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Photo-degradation of Di Azo Dye Bismarck Brown by Advanced photo-Fenton Process: Influence of Inorganic Anions and Evaluation of Recycling Efficiency of Iron Powder

机译:先进光 - Fenton法对Di azo Dye Bismarck Brown的光降解:无机阴离子的影响及铁粉回收效率的评价

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摘要

The present research work has demonstrated the usage of zero valent metallic iron (ZVMI) in the photo-Fenton process under UV light as a promising and novel technique for the complete degradation of di azo dye Bismarck Brown (BB) in aqueous medium. The influence of various reaction parameters like concentration of oxidants/dye/iron powder and pH of the solution was investigated and optimum conditions are reported. Ammonium persulfate (APS) proved to be better oxidant in comparison with hydrogen peroxide for enhancing the degradation rate and effectively inhibited the precipitation of iron hydroxides at higher dosages of iron powder which is attributed to the acidity provided by APS which is crucial for Fenton process. The rate constant for the kinetics of degradation using various oxidation processes follows the order: Fe0/APS/UV > Fe0/H2O2/UV > Fe0/APS/dark > Fe0/UV > Fe0/H2O2/dark > Fe0/dark > H2O2/UV > APS/UV. The effects of inorganic anions that are commonly found in the industrial effluents like NaCl, KNO3, Na2SO4, Na2CO3 and NaHCO3 at different concentrations on the degradation rate were studied in detail. The degradation was followed by UV-vis and GC-MS techniques.
机译:目前的研究工作表明,在紫外光下的光芬顿法中使用零价金属铁(ZVMI)是将重氮染料Bi斯麦布朗(BB)在水性介质中完全降解的一种有前途的新颖技术。研究了各种反应参数的影响,如氧化剂/染料/铁粉的浓度和溶液的pH值,并报告了最佳条件。与过氧化氢相比,过硫酸铵(APS)被证明是更好的氧化剂,可提高降解速度并有效抑制高剂量铁粉中氢氧化铁的沉淀,这归因于APS提供的酸度,这对Fenton工艺至关重要。使用各种氧化过程的降解动力学的速率常数遵循以下顺序:Fe0 / APS / UV> Fe0 / H2O2 / UV> Fe0 / APS /暗> Fe0 / UV> Fe0 / H2O2 /暗> Fe0 /暗> H2O2 /紫外线> APS /紫外线。详细研究了工业废水中常见的无机阴离子(如NaCl,KNO3,Na2SO4,Na2CO3和NaHCO3)在不同浓度下对降解速率的影响。降解之后是UV-vis和GC-MS技术。

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