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负载金属饮水除砷材料的研究 被引量:6
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作者 赵月朝 陈亚妍 +2 位作者 林少彬 姚崇林 张岚 《卫生研究》 CAS CSCD 北大核心 2004年第5期550-552,共3页
目的 研究负载金属多孔材料对饮水中砷的去除效果。方法 以活性炭、活性氧化铝、硅胶、大孔树脂等多孔材料为载体 ,以铁盐、锆盐等为活化试剂制备负载金属除砷材料 ,考察材料制备条件及材料的静态和动态除砷作用。结果 选择以活性炭... 目的 研究负载金属多孔材料对饮水中砷的去除效果。方法 以活性炭、活性氧化铝、硅胶、大孔树脂等多孔材料为载体 ,以铁盐、锆盐等为活化试剂制备负载金属除砷材料 ,考察材料制备条件及材料的静态和动态除砷作用。结果 选择以活性炭为载体材料、硝酸铁为活化试剂制备饮水复合除砷材料。按现行规范砷限值为 0 0 5mg L计算 ,试验的载铁活性炭材料对于三价砷浓度为 0 2 84mg L和五价砷浓度为0 2 5 4mg L模拟饮水 ,除砷容量分别可达 2 94mg g和 2 5 6mg g。 展开更多
关键词 饮用水 除砷 负载金属材料
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Development of Novel Supported Gold Catalysts: A Materials Perspective 被引量:9
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作者 Zhen Ma Sheng Dai 《Nano Research》 SCIE EI CAS CSCD 2011年第1期3-32,共30页
Since Haruta et al. discovered that small gold nanoparticles finely dispersed on certain metal oxide supports can exhibit surprisingly high activity in CO oxidation below room temperature, heterogeneous catalysis by s... Since Haruta et al. discovered that small gold nanoparticles finely dispersed on certain metal oxide supports can exhibit surprisingly high activity in CO oxidation below room temperature, heterogeneous catalysis by supported gold nanoparticles has attracted tremendous attention. The majority of publications deal with the preparation and characterization of conventional gold catalysts (e.g., Au/TiO2), the use of gold catalysts in various catalytic reactions, as well as elucidation of the nature of the active sites and reaction mechanisms. In this overview, we highlight the development of novel supported gold catalysts from a materials perspective. Examples, mostly from those reported by our group, are given concerning the development of simple gold catalysts with single metal-support interfaces and heterostructured gold catalysts with complicated interfacial structures. Catalysts in the first category include active Au/SiO2 and Au/metal phosphate catalysts, and those in the second category include catalysts prepared by pre-modification of supports before loading gold, by post-modification of supported gold catalysts, or by simultaneous dispersion of gold and an inorganic component onto a support. CO oxidation has generally been employed as a probe reaction to screen the activities of these catalysts. These novel gold catalysts not only provide possibilities for applied catalysis, but also furnish grounds for fundamental research. 展开更多
关键词 GOLD NANOPARTICLES catalyst design catalyst support FUNCTIONALIZATION PROMOTION CO oxidation
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