超声降解水溶液中对硝基苯酚的研究

Jun Shi, Liangbo Zhang, Huiping Deng
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摘要

本文研究了超声法降解水溶液中的对硝基苯酚。讨论了初始浓度、初始pH、能量密度、反应温度和存在饱和气体等因素对降解的影响及其规律。结果表明,初始浓度、初始pH、能量密度是影响反应的主要因素。较低浓度的p-Np可以在较低的pH和较高的能量密度下降解。当初始pH值为11 ~ 3时,p-Np的降解效率为14.8% ~ 50.1%;当能量密度由1.25 W/mL降至3.13 W/mL时,p-Np的降解效率由50.1%降至8.76%。而且,在所研究的浓度范围内,当初始浓度大于60 mg/L时,反应服从一级动力学反应;随着初始浓度的增加,一阶速率常数的变化趋势不够明显。向溶液中充气有助于p-Np的降解,但效率不明显,温度的变化对p-Np的降解几乎没有影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Study on Degradation of p-Nitrophenol in Aqueous Solution by Ultrasound
The study on degradation of p-Nitrophenol (p-Np) in aqueous solution by ultrasound process was given in this paper. The influence on degradation and laws by several factors, which included the initial concentration, the initial pH, the energy density, the reaction temperature and the presence of saturated gas, were discussed. The results showed that the initial concentration, the initial pH, the energy density were the main factors. The p-Np of lower concentration can be degraded in lower pH and higher energy density. When the initial pH value ranged from 11 to 3, the degradation efficiency of p-Np varied from 14.8% to 50.1%; when the energy density decreased to 3.13 W/mL from 1.25 W/mL, the degradation efficiency of p-Np decreased to 8.76% from 50.1%. Moreover, within the concentration range which was studied, the reaction followed the first-order kinetic reaction, when the initial concentration was over 60 mg/L; the tendency which was the first-order rate constant with the augment of initial concentration was not obvious sufficiently. Aerating into the solution contributes the degradation of p-Np, but the efficiency was not obvious, and the variation of temperature has almost no influence on the degradation of p-Np.
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