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Effect of KCl and MgCl2 on the kinetics of methane hydrate formation and dissociation in sandy sediments

机译:KCl和MgCl2对含沙沉积物中甲烷水合物形成和分解动力学的影响

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Natural gas hydrate is one of the potential energy resources in the future. However, the extraction of energy from hydrates remains uncertain due to limited understanding on how hydrates are formed and dissociated under different perturbations. More than 90% of NGH resource exists within marine location where salts are present. In this study, we investigated the formation and dissociation behavior of methane hydrate in the presence of magnesium chloride (MgCl2) and potassium chloride (MCl), two salts found in seawater, at 1.5 wt% and 3.0 wt%; and compared it with the cases of water and NaCl from our previous work. We found that on top of thermodynamic inhibition, both MgCl2 and MCl act as kinetic inhibitors on hydrate formation, retarding the rate of formation - with MCl exhibiting a weaker inhibition compared to MgCl2. For hydrate dissociation via thermal stimulation, we demonstrated that hydrate dissociates more rapidly in the presence of salts as compared to water despite a comparable temperature driving force (Delta T = 5.3 K) applied. Our results indicated that the weaker thermodynamic inhibitor, MCl, has a milder kinetic inhibition effect on hydrate formation and a weaker promoting effect on hydrate dissociation as compared to MgCl2 and NaCl. (C) 2017 Elsevier Ltd. All rights reserved.
机译:天然气水合物是未来的潜在能源之一。然而,由于对水合物如何在不同的扰动下形成和分解的理解有限,从水合物中提取能量仍然不确定。超过90%的NGH资源存在于存在盐的海洋位置。在这项研究中,我们研究了在海水中发现的两种盐氯化镁(MgCl2)和氯化钾(MCl)在1.5 wt%和3.0 wt%时甲烷水合物的形成和离解行为;并将其与我们先前工作中的水和氯化钠情况进行了比较。我们发现,除了热力学抑制作用以外,MgCl2和MCl均充当水合物形成的动力学抑制剂,从而阻碍了水合物的形成速度-与MgCl2相比,MCl的抑制作用更弱。对于通过热刺激进行水合物分解,我们证明了与水相比,在盐的存在下水合物的分解速度更快,尽管施加了相当的温度驱动力(Delta T = 5.3 K)。我们的结果表明,与MgCl2和NaCl相比,较弱的热力学抑制剂MCl对水合物的形成具有较缓和的动力学抑制作用,而对水合物离解的促进作用较弱。 (C)2017 Elsevier Ltd.保留所有权利。

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