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铝形态在混凝过程中去除消毒副产物前体的作用

Role of aluminum speciation in the removal of disinfection byproduct precursors by a coagulation process.

作者信息

Zhao He, Hu Chengzhi, Liu Huijuan, Zhao Xu, Qu Jiuhui

机构信息

State Key Laboratory of Environmental Aquatic Chemistry, Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences, Beijing 100085, China.

出版信息

Environ Sci Technol. 2008 Aug 1;42(15):5752-8. doi: 10.1021/es8006035.

Abstract

Humic acid (HA) was extracted and separated into different molecular weight (MW) fractions, then coagulated by aluminum chloride and polyaluminum chloride (PACl). The removal of disinfection byproduct (DBP) precursors and the aluminum speciation variation of the coagulants were investigated in detail. In particular, the role of aluminum speciation in the removal of DBP precursors was discussed. During the coagulation process, AlCl3 hydrolyzed into dominating in situ Al13 species at pH 5.5. The in situ Al13 species exhibited better removal ability for haloacetic acid (HAA) precursors than PACl. At pH 7.5, in situ hydrolyzed Al13 species of AlCl3 decomposed into dimeric Al species. In this case, preformed Al13 of PACl had a high removal ability of HAA precursors. Specially, the greatest reduction of HAA precursors with a low MW (<30 kDa) was through charge neutralization at pH 5.5, and that of HAA precursors in high MW (> 30 kDa) fractions was through adsorption at pH 7.5. Different from HAA precursors, the in situ Al13 species did not have a high removal ability of trihalomethane (THM) precursors. Therefore, PACl exhibited a better removal ability of THM precursors than AlCl3 at different pH values. In the different MW fractions, the greatest reduction of THM precursors was through charge neutralization at pH 5.5.

摘要

提取腐殖酸(HA)并将其分离成不同分子量(MW)的组分,然后用氯化铝和聚合氯化铝(PACl)进行混凝。详细研究了消毒副产物(DBP)前体的去除情况以及混凝剂中铝形态的变化。特别讨论了铝形态在去除DBP前体中的作用。在混凝过程中,AlCl3在pH 5.5时水解生成占主导地位的原位Al13形态。原位Al13形态对卤乙酸(HAA)前体的去除能力比PACl更好。在pH 7.5时,AlCl3原位水解生成的Al13形态分解为二聚体铝形态。在这种情况下,PACl预先形成的Al13对HAA前体具有较高的去除能力。特别地,低分子量(<30 kDa)的HAA前体在pH 5.5时通过电荷中和实现最大程度的减少,而高分子量(> 30 kDa)组分中的HAA前体在pH 7.5时通过吸附实现最大程度的减少。与HAA前体不同,原位Al13形态对三卤甲烷(THM)前体没有较高的去除能力。因此,在不同pH值下,PACl对THM前体的去除能力比AlCl3更好。在不同分子量组分中,THM前体在pH 5.5时通过电荷中和实现最大程度的减少。

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