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Morphological Studies of Mixed Methane Tetrahydrofuran Hydrates in Saline Water for Energy Storage Application
Gaurav Pandey, Asheesh Kumar, Hari Prakash Veluswamy, , Praveen Linga
Published in Elsevier Ltd
2017
Volume: 143
   
Pages: 786 - 791
Abstract
Solidified natural gas (SNG) in the form of clathrate hydrates has been considered one of the most promising technologies for natural gas storage and transportation because it is safe and economically feasible compared to liquefied natural gas (LNG) and compressed natural gas (CNG). In this direction, we recently observed that mixed methane tetrahydrofuran hydrates had the ability to store a significant amount of methane gas close to ambient temperature conditions. To further improve the economic feasibility of methane gas storage and transportation process, utilization of saline water was recommended. In the present work, we investigate the morphology of mixed CH4/THF hydrate formation and dissociation in presence of NaCl for the first time. Morphology changes observed during the nucleation, hydrate growth and dissociation of mixed hydrates at two different operating conditions are presented. All the experiments were performed with a stoichiometric concentration of THF (5.56 mol% THF). More over, the gas uptake was also measured and compared with non-salt experiments. © 2017 The Authors. Published by Elsevier Ltd.
About the journal
JournalData powered by TypesetEnergy Procedia
PublisherData powered by TypesetElsevier Ltd
Open AccessNo
Concepts (23)
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    Chlorine compounds
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    COMPRESSED NATURAL GAS
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    Dissociation
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    Energy storage
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    Gas hydrates
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    Gases
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    Hydration
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    Liquefied natural gas
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    Methane
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    Morphology
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    Natural gas
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    Organic solvents
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    SALINE WATER
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    Sodium compounds
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    COMPRESSED NATURAL GASSES (CNG)
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    Different operating conditions
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    ECONOMIC FEASIBILITIES
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    ENERGY STORAGE APPLICATIONS
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    Liquefied natural gas (lng)
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    METHANE HYDRATES
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    STOICHIOMETRIC CONCENTRATION
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    TETRAHYDROFURAN HYDRATE
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    NATURAL GAS TRANSPORTATION