Characterization of dissolved organic matter in a dynamic membrane bioreactor for wastewater treatment  被引量:1

Characterization of dissolved organic matter in a dynamic membrane bioreactor for wastewater treatment

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作  者:ZHANG YaLei ZHANG Hai CHU HuaQiang ZHOU XueFei ZHAO YangYing 

机构地区:[1]State Key Laboratory of Pollution Control and Resource Reuse,School of Environmental Science and Engineering,Tongji University [2]Modern Agricultural Science & Engineering Institute,Tongji University

出  处:《Chinese Science Bulletin》2013年第15期1717-1724,共8页

基  金:supported by the National Natural Science Foundation of China (51138009,51208365,20976139);the State Key Laboratory of Pollution Control and Resource Reuse,China (PCRRY11015);the National Key Technologies R & D Program (2012BAJ21B03);the Project of the Science and Technology Commission of Shanghai Municipality(11dz1211202,11QH1402600)

摘  要:This paper systematically examined the characteristics of dissolved organic matter(DOM) in a dynamic membrane bioreactor(DMBR) for municipal wastewater with a laboratory-scale continuous-flow device.Experimental results showed that the system performed excellent pollutants' removal efficiencies.The increase of trans-membrane pressure(TMP) for the dynamic membrane(DM) could be divided into three stages,i.e.,zero increase stage,slow increase stage and abrupt rise stage.The maximal fouling rate of the DM reached to 4.34 kPa/h in abrupt rise stage.It was observed that the polysaccharides(PS) concentration of DOM samples gradually increased from the anaerobic zone to the aerobic zone in sequence,but the proteins(PN) concentration performed an opposite trend.The DM could retain a small part of the large molecular substances(>10 kDa) in the aerobic zone.Two particular fluorescence peaks appeared in the anaerobic zone and in the anoxic zone were also found in the effluent,which illustrated the dynamic cake layer closed to the stainless steel mesh might induce an anaerobic/anoxic micro environment.Based on the three-dimensional excitation-emission matrix(EEM) fluorescence spectroscopy analysis,aromatic proteins,aromatic proteinlike substance,fulvic acid-like substances and soluble microbial by-product-like materials could be biodegraded effectively in the DMBR,and the DM could partly remove the humic acid-like substances and soluble microbial by-product-like materials.This paper systematically examined the characteristics of dissolved organic matter (DOM) in a dynamic membrane bioreactor (DMBR) for municipal wastewater with a laboratory-scale continuous-flow device. Experimental results showed that the system performed excellent pollutants' removal efficiencies. The increase of trans-membrane pressure (TMP) for the dynamic membrane (DM) could be divided into three stages, i.e., zero increase stage, slow increase stage and abrupt rise stage. The maximal fouling rate of the DM reached to 4.34 kPa/h in abrupt rise stage. It was observed that the polysaccharides (PS) concentration of DOM samples gradually increased from the anaerobic zone to the aerobic zone in sequence, but the proteins (PN) concentration per- formed an opposite trend. The DM could retain a small part of the large molecular substances (〉10 kDa) in the aerobic zone. Two particular fluorescence peaks appeared in the anaerobic zone and in the anoxic zone were also found in the effluent, which illus- trated the dynamic cake layer closed to the stainless steel mesh might induce an anaerobic/anoxic micro environment. Based on the three-dimensional excitation-emission matrix (EEM) fluorescence spectroscopy analysis, aromatic proteins, aromatic protein- like substance, fulvic acid-like substances and soluble microbial by-product-like materials could be biodegraded effectively in the DMBR, and the DM could partly remove the hurnic acid-like substances and soluble microbial by-product-like materials.

关 键 词:膜生物反应器 污水处理 溶解性有机物 大分子物质 实验室规模 荧光光谱法 表征 溶解有机物 

分 类 号:X703[环境科学与工程—环境工程] TU991.21[建筑科学—市政工程]

 

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