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首页> 外文期刊>Chemical Engineering Research & Design: Transactions of the Institution of Chemical Engineers >Addition of malodorants to lighter gas - The phase equilibrium properties of mixtures of lighter gas and selected substances
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Addition of malodorants to lighter gas - The phase equilibrium properties of mixtures of lighter gas and selected substances

机译:在较轻的气体中添加恶臭剂-较轻的气体与选定物质的混合物的相平衡特性

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摘要

Relevant thermodynamic and phase behavior of mixtures created by adding malodorants to lighter gas to discourage its abuse have been studied. The influence of physical factors such as temperature, pressure and concentration of the selected substances with lighter gas is studied. This work represents one component in a larger study examining the feasibility of adding malodorants to lighter gas and focuses on the physical chemistry or chemical engineering aspects of the problem. An initial set of 27 compounds was selected based on deterrent effect (odor) in order to find suitable additives to lighter gas components. The aim is to find substances that not only have the correct physiological effect (discourage abuse) but also the correct physical behavior upon addition to lighter gas (solubility, phase behavior). Specifically the way the malodorant partitions between the vapor and liquid phase is modeled. Furthermore, addition of the malodorants should not affect the normal use of the lighter. Thus of the 27 initial components chosen, nine were found that could be suitable additives. In this work we used the thermodynamic models COSMOtherm - an activity coefficient model - and Cubic-Plus-Association (CPA) - an equation of state - to model the fluid phase and solubility behavior of the mixtures formed by the various additives with butane. (C) 2014 The Institution of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
机译:已经研究了通过向较轻的气体中添加恶臭剂以阻止其滥用而产生的混合物的相关热力学和相行为。研究了温度,压力和所选物质的浓度等物理因素对较轻气体的影响。这项工作代表了一项较大的研究的一个组成部分,该研究考察了在较轻的气体中添加恶臭剂的可行性,并着重于问题的物理化学或化学工程方面。根据威慑作用(气味)选择了最初的27种化合物,以便找到适合较轻气体组分的添加剂。目的是找到不仅具有正确的生理作用(滥用滥用)而且还具有在添加较轻的气体时具有正确的物理行为(溶解度,相行为)的物质。具体地说,是对恶臭剂在气相和液相之间分配的方式进行建模。此外,添加恶臭剂不应影响打火机的正常使用。因此,在选择的27种初始组分中,发现有9种可能是合适的添加剂。在这项工作中,我们使用热力学模型COSMOtherm(活度系数模型)和Cubic-Plus-Association(CPA)(状态方程)对由各种添加剂与丁烷形成的混合物的液相和溶解行为进行建模。 (C)2014化学工程师学会。由Elsevier B.V.发布。保留所有权利。

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