2001
DOI: 10.11575/prism/24335
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Experimental and theoretical investigation of natural gas hydrates in the presence of methanol, ethylene glycol, diethylene glycol and triethylene glycol

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“…For each measured point, Table 1 of this work shows the corresponding value of methane hydrate equilibrium temperature suppression Δ Т h relative to the CH 4 –H 2 O system without inhibitor at the indicated equilibrium pressure. A comparison of the obtained equilibrium points with literature data for the system of CH 4 −MeOH–H 2 O [2] , [3] , [4] , [5] , CH 4 −MEG–H 2 O [ 3 , [5] , [6] , [7] ], and CH 4 –DEG–H 2 O [8] , [9] , [10] is shown in Figs. 2 , 3 , and 4 , respectively.…”
Section: Data Descriptionmentioning
confidence: 90%
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“…For each measured point, Table 1 of this work shows the corresponding value of methane hydrate equilibrium temperature suppression Δ Т h relative to the CH 4 –H 2 O system without inhibitor at the indicated equilibrium pressure. A comparison of the obtained equilibrium points with literature data for the system of CH 4 −MeOH–H 2 O [2] , [3] , [4] , [5] , CH 4 −MEG–H 2 O [ 3 , [5] , [6] , [7] ], and CH 4 –DEG–H 2 O [8] , [9] , [10] is shown in Figs. 2 , 3 , and 4 , respectively.…”
Section: Data Descriptionmentioning
confidence: 90%
“…
Fig. 4 Comparison of experimental results on the methane hydrate equilibrium for CH 4 –DEG–H 2 O system, obtained in this work (color symbols), with literature data (black-edge symbols) [8] , [9] , [10] ; dotted lines – interpolation of our data by the equation ln P = A + B/ T+ C ‧ln T (coefficients are in Table 3 ); the concentration of DEG in aqueous solution is in mass%.
…”
Section: Data Descriptionmentioning
confidence: 92%