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Distribution and transformation of molecular weight of organic matters in membrane bioreactor and conventional activated sludge process

机译:膜生物反应器和常规活性污泥法中有机物分子量的分布和转化

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The distribution and transformation of molecular weight (MW) of organic matters in a pilot-scale submerged membrane bioreactor (MBR) and a conventional activated sludge (CAS) process was studied in order to better understand organic pollutant behaviours and removal mechanisms in the two processes. Gel filtration chromatography (GFC) images of the CAS process showed that the influent wastewater had relatively large MW molecules and a narrow MW distribution while the dissolved organic matters (DOM) in the anaerobic, anoxic, oxic basins and the effluent water demonstrated a broad MW distribution. MW distribution in the MBR system illustrated that the organic matters with high MW molecules were degraded into relatively low MW organic substances, whereas DOM in the oxic basin had a little part of high MW molecules produced by microorganisms during the metabolism of substrates. There is a lack of those high MW molecules in the effluent water due to the retention of the macromolecules by the membrane. Test results also showed that in both the CAS process and the MBR the majority of molecules in the influent wastewater with MW between 100 kDa and 500 kDa were mainly transformed into the molecules with MW between 10 kDa and 100 kDa.
机译:为了更好地了解这两个过程中有机污染物的行为和去除机理,研究了中试规模浸没膜生物反应器(MBR)和常规活性污泥(CAS)工艺中有机物分子量(MW)的分布和转化。 。 CAS过程的凝胶过滤色谱(GFC)图像显示,进水废水具有相对较大的MW分子,且MW分布较窄,而厌氧,缺氧,有氧流域和污水中的溶解有机物(DOM)则显示出宽MW分配。 MBR系统中的MW分布表明,具有高MW分子的有机物被降解为相对低MW的有机物质,而在含氧盆地中的DOM中,微生物在底物代谢过程中产生的一部分高MW分子。由于膜保留了大分子,因此废水中缺少那些高分子量的分子。测试结果还表明,在CAS过程和MBR中,进水废水中分子量在100 kDa和500 kDa之间的大多数分子主要转化为MW在10 kDa和100 kDa之间的分子。

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