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Efficiency comparison of advanced photochemical oxidation technologies in phenol removal from aqueous solution in Iran

机译:伊朗水溶液中酚清除酚清除的高效比较

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In this study, advanced oxidation processes (UV, UV/H_2O_2, UV/H_2O_2/Fe(II) and UV/H_2O_2/Fe(III)) were investigated in lab-scale experiments for degradation of phenol or benzene hydroxy in aqueous solution. The study showed that the photo-Fenton process, (a mixture of hydrogen peroxide and ferrous or ferric ion), was the most effective treatment process under acidic conditions and produced a higher rate of degradation of phenol at a very short radiation time. It accelerated the oxidation rate by 4-5 times the rate for the UV/H_2O_2 process. The reaction was influenced by the pH, the input concentration of H_2O_2 and the amount of the iron catalyst and the type of iron salt. The experimental results showed that the optimum conditions were obtained at a pH value of 3, with 6 mmol/l H_2O_2, and 0.5 mmol/l Fe(II) for the UV/H_2O_2/Fe(II) system and 6 mmol/l H_2O_2 and, 0.4 mmol/l Fe(III) for the UV/H_2O_2/Fe(III) system. As for the UV processes, UV/H_2O_2/Fe(III) showed the highest degradation rate.
机译:在该研究中,研究了先进的氧化方法(UV,UV / H_2O_2,UV / H_2O_2 / FE)和UV / H_2O_2 / FE(III)在实验室规模实验中研究了水溶液中苯酚或苯羟基的降解。该研究表明,光芬钨工艺(过氧化氢和铁离子的混合物)是酸性条件下最有效的处理过程,并在非常短的辐射时间下产生苯酚的较高速率。它将氧化率加速4-5倍的UV / H_2O_2过程的速率。反应受到pH,H_2O_2的输入浓度和铁催化剂的量和铁盐的量的影响。实验结果表明,对于UV / H_2O_2 / Fe(II)系统,6mmol / L H_2O_2和0.5mmol / L Fe(II)的pH值为3,6mmol / L H_2O_2和UV / H_2O_2 / FE(III)系统的0.4mmol / L Fe(III)。至于UV过程,UV / H_2O_2 / FE(III)显示出最高的降解速率。

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