摘要
通过2.45GHz微波辐射实验,研究了甲烷水合物在微波电磁场中的稳定性和加热分解规律。实验结果表明,利用微波强化分解甲烷水合物主要依靠热效应,甲烷水合物自身的动力学非稳定条件及液态水协同增强热效应是微波热激法的作用条件。对于未冷冻且未降压的甲烷水合物/水体系微波作用效果最佳,应先微波加热后再结合降压分解。冷冻后未降压的甲烷水合物/冰体系的分解造成介电损耗的急剧变化,分解速率和微波加热速率显著改善。冷冻后降压的甲烷水合物/冰体系在微波场中仍处于极低分解速率的自保护区域,不适宜微波分解。
The stability and the dissociation process of methane hydrate were experimentally studied under 2.45 GHz microwave radiation. The results showed that intensification of the dissociation by microwave radiation depended on the thermal effect, and the dynamical instability of the methane hydrate and its synergistic thermal effect with liquid water were the microwave stimulation preconditions. The dissociation by microwave heating was better for the hydrate/water system without depressurization and freezing. Conducting the microwave heating before depressurization was proposed. The melting of the methane hydrate/ice system led to dramatic variation of the dielectric loss, as a result the dissociation rate and the microwave heating rate were improved. The frozen and depressurized methane hydrate existed in a self-preservation region with very low dissociation rate, which was unsuitable for the microwave dissociation.
出处
《石油化工》
CAS
CSCD
北大核心
2011年第7期700-704,共5页
Petrochemical Technology
基金
国家自然科学基金项目(50676097
50876107)
国家重点基础研究发展规划项目(2009CB219504)
国家高技术研究发展计划项目(2009AA09A202-01)
关键词
甲烷水合物
分解
微波
methane hydrate
dissociation
microwave