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A Way towards Reliable Predictive Methods for the Prediction of Physicochemical Properties of Chemicals Using the Group Contribution and other Methods

机译:一种使用基团贡献和其他方法预测化学品物理化学性质的可靠预测方法的途径

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Physicochemical properties of chemicals as referred to in this review include, for example, thermodynamic properties such as heat of formation, boiling point, toxicity of molecules and the fate of molecules whenever undergoing or accelerating (catalytic) a chemical reaction and therewith about chemical equilibrium, that is, the equilibrium in chemical reactions. All such properties have been predicted in literature by a variety of methods. However, for the experimental scientist for whom such predictions are of relevance, the accuracies are often far from sufficient for reliable application We discuss current practices and suggest how one could arrive at better, that is sufficiently accurate and reliable, predictive methods. Some recently published examples have shown this to be possible in practical cases. In summary, this review focuses on methodologies to obtain the required accuracies for the chemical practitioner and process technologist designing chemical processes. Finally, something almost never explicitly mentioned is the fact that whereas for some practical cases very accurate predictions are required, for other cases a qualitatively correct picture with relatively low correlation coefficients can be sufficient as a valuable predictive tool. Requirements for acceptable predictive methods can therefore be significantly different depending on the actual application, which are illustrated using real-life examples, primarily with industrial relevance. Furthermore, for specific properties such as the octanol-water partition coefficient more close collaboration between research groups using different methods would greatly facilitate progress in the field of predictive modelling.
机译:本文中提到的化学物质的物理化学性质包括,例如热力学性质,例如形成热,沸点,分子毒性和分子命运,无论何时经历或加速(催化)化学反应并由此进行化学平衡,即化学反应中的平衡。所有这些特性在文献中已经通过多种方法进行了预测。但是,对于与这样的预测相关的实验科学家来说,准确度常常远远不足以进行可靠的应用。我们讨论了当前的实践,并提出了一种可以达到更好效果的方法,即足够准确和可靠的预测方法。最近发表的一些例子表明,在实际情况下这是可能的。总而言之,本综述着重于为化学从业人员和工艺技术人员设计化学过程获取所需精度的方法。最后,几乎从来没有明确提到过的事实是,在某些实际情况下,需要非常准确的预测,而在其他情况下,具有相对较低的相关系数的定性正确图片可以作为有价值的预测工具。因此,根据实际应用,可接受的预测方法的要求可能会有很大的不同,这是通过使用实际示例(主要是与工业相关的示例)进行说明的。此外,对于诸如辛醇-水分配系数之类的特定属性,研究小组之间使用不同方法的更紧密协作将极大地促进预测建模领域的进步。

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