...
首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Sequestering carbon dioxide into complex structures of naturally occurring gas hydrates
【24h】

Sequestering carbon dioxide into complex structures of naturally occurring gas hydrates

机译:将二氧化碳隔离成天然存在的天然气水合物的复杂结构

获取原文
获取原文并翻译 | 示例

摘要

Large amounts of CH4 in the form of solid hydrates are stored on continental margins and in permafrost regions. If these CH4 hydrates could be converted into CO2 hydrates, they would serve double duty as CH4 sources and CO2 storage sites. We explore here the swapping phenomenon occurring in structure l (sl) and structure II (sil) CH4 hydrate deposits through spectroscopic analyses and its potential application to CO2 sequestration at the preliminary phase. The present 85% CH4 recovery rate in sl CH4 hydrate achieved by the direct use of binary N-2 + CO2 guests is surprising when compared with the rate of 64% for a pure CO2 guest attained in the previous approach. The direct use of a mixture of N-2 + CO2 eliminates the requirement of a CO2 separation/purification process. in addition, the simultaneously occurring dual mechanism of CO2 sequestration and CH4 recovery is expected to provide the physicochemical background required for developing a promising large-scale approach with economic feasibility. In the case of sill CH4 hydrates, we observe a spontaneous structure transition of sll to sl during the replacement and a cage-specific distribution of guest molecules. A significant change of the lattice dimension caused by structure transformation induces a relative number of small cage sites to reduce, resulting in the considerable increase of CH4 recovery rate. The mutually interactive pattern of targeted guest-cage conjugates possesses important implications for the diverse hydrate-based inclusion phenomena as illustrated in the swapping process between CO2 stream and complex CH4 hydrate structure.
机译:固态水合物形式的大量CH4存储在大陆边缘和多年冻土地区。如果这些CH4水合物可以转化为CO2水合物,它们将作为CH4源和CO2储存位点发挥双重作用。我们在这里通过光谱分析探讨了结构l(sl)和结构II(sil)CH4水合物沉积物中发生的交换现象及其在初步阶段对CO2隔离的潜在应用。通过直接使用二元N-2 + CO2宾气,目前在sl CH4水合物中的CH4回收率达到85%,这与之前方法中纯CO2宾气的64%回收率相比是令人惊讶的。 N-2 + CO2混合物的直接使用消除了对CO2分离/纯化过程的需求。另外,同时发生的二氧化碳封存和甲烷回收的双重机制有望为开发具有经济可行性的有前途的大规模方法提供所需的物理化学背景。在基台CH4水合物的情况下,我们观察到置换过程中sll到sl的自发结构转变和来宾分子的笼状分布。由结构转变引起的晶格尺寸的显着变化导致较小笼形位点的相对数量减少,从而导致CH4回收率的显着提高。靶向客笼结合物的相互作用模式对多种水合包合物具有重要意义,如CO2物流与复杂CH4水合物结构的交换过程所示。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号