首页> 外文期刊>Applied biochemistry and biotechnology, Part A. enzyme engineering and biotechnology >An Insight into the Anaerobic Co-digestion of Municipal Solid Waste and Food Waste: Influence of Co-substrate Mixture Ratio and Substrate to Inoculum Ratio on Biogas Production
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An Insight into the Anaerobic Co-digestion of Municipal Solid Waste and Food Waste: Influence of Co-substrate Mixture Ratio and Substrate to Inoculum Ratio on Biogas Production

机译:深入了解城市固体废物和食物废物的厌氧共消化:共衬底混合比和基材对沼气生产的影响

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The unbalanced nutrients of municipal solid waste (MSW), particularly high carbon contents, were regarded as a major limiting factor to anaerobic digestion process. In this study, the addition of MSW in food waste (FW) feedstock to have a balanced C/N ratio was studied. Different co-substrate mixtures with C/N ratio of 20 to 40 were subjected to anaerobic batch experiment at lab scale, under mesophilic conditions. The biogas production decreased with the increase in C/N ratio due to insufficient availability of organic nitrogen for anaerobic microbial growth. Specific biogas and methane yields were observed to be 827 and 474.44 mL g(-1) VS, respectively, with volatile solids (VS) reduction rate of 88%, at C/N ratio of 20. Furthermore, the effect of the substrate to inoculum (S/I) ratio on digester performance was also studied. The biogas production decreased with the increase in S/I ratio due to the formation of more volatile fatty acids (VFAs) which led to decrease in pH and accumulated unionized ammonia-N. Specific biogas and methane yields were recorded to be 655 and 410.20 mL g(-1) VS, with 64% rate of biodegradability at S/I ratio of 0.5. Kinetics and statistics study showed that the higher S/I ratio could lead to VFA accumulation and result in low methane yield.
机译:城市固体废物(MSW),特别是高碳含量的不平衡营养素被认为是厌氧消化过程的主要限制因素。在本研究中,研究了在食物废物(FW)原料中添加MSW,以具有平衡的C / N比。在碘入化条件下,在实验室比例下对具有20至40的C / N比的不同的副衬底混合物进行厌氧批量实验。由于厌氧微生物生长的有机氮的可用性不足,沼气产量随着C / N比的增加而降低。观察到特异性沼气和甲烷产率分别为827和474.44ml G(-1)Vs,挥发性固体(Vs)降低率为88%,C / N比例为20.此外,基材对还研究了蒸煮性能的接种物(S / I)比率。由于形成更多挥发性脂肪酸(VFA),沼气产量随着S / I比的增加而导致pH和累积的氨-N降低。将特定的沼气和甲烷产率记录为655和410.20ml G(-1)Vs,S / I比的64%的生物降解性速率为0.5。动力学和统计研究表明,S / I比率越高可能导致VFA积累并导致低甲烷产率。

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