Bi-Ti-O体系的制备、表征及性能

彭福长, 张飞跃, 范闽光, 李斌, 李景林. Bi-Ti-O体系的制备、表征及性能[J]. 环境工程学报, 2013, 7(5): 1641-1645.
引用本文: 彭福长, 张飞跃, 范闽光, 李斌, 李景林. Bi-Ti-O体系的制备、表征及性能[J]. 环境工程学报, 2013, 7(5): 1641-1645.
Peng Fuchang, Zhang Feiyue, Fan Minguang, Li Bin, Li Jinglin. Preparation, characterization and photocatalytic activities of Bi-Ti-O[J]. Chinese Journal of Environmental Engineering, 2013, 7(5): 1641-1645.
Citation: Peng Fuchang, Zhang Feiyue, Fan Minguang, Li Bin, Li Jinglin. Preparation, characterization and photocatalytic activities of Bi-Ti-O[J]. Chinese Journal of Environmental Engineering, 2013, 7(5): 1641-1645.

Bi-Ti-O体系的制备、表征及性能

  • 基金项目:

    国家自然科学基金资助项目(21063001)

    广西自然科学基金资助项目(2010GXNSFA013041)

    广西石化资源加工及过程强化技术重点实验室主任课题基金项目(K007)

  • 中图分类号: X703

Preparation, characterization and photocatalytic activities of Bi-Ti-O

  • Fund Project:
  • 摘要: 采用溶胶-活性炭浸渍法制备了Bi-Ti-O体系光催化剂,并以XRD、SEM、UV-Vis DRS对其进行表征。以在紫外光照射下对甲基橙的降解评价其光催化活性,分别考察了不同Bi/Ti比及煅烧温度的影响。实验表明,其光催化性能由粒径、吸光性能等共同影响。煅烧温度的提高使其在紫外区吸光性能有所下降,光催化活性相应降低。随着Bi含量的增加,在500℃时其禁带宽度有增加趋势,其形貌也发生了较大变化。而温度的升高,也使样品逐渐烧结团聚,降低了其光催化活性。在Bi/Ti比为5:5和7:3,煅烧温度为500℃时,由于Bi2O3、Bi2Ti2O7和Bi4Ti3O12三相共生共存,其混晶效应使得在紫外区的吸收明显增强,相应地提高了光催化活性。
  • [1] Xu J. J., Ao Y. H., Fu D. G., et al. Synthesis of Bi2O3-TiO2 composite film with high photocatalytic activity under sunlight irradiation. Appl. Surf. Sci., 2008, 255(5): 2365-2369
    [2] Ulrike D. The surface science of titanium dioxide. Surf. Sci. Rep., 2003, 48(5-8): 53-229
    [3] Wu X. H., Qin W., Li L., et al. Photocatalytic property of nanostructured Fe3+-doped Bi2O3 films. Catal. Commun., 2009, 10(5): 600-604
    [4] Ghorai T. K., Dhak D., Dalai S., et al. Effect of photocatalytic activities of nano-sized copper molybdate (CuMoO4)-doped bismuth titanate (Bi2Ti4O11)(CMBT) alloy. Mater. Res. Bull., 2008, 43(7): 1770-1780
    [5] Su W. F., Lu Y. T. Synthesis, phase transformation and dielectric properties of sol-gel derived Bi2Ti2O7 ceramics. Mater. Chem. and Phys., 2003, 80(3): 632-637
    [6] Wang J., Jing L. Q., Xue L. P., et al. Enhanced activity of bismuth-compounded TiO2 nanoparticles for photocatalytically degrading rhodamine B solution. J. Hazard. Mater., 2008, 160(1): 208-212
    [7] 丁鹏,贾欣茹,唐艳茹,等. 复合氧化物TiO2/Bi2O3 对甲苯的光催化作用. 功能材料, 2007, 38 (9): 1468-1470 Ding P., Jia X. R., Tang Y. R., et al. Photocatalytic research of TiO2/Bi2O3 composite catalysts on oxidation of toluene. Journal of Functional Materials, 2007, 38 (9): 1468-1470(in Chinese)
    [8] 张玉红,熊国兴,杨维慎,等. 溶胶-凝胶法制备复合MxOy-TiO2光催化剂. 物理化学学报, 2001, 17 (3): 273-277 Zhang Y. H., Xiong G. X., Yang W. S., et al. Preparation of MxOy-TiO2 photocatalysts by sol-gel method. Acta Physico-chimica Sinica, 2001, 17 (3): 273-277(in Chinese)
