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以廉价高岭土和硅藻土为原料合成方沸石分子筛膜 被引量:1
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作者 丁民正 张小亮 +4 位作者 王刘杰 卢章辉 胡娜 桂田 陈祥树 《江西师范大学学报(自然科学版)》 CAS 北大核心 2014年第3期295-299,共5页
以廉价高岭土和硅藻土为主要原料,在管状莫来石支撑体上采用2次水热生长法合成了方沸石分子筛膜.通过气体渗透性能测试和XRD、SEM等对膜进行表征,重点考察了合成溶胶中的碱度、合成温度、晶化时间对膜层的晶体形貌和结构以及渗透性能的... 以廉价高岭土和硅藻土为主要原料,在管状莫来石支撑体上采用2次水热生长法合成了方沸石分子筛膜.通过气体渗透性能测试和XRD、SEM等对膜进行表征,重点考察了合成溶胶中的碱度、合成温度、晶化时间对膜层的晶体形貌和结构以及渗透性能的影响.结果表明:在n(H2O)∶n(Na2O)为200的合成溶胶体系中,合成温度为150℃的条件下晶化反应6 h,可制备出结晶度好且渗透性能较高的纯相方沸石分子筛膜.室温下该膜的氢气渗透率为1.8×10-8mol·m-2·s-1·Pa-1,H2/CO2气体分离因子为15,高于其努森扩散值(4.7). 展开更多
关键词 高岭土 硅藻土 方沸石分子筛膜 2次生长法 氢气分离
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Visible light-responsive carbon-decorated p-type semiconductor CaFe_2O_4 nanorod photocatalyst for efficient remediation of organic pollutants 被引量:4
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作者 Xin Liu Yuhong Zhang +4 位作者 Yushuai Jia Junzhe Jiang Yabin Wang Xiangshu Chen Tian Gui 《Chinese Journal of Catalysis》 EI CSCD 北大核心 2017年第10期1770-1779,共10页
We report the fabrication and photocatalytic property of a composite of C/CaFe2O4nanorods(NRs)in an effort to reveal the influence of carbon modification.It is demonstrated that the photocatalytic degradation activity... We report the fabrication and photocatalytic property of a composite of C/CaFe2O4nanorods(NRs)in an effort to reveal the influence of carbon modification.It is demonstrated that the photocatalytic degradation activity is dependent on the mass ratio of C to CaFe2O4.The optimal carbon content is determined to be58wt%to yield a methylene blue(MB)degradation rate of0.0058min.1,which is4.8times higher than that of the pristine CaFe2O4NRs.The decoration of carbon on the surface of CaFe2O4NRs improves its adsorption capacity of the MB dye,which is specifically adsorbed on the surface as a monolayer according to the adsorption isotherm analysis.The trapping experiments of the reactive species indicate that superoxide radicals(.O2)are the main active species responsible for the removal of MB under visible‐light irradiation.Overall,the unique feature of carbon coating enables the efficient separation and transfer of photogenerated electrons and holes,strengthens the adsorption capacity of MB,and improves the light harvesting capability,hence enhancing the overall photocatalytic degradation of MB. 展开更多
关键词 p‐type semiconductor CaFe2O4 Carbon coating Nanorod Composite photocatalyst Degradation of methylene blue
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