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Anaerobic digestion of the organic fraction of municipal solid waste in a two-stage membrane process

机译:两阶段膜工艺厌氧消化城市固体废物中的有机物

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A batch of the Organic Fraction of Municipal Solid Waste (OFMSW) was treated in a two-step process with effluent recirculation comprising a novel hydrolytic reactor (HR) followed by a Submerged Anaerobic Membrane Bioreactor (SAMBR) operating at a stable permeate flux of 5.6 L/m(2) hr (LMH). A soluble COD removal higher than 95% was obtained from the SAMBR. The soluble COD as well as the Total Suspended Solids (TSS) did not build up due to efficient hydrolysis inside the SAMBR, and no VFA accumulation occurred due to the complete retention of methanogens by the membrane as well as the formation of syntrophic associations. Because of the microfiltration membrane in the second reactor a stabilized leachate was obtained from the very first days of the treatment and the highly stable process enabled shorter treatment periods compared to traditional leach bed processes. This experiment showed that the recycle of the stabilised leachate does not lead to a build up of SCOD. Size exclusion chromatography analysis confirmed that high molecular weight compounds were completely degraded and did not appear in the SAMBR permeate, and that low molecular weight fulvic-like and medium MW material were present in the permeate of the SAMBR but their concentration remained stable with time.
机译:一批城市固体废物的有机部分(OFMSW)采用两步法进行处理,其中包括新型水解反应器(HR)的废水再循环,然后是浸入式厌氧膜生物反应器(SAMBR),其稳定的渗透通量为5.6 L / m(2)hr(LMH)。从SAMBR获得的可溶性COD去除率高于95%。由于SAMBR内部的有效水解,可溶的COD以及总悬浮固体(TSS)并未积累,并且由于膜完全保留了产甲烷菌以及形成了营养同位的缔合,因此没有发生VFA积累。由于第二反应器中的微滤膜,从处理的第一天就获得了稳定的渗滤液,与传统的渗滤床工艺相比,高度稳定的工艺可以缩短处理时间。该实验表明,稳定的渗滤液的再循环不会导致SCOD的累积。尺寸排阻色谱分析证实,高分子量化合物完全降解且未出现在SAMBR渗透物中,低分子量黄腐状和中等分子量的物质存在于SAMBR渗透物中,但其浓度随时间保持稳定。

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