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首页> 外文期刊>Journal of Hazardous Materials >Studies on process parameters for chlorine dioxide production using IrO_2 anode in an un-divided electrochemical cell
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Studies on process parameters for chlorine dioxide production using IrO_2 anode in an un-divided electrochemical cell

机译:不分隔电化学电池中使用IrO_2阳极生产二氧化氯的工艺参数的研究

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Chlorine dioxide is potentially a powerful oxidant with environmentally compatible application in several strategic areas relating to pollution control typically for water disinfection, and its sustained production is a key factor for its successful application. Although increased attention has been paid for on-line chlorine dioxide generation by several chemical and electrochemical methods, the details are mostly confined as patents. We studied in this work the electrochemical generation of chlorine dioxide from an un-buffered solution of sodium chlorite and sodium chloride mixture in an un-divided electrochemical cell under constant current mode, with a view to optimize various process parameters, which have a direct bearing on the chlorine dioxide formation efficiency under laboratory conditions. The effect of feed flow rate (10-150 ml min~(-1)), feed solution pH (2.3-5.0), concentration of sodium chloride (0-169.4 mM), concentration of sodium chlorite (0-7.7 mM), and the applied current (100-1200 mA) on the formation of dissolved ClO_2 gas in solution and the pH of the product-containing solution was investigated by performing single pass experiments, with no circulation, in a cell set-up with Ti/IrO_2 anode and Ti/Pt cathode. The current efficiency and the power consumption were calculated for the optimized conditions.
机译:二氧化氯可能是一种强氧化剂,在与水消毒通常涉及的污染控制有关的几个战略领域中具有与环境相容的应用,而其可持续生产是其成功应用的关键因素。尽管人们已经越来越关注通过几种化学和电化学方法在线生成二氧化氯,但是这些细节大多仅限于专利。在这项工作中,我们研究了在恒定电流模式下在未分隔的电化学池中由亚氯酸钠和氯化钠混合物的无缓冲溶液电化学生成二氧化氯的方法,目的是优化各种工艺参数,这些参数直接相关。在实验室条件下对二氧化氯形成效率的影响。进料流速(10-150 ml min〜(-1)),进料溶液pH(2.3-5.0),氯化钠浓度(0-169.4 mM),亚氯酸钠浓度(0-7.7 mM),通过在无Ti / IrO_2装置中进行循环的单次通过实验,研究了溶液中形成溶解的ClO_2气体时所施加的电流(100-1200 mA)和含产物溶液的pH值阳极和Ti / Pt阴极。针对最佳条件计算了电流效率和功耗。

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