CIESC Journal ›› 2021, Vol. 72 ›› Issue (4): 2094-2101.DOI: 10.11949/0438-1157.20200982
• Catalysis, kinetics and reactors • Previous Articles Next Articles
LI Mengyang(),GAO Ming(),ZUO Qirong,ZHANG Lixin,ZHAO Yugang
Received:
2020-07-20
Revised:
2021-01-21
Online:
2021-04-05
Published:
2021-04-05
Contact:
GAO Ming
通讯作者:
高明
作者简介:
李梦钖(1996—),男,硕士研究生,基金资助:
CLC Number:
LI Mengyang, GAO Ming, ZUO Qirong, ZHANG Lixin, ZHAO Yugang. Visualization investigation of TBAB hydrate formation in droplets on supercooled wall surfaces[J]. CIESC Journal, 2021, 72(4): 2094-2101.
李梦钖, 高明, 左启蓉, 章立新, 赵玉刚. 过冷壁面液滴中四丁基溴化铵水合物生成的可视化研究[J]. 化工学报, 2021, 72(4): 2094-2101.
Add to citation manager EndNote|Ris|BibTeX
过冷度/℃ | 10%TBAB晶体平均生长速率/(μm/s) | 20%TBAB晶体平均生长速率/(μm/s) | 30%TBAB晶体平均生长速率/(μm/s) |
---|---|---|---|
7 | — | 29.21 | — |
8 | 22.04 | 31.00 | — |
9 | 24.87 | 34.28 | 35.52 |
10 | 27.22 | 34.91 | 38.54 |
11 | 29.59 | 37.49 | 41.71 |
12 | 34.15 | 40.18 | 44.47 |
Table 1 Average growth rate of hydrate crystals in different concentrations of TBAB droplets
过冷度/℃ | 10%TBAB晶体平均生长速率/(μm/s) | 20%TBAB晶体平均生长速率/(μm/s) | 30%TBAB晶体平均生长速率/(μm/s) |
---|---|---|---|
7 | — | 29.21 | — |
8 | 22.04 | 31.00 | — |
9 | 24.87 | 34.28 | 35.52 |
10 | 27.22 | 34.91 | 38.54 |
11 | 29.59 | 37.49 | 41.71 |
12 | 34.15 | 40.18 | 44.47 |
1 | 聂江华, 樊栓狮, 郎雪梅, 等. TBAB水合物法脱除天然气中CO2[J]. 化工进展, 2011, 30(S2): 176-181. |
Nie J H, Fan S S, Lang X M, et al. Clathrate hydrate capture of CO2 from natural gas with TBAB[J]. Chemical Industry and Engineering Progress, 2011, 30(S2): 176-181. | |
2 | Østergaard K K, Tohidi B, Danesh A, et al. A novel approach for oil and gas separation by using gas hydrate technology[J]. Annals of the New York Academy of Sciences, 2000, 912(1): 832-842. |
3 | Wu B R, Horvat K, Mahajan D, et al. Free-conditioning dewatering of sewage sludge through in situ propane hydrate formation[J]. Water Research, 2018, 145: 464-472. |
4 | Colten S L, Lin F S, Tsao T C, et al. Hydrolysis losses in the hydrate desalination process: rate measurements and economic analysis[J]. Desalination, 1972, 11(1): 31-59. |
5 | Rasoolzadeh A, Javanmardi J, Mohammadi A H. An experimental study of the synergistic effects of BMIM-BF4, BMIM-DCA and TEACl aqueous solutions on methane hydrate formation[J]. Petroleum Science, 2019, 16(2): 409-416. |
6 | 樊栓狮. 天然气水合物储存与运输技术[M]. 北京: 化学工业出版社, 2005. |
Fan S S. The Conservation and Transportation of Natural Gas Hydrate [M]. Beijing: Chemical Industry Press, 2005. | |
7 | 雍宇, 史博会, 丁麟, 等. 水合物生成诱导期研究进展[J]. 化工进展, 2018, 37(2): 505-516. |
Yong Y, Shi B H, Ding L, et al. Research progress of hydrate formation induction time[J]. Chemical Industry and Engineering Progress, 2018, 37(2): 505-516. | |
8 | Yang L, Liu Y L, Zhang H Q, et al. The status of exploitation techniques of natural gas hydrate[J]. Chinese Journal of Chemical Engineering, 2019, 27(9): 2133-2147. |
