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Influence of pH and FeSO_4 to H_2O_2 Ratio in Degradation of p-Cresol by Fenton's Reagent

机译:FENTON试剂对p-CRESOL降解的影响对pH和FESO_4至H_2O_2的影响

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In this study, the influence of pH and FeSO_4:H_2O_2 ratio in degradation of p-Cresol by Fenton's Reagent was evaluated. Initially, the optimum treatment conditions of p-Cresol which include pH, time and dosage ratio were examined. Subsequently, wastewater containing p-Cresol was treated with the optimum condition. Results from this study were interpreted through spectra overlay, removal percentage of p-Cresol and COD removal percentage. The experiments show that degradation of p-Cresol is more efficient when in weak acid environment. The optimum pH for p-Cresol to degrade is at pH 3.5. In this state, concentration reduction and COD reduction percentage achieved 39.44% and 58.04% respectively. The optimum time for degradation of p-Cresol was found to be 60 minutes. Beyond this time, the concentration reduction only experienced insignificant increase. As for ratio of Fenton's reagent, dosages 1:5 FeSO_4:H_2O_2 has the best reduction efficiency. Excessive of FeSO_4 will induce H_2O_2 to act as the scavenger. The COD removal efficiency of p-Cresol was affected when background wastewater matrix. The COD reduction of p-Cresol solution was 56.03% while 48.16% in rubber manufacturing wastewater. As for leachate, only 28.05% COD was reduced.
机译:在该研究中,评价了FENTON试剂的pH和FeSO_4:H_2O_2的影响对p-甲酚的降解中的偏差。最初,检查包含pH,时间和剂量比的p甲酚的最佳处理条件。随后,用最佳条件处理含有p-甲酚的废水。本研究的结果通过光谱覆盖来解释,去除甲酚和COD去除百分比的去除百分比。实验表明,在弱酸环境中,p甲酚的降解更有效。对p-甲酚降解的最佳p​​H在pH 3.5处。在这种状态下,浓度降低和COD减少率分别达到39.44%和58.04%。发现p-cresol降解的最佳时间为60分钟。在这段时间之外,浓度降低只会经历微不足道的增加。至于FENTON试剂的比例,剂量1:5 FESO_4:H_2O_2具有最佳的降低效率。 Feso_4过度将诱导H_2O_2作为清道夫。当后台废水基质时,p-cresol的COD去除效率受到影响。橡胶制造废水中,甲状甲酚溶液的COD减少为56.03%,而48.16%。对于渗滤液,仅减少了28.05%的鳕鱼。

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