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Methane hydrate formation in confined nanospace can surpass nature

机译:受限纳米空间中甲烷水合物的形成可能超过自然界

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Natural methane hydrates are believed to be the largest source of hydrocarbons on Earth. These structures are formed in specific locations such as deep-sea sediments and the permafrost based on demanding conditions of high pressure and low temperature. Here we report that, by taking advantage of the confinement effects on nanopore space, synthetic methane hydrates grow under mild conditions (3.5?MPa and 2?°C), with faster kinetics (within minutes) than nature, fully reversibly and with a nominal stoichiometry that mimics nature. The formation of the hydrate structures in nanospace and their similarity to natural hydrates is confirmed using inelastic neutron scattering experiments and synchrotron X-ray powder diffraction. These findings may be a step towards the application of a smart synthesis of methane hydrates in energy-demanding applications (for example, transportation).
机译:天然甲烷水合物被认为是地球上最大的碳氢化合物来源。这些结构是根据高压和低温的苛刻条件在特定位置形成的,例如深海沉积物和多年冻土。在这里我们报告说,通过利用对纳米孔空间的限制作用,合成甲烷水合物在温和的条件下(3.5?MPa和2?C)生长,动力学(在几分钟之内)比自然快,完全可逆且名义上可逆。模仿自然的化学计量。使用非弹性中子散射实验和同步加速器X射线粉末衍射,可以确认纳米空间中水合物结构的形成及其与天然水合物的相似性。这些发现可能是迈向智能合成甲烷水合物在能源需求应用(例如运输)中迈出的一步。

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