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Analysis of natural gas hydrate formation in sodium dodecyl sulfate and quartz sand complex system under saline environment

机译:盐水环境下油十烷基硫酸钠和石英砂复合体系中天然气水合物形成分析

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Under natural conditions, natural gas hydrate occurs in the pores of porous media found in the sedimentary layer. Thus, the rapid formation and basic properties of the hydrate in the porous medium must be studied. Quartz sand with different particle sizes compounded with Sodium Dodecyl Sulfate solution was used to study the hydrate formation in the system at 275.15K and 6MPa under a saline environment. Results were as follows. 1) Methane gas uptake in a saline system with NaCl concentration of 50mmol was higher than that in pure water. This finding indicated that although the salt is a thermodynamic inhibitor, low concentration of NaCl can promote the formation of hydrates. 2) In the initial stage of the experiment, the rate of hydrate formation in saline environment was significantly higher than that in pure water. After approximately 1h, the formation rate of hydrate in the compound system decreased under a saltwater environment and was lower than that in the complex system under pure water. 3) The hydrogen bond network inside the high-concentration NaCl solution was seriously damaged. In this case, water molecules cannot easily form a cage structure, and the presence of chlorine ions weakens the stability of a small amount of formed hydrate cage, thereby further inhibiting the formation of hydrates. However, in the low-concentration NaCl system, mass transfer is improved, and the formation of hydrate is promoted because of the weakened hydrogen bonding at the gas-liquid interface.
机译:在自然条件下,在沉积层中发现的多孔介质的孔中发生天然气水合物。因此,必须研究多孔介质中水合物的快速形成和基本性质。用不同颗粒尺寸与十二烷基硫酸钠溶液配混的石英砂,用于在盐水环境下在275.15K和6MPa下进行水合物形成。结果如下。 1)NaCl浓度为50mmol的盐水系统中的甲烷气体吸收高于纯水。该发现表明,尽管盐是热力学抑制剂,但低浓度的NaCl可以促进水合物的形成。 2)在实验的初始阶段,盐水环境中水合物形成的速率明显高于纯水中的速率。大约1小时后,化合物体系中水合物的形成速率在盐水环境下降低,低于纯水下的复杂系统中的水合物。 3)高浓度NaCl溶液内的氢键网络严重受损。在这种情况下,水分子不能容易地形成笼结构,并且氯离子的存在削弱了少量形成的水合物笼的稳定性,从而进一步抑制水合物的形成。然而,在低浓度的NaCl系统中,由于气液界面处的氢键合较弱的氢键合而促进了水合物的形成。

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