9 | Oyama H, Shimada W, Ebinuma T, et al. Phase diagram, latent heat, and specific heat of TBAB semiclathrate hydrate crystals[J]. Fluid Phase Equilibria, 2005, 234(1/2): 131-135. |
10 | Hassan H, Pahlavanzadeh H. Thermodynamic modeling and experimental measurement of semi-clathrate hydrate phase equilibria for CH4 in the presence of cyclohexane (CH) and tetra-n-butyl ammonium bromide (TBAB) mixture[J]. Journal of Natural Gas Science and Engineering, 2020, 75: 103128. |
11 | Skovborg P, Ng H J, Rasmussen P, et al. Measurement of induction times for the formation of methane and ethane gas hydrates[J]. Chemical Engineering Science, 1993, 48(3): 445-453. |
12 | Amaro M I, Tajber L, Corrigan O I, et al. Co-spray dried carbohydrate microparticles: crystallisation delay/inhibition and improved aerosolization characteristics through the incorporation of hydroxypropyl-β-cyclodextrin with amorphous raffinose or trehalose[J]. Pharmaceutical Research, 2015, 32(1): 180-195. |
13 | Xu C G, Cai J, Li X S, et al. Integrated process study on hydrate-based carbon dioxide separation from integrated gasification combined cycle (IGCC) synthesis gas in scaled-up equipment[J]. Energy & Fuels, 2012, 26(10): 6442-6448. |
14 | Zhong Y, Rogers R E. Surfactant effects on gas hydrate formation[J]. Chemical Engineering Science, 2000, 55(19): 4175-4187. |
15 | Yamamura K, Fukuzaki J I, Mori Y H. Clathrate hydrate formation using liquid jets impinging on each other: an observational study using paired water jets or water and methylcyclohexane jets[J]. Chemical Engineering Science, 2011, 66(9): 1844-1858. |
16 | 方书起, 张欣悦, 李思齐, 等. 撞击流式反应器内水合物法分离沼气中CO2研究[J]. 化工学报, 2020, 71(5): 2099-2108. |
Fang S Q, Zhang X Y, Li S Q, et al. Investigation on separation of CO2 from biogas by hydrate method in impinging stream reactor[J]. CIESC Journal, 2020, 71(5): 2099-2108. | |
17 | Yang M J, Song Y C, Liu W G, et al. Effects of additive mixtures (THF/SDS) on carbon dioxide hydrate formation and dissociation in porous media[J]. Chemical Engineering Science, 2013, 90: 69-76. |
18 | 张学民, 李金平, 吴青柏, 等. 气体水合物生成过程强化方法研究进展[J]. 过程工程学报, 2013, 13(4): 715-719. |
Zhang X M, Li J P, Wu Q B, et al. Advances in methods for enhancing formation process of gas hydrate[J]. The Chinese Journal of Process Engineering, 2013, 13(4): 715-719. | |
19 | 白净, 李凌乾, 刘风莉, 等. 机械扰动强化气体水合物快速生成研究进展[J]. 化工进展, 2018, 37(1): 60-67. |
Bai J, Li L Q, Liu F L, et al. Progress of rapid formation of gas hydrate by mechanical disturbance[J]. Chemical Industry and Engineering Progress, 2018, 37(1): 60-67. | |
20 | Makogon Y F, Holditch S A. Experiments illustrate hydrate morphology and kinetics[J]. Oil and Gas Journal, 2001, 99(7): 45-50. |
21 | Koyanagi S, Ohmura R. Crystal growth of ionic semiclathrate hydrate formed in CO2 gas + tetrabutylammonium bromide aqueous solution system[J]. Crystal Growth & Design, 2013, 13(5): 2087-2093. |
22 | 杜娟. 低剂量抑制剂作用下水合物颗粒粘附作用及聚集机理研究[D]. 广州: 华南理工大学, 2011. |
