Enhance hydrates formation with stainless steel fiber for high capacity methane storage

被引:1
作者
Zhixia Deng [1 ,2 ]
Shuanshi Fan [1 ,2 ,3 ,4 ]
Yanhong Wang [1 ,2 ,4 ]
Xuemei Lang [1 ,2 ,3 ]
Gang Li [1 ,2 ]
机构
[1] School of Chemistry and Chemical Engineering, South China University of Technology
[2] Guangdong Engineering Technology Research Center of Advanced Insulating Coating
[3] Institute of Modern Industrial Innovation, South China University of Technology
[4] Key Laboratory of Fuel Cell Technology of Guangdong Province
关键词
Methane; Stainless steel fiber; Gas storage capacity; Hydrate; Gas storage rate; Heat transfer;
D O I
暂无
中图分类号
TE82 [油气储存];
学科分类号
082003 ;
摘要
In order to realize efficient gas storage of hydrate,stainless steel fiber(SSF) was added to 0.03%(mass)sodium dodecyl sulfate(SDS) solution for gas storage experiment.SSF can not only improve the problem that hydration heat cannot be removed effectively in the hydration process,but also improve gas storage speed and gas storage by increasing hydrate nucleation sites.Under the experimental conditions(273.2 K,5-9 MPa),the peaks of temperature rise in SDS+SSF systems were found to become much smaller than those in SDS systems.The maximum gas storage rate and the maximum methane uptake of SSF+SDS system reached 9.89-24.90 cm3·g-1·min-1 and 178.65-200.89 cm3·(g H2O)-1,respectively.Compared with the surfactant SDS solution without SSF,they increased by 10.47%-33.22% and 9.16%-25.36%,respectively.The effect of SSF length on gas storage performance was studied.Due to the continuous thermal conduction network,longer SSF showed a higher gas storage capacity and methane uptake rate compared with shorter SSF.At the same time,compared with other metal fillers,SSF+SDS not only had excellent gas storage performance,but also the amount of SSF(0.1 g·ml-1) was only 7.6% of foamed aluminum,and the volume gas storage density was increased by 145.4%.The use of stainless steel fiber made the best use of the thermal conductivity of metal,reduced the amount of metal used,and improved the volume density and mass density of gas storage.
引用
收藏
页码:435 / 443
页数:9
相关论文
共 43 条
[1]  
Accelerated methane storage in clathrate hydrates using surfactantstabilized suspension with graphite nanoparticles[J]. Liang Yang,Xin Wang,Daoping Liu,Guomin Cui,Binlin Dou,Juan Wang,Shuqing Hao.Chinese Journal of Chemical Engineering. 2020(04)
[2]  
Evaluation on the natural gas hydrate formation process[J]. Shuqi Fang,Xinyue Zhang,Jingyi Zhang,Chun Chang,Pan Li,Jing Bai.Chinese Journal of Chemical Engineering. 2020(03)
[3]   Fast formation kinetics of methane hydrate promoted by fluorinated graphite [J].
Deng, Zhixia ;
Wang, Yanhong ;
Lang, Xuemei ;
Li, Gang ;
Yu, Chi ;
Wang, Shenglong ;
Fan, Shuanshi .
CHEMICAL ENGINEERING JOURNAL, 2022, 431
[4]   Growth and occurrence characteristics of methane hydrate in a complex system of silica sand and sodium dodecyl sulfate [J].
Qin, Yue ;
Bao, Ruixin ;
Shang, Liyan ;
Zhou, Li ;
Liu, Zhiming .
CHEMICAL ENGINEERING SCIENCE, 2022, 249
[5]  
An insight on effects of activated carbon and a co-promoter on carbon dioxide hydrate formation and dissociation[J] . Inkong Katipot,Anh Le Trung,Yodpetch Viphada,Kulprathipanja Santi,Rangsunvigit Pramoch.Chemical Engineering Science . 2022 (PA)
[6]   Rapid hydrate-based methane storage promoted by bilayer surfactant-coated Fe3O4 nanoparticles under a magnetic field [J].
Wu, Yongji ;
Tang, Tianqi ;
Shi, Lei ;
He, Yurong .
FUEL, 2021, 303
[7]   Quantitative analysis of methane hydrate formation in size-varied porous media for gas storage and transportation application [J].
Cheng, Zucheng ;
Wang, Sijia ;
Xu, Nan ;
Liu, Weiguo ;
Zhao, Yuechao ;
Zhao, Jiafei ;
Jiang, Lanlan ;
Zheng, Jia-nan .
FUEL, 2021, 301
[8]  
Promoting methane hydrate formation with expanded graphite additives: Application to solidified natural gas storage[J] . Deng Zhixia,Wang Yanhong,Yu Chi,Li Gang,Lang Xuemei,Wang Shenglong,Fan Shuanshi.Fuel . 2021
[9]   Methane Hydrate Growth Promoted by Microporous Zeolitic Imidazolate Frameworks ZIF-8 and ZIF-67 for Enhanced Methane Storage [J].
Denning, Shurraya ;
Majid, Ahmad A. A. ;
Lucero, Jolie M. ;
Crawford, James M. ;
Carreon, Moises A. ;
Koh, Carolyn A. .
ACS SUSTAINABLE CHEMISTRY & ENGINEERING, 2021, 9 (27) :9001-9010
[10]  
Diffusion-based modeling of film growth of hydrates on gas-liquid interfaces[J] . Kar Aritra,Bhati Awan,Acharya Palash V.,Mhadeshwar Ashish,Venkataraman Pradeep,Barckholtz Timothy A.,Bahadur Vaibhav.Chemical Engineering Science . 2021