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基于煤的底灰(CBBA)废料作为从水溶液中去除纺织染料的吸附剂。

Coal-based bottom ash (CBBA) waste material as adsorbent for removal of textile dyestuffs from aqueous solution.

作者信息

Dinçer Ali Riza, Güneş Yalçin, Karakaya Nusret

机构信息

Department of Environmental Engineering, Trakya University, Corlu, Tekirdağ, Turkey.

出版信息

J Hazard Mater. 2007 Mar 22;141(3):529-35. doi: 10.1016/j.jhazmat.2006.07.064. Epub 2006 Aug 3.

Abstract

A locally available CBBA waste material was used as adsorbent for removal of reactive dyes from synthetic textile wastewater. This study presents the results of our investigation on color removal from synthetic wastewater containing Vertigo Blue 49 (CI Blue 49) and Orange DNA13 (CI Orange 13) by adsorption onto CBBA waste material. The effectiveness of CBBA waste material in adsorbing reactive dyes from aqueous solutions was studied as a function of contact time, initial dye concentration and pH by batch experiments. Leachability of waste material was also evaluated using standard leaching test with deionized water (DIN38414-S4). pH 7 was more favorable for color removal from both Vertigo Blue 49 (CI Blue 49) and Orange DNA (CI Orange 13). Dyestuff adsorption capacities of CBBA for Vertigo Blue 49 and Orange DNA13 were 13.51 and 4.54mg dye/g adsorbent, respectively. The adsorption isotherms for the CBBA can be better described by the Freundlich isotherm. The results showed that the dyestuff uptake process for both dyes followed the second-order kinetics. The bottom ash used in this study is not classified as ecotoxic/hazardous material according to the French proposal for a criterion and evaluation methods of waste ecotoxicity (CEMWE) and the German regulation on Hazardous Waste Classification (HWC).

摘要

一种当地可得的CBBA废料被用作吸附剂,用于去除合成纺织废水中的活性染料。本研究展示了我们通过将含有眩晕蓝49(CI蓝49)和橙色DNA13(CI橙13)的合成废水吸附到CBBA废料上进行脱色研究的结果。通过批次实验,研究了CBBA废料从水溶液中吸附活性染料的效果与接触时间、初始染料浓度和pH值的关系。还使用去离子水标准浸出试验(DIN38414-S4)评估了废料的浸出性。pH值为7对从眩晕蓝49(CI蓝49)和橙色DNA(CI橙13)中脱色更为有利。CBBA对眩晕蓝49和橙色DNA13的染料吸附容量分别为13.51和4.54mg染料/克吸附剂。CBBA的吸附等温线可以用弗伦德利希等温线更好地描述。结果表明,两种染料的染料吸附过程均遵循二级动力学。根据法国关于废物生态毒性标准和评估方法的提议(CEMWE)以及德国危险废物分类规定(HWC),本研究中使用的底灰未被归类为生态毒性/有害物质。

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