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The structure of methane hydrate under geological conditions a combined Rietveld and maximum entropy analysis

机译:Rietveld和最大熵分析相结合的地质条件下甲烷水合物的结构

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We present a study of the structure of a fully deuterated methane hydrate under the geological conditions found in the world's oceans.In situ high-resolution neutron diffraction experiments have been performed at temperatures of 220,275,and 280 K and a pressure of 100 bar,corresponding to the conditions at 1000 m water depth.The data were analyzed with a combination of Rietveld refinement and maximum entropy methods.From the Rietveld refinement,precise atomic parameters of the host lattice could be determined,indicating increasing distortions of the structure of the cages at elevated temperatures and pressures.Debye-Waller factors of the encaged CD_4 molecules have been found to exceed the values of the Debye-Waller factors of the D_2O molecules considerably.In the large cage of structure type I the thermal center-of-mass displacements of the guests are 5-10 times larger than those of the water molecules.From the maximum entropy analysis maps of the scattering length density have been obtained,showing details of the vibrational amplitudes of the atoms in methane hydrate.The Debye-Waller factors of all molecules have been found to deviate considerably from a simple spherical geometry.
机译:我们对世界海洋中存在的地质条件下完全氘化的甲烷水合物的结构进行了研究。在220,275、280 K和100 bar的压力下进行了原位高分辨率中子衍射实验结合Rietveld精细化和最大熵方法对数据进行了分析。通过Rietveld精细化,可以确定主体晶格的精确原子参数,表明笼形结构的变形不断增加。发现被包裹的CD_4分子的Debye-Waller因子大大超过了D_2O分子的Debye-Waller因子的值。在结构I的大型笼中,热重心位移为客体比水分子大5-10倍。根据最大熵分析图,得到了散射长度密度得到的结果显示了甲烷水合物中原子的振动幅度的细节。已发现所有分子的Debye-Waller因子与简单的球形几何结构有很大的偏差。

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