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Biochemical reaction and diffusion in seafloor gas hydrate capillaries: Implications for gas hydrate stability

机译:海底天然气水合物毛细管中的生化反应和扩散:对天然气水合物稳定性的影响

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摘要

A one-dimensional mathematical model is presented to describe biochemical reactions and diffusion occurring within massive seafloor gas hydrates. Methanogenesis and anaerobic methane oxidation coupled with sulfate reduction are the two reactions analyzed with emphasis on gas hydrate stability. Many numerical simulations are being developed to predict gas hydrate formation, dissociation, and stability. The model complements these simulations as a subunit by incorporating the consequences of kinetic and transport processes occurring within seafloor gas hydrate capillaries. Better predictions of gas hydrate stability will assist in understanding the role of gas hydrates in the global carbon cycle. particularly as pertaining to global warming.
机译:提出了一个一维数学模型来描述大量海底天然气水合物中发生的生化反应和扩散。甲烷生成和厌氧甲烷氧化与硫酸盐还原反应是分析的两个反应,重点是天然气水合物的稳定性。正在开发许多数值模拟来预测天然气水合物的形成,离解和稳定性。该模型通过合并海底天然气水合物毛细管中发生的动力学过程和运输过程的结果,对这些模拟作为子单元进行了补充。更好的天然气水合物稳定性预测将有助于理解天然气水合物在全球碳循环中的作用。特别是有关全球变暖的问题。

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