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Formation and dissociation behaviors of SF6 hydrates in the presence of a surfactant and an antifoaming agent for hydrate-based greenhouse gas (SF6) separation

机译:SF6水合物在表面活性剂和基于水合物的温室气体(SF6)分离的消泡剂存在下的SF6水合物的形成和解离行为

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Sulfur hexafluoride (SF6), the most potent greenhouse gas, should be separated from gas mixtures for recycling and for mitigation of global warming. In this study, the formation and dissociation behaviors of SF6 hydrates in the presence of a surfactant (sodium dodecyl sulfate, SDS) and an antifoaming agent (antifoam A concentrate, AAC) were investigated, with a primary focus on kinetic, spectroscopic, and morphological analyses for hydrate-based SF6 separation. The optimum concentrations of SDS and AAC for SF6 hydrates were found to be 250 ppm and 1,500 ppm, respectively. The structure of SF6 hydrates in the presence of SDS and AAC was identified as structure II, indicating that SDS and AAC had no impact on hydrate structure. The formation behaviors of SF6 hydrates were thoroughly examined through gas uptake measurements, visual observation, and in-situ Raman spectroscopy. The addition of SDS 250 ppm significantly accelerated the formation rate of SF6 hydrate and the additional injection of AAC did not inhibit the promoting effect of SDS. Visual observation, temperature profiles, and volume of retrieved gas during the dissociation of SF6 hydrates clearly demonstrated that SDS also had a promoting effect on SF6 hydrate dissociation and its effect was slightly diminished with the addition of AAC, although AAC showed a powerful defoaming effect during the dissociation of SF6 hydrates. The experimental results obtained in this study will be very useful for accelerating the formation rate of SF6 hydrates using SDS and for solving the foaming problem using AAC in the design and operation of the gas hydrate-based SF6 separation process.
机译:六氟化硫(SF6),最有效的温室气体,应与气体混合物分开,用于回收和减轻全球变暖。在该研究中,研究了SF6水合物在表面活性剂(十二烷基硫酸钠,SDS)和消泡剂(消泡剂浓缩物,AAC)存在下的形成和解离行为,主要关注动力学,光谱和形态学基于水合物的SF6分离分析。 SDS和AAC对于SF6水合物的最佳浓度分别为250ppm和1,500ppm。在SDS和AAc存在下,SF6水合物的结构被鉴定为结构II,表明SDS和AAC对水合物结构没有影响。通过气体吸收测量,视觉观察和原位拉曼光谱彻底检查SF6水合物的形成行为。 SDS 250 ppm的添加显着加速了SF6水合物的形成速率,并且额外的AAC注射不抑制SDS的促进作用。在SF6水合物解离过程中的视觉观察,温度曲线和检索气体的体积清楚地表明,SDS也对SF6水合物解离的促进作用,并且在添加AAC时,其效果略微减少,尽管AAC在此期间表现出强大的消泡效果SF6水合物的解离。本研究中获得的实验结果对于使用SDS加速SF6水合物的形成速率非常有用,并在基于气水合物的SF6分离过程的设计和操作中使用AAC解决发泡问题。

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