用溶胶-凝胶法制得Cu/Fe2O3-TiO2光催化材料。用XRD、Ram an、TPR、IR、TEM、UV-V is DRS测试技术和光催化反应等对固体材料的结构和性能进行了表征。结果表明,Fe2O3的质量分数为10%时,在TiO2表面以单分子层分散,Fe2O3的引入使TiO2吸光...用溶胶-凝胶法制得Cu/Fe2O3-TiO2光催化材料。用XRD、Ram an、TPR、IR、TEM、UV-V is DRS测试技术和光催化反应等对固体材料的结构和性能进行了表征。结果表明,Fe2O3的质量分数为10%时,在TiO2表面以单分子层分散,Fe2O3的引入使TiO2吸光限蓝移。Fe2O3含量超过单分子层分散时,有晶相Fe2O3生成,光吸收性能下降。Fe—O—Ti键的形成加强了半导体之间的相互作用,有利于光生载流子在半导体间的输送。少量Cu的引入,使复合材料的吸光域向可见光范围扩展。光催化反应性能与材料的光响应能力密切相关。在光催化CO2和CH3NH2直接合成NH2CH2COOH的反应中,负载质量分数为10%Fe2O3的光催化反应性能最优。在120℃、常压、空速200 h-1、CO2与CH3NH2摩尔比为1∶1和6.5×10-4W/cm2的紫外灯照射下,CH3NH2转化率为1.35%,NH2CH2COOH选择性达92.0%。展开更多
The purpose of this study is to explore the adsorption performance of meso-2,3-dimercaptosuccinic acid(DMSA)modified Fe3O4@SiO2 magnetic nanocomposite(Fe3O4@SiO2@DMSA)for Pb2+ions removal from aqueous solutions.The ef...The purpose of this study is to explore the adsorption performance of meso-2,3-dimercaptosuccinic acid(DMSA)modified Fe3O4@SiO2 magnetic nanocomposite(Fe3O4@SiO2@DMSA)for Pb2+ions removal from aqueous solutions.The effects of solution pH,initial concentration of Pb2+ions,contact time,and temperature on the amount of Pb2+adsorbed were investigated.Adsorption isotherms,adsorption kinetics,and thermodynamic analysis were also studied.The results showed that the maximum adsorption capacity of the Fe3O4@SiO2@DMSA composite is 50.5 mg/g at 298 K,which is higher than that of Fe3O4 and Fe3O4@SiO2 magnetic nanoparticles.The adsorption process agreed well with Langmuir adsorption isotherm models and pseudo second-order kinetics.The thermodynamic analysis revealed that the adsorption was spontaneous,endothermic and energetically driven in nature.展开更多
文摘用溶胶-凝胶法制得Cu/Fe2O3-TiO2光催化材料。用XRD、Ram an、TPR、IR、TEM、UV-V is DRS测试技术和光催化反应等对固体材料的结构和性能进行了表征。结果表明,Fe2O3的质量分数为10%时,在TiO2表面以单分子层分散,Fe2O3的引入使TiO2吸光限蓝移。Fe2O3含量超过单分子层分散时,有晶相Fe2O3生成,光吸收性能下降。Fe—O—Ti键的形成加强了半导体之间的相互作用,有利于光生载流子在半导体间的输送。少量Cu的引入,使复合材料的吸光域向可见光范围扩展。光催化反应性能与材料的光响应能力密切相关。在光催化CO2和CH3NH2直接合成NH2CH2COOH的反应中,负载质量分数为10%Fe2O3的光催化反应性能最优。在120℃、常压、空速200 h-1、CO2与CH3NH2摩尔比为1∶1和6.5×10-4W/cm2的紫外灯照射下,CH3NH2转化率为1.35%,NH2CH2COOH选择性达92.0%。
基金Project(2013DFA51290)supported by International S&T Cooperation Program of China
文摘The purpose of this study is to explore the adsorption performance of meso-2,3-dimercaptosuccinic acid(DMSA)modified Fe3O4@SiO2 magnetic nanocomposite(Fe3O4@SiO2@DMSA)for Pb2+ions removal from aqueous solutions.The effects of solution pH,initial concentration of Pb2+ions,contact time,and temperature on the amount of Pb2+adsorbed were investigated.Adsorption isotherms,adsorption kinetics,and thermodynamic analysis were also studied.The results showed that the maximum adsorption capacity of the Fe3O4@SiO2@DMSA composite is 50.5 mg/g at 298 K,which is higher than that of Fe3O4 and Fe3O4@SiO2 magnetic nanoparticles.The adsorption process agreed well with Langmuir adsorption isotherm models and pseudo second-order kinetics.The thermodynamic analysis revealed that the adsorption was spontaneous,endothermic and energetically driven in nature.