首页> 外文期刊>Environmental Science and Pollution Research >Disinfection by-product formation during chlor(am)ination of algal organic matters (AOM) extracted from Microcystis aeruginosa: effect of growth phases, AOM and bromide concentration
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Disinfection by-product formation during chlor(am)ination of algal organic matters (AOM) extracted from Microcystis aeruginosa: effect of growth phases, AOM and bromide concentration

机译:氯(AM)在藻类铜绿假单胞菌中提取的藻类有机物质(AOM)中的消毒副产物形成:生长相,AOM和溴化物浓度的影响

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摘要

Algae organic matter (AOM), including extracellular organic matter (EOM) and intracellular organic matter (IOM), has caused a series of problems to the water quality, among which formation of disinfection by-products (DBPs) during subsequent chlor(am)ination process was especially serious and concerned. This study characterized physicochemical properties of the EOM and IOM solution extracted from different growth phases of Microcystis aeruginosa and investigated the corresponding formation potential of DBPs during chlor(am)ination process. Besides, the effects of initial concentration of xEOM, IOM, and Br- on the yields of disinfection by-product formation potential were studied. The results indicated that the specific UV absorbance (SUVA(254)) values of IOM and EOM (1.09 and 2.66 L/mg m) were considerably lower than that of natural organic matter (NOM) (4.79 L/mg m). Fluorescence dates showed the soluble microbial by-product was dominant in both EOM and IOM, and the tryptophan was the main component of AOM. From the excitation-emission matrix figure of EOM and IOM, we found that the content of the high molecular weight protein substance in IOM was higher than EOM. During chlorination of EOM and IOM, the yields of four kinds of DBPs followed the order trichloroethene (TCM) > 1,1-DCP > dichloride acetonitrile (DCAN) > trichloronitromethane (TCNM), while the order was TCM > DCAN > TCNM > 1,1-DCP during chloramination process. The bromine substitution factor (BSF) value increased with the increasing of the concentration of Br-. When the concentration of Br- was 500 mu g/L, the BSF values of chlorination EOM and IOM were 51.1 and 68.4%, respectively. As the concentration of Br- increased, the formation of Cl-DBPs was inhibited and the formation of Br-DBPs was promoted.
机译:藻类有机物(AOM),包括细胞外有机物(EOM)和细胞内有机物质(IOM),对水质引起了一系列问题,其中在随后的氯(AM)期间形成消毒副产品(DBPS)努力过程特别严重和担忧。该研究表征了从微囊型铜绿假单胞菌的不同生长阶段提取的EOM和IOM溶液的物理化学性质,并在氯(AM)宁工艺中研究了DBP的相应形成电位。此外,研究了XEOM,IOM和BR-对消毒副产物形成潜力产量的影响。结果表明,IOM和EOM(1.09和2.66L / mg M)的特异性UV吸光度(SUVA(254))值显着低于天然有机物(NOM)(4.79L / mg m)。荧光日期显示可溶性微生物副产物在EOM和IOM中显着,并且色氨酸是AOM的主要成分。从EOM和IOM的激发 - 发射矩阵中发现,IOM中高分子量蛋白质物质的含量高于EOM。在EOM和IOM的氯化过程中,四种Dbps的产量跟随秩序三氯乙烯(TCM)> 1,1-DCP>二氯乙烯(DCAN)>三氯硝基甲烷(TCNM),而订单为TCM> DCAN> TCNM> 1 ,1-DCP在氯化过程中。随着BR-浓度的增加,溴取代因子(BSF)值增加。当BR-浓度为500μg/ L时,氯化EOM和IOM的BSF值分别为51.1和68.4%。随着BR-增加的浓度,抑制了C1-DBP的形成,促进了BR-DBP的形成。

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