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Optimization of ozone and coagulation processes for bromate control in Istanbul drinking waters

机译:优化臭氧和凝结过程,用于伊斯坦布尔饮用水中的溴酸盐控制

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摘要

Unplanned transportation systems near water resources have not only caused a dramatic population increase in the water catchment areas of Istanbul but also created major water pollution problems as a result of illegal settlement and industrial and agricultural activities.In this study,water qualities in seven main water reservoirs of Istanbul were monitored for 1 year.The water was found to be highly polluted in all reservoirs.Also bromide levels of these reservoirs were monitored for the first time for the evaluation of applicability of ozone oxidation for the treatment of raw waters.Bromide level was found very high in the Buyuk Cekmece (BC) reservoir.Thus,ozone was applied to determine bromate formation potential of BC raw water and to optimize ozone and coagulation processes for bromate control in bromide-containing BC surface water.An optimum ozone/TOC ratio and aluminum sulfate dose were determined as 0.8 mg/mg and 40 mg/1 for the control of bromate formation.TOC (50) was removed after coagulation of previously ozonated BC water.
机译:水资源附近无计划的交通系统不仅导致伊斯坦布尔集水区的人口急剧增加,而且由于非法定居和工农业活动,造成了严重的水污染问题。本研究对伊斯坦布尔7个主要水库的水质进行了为期1年的监测。发现所有水库的水都受到严重污染。此外,还首次监测了这些水库的溴化物含量,以评估臭氧氧化对原水处理的适用性。在Buyuk Cekmece(BC)储层中发现的溴化物含量非常高。因此,应用臭氧来测定含溴BC原水的溴酸盐形成潜力,并优化臭氧和混凝过程,以控制含溴化物的BC地表水中的溴酸盐。确定最佳臭氧/TOC比和硫酸铝剂量为0.8 mg/mg和40 mg/1,以控制溴酸盐的形成。TOC(50%)在先前臭氧化的BC水混凝后去除。

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