影像科学与光化学 ›› 1994, Vol. 12 ›› Issue (2): 97-103.DOI: 10.7517/j.issn.1674-0475.1994.02.97

• 研究论文 •    下一篇

ZnO·WO3悬浮水溶液中SO2的光催化氧化

王增华, 庄启星   

  1. 厦门大学化学系 厦门 361005
  • 收稿日期:1993-02-08 修回日期:1993-12-06 出版日期:1994-05-20 发布日期:1994-05-20
  • 通讯作者: 庄启星
  • 基金资助:
    国家自然科学基金

PHOTOCATALYTIC OXIDATION OF SO2 IN AQUEOUS SUSPENSION OF ZnO.WO3

WANG ZENG-HUA, ZHUANG, QI-XING   

  1. Department of Chemistry, State Key Laboratory for Physical Chemistry of the Solid Surface, Xiamen University, Xiamen 361005, P. R. China
  • Received:1993-02-08 Revised:1993-12-06 Online:1994-05-20 Published:1994-05-20

摘要: 本文考察了ZnO·WO3悬浮水溶液中污染物SO2的可见光催化氧化并建议通空气处理较高浓度的SO32-扩水溶液。含0.15mol/LSO32-水溶液可见光照2h可将SO32-基本上光催化氧化成SO42-。对这光助SO32-自发氧化反应中可能平行存在的自发、多相催化、光化学和光催化等反应进行实验对比;筛选出克分子比0.5ZnO·WO为最佳掺杂配比;考察了光催化剂热处理、空气流量、pH对光催化活性的影响,得出pH7.5为最佳值;太阳光催化SO32-氧化速率比室内实验更快,展现了利用太阳能于环保的应用前景,对所有实验结果都给以理论解释,并提出一个较详细的反应机理。

关键词: 污染物SO2, 亚硫酸盐, 硫酸盐, 光催化氧化

Abstract: The photocatalytic oxidation of pollutant SO2 in aqueous suspension of ZnO·WO3 under visible light irradiation was investigated and an air flowing was proposed to treatconcentrated SO32- solution. The SO32-,contained in an aqueous solution of 0.15 mol/L,was almost photocatalytically oxidized to produce SO42- within 2h irradiation.In photoassisted spontaneous oxidation of SO32-,such coexistent reactions as spon-taneous,heterogeneously catalytic,photochemical and photocatalytic reactions hclVe beencompared by experiments.Gram molecular ratio 0.5 ZnO·WO3 was chosen to be the opti-mal doping ratio.The effect of the heat treatment of photocatalyst,air flowing and pH onphotocatalytic activity has been determined and pH7.5 was identified to be the optimal.Solar photocatalytic oxidation of SO32- shows the faster reaction rate than that in indoorexperimentst which develops a better prospects for the application of solar photocatalysisto environmental protection,All experimental results are explained in theory.A reactionmechanism has been proposed in detail.

Key words: pollutant SO2 sulfite, sulfate, photocatalytic oxidation