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Application of the pyrite ash in the microwave Fenton process of decolorization of the synthetic color solution

机译:黄铁矿灰在微波芬顿合成色溶液脱色中的应用

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The aim of this study is to investigate the possibility of fly ash and pyrite ash applications as a Fenton catalysts in the advancement of the microwave/hydrogen peroxide (MW/H2O2) treatment in the Rhodamine B decolorization process. At the same time, a comparison of the influence of these heterogenous catalysts with the homogenous Fenton catalyst on the decolorization process was conducted. The influence of the catalyst was tracked in previously optimized conditions MW/H2O2: [Rhodamine B] = 0.2 mM; pH 3.2; temperature 85oC; [H2O2] = 80 mM; power = 300 W. Under such conditions, the efficiency of 99.5% was achieved after 30 minutes of reaction time. The same efficiency was achieved through the application of MW/Fe2+/H2O2 and MW/pyrite ash/H2O2 after only 10 minutes of reaction time. The order of the tested integrated processes according to the initial reaction rate is as follows: MW/Fe2+/H2O2>MW/fly ash/H2O2>MW/H2O2. The results of this study present a basis for further research and optimization of water solution decolorization process through pyrite ash with MW and hydrogen peroxide application.
机译:本研究的目的是研究在罗丹明B脱色过程中微波/过氧化氢(MW / H2O2)处理的进展中,粉煤灰和黄铁矿灰作为Fenton催化剂的应用可能性。同时,比较了这些多相催化剂与均相芬顿催化剂对脱色过程的影响。在先前优化的条件下追踪催化剂的影响MW / H2O2:[若丹明B] = 0.2 mM; pH值3.2;温度85oC; [H2O2] = 80 mM;功率= 300W。在这种条件下,反应30分钟后效率达到99.5%。在仅反应10分钟后,通过使用MW / Fe2 + / H2O2和MW /黄铁矿灰分/ H2O2达到了相同的效率。根据初始反应速率测试的集成过程的顺序如下:MW / Fe2 + / H2O2> MW /粉煤灰/ H2O2> MW / H2O2。本研究结果为进一步研究和优化MW和过氧化氢应用黄铁矿灰分对水溶液脱色工艺提供了基础。

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