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A hybrid two-phase system for anaerobic digestion of food waste

机译:餐厨垃圾厌氧消化的混合两相系统

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A hybrid two-phase system, consisting of a solid waste reactor as the acidification reactor and a wastewater reactor, i.e. an upflow anaerobic sludge blanket (UASB) reactor, as the methanogenic reactor, for anaerobic digestion of food waste was investigated. After the pre-acidification stage, COD and total VFA removals in the methanogenic phase were in the ranges of 74-93% and 77-100%, respectively, while leachate COD and total VFA concentrations in the acidification phase decreased by 95% and 97-99%, respectively. Some 99% of the total CH4 generated was from the methanogenic phase with the CH4 content of 68-70%. About 77-79% of TOC, 57-60% of volatile solids and 79-80% of total COD were removed. The results of this laboratory-scale study show that the hybrid two-phase anaerobic batch reactor system is suitable for effective conversion of food waste into CH4 and CO2. The hybrid two-phase system can be further developed into an effective and efficient way to enhance waste stabilization in operating bioreactor landfills. [References: 14]
机译:研究了一种混合两相系统,该系统由固体废物反应器(作为酸化反应器)和废水反应器(即上流厌氧污泥层(UASB)反应器,作为产甲烷反应器)组成,用于食物垃圾的厌氧消化。在预酸化阶段之后,产甲烷阶段的COD和总VFA去除率分别在74-93%和77-100%的范围内,而酸化阶段中的渗滤液COD和总VFA浓度分别降低了95%和97 -99%。 CH4产生的总CH4的约99%来自甲烷生成相,CH4含量为68-70%。去除了约77-79%的TOC,57-60%的挥发性固体和79-80%的总COD。实验室规模研究的结果表明,混合式两相厌氧间歇反应器系统适用于将食物垃圾有效转化为CH4和CO2。混合两相系统可以进一步发展为一种有效的方式,以增强运行中的生物反应器垃圾填埋场的废物稳定性。 [参考:14]

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