 3 gCOD/L d and methane yield of about 0.41 L CH4/gVSadded.
The methane yield of BFD was measured and found to be 280 ml CH4/g VSfed on average.
An optimum methane yield of 253 ml/gVS was achieved at 55 min of beating pretreatment and a F/I ratio of 0.3.
Laboratory experiments using continuously stirred tank reactor digesters indicated an increased methane yield of about 220 m3 CH4/t volatile solids from co-digestion of reed.
The ratio of PM to KW of 1 1 got the highest biodegradability (BDA) of 85.03% and a methane yield of 409.5 mL/gVS.
The results indicated that ACD using a ratio of 50%PWW/50%% AM achieved an 80% methane yield of 11.1 m3 m−3 d−1 with 98.57 ± 0.5% elimination of chemical oxygen demand at five days' hydraulic retention time.
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