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Degradation of safranin by heterogeneous Fenton processes using peanut shell ash based catalyst

机译:使用花生壳灰分催化剂通过异质Fenton工艺降解Safranin

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Today, dyes are one of the major problematic pollutants in the environment and are broadly used in several industrial sectors. In the current research work, decolorization of safranin (basic dye) from aqueous solution was investigated using iron-impregnated peanut shell ash (Fe-PSA) as a catalyst in the UV-assisted heterogeneous Fenton process (Fe-PSA/H2O2/UV). The effect of parameters such as H2O2 concentration, catalyst dose, pH, initial dye concentration, temperature, and agitation speed was studied. The maximum decolorization of safranin was achieved at optimum parametric values of reagent dose = 8 mM, catalyst dose = 0.5 g, pH = 3, initial concentration of safranin = 50 ppm, temperature = 25 degrees C, and agitation speed = 200 rpm. The results revealed the efficient performance of Fe-PSA as catalyst in the Fe-PSA/H2O2/UV process for safranin treatment.
机译:如今,染料是环境中主要有问题的污染物之一,广泛用于若干工业部门。 在目前的研究工作中,使用铁浸渍的花生壳灰(Fe-PSA)作为UV辅助的异构Fenton工艺(Fe-PSA / H2O2 / UV)的催化剂,研究了来自水溶液的野生素(碱性染料)的脱色 。 研究了参数,例如H 2 O 2浓度,催化剂剂量,pH,初始染料浓度,温度和搅拌速度的影响。 在试剂剂量= 8mm的最佳参数值下实现Safranin的最大脱色,催化剂剂量= 0.5g,pH = 3,初始浓度的Safranin = 50ppm,温度= 25℃,搅拌速度= 200rpm。 结果表明,Fe-PSA在Fe-PSA / H2O2 / UV过程中的Fe-PSA作为Safranin治疗的方法。

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