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用于可持续工艺设计的化学品环境相关性质的估算:基团贡献+(GC+)性质模型的开发和不确定性分析。

Estimation of environment-related properties of chemicals for design of sustainable processes: development of group-contribution+ (GC+) property models and uncertainty analysis.

机构信息

Computer Aided Process-Product Engineering Center (CAPEC), Department of Chemical and Biochemical Engineering, Technical University of Denmark, DK-2800, Kgs. Lyngby, Denmark.

出版信息

J Chem Inf Model. 2012 Nov 26;52(11):2823-39. doi: 10.1021/ci300350r. Epub 2012 Oct 23.

Abstract

The aim of this work is to develop group-contribution(+) (GC(+)) method (combined group-contribution (GC) method and atom connectivity index (CI) method) based property models to provide reliable estimations of environment-related properties of organic chemicals together with uncertainties of estimated property values. For this purpose, a systematic methodology for property modeling and uncertainty analysis is used. The methodology includes a parameter estimation step to determine parameters of property models and an uncertainty analysis step to establish statistical information about the quality of parameter estimation, such as the parameter covariance, the standard errors in predicted properties, and the confidence intervals. For parameter estimation, large data sets of experimentally measured property values of a wide range of chemicals (hydrocarbons, oxygenated chemicals, nitrogenated chemicals, poly functional chemicals, etc.) taken from the database of the US Environmental Protection Agency (EPA) and from the database of USEtox is used. For property modeling and uncertainty analysis, the Marrero and Gani GC method and atom connectivity index method have been considered. In total, 22 environment-related properties, which include the fathead minnow 96-h LC(50), Daphnia magna 48-h LC(50), oral rat LD(50), aqueous solubility, bioconcentration factor, permissible exposure limit (OSHA-TWA), photochemical oxidation potential, global warming potential, ozone depletion potential, acidification potential, emission to urban air (carcinogenic and noncarcinogenic), emission to continental rural air (carcinogenic and noncarcinogenic), emission to continental fresh water (carcinogenic and noncarcinogenic), emission to continental seawater (carcinogenic and noncarcinogenic), emission to continental natural soil (carcinogenic and noncarcinogenic), and emission to continental agricultural soil (carcinogenic and noncarcinogenic) have been modeled and analyzed. The application of the developed property models for the estimation of environment-related properties and uncertainties of the estimated property values is highlighted through an illustrative example. The developed property models provide reliable estimates of environment-related properties needed to perform process synthesis, design, and analysis of sustainable chemical processes and allow one to evaluate the effect of uncertainties of estimated property values on the calculated performance of processes giving useful insights into quality and reliability of the design of sustainable processes.

摘要

这项工作的目的是开发基于基团贡献(+)(GC(+))方法(基团贡献(GC)方法和原子连接性指数(CI)方法的组合)的属性模型,以提供可靠的有机化学品环境相关属性估计值以及估计属性值的不确定性。为此,使用了一种系统的属性建模和不确定性分析方法。该方法包括参数估计步骤,以确定属性模型的参数,以及不确定性分析步骤,以建立关于参数估计质量的统计信息,例如参数协方差、预测属性的标准误差和置信区间。对于参数估计,使用了来自美国环境保护署(EPA)数据库和 USEtox 数据库的广泛化学品(碳氢化合物、含氧化学品、含氮化学品、多功能化学品等)的大量实验测量属性值数据集。对于属性建模和不确定性分析,考虑了 Marrero 和 Gani GC 方法和原子连接性指数方法。总共对 22 种环境相关属性进行了建模和分析,其中包括黑头呆鱼 96 小时 LC(50)、大型蚤 48 小时 LC(50)、口服大鼠 LD(50)、水溶解度、生物浓缩因子、允许接触限值(OSHA-TWA)、光化学氧化潜力、全球变暖潜能、臭氧消耗潜能、酸化潜能、向城市空气排放(致癌和非致癌)、向大陆农村空气排放(致癌和非致癌)、向大陆淡水排放(致癌和非致癌)、向大陆海水排放(致癌和非致癌)、向大陆自然土壤排放(致癌和非致癌)和向大陆农业土壤排放(致癌和非致癌)。通过一个说明性示例突出了开发的属性模型在估计环境相关属性和估计属性值的不确定性方面的应用。所开发的属性模型提供了进行过程综合、设计和可持续化学过程分析所需的可靠环境相关属性估计值,并允许评估估计属性值的不确定性对计算过程性能的影响,从而深入了解可持续过程设计的质量和可靠性。

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