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Comparison of homogeneous and heterogeneous Fenton processes for the removal of reactive dye Magenta MB from aqueous solution

机译:均相和异相Fenton工艺从水溶液中去除活性染料洋红色MB的比较

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The contamination of water due to dyes coming from different industries is the current problem all over the world and is a demanding environmental issue that needs to be addressed. In this study, the removal of a reactive azo dye called Magenta MB was done by Fenton process using heterogeneous Fe3O4 catalyst and homogeneous FeSO4 catalyst. The homogeneous Fenton system had a removal efficiency of 90.9% under operating conditions of catalyst concentration of 400 mg/L, H2O2 dosage of 0.38 M, initial pH of 3 and concentration of Magenta MB of 50 mg/L. The optimum operating condition as per the experimental results for the heterogeneous Fenton system while using Fe3O4 catalyst was 600 mg/L of catalyst dosage and 0.26 M of H2O2 for 50 mg/L of initial dye concentration at an initial pH of 2 in 60 min. The dye removal efficiency under this condition was 86.8%. An inhibiting effect of salts and ligands on Fenton system was observed and this inhibition effect increases in the following order: Cl- < SO42- similar to EDTA < F- < oxalate. The dye removal efficiency of the recycled magnetite was found to be 76%, which is less than that of newly prepared catalyst. Magenta MB was successfully removed by Fenton processes. Results showed that magnetite was found to be an efficient Fenton catalyst for dye removal.
机译:来自不同行业的染料对水的污染是全世界当前的问题,并且是一个亟待解决的环境问题。在这项研究中,使用多相Fe3O4催化剂和均相FeSO4催化剂通过Fenton工艺去除了称为洋红色MB的活性偶氮染料。在催化剂浓度为400 mg / L,H2O2剂量为0.38 M,初始pH为3,品红色MB浓度为50 mg / L的操作条件下,均相Fenton系统的去除效率为90.9%。根据非均相Fenton系统在使用Fe3O4催化剂时的实验结果,最佳操作条件是在60分钟内初始pH为2时,对于初始染料浓度为50 mg / L,催化剂剂量为600 mg / L,H2O2为0.26M。在此条件下的染料去除效率为86.8%。观察到盐和配体对Fenton系统的抑制作用,并且该抑制作用按以下顺序增加:Cl-

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