Experimental Investigation To Elucidate Why Tetrahydrofuran Rapidly Promotes Methane Hydrate Formation Kinetics: Applicable to Energy Storage

被引:61
|
作者
Kumar, Asheesh [1 ]
Daraboina, Nagu [2 ]
Kumar, Rajnish [3 ]
Linga, Praveen [1 ]
机构
[1] Natl Univ Singapore, Dept Chem & Biomol Engn, Singapore 117585, Singapore
[2] Univ Tulsa, McDougall Sch Petr Engn, Tulsa, OK 74104 USA
[3] CSIR, Natl Chem Lab, Chem Engn & Proc Dev Div, Pune, Maharashtra, India
来源
JOURNAL OF PHYSICAL CHEMISTRY C | 2016年 / 120卷 / 51期
基金
新加坡国家研究基金会;
关键词
DIFFERENTIAL SCANNING CALORIMETRY; GAS HYDRATE; MOLECULAR-DYNAMICS; PRESSURE; DECOMPOSITION; WATER; DSC; VERIFICATION; NUCLEATION; MIXTURE;
D O I
10.1021/acs.jpcc.6b11995
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Methane storage as SNG (solidified natural gas) in the form of clathrate hydrates is an emerging, economically feasible and environmentally benign technology for large scale storage. Mixed tetrahydrofuran (THF)-methane (CH4) hydrates offer a paradigm shift to milder storage conditions and faster hydrate formation kinetics, providing a promising scenario to scale up the SNG technology. In this work, we synthesize mixed THF-CH4 hydrates in a high pressure microdifferential scanning calorimeter (HP mu-DSC) to elucidate the two-step hydrate formation mechanism of mixed THF-CH4 hydrate identifying the synergism between THF and CH4. Heat flow change during hydrate formation and dissociation of mixed THF-CH4 hydrates formed in the presence of 5.56 mol % THF (stoichiometric composition) were monitored. The two step-mechanism of mixed THF-CH4 hydrate formation was further confirmed by the pressure-temperature profile and visual observations with a sample volume scale -up of about 350 times that of mu-DSC experiments.
引用
收藏
页码:29062 / 29068
页数:7
相关论文
共 50 条
  • [41] Experimental study and kinetics modeling of gas hydrate formation of methane-ethane mixture
    Naeiji, Parisa
    Varaminian, Farshad
    JOURNAL OF NON-EQUILIBRIUM THERMODYNAMICS, 2013, 38 (03) : 273 - 286
  • [42] Kinetics of CO2 and methane hydrate formation: An experimental analysis in the bulk phase
    He, Yuanyuan
    Rudolph, E. Susanne J.
    Zitha, Pacelli. L. J.
    Golombok, Michael
    FUEL, 2011, 90 (01) : 272 - 279
  • [43] Role of metallic porous media and surfactant on kinetics of methane hydrate formation and capacity of gas storage
    Heydari, Atousa
    Peyvandi, Kiana
    JOURNAL OF PETROLEUM SCIENCE AND ENGINEERING, 2019, 181
  • [44] Investigation of methane hydrate formation in a recirculating flow loop: Modeling of the kinetics and tests of efficiency of chemical additives on hydrate inhibition
    Gaillard, C
    Monfort, JP
    Peytavy, JL
    OIL & GAS SCIENCE AND TECHNOLOGY-REVUE D IFP ENERGIES NOUVELLES, 1999, 54 (03): : 365 - 374
  • [45] Experimental investigation into formation/dissociation characteristics of methane hydrate in consolidated sediments with resistance measurement
    Liu, Huang
    Guo, Ping
    Zhan, Siyuan
    Ma, Pengju
    Wei, Na
    Zhao, Jinzhou
    Qiu, Yilong
    FUEL, 2018, 234 : 985 - 995
  • [46] Pore-scale experimental investigation of the fluid flow effects on methane hydrate formation
    Xu, Rui
    Kou, Xuan
    Wu, Tian-Wei
    Li, Xiao-Sen
    Wang, Yi
    ENERGY, 2023, 271
  • [47] Driving sustainable energy storage: A multi-scale investigation of methane hydrate formation with green promoters and innovative reactor design
    Omran, Ahmed
    Nesterenko, Nikolay
    Valtchev, Valentin
    JOURNAL OF ENERGY STORAGE, 2024, 75
  • [48] Experimental and modeling study of kinetics for methane hydrate formation in a crude oil-in-water emulsion
    Shranish Kar
    Himangshu Kakati
    Ajay Mandal
    Sukumar Laik
    Petroleum Science, 2016, (03) : 489 - 495
  • [49] Experimental and modeling study of kinetics for methane hydrate formation in a crude oil-in-water emulsion
    Kar, Shranish
    Kakati, Himangshu
    Mandal, Ajay
    Laik, Sukumar
    PETROLEUM SCIENCE, 2016, 13 (03) : 489 - 495
  • [50] Experimental study of methane hydrate formation kinetics with or without additives and modeling based on chemical affinity
    Roosta, H.
    Khosharay, S.
    Varaminian, F.
    ENERGY CONVERSION AND MANAGEMENT, 2013, 76 : 499 - 505