Bi2O3· 3MoO3 oxide catalyst has been prepared by the sol gel pr℃ ess at lower temperature. The influences of preparation conditions and thermal treatment conditions on the morphology and structure of the catalys...Bi2O3· 3MoO3 oxide catalyst has been prepared by the sol gel pr℃ ess at lower temperature. The influences of preparation conditions and thermal treatment conditions on the morphology and structure of the catalyst have been studied by using TEM, DTA TG, FT IR, XRD and BET surface area measurement methods. It is shown that the BET surface area of Bi2O3· 3MoO3 prepared by sol gel method is larger than that of Bi2O3· 3MoO3 prepared by coprecipitation method. For the preparation of the well distribuated Bi2O3· 3MoO3 catalyst has a BET surface area of 13.2m2· g- 1, the optimum conditions for the catalyst are :展开更多
The adsorption characteristics of Zn2+ from electrolytic solution by activatedcharcoal have been investigated. It was found that the amount of adsorption of Zn2+depends mainly on pH value of the solution, added inorga...The adsorption characteristics of Zn2+ from electrolytic solution by activatedcharcoal have been investigated. It was found that the amount of adsorption of Zn2+depends mainly on pH value of the solution, added inorganic ions and containing Oxygen groups on the surface. The activated charcoal was treated with oaldation-negativeionizing (OA) method in order to produce more containing oxygen groups on the surface.The adsorption amount of Zn2+ on the treated activated charcoal increased remarkbly. Itwas also found that the more times the activated charcoal was treated, the moe powerfulthe acidity of the surface, and the larger the adsorption amoUn of Zn2+, so the chargedgrorps on the surface of activated charcoal are considered as the main adsorption activatedsites for inorganic ions. The adsorption characteristics of various complexes of Zn2+ onthe surface of activated charcoal have also been investigated. Three types of adsorptionnconfiguration of the complexes of Zn2+ on the surface of activated charcoal were suggestedaccording to the experimental results.展开更多
文摘Bi2O3· 3MoO3 oxide catalyst has been prepared by the sol gel pr℃ ess at lower temperature. The influences of preparation conditions and thermal treatment conditions on the morphology and structure of the catalyst have been studied by using TEM, DTA TG, FT IR, XRD and BET surface area measurement methods. It is shown that the BET surface area of Bi2O3· 3MoO3 prepared by sol gel method is larger than that of Bi2O3· 3MoO3 prepared by coprecipitation method. For the preparation of the well distribuated Bi2O3· 3MoO3 catalyst has a BET surface area of 13.2m2· g- 1, the optimum conditions for the catalyst are :
文摘The adsorption characteristics of Zn2+ from electrolytic solution by activatedcharcoal have been investigated. It was found that the amount of adsorption of Zn2+depends mainly on pH value of the solution, added inorganic ions and containing Oxygen groups on the surface. The activated charcoal was treated with oaldation-negativeionizing (OA) method in order to produce more containing oxygen groups on the surface.The adsorption amount of Zn2+ on the treated activated charcoal increased remarkbly. Itwas also found that the more times the activated charcoal was treated, the moe powerfulthe acidity of the surface, and the larger the adsorption amoUn of Zn2+, so the chargedgrorps on the surface of activated charcoal are considered as the main adsorption activatedsites for inorganic ions. The adsorption characteristics of various complexes of Zn2+ onthe surface of activated charcoal have also been investigated. Three types of adsorptionnconfiguration of the complexes of Zn2+ on the surface of activated charcoal were suggestedaccording to the experimental results.
基金Doctoral Scientific Research Foundation of Shanxi Datong University(2014-B-11)National Natural Science Foundation of China(21174114)+3 种基金National Natural Science Foundation of China(21363021)Program for Changjiang Scholars and Innovative Research Team in University of M inistry of Education of China(IRT1177)Scientific and Technical plan project of Gansu province(1204GKCA006)Scientific and Technical Innovation Project of Northw est Normal University(nw nu-kjcxgc-03-63)~~