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首页> 外文期刊>Waste Management >Boosting methane generation by co-digestion of sludge with fruit and vegetable waste: Internal environment of digester and methanogenic pathway
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Boosting methane generation by co-digestion of sludge with fruit and vegetable waste: Internal environment of digester and methanogenic pathway

机译:通过污泥与果蔬废料的共消化促进甲烷的产生:消化池和产甲烷途径的内部环境

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摘要

The effects of anaerobic co-digestion of waste-mixed sludge with fruit and vegetable waste (FVW) on the methane generation of a mesophilic digester was investigated. Organic loading rates (OLR) were 1.46 kgVS/m~3 day, 2.1 kgVS/m~3 day and 2.8 kgVS/m~3 day. Increase in the OLR due to FVW co-digestion caused modification of the internal environment of the digester, mainly in terms of N-NH_4 (mg/L). Corresponding microbial populations were investigated by metagenomic high-throughput sequencing. Maximum specific bio-methane generation of 435 NLCH_4 per kgVS feed was achieved for an OLR of 2.1 kgVS/m~3 day, which corresponded to a biomethane generation per kgVS removed of about 1700 NLCH_4. In these conditions the methanogenic pathway was dominated by aceticlastic Methanosaeta and hydrogenotrophic/aceticlastic Methanoscarcinae. Ammonia concentration in the digester resulted a key parameter for enhancing syntrophic acetate oxidation, enabling a balanced aceticlastic and hydrogenotrophic/aceticlastic methanogenic pathway.
机译:研究了混合污泥与果蔬废料(FVW)的厌氧共消化对中温消化池甲烷生成的影响。有机负荷率(OLR)为1.46 kgVS / m〜3天,2.1 kgVS / m〜3天和2.8 kgVS / m〜3天。 FVW共消化导致的OLR升高导致消化池内部环境发生变化,主要表现为N-NH_4(mg / L)。通过宏基因组高通量测序研究了相应的微生物种群。对于2.1 kgVS / m〜3天的OLR,实现了每千克VS饲料最大生物甲烷生成量为435 NLCH_4,这对应于每千克VS去除的生物甲烷产生量约为1700 NLCH_4。在这些条件下,产甲烷途径主要是由回弹甲烷甲烷藻和氢营养/回弹甲烷甲烷藻。消化池中的氨浓度是增强乙酸同养型乙酸氧化的关键参数,从而实现了平衡的破弹性和氢营养性/破弹性产甲烷途径。

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