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首页> 外文期刊>Environmental Progress & Sustainable Energy >Photodecomposition of Organic Phosphorus in Aquatic Solution under Solar Irradiation with Nitrate: Kinetics and Influencing Water Parameters
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Photodecomposition of Organic Phosphorus in Aquatic Solution under Solar Irradiation with Nitrate: Kinetics and Influencing Water Parameters

机译:光解作用的有机磷水生太阳照射下的解决方案硝酸:水动力学和影响参数

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摘要

The transformation of organic phosphorus plays an important role in the phosphorus cycle in the natural environment. In this study, a series of laboratory-based experiments were conducted to address the influence of nitrate (NO3-) photochemical activity on the transformation of methyl parathion under solar irradiation. It is demonstrated that the photodecomposition of methyl parathion by NO3- obeys pseudo-first-order reaction kinetics, with the photodecomposition rate increasing with NO3- concentration. The photodecomposition rates of methyl parathion by NO3- were strongly influenced by pH, concentration of humic acid and Fe 31. Higher concentrations of Fe 31 and lower concentrations of humic acid accelerated the photodegradation induced by NO3-. Moreover, compared to alkaline media the acidic media can enhance the rate of methyl parathion degradation. Formation of the hydroxyl radical (center dot OH) was identified through the measurement of photoluminescence spectra (PL) using terephthalic acid as the trapping molecule. The primary transformation pathways of methyl parathion in the presence of NO3- under solar irradiation were proposed through the qualitative and quantitative analysis of byproducts. Intermediates, such as paraoxon, 4-nitrophenol and orthophosphate, were identified, and a mineralization pathway from methyl parathion to orthophosphate was proposed. (C) 2016 American Institute of Chemical Engineers
机译:有机磷扮演的变换在磷循环的重要作用自然环境。实验室实验地址硝酸盐的影响(NO3)光化学转换的活动甲基对硫磷在太阳照射。证明的光解作用甲基对硫磷NO3遵循符合一级反应动力学,光解作用率与NO3 -浓度增加。甲基对硫磷的光解作用利率NO3强烈受到pH值的影响,胡敏酸的浓度和铁31。菲31和低浓度的浓度胡敏酸的加速了光降解NO3引起的。媒体酸性媒体可以提高的速度甲基对硫磷降解。氢氧自由基(中间点哦)通过光致发光的测量使用对苯二甲酸作为光谱(PL)捕获分子。甲基对硫磷的通路的存在提出了NO3在太阳下照射通过定性和定量分析的副产品。4-nitrophenol和正磷酸盐识别和矿化途径甲基对硫磷提出了正磷酸盐。美国化学工程师学会(C) 2016

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