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首页> 外文期刊>Journal of Chemical and Engineering Data: the ACS Journal for Data >High-Pressure Phase Equilibria of Tertiary-Butylamine Hydrates with and without Hydrogen
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High-Pressure Phase Equilibria of Tertiary-Butylamine Hydrates with and without Hydrogen

机译:含或不含氢的叔丁胺水合物的高压相平衡

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Thermodynamic stability boundaries of the simple tertiary-butylamine (t-BA) hydrate and t-BA+hydrogen (H-2) mixed hydrate were investigated at a pressure up to approximately 100 MPa. All experimental results from the phase equilibrium measurement, in situ Raman spectroscopy, and powder X-ray diffraction analysis arrive at the single conclusion that the t-BA hydrates, under pressurization with H-2, are transformed from the structure VI simple t-BA hydrate into the structure II t-BA+H-2 mixed hydrate. The phase transition point on the hydrate stability boundary in the mother aqueous solutions with the t-BA mole fractions (x(t)-BA) of 0.056 and 0.093 is located at (2.35 MPa, 267.39 K) and (25.3 MPa, 274.19 K), respectively. On the other hand, in the case of the pressurization by decreasing the sample volume instead of supplying H-2, the simple t-BA hydrate retains the structure VI at pressures up to 112 MPa on the thermodynamic stability boundary.
机译:在高达约100 MPa的压力下研究了简单的叔丁胺(t-BA)水合物和t-BA +氢(H-2)混合水合物的热力学稳定性边界。来自相平衡测量,原位拉曼光谱和粉末X射线衍射分析的所有实验结果得出的唯一结论是,在H-2加压下,t-BA水合物由结构VI简单的t-BA转化而来。水合物变成结构II的t-BA + H-2混合水合物。 t-BA摩尔分数(x(t)-BA)为0.056和0.093的母水溶液中水合物稳定性边界上的相变点位于(2.35 MPa,267.39 K)和(25.3 MPa,274.19 K ), 分别。另一方面,在通过减小样品体积而不是供应H-2进行加压的情况下,简单的t-BA水合物在热力学稳定性边界上在高达112 MPa的压力下保留了结构VI。

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