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表面键联型TiO2/SiO2固定化催化剂的结构及催化性能
引用本文:胡春,王怡中,汤鸿霄. 表面键联型TiO2/SiO2固定化催化剂的结构及催化性能[J]. 催化学报, 2001, 22(2): 185-188
作者姓名:胡春  王怡中  汤鸿霄
作者单位:中国科学院生态环境研究中心 国家重点环境水化学实验室, 北京 100085
摘    要: 采用浸渍法制备了表面键联型TiO2/SiO2固定化光催化剂.XRDrn,FT-IR,XPS和BET比表面积测定结果表明,TiO2通过Ti-O-Si联结rn负载于多孔硅胶的表面,由此提出TiO2/SiO2的结构模型.考察了多孔rn硅胶的粒度及氧化钛负载量对催化剂活性的影响.对活性艳红K-2G(rnR15)的光催化脱色反应,最佳的光催化剂30%TiO2/SiO2(Ims30)比rnB-TiO2粉末的催化速率快3倍.随着载体粒度的减小,催化剂的比表面rn积增大,催化活性升高;多孔硅胶不仅起着支持体的作用,而且具有分rn散的作用;多孔硅胶具有很好的透光性.经ξ-电位测定,所制备催化rn剂的等电点为3.0pH单位,表明催化剂表面呈酸性.

关 键 词:二氧化钛  多孔硅胶  浸渍  表面键联  光催化  分散性  染料
收稿时间:2001-04-25

Structure and Photocatalytic Performance of Surface Bond-Conjugated TiO2/SiO2 Catalyst
HU Chun ,WANG Yizhong,TANG Hongxiao. Structure and Photocatalytic Performance of Surface Bond-Conjugated TiO2/SiO2 Catalyst[J]. Chinese Journal of Catalysis, 2001, 22(2): 185-188
Authors:HU Chun   WANG Yizhong  TANG Hongxiao
Affiliation:HU Chun *,WANG Yizhong,TANG Hongxiao
Abstract:Surface bond conjugated TiO 2/SiO 2 catalyst was prepared by means of impregnation method with cyclohexane solution of tetrabutyl titanate. The catalyst overcomes the difficulty of liquid solid separation owing to the formation of milky dispersion after mixing the powdered TiO 2 in water. Based on the results of XRD, FT IR, XPS and BET measurements, the growth of TiO 2 (predominantly anatase) on the SiO 2 support seems to occur by anchoring the TiO 2 phase through Ti O Si cross linking bonds. The structure model of TiO 2/SiO 2 was proposed. Compared with B TiO 2, the most efficient catalyst is 30%TiO 2/SiO 2 (Ims 30), which showed three times higher photoactivity for degradation of reactive brilliant red K 2G(R15). In addition, the catalyst had higher photoactivity and bigger specific surface area on SiO 2 with smaller particle size than on that with larger particle size. SiO 2 gel plays the basic roles of dispersion and support for powder TiO 2. Meanwhile, SiO 2 gel has better transmission for light. The isoelectronic point of the catalyst was 3.0 pH units by measurement of zeta potential, indicating the presence of acidity on the catalyst surface.
Keywords:titania   porous silica   impregnation   surface bond conjugation   photocatalysis   dispersion   azo dye
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