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增强低浊度微污染地表水的混凝效果:特性与优化。

Enhanced coagulation of low-turbidity micro-polluted surface water: Properties and optimization.

机构信息

State Key Laboratory of Pollution Control and Resource Reuse, School of the Environment, Nanjing University, Nanjing, 210023, PR China.

State Key Laboratory of Pollution Control and Resource Reuse, School of the Environment, Nanjing University, Nanjing, 210023, PR China.

出版信息

J Environ Manage. 2019 Mar 1;233:739-747. doi: 10.1016/j.jenvman.2018.08.101. Epub 2018 Nov 2.

Abstract

Micro-polluted surface water with low turbidity and low content of dissolved organic matter (DOM) is usually inefficiently purified. In this work, a combined technique for the enhanced coagulation of this surface water was proposed and investigated using cationic grafted starch (St-G) and polyaluminum chloride (PACl) as co-coagulants, followed by a magnetic ion-exchange resin (MIER). St-G was fed before PACl, and this procedure not only efficiently removes turbidity but also largely reduces the doses of the two coagulants. MIER remarkably removed DOM, and raw water was effectively purified. The entire coagulation process was further optimized through response surface methodology based on a central composite design by using the doses of St-G, PACl, and MIER as input variables. The dose effects of the three chemicals on the coagulation performance for turbidity and DOM removal were examined, and the coagulation mechanisms, including the interactive effect among various chemicals, were discussed in detail. This work provided a new strategy for the efficient treatment of low-turbidity micro-polluted surface water by utilizing organic and inorganic co-coagulants with magnetic ion-exchange resin in practical applications.

摘要

低浊低有机物(DOM)微污染地表水的净化效果通常较差。本研究提出了一种强化混凝组合工艺,使用阳离子接枝淀粉(St-G)和聚合氯化铝(PACl)作为共混凝剂,然后使用磁性离子交换树脂(MIER)。St-G 在前,PACl 在后,该方法不仅能有效去除浊度,还能大大减少两种混凝剂的用量。MIER 能显著去除 DOM,使原水得到有效净化。通过基于中心复合设计的响应面法,以 St-G、PACl 和 MIER 的用量为输入变量,对整个混凝过程进行了进一步优化。考察了三种化学药剂投加量对浊度和 DOM 去除效果的影响,并详细讨论了混凝机理,包括各种化学药剂之间的相互作用。本研究为利用有机和无机共混凝剂与磁性离子交换树脂在实际应用中高效处理低浊度微污染地表水提供了新策略。

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