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Insights Gained from an Approximate Analytical Solution of the Evaporation Model Used by ConsExpo Web

机译:从Consexpo Web使用的蒸发模型的近似分析解决方案中获得的见解

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摘要

Evaporation of chemicals is an important source of inhalative exposure. We analyzed here the ConsExpo evaporation model, which is characterized by a set of nonlinear differential equations only solvable by numerical means. It shows qualitatively different behavior for different parameters, but the exact conditions remain unclear. This article presents an approximate analytical solution of the ConsExpo evaporation model, derived by using a specific linearization of the nonlinear equations valid for small concentrations. From this solution, three different boundary cases or regimes are found: quick release, near equilibrium, and ventilation driven regime. Depending on the evaporation regime, different parameters influence peak substance air concentration: Quick release regime: total substance amount and room volume; near equilibrium regime: vapor pressure, substance concentration in the product, and molecular weight of the product matrix; ventilation driven regime: vapor pressure, substance concentration in the product, room volume, surface area, mass transfer coefficient, ventilation rate, and molecular weight of the product matrix. A graphical method is developed to display the position of a given scenario in relation to the three regimes. Thus, the approximate analytical solution allows for a given situation to prioritize research for reducing uncertainty of the most sensitive parameters and helps to identify promising risk management measures.
机译:化学品的蒸发是吸入暴露的重要来源。我们在这里分析了Consexpo蒸发模型,其特征在于仅通过数值手段可解的一组非线性微分方程。它显示了不同参数的定性不同的行为,但确切的条件仍然不清楚。本文介绍了通过使用对小浓度有效的非线性方程的特定线性化来源的Consexpo蒸发模型的近似分析解。从该解决方案中,发现了三种不同的边界案例或制度:快速释放,近均衡和通风驱动的制度。根据蒸发制度,不同的参数影响峰值物质空气浓度:快速释放制度:总物质量和房间量;近均衡制度:蒸气压,产物物质浓度,产品基质的分子量;通风驱动制度:蒸气压,产品物质浓度,室积,表面积,质量传递系数,通风率和产物基质的分子量。开发了一种图形方法以显示与三个方案相关的给定场景的位置。因此,近似分析解决方案允许给定情况优先考虑降低最敏感参数的不确定性并有助于确定有前途的风险管理措施。

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