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Evaluation of continuous mesophilic, thermophilic and temperature phased anaerobic digestion of microwaved activated sludge

机译:微波活性污泥的连续中温,嗜热和温度相厌氧消化的评估

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The effects of microwave (MW) pretreatment, staging and digestion temperature on anaerobic digestion were investigated in a setup of ten reactors. A mesophilic reactor was used as a control. Its performance was compared to single-stage mesophilic and thermophilic reactors treating pretreated and non-pretreated sludge, temperature-phased (TPAD) thermophilic-mesophilic reactors treating pretreated and non-pretreated sludge and thermophilic-thermophilic reactors also treating pretreated and non-pretreated sludge. Four different sludge retention times (SRTs) (20,15,10 and 5 d) were tested for all reactors. Two-stage thermo-thermo reactors treating pretreated sludge produced more biogas than all other reactors and removed more volatile solids. Maximum volatile solids (VS) removal was 53.1% at an SRT of 15 d and maximum biogas increase relative to control was 106% at the shortest SRT tested. Both the maximum VS removal and biogas relative increase were measured for a system with thermophilic acidogenic reactor and thermophilic methano-genic reactor. All the two-stage systems treating microwaved sludge produced sludge free of pathogen indicator bacteria, at all tested conditions even at a total system SRT of only 5 d. MW pretreatment and staging reactors allowed the application of very short SRT (5 d) with no significant decrease in performance in terms of VS removal in comparison with the control reactor. MW pretreatment caused the solubilization of organic material in sludge but also allowed more extensive hydrolysis of organic material in downstream reactors. The association of MW pretreatment and thermophilic operation improves dewaterability of digested sludge.
机译:在十个反应器中,研究了微波(MW)预处理,分级和消化温度对厌氧消化的影响。中温反应器用作对照。将其性能与处理预处理和非预处理污泥的单级中温和嗜热反应器,处理预处理和非预处理污泥的温相(TPAD)嗜温中温反应器以及还处理预处理和非预处理污泥的嗜热-嗜热反应器进行了比较。对所有反应器测试了四种不同的污泥保留时间(SRT)(20、15、10和5 d)。与所有其他反应器相比,处理预处理污泥的两级热力反应器产生的沼气更多,并去除了更多的挥发性固体。在15 d的SRT下,最大挥发性固体(VS)去除率为53.1%,在最短的SRT下,相对于对照的最大沼气增加为106%。对于具有嗜热产酸反应器和嗜热甲烷生成反应器的系统,均测量了最大VS去除量和沼气相对增加量。即使在总系统SRT仅5 d的条件下,所有经过测试的条件下,所有处理微波污泥的两级系统产生的污泥都不含病原体指示菌。 MW预处理和分段反应器允许应用非常短的SRT(5天),与对照反应器相比,在VS去除方面的性能没有明显下降。兆瓦级预处理导致污泥中的有机物质溶解,但也使下游反应器中的有机物质更广泛地水解。兆瓦级预处理和高温操作的结合提高了消化污泥的脱水能力。

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