The isothermal mutual solubility and phase relation of MgSO 4-Li 2SO 4-C 2H 5OH-H 2O system at 25 ℃ have been investigated by using a homemade micro-equilibrium and sampling apparatus. The demixing phenomenon of the ...The isothermal mutual solubility and phase relation of MgSO 4-Li 2SO 4-C 2H 5OH-H 2O system at 25 ℃ have been investigated by using a homemade micro-equilibrium and sampling apparatus. The demixing phenomenon of the system′s at below room temperature was observed. The precise demixing composition and composition of double-saturated point of the system have been determined. A unique effect, namely additive property between MgSO 4 and Li 2SO 4 has been observed and explained in terms of "pseudo-ternary system" concept. An empirical formula has been worked out to correlate the mutual solubility.展开更多
The oxidative coupling of methane over Li2SO4/BaCe0.93La0.07O3 irradiated by microwave is reported. Compared with conventional heating mode. under the microwave radiation the temperature of catalytic bed is lower and ...The oxidative coupling of methane over Li2SO4/BaCe0.93La0.07O3 irradiated by microwave is reported. Compared with conventional heating mode. under the microwave radiation the temperature of catalytic bed is lower and the products were changed in selectivity favouring the production of C2 compounds.展开更多
文摘The isothermal mutual solubility and phase relation of MgSO 4-Li 2SO 4-C 2H 5OH-H 2O system at 25 ℃ have been investigated by using a homemade micro-equilibrium and sampling apparatus. The demixing phenomenon of the system′s at below room temperature was observed. The precise demixing composition and composition of double-saturated point of the system have been determined. A unique effect, namely additive property between MgSO 4 and Li 2SO 4 has been observed and explained in terms of "pseudo-ternary system" concept. An empirical formula has been worked out to correlate the mutual solubility.
文摘The oxidative coupling of methane over Li2SO4/BaCe0.93La0.07O3 irradiated by microwave is reported. Compared with conventional heating mode. under the microwave radiation the temperature of catalytic bed is lower and the products were changed in selectivity favouring the production of C2 compounds.
基金supported by the National Natural Science Foundation of China(20871101)Scientific Research Fund of Hunan Provincial Education Department,China(10C1250)+1 种基金Natural Science Foundation of Hunan Province,China(11JJ4038)Scientific Research Fund of Hunan Provincial Science & Technology Department,China(2010RS4027)~~