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Removal natural organic matter in typical south-China source water during enhanced coagulation of a with IPF-PACl
Authors:LIU Hai-long  WANG Dong-sheng  XIA Zhong-huan  TANG Hong-xiao and ZHANG Jin-song
Institution:1. State Key Laboratory of Environmental Aquatic Chemistry, Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences, Beijing 100085, China;Institute of Environment and Resource, Shanxi University, Taiyuan 030002, China
2. State Key Laboratory of Environmental Aquatic Chemistry, Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences, Beijing 100085, China
3. Shenzhen Water Group Co., Ltd., Shenzhen 518031, China
Abstract:Systematic investigation on enhancing removal of natural organic matter(NOM) using inorganic polymer flocculant(IPF), polyaluminum chloride(PACl) and polyacrylamide(PAM) was performed in a typical south-China source water. Enhanced coagulation and applying polymer flocculant-aid were compared through jar tests and pilot tests. Raw water and settled water were characterized and fractionated by resin adsorption. The results show that DOC composes major part of TOC. The DOC distribution keeps relatively stable all around the year with typical high amounts of the hydrophilic matter around 50%. The distribution between HoB, HoA and HoN varies and undergoes fluctuation with the year round. During the summer season, the HoN becomes gradually the major part in hydrophobic parts. PACl with the species being tailor-made shows little pH effect during coagulation. The enhanced coagulation dosage for PACl could be 4.5 mg/L for the typical source water. The highest TOC removal achieved 31%. To be economically, 3 mg/L dose is the optimum dosage. Although hydrophilic fractions of NOM of both treatment strategies are removed about 30%, NOM causing UV_ 254 absorbance were well removed(about 90%). Hydrophobic bases and acids fractions are much more removed under enhanced conditions. The hydrophilic fraction could be better removed using PAM, the polymer coagulant aid.
Keywords:enhanced coagulation  PACI  PAM  NOM fractionation
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