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Treatment of local scrubber wastewater for semiconductor by using photo-catalytic ozonation

机译:光催化臭氧化处理半导体洗涤塔废水

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摘要

This study investigates the oxidation of local scrubber wastewater (LSW) from semiconductor manufacture by using ozonation, catalytic ozonation (ozone/Al2O3 and ozone/TiO2-Al2O3), and photo-catalytic ozonation (UV/TiO2-Al2O3, ozone/UV and ozone/UV/TiO2-Al2O3). The results show that catalyst Al2O3 and TiO2-Al2O3 promotes the TOC removal under the condition of neutral or alkaline buffer solution during catalytic ozonation of LSW. The Al2O3 induces highest promotion in TOC removal efficiency, which is higher than ozone alone by 26% TOC removal under alkaline buffer solution. However, TiO2-Al2O3 and Al2O3 cannot display the promotion in TOC removal under acidic condition. In addition, a pre-treatment of anion ion-exchange is employed and the result indicates that decreasing the anion ions concentration before AOPs can imply higher TOC removal during AOPs of LSW. In this study, ozone/UV under raw LSW acidic condition and ozone/Al2O3 under alkaline buffer solution present 95% and 88% TOC removal rate respectively and show the higher TOC removal efficiency than other AOPs. Therefore, these two kinds of AOP can serve as the very viable AOP methods in the LSW reclamation for semiconductor.
机译:本研究通过臭氧化,催化臭氧化(臭氧/ Al2O3和臭氧/ TiO2-Al2O3)和光催化臭氧化(UV / TiO2-Al2O3,臭氧/ UV和臭氧)研究半导体制造过程中局部洗涤器废水的氧化。 / UV / TiO2-Al2O3)。结果表明,在中性或碱性缓冲溶液中,LSW催化臭氧化过程中,Al2O3和TiO2-Al2O3促进了TOC的去除。 Al2O3引起TOC去除效率的最高提升,在碱性缓冲溶液下,TOC去除率比单独的臭氧高26%。但是,TiO 2 -Al 2 O 3和Al 2 O 3在酸性条件下不能显示出TOC去除的促进作用。另外,采用阴离子交换的预处理,结果表明,在ASW之前降低AOP之前的阴离子浓度可能意味着LSW的AOP期间的TOC去除率更高。在这项研究中,在原始LSW酸性条件下的臭氧/紫外线和在碱性缓冲溶液下的臭氧/ Al2O3分别具有95%和88%的TOC去除率,并且显示出比其他AOP更高的TOC去除效率。因此,这两种AOP可以作为半导体LSW回收中非常可行的AOP方法。

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