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首页> 外文期刊>SAR and QSAR in Environmental Research >DATA EVALUATIONS AND QUANTITATIVE PREDICTIVE MODELS FOR VAPOR PRESSURES OFPOLYCYCLIC AROMATIC HYDROCARBONS AT DIFFERENT TEMPERATURES
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DATA EVALUATIONS AND QUANTITATIVE PREDICTIVE MODELS FOR VAPOR PRESSURES OFPOLYCYCLIC AROMATIC HYDROCARBONS AT DIFFERENT TEMPERATURES

机译:不同温度下多环芳烃的蒸气压数据评估和定量预测模型

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Polycyclic aromatic hydrocarbons (PAHs) are typical and ubiquitous organic pollutants. Vapor pressures, which can be classified as solid vapor pressure (P_s) and (subcooled) liquid vapor pressure (P_L), are key physicochemical properties governing theenvironmental fate of organic pollutants It is of great importance to develop predictive models of vapor pressures. In the present study, partial least squares (PLS) regression together with 15 theoretical molecular structural descriptors was used to develop quantitative predictive models for vapor pressures of PAHs at different temperatures. Two procedures were adopted to develop the optimal predictive models by eliminating redundant molecular structural descriptors. The cross-validated Q_(cum)~2 values for the obtained models have been found higher than 0,975, indicating good predictive ability and robustness of the models It has been shown that the intermolecular dispersive interactions played a leading role in governing the values of logPL. In addition to dispersive interactions, dipole-dipole interactions also played a secondary role in determining the magnitude of log Ps. In view of the scarceness of chemical standards for some PAHs, the difficulty in experimental determinations, and the high cost involved in experimental determinations, the obtained models should serve as a fast and simple first approximation of the vapor pressure values for PAHs at different environmental temperatures.
机译:多环芳烃(PAH)是典型的普遍存在的有机污染物。蒸气压可以分为固体蒸气压(P_s)和(过冷的)液体蒸气压(P_L),它们是控制有机污染物环境归宿的关键物理化学性质。建立蒸气压预测模型非常重要。在本研究中,使用偏最小二乘(PLS)回归与15个理论分子结构描述符来开发不同温度下PAHs蒸气压的定量预测模型。通过消除多余的分子结构描述符,采用了两种程序来开发最佳的预测模型。已发现所获得模型的交叉验证Q_(cum)〜2值高于0,975,表明该模型具有良好的预测能力和鲁棒性已显示,分子间色散相互作用在控制logPL值中起主导作用。除了色散相互作用外,偶极-偶极相互作用在确定log Ps的大小方面也起着次要作用。鉴于某些多环芳烃的化学标准品匮乏,实验确定的困难以及实验确定涉及的高成本,所获得的模型应作为快速,简单地近似估算不同环境温度下多环芳烃的蒸气压值。

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