The ion-exchanger LiMg0.5Mn1.5O4 of spinel type was prepared by the common precipitation/heated crystallization method, and was acid modified. Its properties of ion-exchange for alkali ions such as saturation capacity...The ion-exchanger LiMg0.5Mn1.5O4 of spinel type was prepared by the common precipitation/heated crystallization method, and was acid modified. Its properties of ion-exchange for alkali ions such as saturation capacity of exchange, distribution coefficient and the pH titration curve have been determined. LiMg0.5Mn1.5O4 was characterized by X-ray diffraction. These results show that this inorganic ion-exchanger has better remembering and selectivity of ion exchange, and higher capacity of exchange for Li+, the capacity of exchange reaches 32.39 mg·g-1 for Li+.展开更多
A spinel-type oxides ZnFe2O4 photocatalysts were prepared by citric acid complex method,and characterized with XRD,TG-DTA,FT-IR,TEM techniques.The photocatalytic activities were investigated by the degradation of C3H2...A spinel-type oxides ZnFe2O4 photocatalysts were prepared by citric acid complex method,and characterized with XRD,TG-DTA,FT-IR,TEM techniques.The photocatalytic activities were investigated by the degradation of C3H22N6O6S2Na2 by artificial visible Light.The results show that the photocatalytic activity of ZnFe2O4 is stable,under experimental conditions,the degradation rate of C3H22N6O6S2 is over 90% in 60min.展开更多
文摘The ion-exchanger LiMg0.5Mn1.5O4 of spinel type was prepared by the common precipitation/heated crystallization method, and was acid modified. Its properties of ion-exchange for alkali ions such as saturation capacity of exchange, distribution coefficient and the pH titration curve have been determined. LiMg0.5Mn1.5O4 was characterized by X-ray diffraction. These results show that this inorganic ion-exchanger has better remembering and selectivity of ion exchange, and higher capacity of exchange for Li+, the capacity of exchange reaches 32.39 mg·g-1 for Li+.
文摘A spinel-type oxides ZnFe2O4 photocatalysts were prepared by citric acid complex method,and characterized with XRD,TG-DTA,FT-IR,TEM techniques.The photocatalytic activities were investigated by the degradation of C3H22N6O6S2Na2 by artificial visible Light.The results show that the photocatalytic activity of ZnFe2O4 is stable,under experimental conditions,the degradation rate of C3H22N6O6S2 is over 90% in 60min.