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Kinetic modelling of mancozeb hydrolysis and photolysis to ethylenethiourea and other by-products in water

机译:代森锰锌水解和光解为水中乙撑硫脲及其他副产物的动力学模型

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The aim of this study was to propose kinetic models suitable for reproducing and predicting mancozeb (Mz) conversion to by-products as a function of the operational conditions. The main factors (pH, temperature and light) potentially affecting the mancozeb degradation in aqueous models were studied by a multifactorial screening design. In addition, the response surface methodology (RSM) was applied to evaluate the interactive effects of these factors on ethylenethiourea (ETU) formation. The response surface revealed that the best degradation conditions to minimize mancozeb conversion to ETU were low pH (2), low temperature (25 degrees C) and darkness. Under these conditions, the percentage of mancozeb remained in the solution at 72 h was approximately 10% of the initial concentration and the percentage of ETU conversion was 5.4%. However, according to the model, in surface waters under typical environmental conditions (pH 8, 25 degrees C and light) the percentage of mancozeb conversion to ETU would be about 17.5%. The proposed model provides a satisfactory interpretation of the experimental data obtained during the hydrolysis of mancozeb. (C) 2016 Elsevier Ltd. All rights reserved.
机译:这项研究的目的是提出一种动力学模型,该模型适合于根据操作条件来复制和预测代森锰锌(Mz)向副产物的转化。通过多因素筛选设计研究了可能影响水性模型中代森锰锌降解的主要因素(pH,温度和光照)。此外,应用响应面方法(RSM)来评估这些因素对亚乙基硫脲(ETU)形成的相互作用。响应表面表明,将Mancozeb转化为ETU最小的最佳降解条件是低pH(2),低温(25摄氏度)和黑暗。在这些条件下,在72小时时残留在溶液中的代森锰锌的百分比约为初始浓度的10%,ETU转化的百分比为5.4%。但是,根据该模型,在典型环境条件(pH 8、25摄氏度和光照)下的地表水中,代森锰锌转化为ETU的百分比约为17.5%。拟议的模型提供了对mancozeb水解过程中获得的实验数据的满意解释。 (C)2016 Elsevier Ltd.保留所有权利。

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