...
首页> 外文期刊>Journal of Chemical and Engineering Data: the ACS Journal for Data >Sintering Process Observations on Gas Hydrates under Hydrate-Stable and Self-Preservation Conditions
【24h】

Sintering Process Observations on Gas Hydrates under Hydrate-Stable and Self-Preservation Conditions

机译:水合物稳定自保条件下天然气水合物的烧结过程观察

获取原文
获取原文并翻译 | 示例

摘要

Clathrate hydrates have recently received attention as novel storage and transportation materials of natural gases. For the economical storage or transportation of the produced natural gas hydrates, the effect of sintering should be considered because the hydrate particles would be stored in relatively moderate conditions. In the present study, microscopic observations were carried out on gas hydrate particles to investigate their sintering properties. The spherical gas hydrates were prepared from spherical ice particles with carbon dioxide (CO2) or ethane (C2H6) pressures higher than the dissociation ones. The initial sintering rate of CO2 hydrates at temperatures between 271.4 K and 278.2 K and pressures between 1.9 MPa and 2.9 MPa was similar to that of THF hydrate under saturated conditions reported previously. Conversely, the C2H6 hydrate particles were hard to sinter at temperatures between 273.5 K and 281.7 K and pressures between 0.5 MPa and 2.0 MPa. We discussed the sintering process of gas hydrates and their rate-determining process which depended on guest molecules under their stable conditions. The sintering of methane hydrate particles under stable and self-preservation conditions was also investigated to demonstrate the storage and transportation conditions of natural gas hydrate particles.
机译:笼形水合物作为天然气的新型储运材料最近受到关注。为了经济地存储或运输所生产的天然气水合物,应考虑烧结的效果,因为水合物颗粒将在相对中等的条件下存储。在本研究中,对气体水合物颗粒进行了显微镜观察,以研究其烧结性能。球形气体水合物是由球形冰粒制备的,其二氧化碳压力(CO2)或乙烷(C2H6)的压力高于解离压力。在271.4 K和278.2 K之间的温度和1.9 MPa和2.9 MPa之间的压力下,CO2水合物的初始烧结速率与先前报道的饱和条件下THF水合物的初始烧结速率相似。相反,C 2 H 6水合物颗粒在273.5 K至281.7 K之间的温度和0.5 MPa至2.0 MPa的压力下难以烧结。我们讨论了气体水合物的烧结过程及其决定速率的过程,它们在稳定条件下取决于客体分子。还研究了甲烷水合物颗粒在稳定和自保存条件下的烧结过程,以证明天然气水合物颗粒的储存和运输条件。

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