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首页> 外文期刊>Adsorption Science and Technology >Studies of the Adsorption of Organic Vapours by Metal Stearates and their Complexes with Octadecylamine in a Flow Impulse Regime by Piezoquartz Sensor Techniques
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Studies of the Adsorption of Organic Vapours by Metal Stearates and their Complexes with Octadecylamine in a Flow Impulse Regime by Piezoquartz Sensor Techniques

机译:压电石英传感器技术研究硬脂酸金属及其与十八烷基胺配合物在流动冲击条件下对有机蒸气的吸附

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摘要

The adsorption properties of metal (Co2+, Ni2+ and Cu2+) stearates and their coordination compounds with octadecylamine, as well as those of carbon nanotubes (CNTs), have been studied by piezoquartz resonator (PQR) sensor techniques in steady flow and flow impulse regimes for vapours of volatile organic compounds (VOCs), especially hydrocarbons.It was shown that the adsorption of hydrocarbon homologues onto each of the studied sensor coverings was characterized by a linear dependence between the logarithm of the Henry constant and the boiling points of the corresponding substances. Such individual linear dependencies were observed for a series of alkanes, cyclanes and aromatics. The slopes of these dependencies differed for different sensor coverings. This allowed discrimination between individual hydrocarbon analogues by using these coverings in a PQR sensor array in combination with the proposed flow impulse technique.
机译:硬脂酸盐及其与十八烷基胺的配位化合物对金属(Co 2 + ,Ni 2 + 和Cu 2 + )的吸附性能以及碳纳米管(CNTs)的碳纳米管已经通过压电石英谐振器(PQR)传感器技术在挥发性有机化合物(VOCs)尤其是碳氢化合物的蒸汽的稳态流动和流动脉冲状态下进行了研究。所研究的传感器覆盖物的特征在于亨利常数的对数与相应物质的沸点之间的线性相关性。对于一系列烷烃,环烷烃和芳烃,观察到了这样的个体线性依赖性。这些依赖性的斜率对于不同的传感器覆盖物是不同的。通过结合使用PQR传感器阵列中的这些覆盖层和所提出的流量脉冲技术,可以区分各个烃类似物。

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