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首页> 外文期刊>Environmental engineering science >Hydrogen and Methane Production in a Two-Stage Thermophilic Anaerobic Digestion System by Co-Digestion of Kitchen Waste and Municipal Sewage Sludge with a High Solid Content
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Hydrogen and Methane Production in a Two-Stage Thermophilic Anaerobic Digestion System by Co-Digestion of Kitchen Waste and Municipal Sewage Sludge with a High Solid Content

机译:Hydrogen and Methane Production in a Two-Stage Thermophilic Anaerobic Digestion System by Co-Digestion of Kitchen Waste and Municipal Sewage Sludge with a High Solid Content

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摘要

The thermophilic anaerobic fermentation of mixed materials for simultaneously producing biohydrogen andmethane has become a research hotspot. In this study, thermally treated kitchen waste (KW) and municipalsewage sludge (MSS) were used as substrates for a thermophilic two-stage anaerobic digestion process. Theeffects on gas production performance were investigated in both the hydrogen-producing stage and methaneproducingstage under different organic load rates (OLRs). The production rates, volume, removal rates, and energyyields of volatile solids (VS) were optimal under higher OLRs for both the hydrogen (OLR= 12.5 g VS/L$day) andmethane stages (OLR = 5 g VS/L$day). These conditions also provided the optimal average removal rate andtotal energy yield of VS for the entire anaerobic fermentation system (65.4% and 30.9 kJ/g VS, respectively).Overall, the results demonstrate the superior efficiency of VS removal and hydrogen and methane productionin a two-stage thermophilic anaerobic co-digestion of KW and MSS with a high solid content under propermaterial mix ratio and higher OLRs. This study provides the basis for material mass ratio, mixtures’ pretreatment,and operation control for future pilot tests.

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