首页> 外文期刊>Journal of Hazardous Materials >One-step preparation of reduced graphene oxide aerogel loaded with mesoporous copper ferrite nanocubes: A highly efficient catalyst in microwave-assisted Fenton reaction
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One-step preparation of reduced graphene oxide aerogel loaded with mesoporous copper ferrite nanocubes: A highly efficient catalyst in microwave-assisted Fenton reaction

机译:一步制备负载介孔铜铁氧体纳米立方体的还原氧化石墨烯气凝胶:微波辅助芬顿反应的高效催化剂

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Heterogeneous Fenton reaction is an attractive method for degradation of organic pollutants due to its high efficiency and non-selectivity and it also causes no secondary pollution. However low degradation rate and poor recyclability of the catalysts limit its applications for water purification. To overcome this herein copper ferrite/reduced graphene oxide (CF/rGO) aerogel was prepared by a one-step hydrothermal method as a highly efficient catalyst for the microwave-assisted Fenton reaction (MAFR). Under optimal conditions (500 W of microwave power 600 mu L of H2O2 15 mg of catalyst and 30 mg/L of RhB) the degradation efficiency of CF/rGO aerogel at 1.0 min (95.7%) was higher than that of reference samples at 3.0 min. Thermodynamical study showed the activation energy enthalpy change entropy change and Gibbs free energy change were 0.73 kJ/mol -49.5 kJ/mol -0.135 kJ/mol K and -6.8 kJ/mol respectively indicating that MAFR was an endothermic and non-spontaneous process.Radical trapping experiments showed that OH O-2(-) and h(+) played a combined role in RhB degradation. Besides high catalytic activity CF/rGO aerogel also displayed good reusability showing removal efficiency of 87.4% after 5 cycles. The high efficiency good reusability and simple process make CF/rGO aerogel a promising catalyst for wastewater treatment.
机译:异质Fenton反应由于其高效和非选择性而成为降解有机污染物的一种有吸引力的方法,它也不会造成二次污染。然而,催化剂的低降解速率和差的可循环性限制了其在水净化中的应用。为了克服这一问题,通过一步水热法制备了铁氧体/氧化石墨烯(CF / rGO)铜气凝胶,作为微波辅助的Fenton反应(MAFR)的高效催化剂。在最佳条件下(500 W微波功率,600μL H2O2、15 mg催化剂和30 mg / L RhB),CF / rGO气凝胶在1.0分钟(95.7%)的降解效率高于参考样品在3.0时的降解效率。分钟热力学研究表明,活化能焓变熵变化和吉布斯自由能变化分别为0.73 kJ / mol -49.5 kJ / mol -0.135 kJ / mol K和-6.8 kJ / mol,表明MAFR是吸热过程和非自发过程。自由基捕获实验表明,OH O-2(-)和h(+)在RhB降解中起着共同的作用。除具有高催化活性外,CF / rGO气凝胶还显示出良好的可重复使用性,显示5个循环后的去除效率为87.4%。 CF / rGO气凝胶的高效率,良好的可重复使用性和简单的工艺使其成为废水处理的有希望的催化剂。

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