...
首页> 外文期刊>RSC Advances >Study on methane hydrate formation in gas-water systems with a new compound promoter
【24h】

Study on methane hydrate formation in gas-water systems with a new compound promoter

机译:新型复合促进剂气水系统中甲烷水合物形成的研究

获取原文
获取原文并翻译 | 示例

摘要

The effects of a new promoter on the growth kinetics of methane hydrates were investigated using a visualized constant-pressure autoclave. The experimental results show that when the 1#, 2# and 3# unit promoter was compounded at a ratio of 2:1:1, the induction time was shortened greatly from 30 h to 0.64 h compared to the no promoter situation. Meanwhile, there was a larger amount of hydrate formation, and final hydrate volume fraction was 83.652%. Then, the hydrate formation characteristics under different additive dosages (500 ppm, 1000 ppm, 2000 ppm, 5000 ppm) and different subcooling degrees (2.5 degrees C, 3.5 degrees C, 4.5 degrees C, 5.5 degrees C, 6.5 degrees C) were investigated. The new promoter at these 4 concentrations could effectively shorten the induction time. And the higher the concentration, the smaller the induction time (0.22 h at 5000 ppm). It was also found that gas consumption and hydrate production rate increased first and then decreased with increasing promoter dosage. Finally, the optimal dosage was determined to be 2000 ppm, at which the induction time was shortened to 0.52 h, and the final hydrate volume fraction was 85.74%. Under the dosage of 2000 ppm and the subcooling degree of 6.5 degrees C, the shortest induction time (0.29 h) and the maximum formation rate (20.950 ml h(-1)) were obtained among all the experimental conditions in this work. Moreover, the greater the subcooling degree, the faster the hydrate nucleation, and the shorter the induction time. However, if the subcooling degree was too high, a hydrate layer formed rapidly at the gas-liquid interface in the autoclave, which would hinder hydrate formation and lead to the reduction of hydrate volume fraction to 60.153%. Therefore, a reasonable selection of the proportioning of promoters, dosage of the promoter and formation temperature could significantly promote the formation of hydrates. The findings in this work are meaningful to hydrate associated applications and can provide useful references for the selection of hydrate promoters.
机译:使用可视化恒压高压釜研究了新启动子对甲烷水合物生长动力学的影响。实验结果表明,当1#,2#和3#单位启动子以2:1:1的比例混合时,与NO促进剂情况相比,诱导时间从30小时缩短到0.64h。同时,较大量的水合物形成,最终水合物体积分数为83.652%。然后,研究了不同添加剂剂量下的水合物形成特性(500ppm,1000ppm,2000ppm,5000ppm)和不同的过冷度(2.5℃,3.5℃,4.5℃,5.5℃,6.5℃) 。这4个浓度的新启动子可以有效地缩短诱导时间。浓度越高,诱导时间越小(0.22小时,5000ppm)。还发现燃气消耗和水合物生产率首先增加,然后随着增量剂量的增加而降低。最后,确定最佳剂量为2000ppm,诱导时间缩短为0.52小时,最终水合物体积分数为85.74%。在2000ppm的剂量和6.5℃的过冷度下,在这项工作的所有实验条件下获得最短的诱导时间(0.29小时)和最大形成速率(20.950ml H(-1))。此外,过冷度越大,水合物成核的速度越快,诱导时间越短。然而,如果过冷度太高,则在高压釜中的气液界面处快速形成的水合物层,其会阻碍水合物形成并导致水合物体积分数的降低至60.153%。因此,合理选择启动子的比例,启动子剂量和形成温度可以显着促进水合物的形成。本作工作中的发现对于水合物相关的应用有意义,可以为选择水合物启动子提供有用的参考。

著录项

  • 来源
    《RSC Advances 》 |2019年第57期| 共13页
  • 作者

  • 作者单位
  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学 ;
  • 关键词

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