化学
氮气
分馏
甲烷
笼状水合物
水合物
氧气
无机化学
稳定同位素比值
平衡分馏
同位素分馏
氧同位素
气体成分
氮同位素
氧同位素比值循环
环境化学
天然气
作文(语言)
作者
Kaede Takizawa,Akihiro Hachikubo,Satoshi Takeya
标识
DOI:10.1021/acs.jced.5c00365
摘要
Knowledge of the isotope fractionation of guest molecules during natural gas hydrate formation may contribute to the understanding of the gas hydrate formation process. In this study, the stable isotope fractionation of nitrogen between gas and hydrate phases during the formation of nitrogen + oxygen and nitrogen + methane mixed-gas hydrates in the temperature range of (226–271) K was investigated, and the nitrogen isotopic fractionation factor αH–V of the guest gas was determined. In the nitrogen + oxygen system, the 103lnαH–V was +0.15 ± 0.03 in the case of air composition, and air hydrate was slightly concentrated 14N15N. As the composition of nitrogen decreased, 103lnαH–V changed from positive to negative. In contrast, in the nitrogen + methane system, 103lnαH–V increased with decreasing composition of nitrogen. The dependence of the nitrogen isotope fractionation factor on the composition of mixed gas may be due to the selective encapsulation of guest molecules in large and small cages comprising the crystallographic structure of gas hydrates. These observations suggested that light nitrogen (14N2) and heavy nitrogen (14N15N) were tend to be encapsulated in large and small cages, respectively.
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