    [9] 李斌,李士杰,王颖霞,等. CeO2和γ-Al2O3混合氧化物的共生共存效应. 催化学报, 2010, 31(5): 528-534 Li B., Li S. J., Wang Y. X., et al. Intergrowth effects in CeO2-γ-Al2O3 mixed oxides. Chinese J. Catal., 2010, 31(5): 528-534(in Chinese)
    [10] Gmtzel M. Heterogeneous Photochemical Electron Transfer. Baton Route, FL: CRC Press, 1988
    [11] 王岩玲,王俊恩,尹鹰. 球磨法制备异质结型光催化剂及催化性能. 化学研究与应用, 2009, 21(12): 1612-1617 Wang Y. L., Wang J. E., Yin Y. Preparation of the coupled photocatalyst ZnO/Bi4Ti3O12 by ball milling and its activity evaluation. Chemical Research and Application, 2009, 21(12): 1612-1617(in Chinese)
    [12] Yao W. F., Wang H., Xu X. H., et al. Photocatalytic property of bismuth titanate Bi2Ti2O7. Appl. Catal. A: Gen., 2004, 259(1): 29-33
    [13] Yao W. F., Wang H., Xu X. H., et al. Synthesis and photocatalytic property of Bismuth Titanate Bi4Ti3O12. Mater. Lett., 2003, 57(13-14): 1899-1902
    [14] Blasse G. The influence of crystal structure on the luminescence of tantalates and niobates. J. Solid State Chem., 1988, 72(1): 72-79
    [15] Srivastava A. M., Ackerman J. F. On the luminescence of Ba5M4O15 (M=Ta5+, Nb5+). J. Solid State Chem., 1997, 134(1): 187-191
    [16] Kudo A., Kato H., Nakagawa S. Water splitting into H2 and O2 on new Sr2M2O7 (M=Nb and Ta) photocatalysts with layered perovskite structures: Factors affecting the photocatalytic activity. J. Phys. Chem. B, 2000, 104(3): 571-575
    [17] Xi B. D., Liu H. L. Photocatalytic degradation of PCP-Na with TiO2 photocatalysis loaded with platinum. J. Environ. Sci., 2002, 14 (3): 428-432
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  • 收稿日期:  2012-06-10
  • 刊出日期:  2013-05-22
彭福长, 张飞跃, 范闽光, 李斌, 李景林. Bi-Ti-O体系的制备、表征及性能[J]. 环境工程学报, 2013, 7(5): 1641-1645.
引用本文: 彭福长, 张飞跃, 范闽光, 李斌, 李景林. Bi-Ti-O体系的制备、表征及性能[J]. 环境工程学报, 2013, 7(5): 1641-1645.
Peng Fuchang, Zhang Feiyue, Fan Minguang, Li Bin, Li Jinglin. Preparation, characterization and photocatalytic activities of Bi-Ti-O[J]. Chinese Journal of Environmental Engineering, 2013, 7(5): 1641-1645.
Citation: Peng Fuchang, Zhang Feiyue, Fan Minguang, Li Bin, Li Jinglin. Preparation, characterization and photocatalytic activities of Bi-Ti-O[J]. Chinese Journal of Environmental Engineering, 2013, 7(5): 1641-1645.

Bi-Ti-O体系的制备、表征及性能

  • 1. 广西大学化学化工学院广西石化资源加工及过程强化技术重点实验室,南宁 530004
基金项目:

国家自然科学基金资助项目(21063001)

广西自然科学基金资助项目(2010GXNSFA013041)

广西石化资源加工及过程强化技术重点实验室主任课题基金项目(K007)

摘要: 采用溶胶-活性炭浸渍法制备了Bi-Ti-O体系光催化剂,并以XRD、SEM、UV-Vis DRS对其进行表征。以在紫外光照射下对甲基橙的降解评价其光催化活性,分别考察了不同Bi/Ti比及煅烧温度的影响。实验表明,其光催化性能由粒径、吸光性能等共同影响。煅烧温度的提高使其在紫外区吸光性能有所下降,光催化活性相应降低。随着Bi含量的增加,在500℃时其禁带宽度有增加趋势,其形貌也发生了较大变化。而温度的升高,也使样品逐渐烧结团聚,降低了其光催化活性。在Bi/Ti比为5:5和7:3,煅烧温度为500℃时,由于Bi2O3、Bi2Ti2O7和Bi4Ti3O12三相共生共存,其混晶效应使得在紫外区的吸收明显增强,相应地提高了光催化活性。

English Abstract

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