Russian Journal of Inorganic Chemistry, Tập 5,Số phát hành 7-12British Library Lending Division with the cooperation of the Royal Society of Chemistry, 1960 |
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... hydrates. Energy Fuels 32(6):6619–6626 Camargo R, Palermo T (2002) Rheological properties of hydrate hydrate anti-agglomeration in a gas condensate system at high pressure. Fuel 210:713–720 suspensions in an asphaltenic crude oil. In ...
... hydrates. Energy Fuels 32(6):6619–6626 Camargo R, Palermo T (2002) Rheological properties of hydrate hydrate anti-agglomeration in a gas condensate system at high pressure. Fuel 210:713–720 suspensions in an asphaltenic crude oil. In ...
Trang 234
... hydrate formation; water is attracted to ions more than water is attracted to the hydrate structure. As a secondary effect, this clustering also causes a decrease in the solubility of potential hydrate guest molecules in water, a ...
... hydrate formation; water is attracted to ions more than water is attracted to the hydrate structure. As a secondary effect, this clustering also causes a decrease in the solubility of potential hydrate guest molecules in water, a ...
Trang 312
... hydrate–gas–aqueous liquid three-phase points in better agreement with experiments than calculations done with the van der Waals–Platteeuw model using the spherical guest–cage potential (see Chapter 7). The first molecular dynamics ...
... hydrate–gas–aqueous liquid three-phase points in better agreement with experiments than calculations done with the van der Waals–Platteeuw model using the spherical guest–cage potential (see Chapter 7). The first molecular dynamics ...
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Journal | 677 |
THE PAGE NUMBERS 2arsonic acid12azo18dihydroxynaphthalene3 6disulphonic | 795 |
Journal | 937 |
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Akad alcohol alkali alloys aluminium ammonia ammonium analysis annealed aqueous phase aqueous solution atoms beryllium boron cadmium caesium calcium calculated carbon Chem chemical chloride coefficient complex composition compounds concentration constant coprecipitation corresponding crystallisation crystals curve decomposition determined diagram diffraction equilibrium ether eutectic experimental extraction formation formed g/litre gallium H₂O hafnium heat HNO3 hydrate hydrochloric acid hydrogen hydrolysis hydroxide ibid increase Inorg iodide ionic isotherm kcal Khim Kurnakov ligands liquid phase lithium lithium peroxide melting metal methanol method mixture mole molecules NaCl NaOH Nauk SSSR Neorg niobium nitric acid Obshch obtained organic phase oxide oxygen phosphate platinum potassium precipitate ratio reaction rubidium salt shows sodium solid phase solid solutions solu solubility solvent specimens stable studied sulphate Table temperature ternary thermal thiourea tion titanium uranium uranyl nitrate values viscosity X-ray Zhur zirconium