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Treatment performance of Low Strength Electric Wastewater using Solid-Advanced Oxidation Processes

机译:用固态氧化过程的低强度电废水处理性能

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This study aims to show the catalyst effect for the removal of low molecular weight organics in semiconductor wastewater. To investigate and compare the removal efficiency, experiments were conducted to change in mixing ratio of catalyst with activated carbon. As a result, optimal condition for the removal of acetone and IPA of the catalyst ratio was (Cu+Fe) = 8:2 and (Fe+Al)=9:l with activated carbon at pH 3. Acetone was removed above 70% and isopropyl alcohol (IPA) was almost removed 100% in the pH 3, pH 4 except for pH 7 condition, the remaining acetone concentration was 51.4 ppb in IPA solution, these results is attributed that IPA transformed to acetone after the reaction. Solid-advanced oxidation processes was believed to be an effective method to treat the low adsorbability of organics contained in electric wastewater.
机译:该研究旨在显示半导体废水中低分子量有机物的催化剂效果。为了研究和比较去除效率,进行实验以改变催化剂与活性炭的混合比。结果,除去催化剂比的丙酮和IPA的最佳条件是(Cu + Fe)= 8:2和(Fe + Al)= 9:L在pH 3时用活性炭。丙酮被除去70%在pH 3中几乎除去甲醇(IPA)在pH 3中几乎除去100%,除了pH 7条件外,IPA溶液中剩余的丙酮浓度为51.4 ppb,这些结果归因于反应后IPA转化为丙酮。认为固体晚期氧化方法是治疗电废水中含有的有机物的低吸附性的有效方法。

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