Ince N H, Hasan D A, Ustün B, Tezcanli G
Institute of Environmental Sciences, Boğazici University, Bebek, Istanbul, Turkey.
Water Sci Technol. 2002;46(4-5):51-8.
Treatability of textile dyebath effluents by two simultaneously operated processes comprising adsorption and advanced oxidation was investigated using a reactive dyestuff, Everzol Black-GSP (EBG). The method was comprised of contacting aqueous solutions of the dye with hydrogen peroxide and granules of activated carbon (GAC) during irradiation of the reactor with ultraviolet light (UV). Control experiments were run separately with each individual process (advanced oxidation with UV/H2O2 and adsorption on GAC) to select the operating parameters on the basis of maximum color removal. The effectiveness of the combined scheme was tested by monitoring the rate of decolorization and the degree of carbon mineralization in effluent samples. It was found that in a combined medium of advanced oxidation and adsorption, color was principally removed by oxidative degradation, while adsorption contributed to the longer process of dye mineralization. Economic evaluation of the system based on total color removal and 50% mineralization showed that in the case of Everzol Black-GSP, which adsorbs relatively poorly on GAC, the proposed combination provides 25% and 35% reduction in hydrogen peroxide and energy consumption relative to the UV/H2O2 system. Higher cost reductions are expected in cases with well adsorbing dyes and/or with less costly adsorbents.
采用活性染料Everzol Black - GSP(EBG),研究了由吸附和高级氧化两个同时运行的过程处理纺织印染废水的可行性。该方法包括在反应器用紫外光(UV)照射期间,使染料水溶液与过氧化氢和活性炭颗粒(GAC)接触。分别对每个单独的过程(UV/H2O2高级氧化和GAC吸附)进行对照实验,以基于最大脱色率选择操作参数。通过监测废水样品的脱色率和碳矿化程度来测试组合方案的有效性。结果发现,在高级氧化和吸附的组合介质中,颜色主要通过氧化降解去除,而吸附有助于染料矿化的较长过程。基于总脱色率和50%矿化率对该系统进行的经济评估表明,对于在GAC上吸附相对较差的Everzol Black - GSP,相对于UV/H2O2系统,所提出的组合可使过氧化氢和能耗分别降低25%和35%。对于具有良好吸附性的染料和/或成本较低的吸附剂的情况,预计成本降低幅度会更高。