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Homogenous UV/periodate process in treatment of p-nitrophenol aqueous solutions under mild operating conditions

机译:在温和的操作条件下均相UV /高碘酸盐工艺处理对硝基苯酚水溶液

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摘要

Aqueous solutions of p-nitrophenol (PNP) were treated with UV-activated potassium periodate (UV/KPI) in an efficient photo-reactor. Either periodate or UV alone had little effect; however, their combination led to a significant degradation and mineralization. The response surface methodology was employed for design of experiments and optimization. The optimum conditions for treatment of 30mg/L of the substrate were determined as [KPI]=386.3mg/L, pH=6.2 and T=34.6 degrees C, under which 79.5% degradation was achieved after 60min. Use of 25 and 40kHz ultrasound waves caused the degradation to enhance to 88.3% and 92.3%, respectively. The intermediates were identified by gas chromatography-mass spectroscopy analysis, leading to propose the reaction pathway. The presence of water conventional bicarbonate, chloride, sulfate and nitrate anions caused unfavorable effects in efficiency. Meanwhile, the kinetic study showed that PNP degradation follows a pseudo-first-order reaction and the activation energy was determined. The irradiation energy consumption required for one order of magnitude degradation was estimated as 11.18kWh/m(3). Accordingly, comparison with the previously reported processes showed the superiority of PNP treatment with the employed process.
机译:在高效的光反应器中,用紫外线活化的高碘酸钾(UV / KPI)处理对硝基苯酚(PNP)的水溶液。高碘酸盐或紫外线单独影响不大;然而,它们的结合导致明显的降解和矿化。响应面方法用于实验设计和优化。确定处理30mg / L底物的最佳条件为[KPI] = 386.3mg / L,pH = 6.2和T = 34.6℃,在此条件下60分钟后降解达到79.5%。使用25kHz和40kHz的超声波导致衰减分别提高到88.3%和92.3%。通过气相色谱-质谱分析法鉴定了中间体,从而提出了反应途径。水常规的碳酸氢根,氯离子,硫酸根和硝酸根阴离子的存在对效率造成不利影响。同时,动力学研究表明PNP降解遵循拟一级反应并确定了活化能。一个数量级退化所需的辐射能量消耗估计为11.18kWh / m(3)。因此,与先前报道的方法的比较显示了所采用的方法对PNP治疗的优越性。

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