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CO_2在纳米SiO_2/TiO_2悬浮体系中的光催化还原 被引量:22

Photocatalytic Reduction of CO_2 in the Suspension System of Nano-SiO_2/TiO_2
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摘要 用水热法合成了氧化硅改性的具有高比表面积、高催化活性的锐钛型二氧化钛,并在其悬浮体系中将CO2光催化还原合成甲醇.采用XRD,TEM,物理吸附,UV-Vis吸收光谱和FTIR等表征手段对催化剂结构特征进行了研究.结果表明:添加氧化硅后,氧化硅和二氧化钛之间形成Si—O—Ti键,抑制了TiO2晶粒生长,提高了锐钛型TiO2的比表面积,且随着含硅量的增加,SiO2/TiO2的UV吸收逐步蓝移,禁带宽度增加.还原反应结果表明:SiO2/TiO2具有光催化还原活性,且随着含硅量的增加先增加后减小,当SiO2质量分数为3.5%时,SiO2/TiO2复合催化剂反应活性最强,5h内甲醇产量可达到21.0mg/L,并有少量甲醛生成. Silica-modified anatase titanium dioxide was prepared by the hydrothermal method, with large surface area and high photocatalytic activity. Photocatalytic reduction of CO2 was carried out to synthesize methanol in the aqueous suspension system of nano TiO2. The catalyst was characterized by XRD, TEM, BET, UV-Vis diffuse reflectance and FTIR spectroscopy methods. The results showed formation of Si-- O---Ti bond on the silica-modified titanium dioxide surfaces. The addition of silica to TiO2 could restrain the growth of TiO2 crystalline grain and enhance the surface area. The silica-modified titanium dioxides had significant blue shift in UV absorption compared to the bulk TiO2. The reductive results of CO2 showed that the nano SiO2/TiO2 already obtained obvious photocatalytic reduction activity. When the addition of silica to TiO2 reached w(silica)=3.5%, it gave the highest activity, producing 21.0 mg/L of methanol during 5 h reaction under the irradiation of 365 nm UV light.
出处 《化学学报》 SCIE CAS CSCD 北大核心 2006年第6期453-457,共5页 Acta Chimica Sinica
基金 国家自然科学重点基金(No.20133040)资助项目.
关键词 TIO2 水热法 光催化还原 CO2 titanium dioxide hydrothermal photocatalytic reduction carbon dioxide
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  • 1武正簧 赵君芙 李文漪 李文军.化学研究与应用,1999,11:13-13.
  • 2[1]Fujishima A, Honda K. Electrochemical photolysis of water at a semiconductor electrode. Nature, 1972, 238:37~38
  • 3[2]Hoffmann M R, Martin S T, Choi W, et al. Applications of semiconductor photocatalysis. Chem Rev, 1995, 95: 69~ 96
  • 4[3]Asahi R, Ohwaki T, Aoki K, et al. Visible-light photocatalysis in nitrogen-doped titanium oxides. Science. 2001, 293:269~271
  • 5[4]Li X, Li F. Study of Au/Au3+-TiO2 photocatalysts toward visible photooxidation for water and wastewater treatment. Environ Sci Technol, 2001, 35:2381~2387
  • 6[5]Khan S U M, Al-Shahry M, Ingler Jr W B. Efficient photochemical water splitting by a chemically modified n-TiO2. Science, 2002,297:2243~2245
  • 7[6]Ohno T, Mitsui T, Matsumura M. Photocatalytic activity of S-doped TiO2 photocatalyst under visible light. Chem Lett, 2003,32:364~365
  • 8[7]Umebayashi T, Yamaki T S, Tanaka S, et al. Visible light-induced degradation of methylene blue on S-doped TiO2. Chem Lett, 2003,32:330~331
  • 9[8]Wang J, Yin S, Zhang Q, et al. Mechanochemical synthesis of fluorine-doped SrTiO3 and its photo-oxidation properties. Chem Lett, 2003, 32:540~541
  • 10[9]He J, Zhao J, Shen T, et al. Photosensitization of colloidal titania particles by electron injection from an excited organic dye-antennae function. J Phys Chem B, 1997, 101: 9027~9034

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