首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Optimizing feeding composition and carbon-nitrogen ratios for improved methane yield during anaerobic co-digestion of dairy, chicken manure and wheat straw
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Optimizing feeding composition and carbon-nitrogen ratios for improved methane yield during anaerobic co-digestion of dairy, chicken manure and wheat straw

机译:优化饲料组成和碳氮比,以提高厌氧消化乳制品,鸡粪和麦秸的甲烷产量

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摘要

This study investigated the possibilities of improving methane yield from anaerobic digestion of multi-component substrates, using a mixture of dairy manure (DM), chicken manure (CM) and wheat straw (WS), based on optimized feeding composition and the C/N ratio. Co-digestion of DM, CM and WS performed better in methane potential than individual digestion. A larger synergetic effect in co-digestion of DM, CM and WS was found than in mixtures of single manures with WS. As the C/N ratio increased, methane potential initially increased and then declined. C/N ratios of 25:1 and 30:1 had better digestion performance with stable pH and low concentrations of total ammonium nitrogen and free NH _3. Maximum methane potential was achieved with DM/CM of 40.3:59.7 and a C/N ratio of 27.2:1 after optimization using response surface methodology. The results suggested that better performance of anaerobic co-digestion can be fulfilled by optimizing feeding composition and the C/N ratio.
机译:这项研究基于优化的进料组成和C / N,研究了使用奶牛粪(DM),鸡粪(CM)和小麦秸秆(WS)的混合物通过厌氧消化多组分底物提高甲烷产量的可能性。比。 DM,CM和WS的共消化甲烷潜力要比单独消化更好。与单一肥料与WS的混合物相比,发现DM,CM和WS的共消化具有更大的协同作用。随着C / N比的增加,甲烷的潜力开始增加,然后下降。 25:1和30:1的C / N比具有更好的消化性能,pH值稳定,总铵氮和游离NH _3的浓度低。使用响应面方法进行优化后,DM / CM为40.3:59.7,C / N比为27.2:1,可实现最大甲烷潜力。结果表明,通过优化进料组成和C / N比可以实现更好的厌氧消化性能。

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