Ren Jun-Jie, Lu Zhi-Lin, Long Zhen, Liang Deqing
CAS Key Laboratory of Gas Hydrate, Guangzhou Institute of Energy Conversion, Chinese Academy of Sciences Guangzhou 510640 China
Guangdong Provincial Key Laboratory of New and Renewable Energy Research and Development Guangzhou Guangdong 510640 China.
RSC Adv. 2020 Apr 17;10(26):15320-15327. doi: 10.1039/c9ra10998f. eCollection 2020 Apr 16.
In this work, a series of experiments were carried out to study the kinetic inhibition performance of -butyl--methylpyrrolidinium tetrafluoroborate ([BMP][BF]), poly(-vinylcaprolactam) (PVCap) and compound inhibitor systems on methane hydrate from both macroscopic and microscopic perspectives. In the macroscopic experiments, the influence of the concentration, the ratio of inhibitors, the subcooling on the induction time and gas consumption rate of methane hydrate were studied. The results indicated that [BMP][BF] could inhibit the growth rate of CH hydrate, but failed to delay the nucleation. An improved inhibitory effect was observed by combining [BMP][BF] and PVCap, and the optimal ratio of the two inhibitors was obtained to gain the best inhibition performance. Furthermore, the microstructure and morphology of methane hydrate crystals formed in different inhibitor systems were investigated through powder X-ray diffraction (PXRD), Raman spectroscopy and scanning electron cryomicroscopy (Cryo-SEM) methods. It was found that [BMP][BF] and PVCap had different influences on the large cage occupancy by CH and the morphology of methane hydrate.
在本工作中,进行了一系列实验,从宏观和微观角度研究了1-丁基-3-甲基吡咯烷四氟硼酸盐([BMP][BF₄])、聚(N-乙烯基己内酰胺)(PVCap)及复合抑制剂体系对甲烷水合物的动力学抑制性能。在宏观实验中,研究了抑制剂浓度、抑制剂比例、过冷度对甲烷水合物诱导时间和气体消耗速率的影响。结果表明,[BMP][BF₄]可抑制CH₄水合物的生长速率,但不能延迟成核。通过将[BMP][BF₄]与PVCap复配观察到了增强的抑制效果,并获得了两种抑制剂的最佳比例以实现最佳抑制性能。此外,通过粉末X射线衍射(PXRD)、拉曼光谱和扫描电子低温显微镜(Cryo-SEM)方法研究了在不同抑制剂体系中形成的甲烷水合物晶体的微观结构和形态。发现[BMP][BF₄]和PVCap对CH₄在大笼中的占有率及甲烷水合物的形态有不同影响。