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Experimental data on the removal of phenol by electro-H 2O 2 in presence of UV with response surface methodology

机译:关于在紫外线存在下通过电H 2 O 2 去除苯酚的实验数据响应面方法

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摘要

Phenol is classified as priority pollutant. Phenol and its derivatives are stable in water, environmental contamination, and health concerns that are used as raw material in many chemical industries. This study investigated the removal of phenol by electro-H2O2/UV system.The response surface methodology (RSM) using central composite design (CCD) was used to modeling and optimization of experimental parameters such as pH, contact time, initial concentration of phenol, concentration of hydrogen peroxide, and current density.The obtained results demonstrated that the efficiency of the electro-H2O2/UV system was maximum (>99%) under the optimal conditions for the phenol removal from aqueous solutions, 2?mM of hydrogen peroxide concentration, 50?mg/L of initial phenol concentration, pH of 5, 10?mA/cm2of current density, reaction time of 25?min and 2.1?kW?h/m3of energy consumption. Therefore, the electro-H2O2/UV system is an efficient method for the removal of organic compounds from industrial wastewater.
机译:苯酚被列为优先污染物。苯酚及其衍生物在水,环境污染和健康方面均很稳定,在许多化学工业中都用作原料。本研究研究了用电H2O2 / UV系统去除苯酚的方法。采用中心复合设计(CCD)的响应面方法(RSM)建模和优化了实验参数,例如pH,接触时间,苯酚的初始浓度,过氧化氢的浓度和电流密度。获得的结果表明,在从水溶液中去除苯酚的最佳条件下,过氧化氢浓度为2?mM时,H2O2 / UV电系统的效率最高(> 99%)。初始苯酚浓度为50?mg / L,pH为5,电流密度为10?mA / cm2,反应时间为25?min,能耗为2.1?kW?h / m3。因此,H2O2 / UV电系统是从工业废水中去除有机化合物的有效方法。

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