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Natural organic matter removal from algal-rich water and disinfection by-products formation potential reduction by powdered activated carbon adsorption

机译:通过粉状活性炭吸附去除富含藻类的水中的天然有机物和减少消毒副产物的形成潜力

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Algal blooms intensified operational problems in water treatment due to the increases of taste- and odor-causing compounds and natural organic matter (NOM). Effects of powdered activated carbon (PAC) addition during algal blooms on NOM removal was investigated in this study using an algal-rich water. Water quality analyses including dissolved organic carbon (DOC), ultraviolet absorbance at 254 nm (UV254) and specific UV absorbance (SUVA) were performed to elucidate characteristics of NOM removal by PAC adsorption. Variations of MW distributions and emission/excitation matrix (EEM) spectra with increasing PAC dosages were also measured. In addition, formation potential (FP) of trihalomethanes (THMs), haloacetic acids (HAAs), and haloacetonitriles (HANs) was evaluated with increasing PAC dosage. The correlations between disinfection by-products formation potential (DBPFP) and water qualities such as DOC, UV254, SUVA, and EEM spectra were also investigated to identify factors associated with DBPFP. The PAC addition was effective to remove NOM, especially low molecular weights NOM and proteinaceous substances with weak aromatics. The PAC addition showed the consistent reduction of THMFPs, HAAFPs, and HANFPs with increasing PAC dosage while the greater reduction of HAN precursors was eminent compared to the other two FPs. The close correlations between UV254 and the three DBPFPs were obtained. The low molecular weight (i.e., 1-700 Da) NOM and three fluorescence spectra peaks, i.e., T-1, A and C peaks, also showed high correlation factors with the three DBPFPs. Those analyses with high correlations with DBPFPs would provide useful information to reduce DBPs during algal blooms.
机译:由于引起味道和气味的化合物和天然有机物(NOM)的增加,藻华在水处理中加剧了操作问题。在这项研究中,使用富含藻类的水研究了藻类大量盛开期间添加粉末状活性炭(PAC)对NOM去除的影响。进行了水质分析,包括溶解有机碳(DOC),254 nm处的紫外线吸收度(UV254)和比UV吸收度(SUVA),以阐明通过PAC吸附去除NOM的特征。还测量了随着PAC剂量的增加,MW分布和发射/激发矩阵(EEM)光谱的变化。此外,随着PAC剂量的增加,评估了三卤甲烷(THM),卤乙酸(HAAs)和卤乙腈(HANs)的形成潜力(FP)。还研究了消毒副产物形成潜能(DBPFP)与水质(例如DOC,UV254,SUVA和EEM光谱)之间的相关性,以识别与DBPFP相关的因素。 PAC的添加可有效去除NOM,特别是低分子量NOM和弱芳香族蛋白物质。 PAC的添加显示,随着PAC剂量的增加,THMFP,HAAFP和HANFP的减少量将持续降低,而与其他两种FP相比,HAN前体的减少量则更大。获得了UV254与三个DBPFP之间的紧密相关性。低分子量(1-700 Da)NOM和三个荧光光谱峰(即T-1,A和C峰)也显示出与三个DBPFP的高相关因子。与DBPFP高度相关的那些分析将提供有用的信息,以减少藻华期间的DBP。

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