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首页> 外文期刊>Applied Catalysis, A. General: An International Journal Devoted to Catalytic Science and Its Applications >Comparison of non-catalytic and catalytic ozonation processes of three different aqueous single dye solutions with respect to powder copper sulfide catalyst
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Comparison of non-catalytic and catalytic ozonation processes of three different aqueous single dye solutions with respect to powder copper sulfide catalyst

机译:三种不同的水性单一染料溶液相对于粉末硫化铜催化剂的非催化臭氧氧化过程的比较

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Treatment of textile wastewaters containing dyes has not been very successful by conventional methods such as biological treatment. In order to overcome this problem, ozonation based on the oxidation of organic pollutants has been studied by researchers. Catalytic ozonation and advanced oxidation processes (AOPs) are used in order to increase the efficiency of sole ozonation further. In this work, catalytic ozonation in the presence of copper sulfide (CuS) powder as a catalyst was investigated in the treatment of aqueous single dye solutions, namely solutions of Acid Red-151 (AR-151), Remazol Brilliant Blue-R (RBBR) and Reactive Black-5 (RB-5). In the catalytic ozonation experiments, the effects of important ozonation parameters such as solution pH, ozone and catalyst dosages and the initial concentration of each dye on reaction kinetics and mechanism were studied. The catalyst CuS increased the oxidation rates of ozonation side-products measured by the decrease in the total organic carbon (TOC) values of the treated dye solutions. The dye removal rates were enhanced in the treatment of RB-5 dye solutions, while no significant effects were observed on the dye removal rates of RBBR and AR-151 aqueous solutions. The TOC removals above 90% were observed in the catalytic ozonation with CuS for each of the dyes separately at pH 10 and at an initial dye concentration of 100mg/L The most important effect of the catalyst addition was observed at pH 3, where TOC removals without catalyst were low. Copper sulfide addition increased the percent TOC removals at the end of a reaction period of 80 min by 123%, 65% and 58% in the treatment of 100 mg/L RBBR, RB-5 and AR-151 aqueous solutions, respectively, at pH 3. Catalytic ozonation kinetics and mechanism were discussed in detail.
机译:通过常规方法,例如生物处理,处理含染料的纺织品废水不是很成功。为了克服该问题,研究人员已经研究了基于有机污染物氧化的臭氧化。为了进一步提高单独臭氧化的效率,使用了催化臭氧化和高级氧化工艺(AOP)。在这项工作中,研究了在硫化铜(CuS)粉末作为催化剂存在下的催化臭氧氧化,用于处理单一染料水溶液,即酸性红151(AR-151),Remazol亮蓝R(RBBR)的溶液。 )和活性黑5(RB-5)。在催化臭氧化实验中,研究了重要的臭氧化参数,例如溶液的pH,臭氧和催化剂的用量以及每种染料的初始浓度对反应动力学和机理的影响。催化剂CuS通过处理后的染料溶液的总有机碳(TOC)值降低来提高臭氧化副产物的氧化速率。 RB-5染料溶液的处理提高了染料的去除率,而RBBR和AR-151水溶液的去除率没有显着影响。在pH 10和初始染料浓度为100mg / L的情况下,分别用CuS催化臭氧氧化每种染料时,TOC去除率均超过90%。在pH 3时观察到催化剂添加的最重要作用,其中TOC去除率没有催化剂的人很少。在100 mg / L RBBR,RB-5和AR-151水溶液的处理中,硫化铜的添加在80分钟反应结束时的TOC去除率分别提高了123%,65%和58%。 pH 3.详细讨论了催化臭氧化反应的动力学和机理。

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