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类芬顿异相体系中结晶紫和甲基橙的催化降解

Catalytic degradation of crystal violet and methyl orange in heterogeneous Fenton-like processes.

作者信息

Wang Long, Zhou Chunbao, Yuan Yanxin, Jin Yajie, Liu Yang, Jiang Zhihui, Li Xiangtong, Dai Jianjun, Zhang Yingwen, Siyal Asif Ali, Ao Wenya, Fu Jie, Qu Junshen

机构信息

State Key Laboratory of Organic-Inorganic Composites, College of Chemical Engineering, Beijing University of Chemical Technology, Beijing, 100029, China; Systematic Engineering Center, JIHUA Group Co., Ltd., Beijing, 100070, China.

State Key Laboratory of Organic-Inorganic Composites, College of Chemical Engineering, Beijing University of Chemical Technology, Beijing, 100029, China.

出版信息

Chemosphere. 2023 Dec;344:140406. doi: 10.1016/j.chemosphere.2023.140406. Epub 2023 Oct 10.

Abstract

Metals-loaded (Fe, Cu and Zn) activated carbons (M@AC) with different loading ratios (0.1%, 0.5%, 1%, 5% and 10%) were prepared and employed for catalytic degradation of dye model compounds (crystal violet (CV) and methyl orange (MO)) in wastewater by heterogeneous Fenton-like technique. Compared with Cu@AC and Zn@AC, 0.5% Fe loaded AC (0.5Fe@AC) had better catalytic activity for dyes degradation. The effects of dyes initial concentration, catalyst dosage, pH and hydrogen peroxide (HO) volume on the catalytic degradation process were investigated. Cyclic performance, stability of 0.5Fe@AC and iron leaching were explored. Degradation kinetics were well fitted to the pseudo-second-order model (Langmuir-Hinshelwood). Almost complete decolorization (99.7%) of 400 mg L CV was achieved after 30 min reaction under the conditions of CV volume (30 mL), catalyst dosage (0.05 g), HO volume (1 mL) and pH (7.7). Decolorization of MO reached 98.2% under the same conditions. The abilities of pyrolysis char (PC) of dyeing sludge (DS) and metal loaded carbon to remove dye pollutants were compared. The intermediate products were analyzed and the possible degradation pathway was proposed. This study provided an insight into catalytic degradation of triphenylmethane- and aromatic azo-based substances, and utilization of sludge char.

摘要

制备了不同负载比例(0.1%、0.5%、1%、5%和10%)的负载金属(铁、铜和锌)的活性炭(M@AC),并采用非均相类芬顿技术用于催化降解废水中的染料模型化合物(结晶紫(CV)和甲基橙(MO))。与Cu@AC和Zn@AC相比,0.5%铁负载的活性炭(0.5Fe@AC)对染料降解具有更好的催化活性。研究了染料初始浓度、催化剂用量、pH值和过氧化氢(HO)体积对催化降解过程的影响。探讨了0.5Fe@AC的循环性能、稳定性和铁浸出情况。降解动力学很好地拟合了伪二级模型(朗缪尔 - 欣谢尔伍德)。在CV体积(30 mL)、催化剂用量(0.05 g)、HO体积(1 mL)和pH值(7.7)的条件下反应30分钟后,400 mg/L CV几乎完全脱色(99.7%)。在相同条件下,MO的脱色率达到98.2%。比较了印染污泥(DS)的热解炭(PC)和负载金属的碳去除染料污染物的能力。分析了中间产物并提出了可能的降解途径。本研究为三苯甲烷类和芳香偶氮类物质的催化降解以及污泥炭的利用提供了见解。

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