Magnetically modified Fe-Al pillared bentonite(Fe3O4/ Fe-Al-Bent) was prepared via chemical co-precipitation method and characterized by powder X-ray diffraction(XRD), Brunauer-EmmettTeller(BET), Fourier transfo...Magnetically modified Fe-Al pillared bentonite(Fe3O4/ Fe-Al-Bent) was prepared via chemical co-precipitation method and characterized by powder X-ray diffraction(XRD), Brunauer-EmmettTeller(BET), Fourier transform infrared spectroscopy(FTIR) and scanning electron microscopy(SEM). A series of experiments were carried out to investigate the degradation of Orange II by the obtained heterogeneous catalysts in the presence of H2O2. The experimental result indicated that the synthetic materials had a high catalytic activity and good reusability.展开更多
In this study, the influence of four different sulfur products applied to the soil on the organically grown greenhouse tomato was investigated. The sulfur treatments were: (1) micronized-sulfur with bentonite (MSB...In this study, the influence of four different sulfur products applied to the soil on the organically grown greenhouse tomato was investigated. The sulfur treatments were: (1) micronized-sulfur with bentonite (MSB) alone (90% sulfur + 10% bentonite); (2) MSB + Fe (87% sulfur + 10% bentonite + 3% Fe); (3) MSB + Zn (87% sulfur + 10% bentonite + 3% Zn); (4) MSB + Fe + Zn (86% sulfur + 10% bentonite + 2% Fe + 2% Zn) and (5) control without sulfur treatment. The effects of sulfur products on plant growth, total crop yield, some fruit quality parameters, Fe and Zn content of the leaves and soil, pH and electrical conductivity (EC) of soil, were investigated. Results showed that the effects of treatments on plant growth parameters and fruit quality properties were not significant. However, total fruit yield increased by about 14%, 21%, 15% and 27% in MSB, MSB + Fe, MSB + Zn and MSB + Fe + Zn, respectively, as compared with control. Leaves Fe and Zn content were increased in some sampling times in related treatments. Soil Fe content was not changed by the treatments, however Zn content was significantly increased by the MSB + Zn and MSB + Fe + Zn applications. Soil pH was decreased by the all sulfur treatments in comparison to control; however the most important pH decrease was recorded as 0.28 units in MSB + Fe + Zn treatment. Soil EC values of the all sulfur treatments were higher than the control.展开更多
基金Funded by the Specialized Research Fund for the Doctoral Program of Higher Education of China(20114219110002)the Natural Science Foundation of Hubei Province(Nos.2014CFB810&2014CFB812)
文摘Magnetically modified Fe-Al pillared bentonite(Fe3O4/ Fe-Al-Bent) was prepared via chemical co-precipitation method and characterized by powder X-ray diffraction(XRD), Brunauer-EmmettTeller(BET), Fourier transform infrared spectroscopy(FTIR) and scanning electron microscopy(SEM). A series of experiments were carried out to investigate the degradation of Orange II by the obtained heterogeneous catalysts in the presence of H2O2. The experimental result indicated that the synthetic materials had a high catalytic activity and good reusability.
文摘In this study, the influence of four different sulfur products applied to the soil on the organically grown greenhouse tomato was investigated. The sulfur treatments were: (1) micronized-sulfur with bentonite (MSB) alone (90% sulfur + 10% bentonite); (2) MSB + Fe (87% sulfur + 10% bentonite + 3% Fe); (3) MSB + Zn (87% sulfur + 10% bentonite + 3% Zn); (4) MSB + Fe + Zn (86% sulfur + 10% bentonite + 2% Fe + 2% Zn) and (5) control without sulfur treatment. The effects of sulfur products on plant growth, total crop yield, some fruit quality parameters, Fe and Zn content of the leaves and soil, pH and electrical conductivity (EC) of soil, were investigated. Results showed that the effects of treatments on plant growth parameters and fruit quality properties were not significant. However, total fruit yield increased by about 14%, 21%, 15% and 27% in MSB, MSB + Fe, MSB + Zn and MSB + Fe + Zn, respectively, as compared with control. Leaves Fe and Zn content were increased in some sampling times in related treatments. Soil Fe content was not changed by the treatments, however Zn content was significantly increased by the MSB + Zn and MSB + Fe + Zn applications. Soil pH was decreased by the all sulfur treatments in comparison to control; however the most important pH decrease was recorded as 0.28 units in MSB + Fe + Zn treatment. Soil EC values of the all sulfur treatments were higher than the control.
基金supported by the Specialized Research Fund for the Doctoral Program of Higher Education of China(20114219110002)Hubei Key Laboratory of Coal Conversion and New Carbon Materials(Wuhan University of Science and Technology),China(WKDM201107)Educational Commission of Hubei Province,China(D20131107)~~