首页> 外文期刊>Journal of the Taiwan Institute of Chemical Engineers >Scrap iron packed in a Ti mesh cage as a sacrificial anode for electrochemical Cr(VI) reduction to treat electroplating wastewater
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Scrap iron packed in a Ti mesh cage as a sacrificial anode for electrochemical Cr(VI) reduction to treat electroplating wastewater

机译:作为电化学Cr(vi)的牺牲阳极在Ti网上笼中包装的废铁作为减少电镀废水

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A novel sacrificial anode comprised of scrap iron packed inside a cage made of titanium mesh was developed for Cr(VI) reduction. With electric currents applied, the surface passivation of scrap iron electrode could be avoided. Due to the large surface area with open structures provided, the applied current densities (1.18-3.54 mA/cm(2)) were low, resulting in low operating voltage and energy consumption. Complete Cr(VI) removal was achieved with electric currents applied, whereas only 20% of the Cr(VI) was removed without electricity. Direct Cr(VI) reduction on the iron surface was a dominant mechanism for the system operated at low (0.25 A) or no current. Acidic pH levels were more effective in Cr(VI) removal, due to more adsorption of Cr(VI) onto the precipitated Fe hydroxide. The trend in total Cr removal was almost the same as that of Cr(VI) removal, but time required to complete total Cr removal was extended. With intermittent electricity supply at a high electric current intensity, the energy consumption of the system was more efficient. Using scrap iron as a sacrificial anode under the intermittent current condition can save 72-77% of the total operational costs required by the conventional plate electrode. (C) 2018 Taiwan Institute of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
机译:为Cr(VI)减少开发了由填充在由钛网上制成的泳孔内的废铁组成的新型牺牲阳极。施加电流,可以避免废铁电极的表面钝化。由于具有所提供开放结构的大表面积,所施加的电流密度(1.18-3.54mA / cm(2))低,导致操作电压和能耗低。通过施加的电流实现完全Cr(VI)去除,而仅在没有电力的情况下除去20%的Cr(VI)。在铁表面上的直接Cr(vi)减少是在低(0.25a)或无电流下操作的系统的主要机理。由于将Cr(VI)的吸附到沉淀的Fe氢氧化物上,酸性pH水平在Cr(VI)中更有效。总Cr去除的趋势与去除Cr(VI)的脱模几乎相同,但延长了完成总Cr去除所需的时间。在高电流强度下间歇电力供应,系统的能量消耗更有效。在间歇电流条件下,使用废铁作为牺牲阳极,可以节省常规板电极所需的总操作成本的72-77%。 (c)2018台湾化工工程师研究所。 elsevier b.v出版。保留所有权利。

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