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Novel start-up process for the efficient degradation of high COD wastewater with up-flow anaerobic sludge blanket technology and a modified internal circulation reactor

机译:具有高流量厌氧污泥毯技术和改进的内循环反应器的高鳕鱼废水有效降解的新型启动过程

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摘要

To avoid wastage of water resources and operating cost increases caused by the traditional start-up process of large amounts of dilution influent chemical oxygen demand (COD), a novel start-up process (NSP) was developed and verified with water hyacinth juice (WHJ) on an up-flow anaerobic sludge blanket (UASB) and modified internal circulation (MIC) reactor. Results show that UASB and MIC reactors were started successfully and that the MIC reactor exhibited a superior performance. The NSP time of the MIC reactor (46 days) was less than that of the UASB reactor (52 days), although the start-up organic loading rate (OLR) of the MIC reactor was higher than that of the UASB reactor. Interestingly, high-throughput sequencing analysis indicated that the reactor configuration significantly impacted the microbial diversity, however, the UASB and MIC reactors had similar predominant methanogens: Methanosaeta and Methanosarcina. Therefore, acetoclastic methanogenesis is the primary pathway of methane formation during WHJ treatment.
机译:为了避免水资源的浪费和经营成本增加,由大量稀释的化学需氧量(COD)的传统启动过程增加,开发了一种新的启动过程(NSP)并用水葫芦汁(WHJ )上流动的厌氧污泥毯(UASB)和改进的内部循环(MIC)反应器。结果表明,UASB和MIC反应器已成功启动,MIC反应器表现出优越的性能。 MIC反应器(46天)的NSP时间小于UASB反应器(52天),尽管MIC反应器的启动有机加载速率(OLR)高于UASB反应器的启动有机加载速率(OLR)。有趣的是,高通量测序分析表明,反应器构型显着影响了微生物多样性,然而,UASB和MIC反应器具有类似的主要甲烷基因:甲蛋白酶和甲蛋白酶。因此,乙酰型甲基甲烷是WHJ处理期间甲烷形成的主要途径。

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