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Degradation of Anthraquinone Dye Reactive Blue 4 in Pyrite Ash Catalyzed Fenton Reaction

机译:硫铁矿灰催化Fenton反应中蒽醌染料活性蓝4的降解

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摘要

Pyrite ash (PA) is created by burning pyrite in the chemical production of sulphuric acid. The high concentration of iron oxide, mostly hematite, present in pyrite ash, gives the basis for its application as a source of catalytic iron in a modified Fenton process for anthraquinone dye reactive blue 4 (RB4) degradation. The effect of various operating variables such as catalyst and oxidant concentration, initial pH and RB4 concentration on the abatement of total organic carbon, and dye has been assessed in this study. Here we show that degradation of RB4 in the modified Fenton reaction was efficient under the following conditions: pH = 2.5; [PA]0 = 0.2 g L−1; [H2O2]0 = 5 mM and initial RB4 concentration up to 100 mg L−1. The pyrite ash Fenton reaction can overcome limitations observed from the classic Fenton reaction, such as the early termination of the Fenton reaction. Metal (Pb, Zn, and Cu) content of the solution after the process suggests that an additional treatment step is necessary to remove the remaining metals from the water. These results provide basic knowledge to better understand the modified, heterogeneous Fenton process and apply the PA Fenton reaction for the treatment of wastewaters which contains anthraquinone dyes.
机译:硫铁灰(PA)是在化学生产硫酸时燃烧黄铁矿产生的。黄铁矿灰中存在的高浓度氧化铁(主要是赤铁矿)为其在蒽醌染料反应性蓝4(RB4)降解的改良Fenton工艺中用作催化铁源奠定了基础。这项研究评估了各种操作变量,例如催化剂和氧化剂的浓度,初始pH和RB4浓度对减少总有机碳和染料的影响。在这里,我们表明在以下条件下,改良的Fenton反应中RB4的降解是有效的:pH = 2.5; pH = 2.5。 [PA] 0 = 0.2 g L -1 ; [H2O2] 0 = 5 mM,初始RB4浓度最高为100 mg L -1 。黄铁矿灰分的芬顿反应可以克服传统芬顿反应所观察到的局限性,例如芬顿反应的提前终止。处理后溶液中金属(铅,锌和铜)的含量表明必须采取额外的处理步骤才能从水中去除残留的金属。这些结果提供了基础知识,可以更好地理解改性的异质Fenton工艺,并将PA Fenton反应应用于含蒽醌染料的废水的处理。

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