Du J. Adhesion effects and agglomeration mechanism of hydrate particles in the presence of low dosage hydrate inhibitors[D]. Guangzhou: South China University of Technology, 2011. | |
23 | Ma Z W, Zhang P, Wang R Z, et al. Forced flow and convective melting heat transfer of clathrate hydrate slurry in tubes[J]. International Journal of Heat and Mass Transfer, 2010, 53(19/20): 3745-3757. |
24 | Shi M, Lang X M, Wang Y H, et al. Investigation of the growth kinetics of tetra-n-butylammonium bromide hydrate formation in small spaces[J]. Energy & Fuels, 2019, 33(4): 3473-3482. |
25 | Zhang H F, Zhao Y G, Lv R, et al. Freezing of sessile water droplet for various contact angles[J]. International Journal of Thermal Sciences, 2016, 101: 59-67. |
26 | Uchida T, Ebinuma T, Kawabata J, et al. Microscopic observations of formation processes of clathrate-hydrate films at an interface between water and carbon dioxide[J]. Journal of Crystal Growth, 1999, 204(3): 348-356. |
27 | 叶楠, 张鹏. TBAB水合物晶体生长过程的实验研究[J]. 过程工程学报, 2011, 11(5): 823-827. |
Ye N, Zhang P. Investigation on the growth of TBAB clathrate hydrate crystals[J]. The Chinese Journal of Process Engineering, 2011, 11(5): 823-827. | |
28 | 孙长宇, 黄强, 陈光进. 气体水合物形成的热力学与动力学研究进展[J]. 化工学报, 2006, 57(5): 1031-1039. |
Sun C Y, Huang Q, Chen G J. Progress of thermodynamics and kinetics of gas hydrate formation[J]. Journal of Chemical Industry and Engineering (China), 2006, 57(5): 1031-1039. | |
29 | Freer E M, Sami Selim M, Dendy Sloan E. Methane hydrate film growth kinetics[J]. Fluid Phase Equilibria, 2001, 185(1/2): 65-75. |
30 | 黄玲艳, 刘中良, 勾昱君, 等. 壁面温度对疏水表面上水滴冻结的影响[J]. 工程热物理学报, 2012, 33(6): 1009-1012. |
Huang L Y, Liu Z L, Gou Y J, et al. Effect of cold plate temperature on water droplet freezing on hydrophobic surface[J]. Journal of Engineering Thermophysics, 2012, 33(6): 1009-1012. | |
31 | 聂东冰, 张鹏, 马志伟, 等. 四丁基溴化铵水合物浆体导热系数测量研究[J]. 低温与超导, 2010, 38(6): 39-43, 57. |
Nie D B, Zhang P, Ma Z W, et al. Measurement of thermal conductivity of TBAB clathrate hydrate slurry[J]. Cryogenics and Superconductivity, 2010, 38(6): 39-43, 57. | |
32 | Ogoshi H, Takao S. Air-conditioning system using clathrate hydrate slurry[J]. JFE Technical Report, 2004, 3(3): 1-5. |
33 | Shimada W, Ebinuma T, Oyama H, et al. Free-growth forms and growth kinetics of tetra-n-butyl ammonium bromide semi-clathrate hydrate crystals[J]. Journal of Crystal Growth,2005, 274(1): 246-250. |
34 | 钱文强, 张鹏. 四丁基溴化铵水合物结晶过程的可视化研究[J]. 制冷学报, 2012, 33(3): 35-39. |
Qian W Q, Zhang P. Visualization study on growth process of tetra-n-butyl ammonium bromide hydrate[J]. Journal of Refrigeration, 2012, 33(3): 35-39. |
[1] | Xin WU, Jianying GONG, Long JIN, Yutao WANG, Ruining HUANG. Study on the transportation characteristics of droplets on the aluminium surface under ultrasonic excitation [J]. CIESC Journal, 2023, 74(S1): 104-112. |
