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首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >Electro-Fenton catalyzed with magnetic chitosan beads for the removal of Chlordimeform insecticide
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Electro-Fenton catalyzed with magnetic chitosan beads for the removal of Chlordimeform insecticide

机译:用磁性壳聚糖珠催化催化用于去除Chlordimeform杀虫剂

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The degradation of chlordimeform (CDM) has been investigated by a heterogeneous electro-Fenton process involving magnetite supported chitosan beads (Fe3O4-Cs) as catalyst. The catalyst was prepared by dropwise addition of an acidic chitosan-metal salts solution into sodium hydroxide precipitation bath. SEM, XRD and FTIR analysis were used to characterize the catalysts. The effect of experimental parameters, such as the current intensity, the amount of iron on chitosan beads, the concentration of the catalyst and the initial pH on the pollutant removal rate was investigated. The optimal conditions for the degradation of 37.5 mg L-1 initial CDM concentration were achieved at an applied cathodic current of -5 mA, using 0.5 g L-1 of magnetic chitosan beads (with an average iron amount of 0.104 mmol) and at pH = 3. Under these conditions, CDM was effectively removed within 30 min with 80% of NPOC removal after 6 h of treatment. The reaction followed a pseudo-first order kinetic equation. The adsorption test on the chitosan beads (with and without iron) demonstrated that the insecticide removal was solely induced by heterogeneous electro-Fenton treatment with Fe3O4-CS beads. In addition, the reusability of this catalyst was effectively demonstrated. Finally, LC-MS analysis allowed the proposal of a plausible degradation route.
机译:通过涉及磁铁矿支撑的壳聚糖珠(Fe3O4-CS)作为催化剂的异质电芬钨工艺研究了ChlordimeForm(CDM)的降解。通过将酸性壳聚糖 - 金属盐溶液滴加成氢氧化钠沉淀浴,制备催化剂。 SEM,XRD和FTIR分析用于表征催化剂。实验参数的效果,如电流强度,壳聚糖珠粒上的铁量,催化剂的浓度和初始pH对污染物去除率的初始pH。在-5mA的施加的阴极电流中实现了37.5mg L-1初始CDM浓度的最佳条件,使用0.5g L-1磁性壳聚糖珠(平均铁量为0.104mmol)和pH值= 3.在这些条件下,在30分钟内有效地除去CDM,在6小时后,在6小时后除去80%的NPOC去除。反应遵循伪第一阶动力学方程。壳聚糖珠粒(带有且没有铁)的吸附试验证明了用Fe 3 O 4 -CS珠粒通过非均相电芬治疗诱导的杀虫剂去除。此外,有效地证明了该催化剂的可重用性。最后,LC-MS分析允许提出合理的降解路线。

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