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首页> 外文期刊>Research on Chemical Intermediates >Sonocatalytic ozonation, with nano-TiO2 as catalyst, for degradation of 4-chloronitrobenzene in aqueous solution
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Sonocatalytic ozonation, with nano-TiO2 as catalyst, for degradation of 4-chloronitrobenzene in aqueous solution

机译:纳米TiO2催化声催化臭氧化降解水溶液中的4-氯硝基苯

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摘要

The results for the degradation efficiency of 4-chloronitrobenzene (4-CNB) by various advanced oxidation processes in a batch mode using nano-structured titanium dioxide demonstrated the order of O-3/US/TiO2 > US/O-3 > O-3/TiO2 > O-3 > US/TiO2 > US. The utilized TiO2 nanoparticles were characterized by X-ray diffraction (XRD) and transmission electron microscopy (TEM). Moreover, all processes obeyed pseudo-first order kinetics. Then, the effect of the main operational conditions including pH, ozone, initial 4-CNB concentration, TiO2 dosage and ultrasonic power on 4-CNB degradation was studied in the coupled O-3/US/TiO2 process as the most significant treatment method with a high synergistic effect. The optimal pH and TiO2 dosage were selected to be 9 and 50 mg/L owing to the efficient indirect attack of hydroxyl radicals and less screening effects of TiO2 particles on ultrasonic waves, respectively. By increasing the amount of O-3 concentration and ultrasonic power, the degradation of 4-CNB was enhanced due to the more production of reactive oxygen species. However, the opposite trend was observed for 4-CNB concentration because the same amounts of generated oxidizing species under the identical experimental conditions had to degrade more organic pollutants and its degradation intermediates. Eventually, the total organic carbon (TOC) was utilized to monitor the mineralization of 4-CNB in the above-mentioned processes and the same results were obtained with lower rate constants compared to degradation rate constants.
机译:使用纳米结构的二氧化钛以批处理方式通过各种先进的氧化工艺降解4-氯硝基苯(4-CNB)的结果表明,O-3 / US / TiO2> US / O-3> O-的顺序3 / TiO2> O-3> US / TiO2> US。通过X射线衍射(XRD)和透射电子显微镜(TEM)对所利用的TiO 2纳米颗粒进行表征。此外,所有过程都遵循伪一级动力学。然后,在O-3 / US / TiO2耦合工艺中,研究了pH,臭氧,4-CNB初始浓度,TiO2用量和超声功率等主要操作条件对4-CNB降解的影响,这是最重要的处理方法。较高的协同作用。由于羟基的有效间接攻击和TiO2颗粒对超声波的屏蔽作用较小,因此,将最适pH和TiO2剂量分别选择为9和50 mg / L。通过增加O-3浓度和超声波功率,由于更多的活性氧产生,4-CNB的降解得到增强。但是,对于4-CNB浓度观察到相反的趋势,因为在相同的实验条件下产生的相同数量的氧化物质必须降解更多的有机污染物及其降解中间体。最终,在上述过程中,总有机碳(TOC)用于监测4-CNB的矿化作用,并且与降解速率常数相比,使用较低的速率常数可以获得相同的结果。

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