Monitoring of trihalomethanes removal in chlorinated drinking water sources with carbon nanomaterials

K. Özdemir
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Abstract

This study investigates trihalomethanes (THMs) removal from chlorinated drinking water sources with combined coagulation processes using single-walled carbon nanotubes (SWCNTs) and multi-walled carbon nanotubes (MWCNTs). Terkos Lake water (TLW), Buyukcekmece Lake water (BLW) and Ulutan Lake water (ULW) were used as drinking water source in this study.  Conventional coagulation using aluminum sulfate (alum) and ferric chloride (FeCl 3 ) was also conducted using TLW, BLW and ULW sample. In the meantime, the chlorination of raw water samples within a reaction time of 168 hours was conducted in accordance with Standard Methods 5710 B. CHCl 3 was the dominant THM species removed by SWNCNTs doses (>75%) followed by CHCl 2 Br (>70%), CHBr 2 Cl (>60%) and CHBr 3 (>50%) for three chlorinated water sources. The results demonstrate that the combined coagulation processes is more effective than effective than the conventional coagulants for THMs removal from various types of chlorinated water source waters.
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碳纳米材料对氯化饮用水源中三卤甲烷去除的监测
本研究研究了单壁碳纳米管(SWCNTs)和多壁碳纳米管(MWCNTs)联合混凝工艺对氯化饮用水水源中三卤甲烷(THMs)的去除效果。本研究以Terkos湖水(TLW)、Buyukcekmece湖水(BLW)和Ulutan湖水(ULW)为饮用水源。用硫酸铝(明矾)和氯化铁(fecl3)进行常规混凝,并对TLW、BLW和ULW样品进行混凝。同时,按照标准方法5710 b对原水样品进行氯化处理,反应时间为168小时。SWNCNTs剂量去除的THM主要是CHCl 3(>75%),其次是CHCl 2 Br(>70%)、CHBr 2 Cl(>60%)和CHBr 3(>50%)。结果表明,联合混凝工艺对不同类型氯化水源水中THMs的去除效果优于常规混凝剂。
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