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Use of an Environmental Pollutant From Hexavalent Chromium Removal as a Green Catalyst in The Fenton Process

机译:Fenton工艺中六价铬去除过程中的环境污染物作为绿色催化剂的用途

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摘要

The present study refers to the use of an environmental pollutant generated during the removal of hexavalent chromium from aqueous media. This pollutant is a material with catalytic properties suitable for application in the oxidative degradation of problematic organic compounds. The material, initially used as an adsorbent, is a composite prepared by modifying the crystalline phases of iron oxides together with the chitosan (CT-FeCr). Chemical and morphological characterizations of the materials were performed using SEM analysis coupled with EDS, XRD and DSC. The CT-FeCr beads were used in the degradation of methylene blue dye (MB) and showed excellent degradation potential (93.6%). The presence of Cr on the surface of the catalyst was responsible for the increase in catalytic activity compared to the CT-Fe and pure magnetite materials. The product of the effluent treatment and the presence of the catalyst itself in the environment do not pose toxic effects. In addition, the CT-FeCr beads showed catalytic stability for several consecutive reaction cycles with possible technical and economic viability. The concept of “industrial symbiosis” may be applied to this technology, with that term relating to the reuse of a byproduct generated in one particular industrial sector by another as a raw material.
机译:本研究涉及从水性介质中去除六​​价铬过程中产生的环境污染物的使用。该污染物是具有催化性能的材料,适合用于有问题的有机化合物的氧化降解。最初用作吸附剂的材料是通过与壳聚糖(CT-FeCr)一起修饰氧化铁的结晶相而制备的复合材料。使用SEM分析,EDS,XRD和DSC对材料进行化学和形态表征。 CT-FeCr珠用于亚甲基蓝染料(MB)的降解,并显示出极好的降解潜能(93.6%)。与CT-Fe和纯磁铁矿材料相比,催化剂表面上Cr的存在是催化活性增加的原因。废水处理的产物和环境中催化剂本身的存在不会产生毒性作用。此外,CT-FeCr珠在几个连续的反应循环中显示出催化稳定性,并具有可能的技术和经济可行性。 “工业共生”的概念可以应用于该技术,该术语涉及在一个特定工业部门中产生的副产品被另一方作为原材料的再利用。

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