[2] | Xiaoqing ZHOU, Chunyu LI, Guang YANG, Aifeng CAI, Jingyi WU. Icing kinetics and mechanism of droplet impinging on supercooled corrugated plates with different curvature [J]. CIESC Journal, 2023, 74(S1): 141-153. |
[3] | Lisen BI, Bin LIU, Hengxiang HU, Tao ZENG, Zhuorui LI, Jianfei SONG, Hanming WU. Molecular dynamics study on evaporation modes of nanodroplets at rough interfaces [J]. CIESC Journal, 2023, 74(S1): 172-178. |
[4] | Xuanzhi HE, Yongqing HE, Guiye WEN, Feng JIAO. Ferrofluid droplet neck self-similar breakup behavior [J]. CIESC Journal, 2023, 74(7): 2889-2897. |
[5] | Weiming SHAO, Wenxue HAN, Wei SONG, Yong YANG, Can CHEN, Dongya ZHAO. Dynamic soft sensor modeling method based on distributed Bayesian hidden Markov regression [J]. CIESC Journal, 2023, 74(6): 2495-2502. |
[6] | Zhengtao LI, Zhijie YUAN, Gaohong HE, Xiaobin JIANG. Study of the mechanism of internal circulation regulation during evaporation of NaCl droplets on hydrophobic interface [J]. CIESC Journal, 2023, 74(5): 1904-1913. |
[7] | Lu DENG, Xiaojie JU, Wenjie ZHANG, Rui XIE, Wei WANG, Zhuang LIU, Dawei PAN, Liangyin CHU. Controllable preparation of radioactive chitosan embolic microspheres by microfluidic method [J]. CIESC Journal, 2023, 74(4): 1781-1794. |
[8] | Yuntong GE, Wei WANG, Kai LI, Fan XIAO, Zhipeng YU, Jing GONG. AFM study of the interaction forces between micro-oil droplets and modified silica surfaces in multiphase dispersion systems [J]. CIESC Journal, 2023, 74(4): 1651-1659. |
[9] | Xiangning HU, Yuanbo YIN, Chen YUAN, Yun SHI, Cuiwei LIU, Qihui HU, Wen YANG, Yuxing LI. Experimental study on visualization of refined oil migration in soil [J]. CIESC Journal, 2023, 74(4): 1827-1835. |
[10] | Lufan JIA, Yiying WANG, Yuman DONG, Qinyuan LI, Xin XIE, Hao YUAN, Tao MENG. Aqueous two-phase system based adherent droplet microfluidics for enhanced enzymatic reaction [J]. CIESC Journal, 2023, 74(3): 1239-1246. |
[11] | Shaohang YAN, Tianwei LAI, Yanwu WANG, Yu HOU, Shuangtao CHEN. Visual experimental study on cavitation of R134a in micro clearance [J]. CIESC Journal, 2023, 74(3): 1054-1061. |
[12] | Xingyu YANG, You MA, Chunying ZHU, Taotao FU, Youguang MA. Study on liquid-liquid distribution in comb parallel microchannels [J]. CIESC Journal, 2023, 74(2): 698-706. |
[13] | Xingyu XIANG, Zhongdong WANG, Yanpeng DONG, Shouchuan LI, Chunying ZHU, Youguang MA, Taotao FU. Progress on rheological properties and multiphase flow of yield stress fluids in microchannels [J]. CIESC Journal, 2023, 74(2): 546-558. |
[14] | Le ZHOU, Chengkai SHEN, Chao WU, Beiping HOU, Zhihuan SONG. Deep fusion feature extraction network and its application in chemical process soft sensing [J]. CIESC Journal, 2022, 73(7): 3156-3165. |
[15] | Kun WANG, Hongbo SHI, Shuai TAN, Bing SONG, Yang TAO. Local time difference constrained neighborhood preserving embedding algorithm for fault detection [J]. CIESC Journal, 2022, 73(7): 3109-3119. |
Viewed | ||||||
Full text |
|
|||||
Abstract |
|
|||||