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Anaerobic co-digestion of food waste and landfill leachate in single-phase batch reactors

机译:单相间歇式反应器中食物垃圾和垃圾渗滤液的厌氧消化

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In order to investigate the effect of raw leachate on anaerobic digestion of food waste, co-digestions of food waste with raw leachate were carried out. A series of single-phase batch mesophilic (35 ± 1 ℃) anaerobic digestions were performed at a food waste concentration of 41.8 g VS/L. The results showed that inhibition of biogas production by volatile fatty acids (VFA) occurred without raw leachate addition. A certain amount of raw leachate in the reactors effectively relieved acidic inhibition caused by VFA accumulation, and the system maintained stable with methane yield of 369-466 mL/g VS. Total ammonia nitrogen introduced into the digestion systems with initial 2000-3000 mgNH_4-N/L not only replenished nitrogen for bacterial growth, but also formed a buffer system with VFA to maintain a delicate biochemical balance between the acidogenic and methanogenic microorganisms. UV spectroscopy and fluorescence excitation-emission matrix spectroscopy data showed that food waste was completely degraded. We concluded that using raw leachate for supplement water addition and pH modifier on anaerobic digestion of food waste was effective. An appropriate fraction of leachate could stimulate methanogenic activity and enhance biogas production.
机译:为了研究原渗滤液对餐厨垃圾厌氧消化的影响,对餐厨垃圾与原渗滤液进行了共消化。在食物垃圾浓度为41.8 g VS / L的条件下,进行了一系列单相分批中温(35±1℃)厌氧消化。结果表明,在不添加原始沥出液的情况下,挥发性脂肪酸(VFA)抑制了沼气的产生。反应器中一定量的原始沥出液可有效缓解VFA积累引起的酸性抑制作用,系统保持稳定,甲烷收率为369-466 mL / gVS。以最初的2000-3000 mgNH_4-N / L引入消化系统的总氨氮不仅补充了细菌生长所需的氮,而且还形成了具有VFA的缓冲系统,以维持产酸微生物和产甲烷微生物之间的精细生化平衡。紫外光谱和荧光激发-发射矩阵光谱数据表明食物垃圾被完全降解。我们得出的结论是,使用生沥滤液补充水和pH值调节剂对餐厨垃圾进行厌氧消化是有效的。适当比例的渗滤液可刺激产甲烷活性并提高沼气产量。

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