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Sonocatalytic degradation of phenol catalyzed by nano-sized zero valent Cu and Ni

机译:纳米零价铜和镍催化声降解苯酚

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In this study, a successful degradation of phenol was achieved using nanosized zero-valent copper ( NZVC) or nanosized zero- valent nickel ( NZVN) in combination with H2O2 and 20 kHz ultrasound irradiation. The effect of H2O2 concentration, initial pH, catalyst amount, and ultrasonic irradiation time on the degradation efficiency was investigated, and the reaction kinetics was discussed. The results showed that the degradation extent increases with increasing catalyst amount and irradiation time, but decreases with increasing initial pH value. These results also revealed that the degradation of phenol is intensified in the presence of NZVC or NZVN and H2O2, which can be attributed to the enhanced production of center dot OH radicals in the system. Thus, an appropriate selection of operating conditions will lead to an economical and highly efficient technology with eventual large-scale commercial applications for the degradation of organic pollutants in aqueous effluents.
机译:在这项研究中,结合纳米级的零价铜(NZVC)或纳米级的零价镍(NZVN)结合H2O2和20 kHz超声辐射,成功降解了苯酚。研究了H2O2浓度,初始pH,催化剂用量和超声辐照时间对降解效率的影响,并讨论了反应动力学。结果表明,降解程度随催化剂用量和辐照时间的增加而增加,但随初始pH值的增加而降低。这些结果还表明,在存在NZVC或NZVN和H2O2的情况下,苯酚的降解会加剧,这可归因于系统中中心点OH自由基产生的增加。因此,适当选择操作条件将导致一种经济高效的技术,并最终大规模商业应用来降解水性废水中的有机污染物。

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