Effect of Surfactants on the Synthesis and Dissociation of Gas Hydrates

Fire Pub Date : 2024-07-09 DOI:10.3390/fire7070240
Sergey Misyura, Vladimir Morozov, Pavel Strizhak, N. Shlegel, I. Donskoy
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Abstract

The synthesis and dissociation of methane hydrate and carbon dioxide hydrate were studied. Nonflammable gas hydrates can be used to extinguish flames in confined spaces. To increase the extinguishing efficiency, it is necessary to increase the dissociation rate (gas release rate) by using surfactant. The work investigates gas hydrates synthesized using sodium dodecyl sulfate (SDS). Experimental studies were carried out in wide ranges of surfactant concentration, the number of the stirrer revolutions and the initial water volume. To achieve the maximum rate of synthesis and dissociation, optimization of the specified parameters was performed. The influence of the key parameters on the dissociation rate was investigated experimentally and theoretically. The novelty of the work lies in solving a complex of interrelated tasks on the synthesis and dissociation of gas hydrate. It is shown that in order to achieve the maximum dissociation rate of carbon dioxide hydrate, it is necessary to optimize the following parameters: the diameter of the particles and their porosity, the porosity of the layer and the external heat flux.
表面活性剂对气体水合物合成和解离的影响
研究了甲烷水合物和二氧化碳水合物的合成和解离。不可燃气体水合物可用于熄灭密闭空间中的火焰。为了提高灭火效率,有必要使用表面活性剂提高解离率(气体释放率)。本研究调查了使用十二烷基硫酸钠(SDS)合成的气体水合物。实验研究在表面活性剂浓度、搅拌器转数和初始水量的较大范围内进行。为了达到最大的合成和解离速率,对指定参数进行了优化。实验和理论研究了关键参数对解离率的影响。这项工作的新颖之处在于解决了气体水合物合成和解离方面相互关联的复杂任务。研究表明,为了实现二氧化碳水合物的最大解离率,必须优化以下参数:颗粒直径及其孔隙率、层孔隙率和外部热通量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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