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The effects of biodegradation on the characteristics and disinfection by-products formation of soluble microbial products chemical fractions

机译:生物降解对可溶性微生物产品化学级分的特性和消毒副产物形成的影响

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Soluble microbial products (SMPs) discharged into rivers from sewage treatment plants may increase the health risk for downstream drinking water by acting as a precursor of DBPs. Biotransformation or biodegradation could alter the characteristics of SMPs and affect the subsequent formation of DBPs. This study observed the relative contribution of chemical fractions in SMPs and explored the biodegradation of each fraction and their effect on disinfection by-products (DBPs) formation in surface water. The hydrophilic acid (HPIA) and hydrophobic acid (HPOA) constituted the major portion of the SMPs, which were dominated by fulvic acid and humic acids. The transphilic acid (TPIA) and hydrophobic bases (HPOB) were relatively minor but it contained a relative substantial portion of protein-like materials in SMPs. TPIA and HPOB produced insignificant amounts of DBP corresponding to 13% and 14% in the original samples, but they were collectively responsible for 50% of the DBPs yield. Much larger amounts of hydrophobic fractions were utilized than hydrophilic fractions after biodegradation. The increase in SUVA values indicating aromatic structures, except for HPOA fraction, was observed after biodegradation. The protein-like materials in both the HPOA and HPIA fractions and polycarboxylate-type humic acid in the HPIA fraction decreased but the enrichment of HPOA (MW > 100 kDa) and TPIA (MW < 1 kDa) was observed after biodegradation. The production of= C-H in HPIA fraction and the appearance of double peak at 1100 cm(-1) in TPIA and HPOB fractions occurred after biodegradation. In overall level, microorganisms effectively utilized DBP precursors from HPIA, HPOA and HPOB fractions but increased the DBPs precursors from the TPIA fraction. TPIA and HPOB fractions had higher DBP yield with chlorine but the DBPs yield of HPIA and HPOA changed little after biodegradation. (C) 2019 Elsevier Ltd. All rights reserved.
机译:从污水处理厂排放到河流中的可溶性微生物产品(SMP)通过作为DBP的前体,可能增加下游饮用水的健康风险。生物转化或生物降解会改变SMP的特性并影响DBP的后续形成。这项研究观察了SMP中化学成分的相对贡献,并探讨了每个成分的生物降解及其对地表水中消毒副产物(DBP)形成的影响。亲水性酸(HPIA)和疏水性酸(HPOA)构成了SMP的主要部分,主要由富里酸和腐殖酸组成。透酸(TPIA)和疏水性碱(HPOB)相对较少,但在SMP中包含相当大部分的蛋白样物质。 TPIA和HPOB产生的DBP量微不足道,分别占原始样品的13%和14%,但它们共同负责DBP产量的50%。生物降解后,利用的疏水性部分比亲水性部分要多得多。生物降解后,观察到SUVA值增加,表明除HPOA组分外的芳香结构。 HPOA和HPIA馏分中的类蛋白物质以及HPIA馏分中的多羧酸盐类腐殖酸均降低,但生物降解后,HPOA(MW> 100 kDa)和TPIA(MW <1 kDa)富集。 HPIA馏分中的C-H的产生以及TPIA和HPOB馏分中1100 cm(-1)处的双峰出现在生物降解之后。总体而言,微生物有效利用了HPIA,HPOA和HPOB组分的DBP前体,但增加了TPIA组分的DBPs前体。 TPIA和HPOB馏分含氯的DBP产率较高,但生物降解后HPIA和HPOA的DBP产率变化不大。 (C)2019 Elsevier Ltd.保留所有权利。

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