首页> 外文期刊>The Journal of Chemical Thermodynamics >Kinetic promotion of methane hydrate formation by combining anionic and silicone surfactants: Scalability promise of methane storage due to prevention of foam formation
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Kinetic promotion of methane hydrate formation by combining anionic and silicone surfactants: Scalability promise of methane storage due to prevention of foam formation

机译:通过组合阴离子和硅氧烷表面活性剂组合甲烷水合物形成的动力学促进:由于防止泡沫形成,甲烷储存的可扩展性承诺

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Methane storage in its solid hydrate form has recently come up as a rather attractive and low risk option for large scale storage of the gas owing to its mild storage conditions, high gas retention capacity and benign (non-explosive) character. However, it has its fair share of limitations with the slow rate of hydrate formation being one of the most prominent. The addition of surfactants like Sodium dodecyl sulfate (SDS) to the hydrate forming system significantly speeds up the process of methane hydrate formation but the large amount of foam generated by these surfactants during the process of hydrate formation and dissociation stands as a major roadblock towards the scaling up of the technology. In the current work, a small amount of a silicon based surfactant has been proposed to be used as antifoam in conjunction with an anionic surfactant SDS to eliminate the foam generation while at the same time promote the kinetics of methane hydrate formation. The idea is simple, cost effective and can be a potential game-changer in the quest to develop a commercially scalable hydrate based methane storage technology. (C) 2017 Elsevier Ltd.
机译:由于其温和的储存条件,高气体保留容量和良性(非爆炸性)特征,其固体水合物形式的甲烷储存最近占据了气体大规模储存的相当有吸引力和低的风险选择。但是,它具有其公平份额,水合物形成缓慢的局限性是最突出的。将表面活性剂(如十二烷基硫酸钠(SDS))添加到水合物成形系统中显着加速甲烷水合物形成的方法,但在水合物形成过程中,这些表面活性剂产生的大量泡沫和解离呈现为朝向的主要障碍扩大技术。在当前的工作中,已经提出了少量的基于硅表面活性剂与阴离子表面活性剂SDS一起用作消毒,以消除泡沫产生,同时促进甲烷水合物形成的动力学。这个想法简单,成本效益,并且可以是寻求开发商业可缩放的水合物的甲烷储存技术的潜在游戏变换器。 (c)2017年elestvier有限公司

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