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Natural Gas Hydrates in the Krishna-Godavari Basin Sediments under Marine Reservoir Conditions: Thermodynamics and Dissociation Kinetics using Thermal Stimulation

机译:在海洋储层条件下Krishna-Godavari盆地沉积物中的天然气水合物:使用热刺激的热力学和解离动力学

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摘要

The gas hydrate deposits of the Krishna-Godavari (KG) basin in India have a huge potential of fulfilling the energy needs of the country for several years to come. We present a detailed thermodynamic and kinetic study of methane hydrate formation and dissociation in the presence of an actual Krishna-Godavari (KG) basin marine sediment sample at varying concentrations, i.e., 10, 20, and 35 wt %, in an aqueous solution. This study revealed the possibility of dual induction during methane hydrate formation in the presence of pure water and 10 wt % KG basin sediment solution. As the sediment concentration increased, the inhibition effect during the methane hydrate formation became more pronounced. The heat of dissociation values were found to be decreasing with the increase in sediment concentration. The kinetic experiments depicted the stochastic nature during the hydrate formation. The methane gas consumption and the rate of methane hydrate formation were found to be high in the case of pure water, followed by 10, 20, and 35 wt % sediment solutions. However, the initial rate of methane hydrate formation among the sediment solutions was observed to be high in the case of the 20 wt % sediment solution. The water-to-hydrate (W-H) conversion and gas-to-hydrate (G-H) conversion were found to be reducing with an increase in sediment concentration due to the confining effect of the water-gas system. During kinetic dissociation, the stable temperature range before the hydrates actually started dissociating was found to be increasing with sediment concentration, and the maximum temperature up to which the hydrates remained stable was similar to 6 degrees C. The rate of hydrate dissociation was high in the case of the pure water system and slightly decreased in the 10 wt % sediment solution; however, it was found to be almost similar in 20 and 35 wt % sediment solutions. This study will certainly add value toward a better understanding of the KG basin reservoir for future exploration of methane gas from the hydrate deposits.
机译:印度克里希纳 - 戈达瓦(KG)盆地的天然气水合物沉积物具有巨大的潜力,以满足该国的能源需求几年来。我们在实际的Krishna-GoDavari(KG)盆地船舶在水溶液中,在实际的Krishna-GoDavari(KG)盆地海洋沉积物样品存在下,在实际的Krishna-GoDavari(KG)盆地船上沉积物样品中的甲烷水合物形成和解离的详细热力学和动力学研究。该研究揭示了在纯水存在下甲烷水合物在纯水和10wt%kg盆地沉积物溶液中进行双诱导的可能性。随着沉积物浓度的增加,甲烷水合物形成过程中的抑制作用变得更加明显。发现解离值的热量随着沉积物浓度的增加而降低。动力学实验描绘了水合物形成过程中的随机性质。在纯水的情况下,发现甲烷气体消耗和甲烷水合物形成的速率高,其次是10,20和35wt%沉积物溶液。然而,在20wt%沉积物的情况下,观察到沉积物溶液中的甲烷水合物形成的初始速率高。发现水 - 水合物(W-H)转化物和煤气 - 水合物(G-H)转化率由于水 - 气体系统的限制而增加了沉积物浓度的增加。在动力学解离过程中,发现水合物实际开始分离前的稳定温度范围是随着沉积物浓度的增加,并且水合物保持稳定的最高温度与6摄氏度相似。水合物解离速率高纯水系统的情况,10wt%沉积物溶液中略微降低;然而,在20和35wt%的沉积物溶液中发现几乎相似。本研究肯定会增加对未来甲烷气体勘探从水合物沉积物勘探的高度理解的价值。

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  • 来源
    《Energy & fuels》 |2021年第10期|8685-8698|共14页
  • 作者单位

    Indian Inst Technol Madras Gas Hydrate & Flow Assurance Lab Petr Engn Program Dept Ocean Engn Chennai 600036 Tamil Nadu India|Indian Inst Technol Dept Chem Engn Mumbai 400076 Maharashtra India;

    Indian Inst Technol Madras Gas Hydrate & Flow Assurance Lab Petr Engn Program Dept Ocean Engn Chennai 600036 Tamil Nadu India|Rajiv Gandhi Inst Petr Technol Dept Petr Engn & Geol Sci Amethi 229304 India;

    Indian Inst Technol Madras Gas Hydrate & Flow Assurance Lab Petr Engn Program Dept Ocean Engn Chennai 600036 Tamil Nadu India;

    Indian Inst Technol Madras Gas Hydrate & Flow Assurance Lab Petr Engn Program Dept Ocean Engn Chennai 600036 Tamil Nadu India;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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