Reaction mechanism between "memory effect" and induction time of gas hydrate formation

Abstract Using visual experimental apparatus, one system (T40, 1×10^-3 mol/L, nonadded with coal) and another system (T40, 2×10^-3 mol/L, added with coal) were experimented with for three times and two times, respectively. Five groups of P-T experimental parameters were obtained using the data logge...

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Published inJournal of coal science & engineering, China Vol. 14; no. 2; pp. 280 - 282
Main Author 孙登林 吴强 张保勇
Format Journal Article
LanguageEnglish
Published Heidelberg China Coal Society 01.06.2008
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ISSN1006-9097
1866-6566
DOI10.1007/s12404-008-0060-y

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Abstract Abstract Using visual experimental apparatus, one system (T40, 1×10^-3 mol/L, nonadded with coal) and another system (T40, 2×10^-3 mol/L, added with coal) were experimented with for three times and two times, respectively. Five groups of P-T experimental parameters were obtained using the data logger system and analyzed combined with the video information of the experiments. Major conclustions show that the induction time is shortened by 10-20 times in the experimental system containing residual pentahedral ring structures; "memory effect" can accelerate the dynamic progress and improve the thermodynamic conditions of gas hydrate formation.
AbstractList Abstract Using visual experimental apparatus, one system (T40, 1×10^-3 mol/L, nonadded with coal) and another system (T40, 2×10^-3 mol/L, added with coal) were experimented with for three times and two times, respectively. Five groups of P-T experimental parameters were obtained using the data logger system and analyzed combined with the video information of the experiments. Major conclustions show that the induction time is shortened by 10-20 times in the experimental system containing residual pentahedral ring structures; "memory effect" can accelerate the dynamic progress and improve the thermodynamic conditions of gas hydrate formation.
Using visual experimental apparatus, one system (T40, 1×10 −3 mol/L, non-added with coal) and another system (T40, 2×10 −3 mol/L, added with coal) were experimented with for three times and two times, respectively. Five groups of P-T experimental parameters were obtained using the data logger system and analyzed combined with the video information of the experiments. Major conclustions show that the induction time is shortened by 10∼20 times in the experimental system containing residual pentahedral ring structures; “memory effect” can accelerate the dynamic progress and improve the thermodynamic conditions of gas hydrate formation.
Author 孙登林 吴强 张保勇
AuthorAffiliation Safety Engineering College, Heilongjiang Institute of Science and Technology, Harbin 150027, China College of Resource and Environment Engineering, Liaoning Technical University, Fuxin 123000, China
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crossref_primary_10_1016_j_seppur_2018_07_015
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10.1016/0009-2509(83)80027-X
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Keywords gas hydrate
induction time
memory effect
thermodynamic condition
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Notes memory effect, induction time, thermodynamic condition, gas hydrate
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Snippet Abstract Using visual experimental apparatus, one system (T40, 1×10^-3 mol/L, nonadded with coal) and another system (T40, 2×10^-3 mol/L, added with coal) were...
Using visual experimental apparatus, one system (T40, 1×10 −3 mol/L, non-added with coal) and another system (T40, 2×10 −3 mol/L, added with coal) were...
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SubjectTerms Earth and Environmental Science
Earth Sciences
Geochemistry
Geology
Geophysics/Geodesy
Geotechnical Engineering & Applied Earth Sciences
Mechanical Engineering
存储效应
气体水合物
热力条件
诱导时间
Title Reaction mechanism between "memory effect" and induction time of gas hydrate formation
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