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The role of irradiation source setups and indirect phototransformation: Kinetic aspects and the formation of transformation products of weakly sunlight-absorbing pesticides

机译:辐射源设置和间接光转化的作用:弱吸收日光的农药的动力学方面和转化产物的形成

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In this study, emission spectra of three different commonly used xenon irradiation sources were analyzed and compared for the first time to ascertain the most suitable setup to simulate natural solar radiation. In order to demonstrate setup differences, absolute photon fluxes of irradiation sources were received by actinometry. Verification was done by measuring quantum yields of the model compounds Penconazole, Terbutryn, and Mecoprop in every setup. Differences regarding kinetic aspects and the formation of transformation products (TPs) was evaluated by analyzing direct phototransformation and additionally photolysis in presence of Nitrate as a photosensitizer in one irradiation setup (optical bench). Results showed that a precise setup characterization is needed to estimate whether irradiation sources are suitable to simulate terrestrial sunlight. This was found to be especially important for weakly sunlight-absorbing substances. In comparison with direct photolysis, indirect photolysis led to an enhancement of degradation rate constants for all substances and in case of Mecoprop to different types of TPs that were formed during irradiation. This study underlined that there are big knowledge gaps regarding irradiation sources setups and conditions. It is therefore absolutely necessary to consider those factors while simulating substance degradation and the TP formation under environmental conditions. (C) 2019 Elsevier B.V. All rights reserved.
机译:在这项研究中,首次对三种不同的氙气辐射源的发射光谱进行了分析和比较,以确定最适合模拟自然太阳辐射的装置。为了证明设置差异,通过光化法接收辐照源的绝对光子通量。通过测量每种设置中模型化合物Penconazole,Terbutryn和Mecoprop的量子产率来进行验证。在一个照射装置(光具座)中,通过分析直接光转化以及在存在硝酸盐作为光敏剂的情况下进行的光解作用,评估了动力学方面和转化产物(TPs)形成方面的差异。结果表明,需要精确的设置特性来估计辐射源是否适合模拟地面太阳光。发现这对于吸收弱阳光的物质特别重要。与直接光解法相比,间接光解法会提高所有物质的降解速率常数,在Mecoprop的情况下,会导致辐照期间形成的不同类型的TP。这项研究强调,关于辐射源设置和条件存在很大的知识空白。因此,在模拟环境条件下的物质降解和TP形成时,绝对有必要考虑这些因素。 (C)2019 Elsevier B.V.保留所有权利。

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