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臭氧氧化后再用活性炭吸附工业废水的脱色研究。

Decolorization of industrial wastewater by ozonation followed by adsorption on activated carbon.

机构信息

Chem Eng Dept., Faculty of Engineering, Alexandria University, Alexandria 21544, Egypt.

出版信息

J Hazard Mater. 2010 Apr 15;176(1-3):181-5. doi: 10.1016/j.jhazmat.2009.11.010. Epub 2009 Nov 10.

Abstract

The decolorization of industrial wastewater containing direct dye (Drimarene Red CL-3B) by advanced oxidation process using ozonation in a semi-batch bubble column reactor followed by granule activated carbon (GAC) adsorption process was studied. The effect of initial dye concentration, ozone concentration, pH and ozone-air flow rate on the rate of dye decolorization were investigated. It was found that the rate of dye decolorization increases with increasing ozone concentration, ozone-air flow rate, and pH but decreases with increasing initial dye concentration. This study is a hybrid system conducted in combination between ozonation process and GAC adsorption to reveal higher and efficient removal of color and TOC. The process started with ozonation for efficient and rapid decolorization of dyeing wastewater, followed by GAC adsorption process to gain efficient removal of color and TOC. The adsorption process was found to be very efficient in removal of ozonation residual TOC, in view of high TOC removal, up to 37% TOC removal was obtained. Numerical correlation using regression analysis for decolorization time with the operating conditions of the ozonation process were presented.

摘要

采用臭氧氧化-颗粒活性炭(GAC)吸附法处理含有直接染料(翠蓝 CL-3B)的工业废水。研究了初始染料浓度、臭氧浓度、pH 值和臭氧-空气流量对染料脱色速率的影响。结果表明,染料脱色速率随臭氧浓度、臭氧-空气流量和 pH 值的增加而增加,随初始染料浓度的增加而降低。本研究是臭氧氧化工艺与 GAC 吸附相结合的混合系统,旨在揭示更高效的去除颜色和TOC 的方法。该工艺首先进行臭氧氧化,以实现高效快速的染料废水脱色,然后进行 GAC 吸附工艺,以获得高效的颜色和 TOC 去除。考虑到高 TOC 去除率,吸附过程在去除臭氧残留 TOC 方面非常有效,可获得高达 37%的 TOC 去除率。通过回归分析,提出了用臭氧氧化工艺操作条件表示脱色时间的数值关联。

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