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比较 Antoine 参数来源,以在较宽温度范围内准确预测蒸气压。

Comparing Antoine parameter sources for accurate vapor pressure prediction across a range of temperatures.

机构信息

Division of Environmental Health Sciences, University of Minnesota School of Public Health, 420 Delaware St. SE, Minneapolis, MN 55455.

Exposure Assessment Solutions, LLC, 6045 N 27th St. Arlington, VA 22207, United States.

出版信息

Ann Work Expo Health. 2024 Apr 22;68(4):409-419. doi: 10.1093/annweh/wxae010.

Abstract

Determining the vapor pressure of a substance at the relevant process temperature is a key component in conducting an exposure assessment to ascertain worker exposure. However, vapor pressure data at various temperatures relevant to the work environment is not readily available for many chemicals. The Antoine equation is a mathematical expression that relates temperature and vapor pressure. The objective of this analysis was to compare Antoine parameter data from 3 independent data sources; Hansen, Yaws, and Custom data and identify the source that generates the most accurate vapor pressure values with the least bias, relative to the referent data set from the CRC Handbook of Chemistry and Physics. Temperatures predicted from 3 different Antoine sources across a range of vapor pressures for 59 chemicals are compared to the reference source. The results show that temperatures predicted using Antoine parameters from the 3 sources are not statistically significantly different, indicating that all 3 sources could be useful. However, the Yaws dataset will be used in the SDM 2.0 because the data is readily available and robust.

摘要

确定相关工艺温度下物质的蒸气压是进行暴露评估以确定工人暴露水平的关键组成部分。然而,许多化学物质在与工作环境相关的各种温度下的蒸气压数据并不容易获得。安托万方程是一种数学表达式,它将温度和蒸气压联系起来。本分析的目的是比较来自 3 个独立数据源(Hansen、Yaws 和自定义数据)的安托万参数数据,并确定哪个数据源生成的蒸气压值最准确,偏差最小,与 CRC 手工艺品和物理化学手册的参考数据集相比。比较了 3 种不同的安托万源在 59 种化学物质的不同蒸气压范围内预测的温度与参考源。结果表明,使用来自 3 个来源的安托万参数预测的温度在统计学上没有显著差异,这表明所有 3 个来源都可能有用。然而,Yaws 数据集将用于 SDM 2.0,因为该数据易于获取且可靠。

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