![]() ![]() A higher methane productivity was achieved in this study because of the three ternary mixture characteristics and relatively low ethanol fermentation efficiency, which left more. This study demonstrated that enzymes acted synergistically with hydrogen producing microorganisms and could help maximize energy recovery efficiency. Similarly, our previous research evaluated the sequential biofuel production by integrating molasses into sugarcane bagasse and obtaining 312.14 mL/g VS methane. But the system production rate exhibited a non-linear correlation with the APE. The hydrogen production rate(HPR) and ethanol production rate(ERP) were proportional to the APE at relative excess substrate concentration, and under ethanol fermentation, HPR and ERP reached maximum value of 0.67mol/d and 0.27 mol/d with the highest content of 49.56% and 41.73%, respectively. The result showed the maximum of volatile suspended solids was 29.34 g/L and chemical oxygen demand removal rate up to 90.18% respectively were obtained at optimum enzyme dose of APE=1:10. To achieve maximum energy conversion in the anaerobic digestion system, six addition proportions of garbage enzymes (APE=0, 1:20, 1:15, 1:10, 1:5,1:4) were investigated. SeQuential, a vertically-integrated biodiesel company based in Portland, Oregon, pursued a more sustainable supply and production strategy than many competitors by securing inputs from used cooking oil (UCO) rather than new crops. A continuous stirred tank reactor (CSTR) was used to treat molasses wastewater for hydrogen and ethanol production in this study. Sustainability and Growth in the Biofuels Business. In anaerobic system, the garbage could promote the biofuel production enzymes produced from PR consumer organic waste containing multi hydrolytic enzyme activity. Journal of Coastal Research, Special Issue No. (eds.), Advances in Water Resources, Coastal Management, and Marine Science Technology. Mixed enzymes on sequential biofuel productivity in an anaerobic digestion system of molasses wastewater. ![]()
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