[1] Borensen C, Kirchner U, Scheer V, et al. Mechanism and kinetics of the reactions of NO2 or HNO3 with Alumina as a mineral dust model compound[J]. Journal of Physical Chemistry A, 2000, 104:5036-5045
[2] Zakharenko V S. Photoadsorption and photocatalytic oxidation on the metal oxides components of tropospheric solid aerosols under the Earth’s atmosphere conditions[J]. Catalysis Today, 1997,39:243-249
[3] Johnson J E, Harrison H. Carbonyl sulfide concentrations in the surface waters and above the pacific ocean[J]. Journal of Geophysical Research,1986, 91:7883-7888
[4] Bingemer H G, Burgermeister S, Zimmerman R L, et al. Atmospheric OCS-evidence for a contribution of anthropogenic sources[J]. Journal of Geophysical Research, 1990, 95:20617-20622
[5] 孙斌,潘循皙,侯键,等. 火花放电条件下CS2转化为OCS的反应[J]. 环境科学, 2002, 23:23-28
[6] William P, Julian W H. Photooxidation of carbon disulfide[J]. Journal of Physical Chemistry, 1971, 75(7):854-860
[7] Wang L, Zhang F, Chen J M. Carbonyl sulfide derived from catalytic oxidation of carbon disulfide over atmospheric particles[J]. Environmental Science Technology, 2001, 35:2543-2547
[8] Wang L, Zhang F, Chen J M. Studies on catalytic oxidation of CS2 over atmospheric particles and oxide catalysts[J]. Science in China (Series B), 2001, 44(6):587-595
[9]
[10] 王琳,宋国新,张峰,等. 大气颗粒物对CS2催化氧化反应动力学研究[J]. 高等学校化学学报, 2002, 35(12):1738-1742
[11] 王琳,张峰,陈建民. CS2和大气颗粒物的多相催化反应研究[J]. 高等学校校化学学报, 2002, 23(5):866-870
[12] Vogt R, Elliott C H, Allen C, et al. Some new laboratory approaches to studying tropospheric heterogeneous reactions[J]. Atmospheric Environment, 1996, 30(10/11):1729-1737
[13] Peak D, Ford R G, Sparks D L. An in situ ATR-FTIR investigation of sulfate bonding mechanisms on goethite[J]. Journal of Colloid and Interface Science,1999,218:289-299
[14] Ullerstam M, Vogt R, Langer S, et al. The kinetics and mechanism of SO2 oxidation by O3 on mineral dust[J]. Physical Chemistry and Chemistry Physics,2002, 4:4604-4699
[15] Usher C R, Al-Hosney H, Carlos S, et al. A laboratory study of the heterogeneous uptake and oxidation of sulfur dioxide on mineral dust particles[J]. Journal of Geophysical Research, 2002, 107:4713-4721
[16] Prashant V K. Photochemistry on nonreactive and reactive (semiconductor) surfaces[J]. Chem Rev, 1993, 93:267-300
[17] 王晓,吴洪波,陈建民. 常压和真空下CS2的光氧化反应[J]. 环境科学,2005,26(2):45-49
[18] 张建良,潘循皙,张仁熙,等. 对流层中CS2光氧化研究[J]. 环境化学, 2003, 22(1):26-31
[19] Goodman A L, Li P, Usher C R, et al. Heterogeneous uptake of sulfur dioxide on aluminum and magnesium oxide particles[J]. Journal of Physical Chemistry, 2001, 105:6109-6120
[20] 井立强,孙晓君,徐自力,等. ZnO超微粒子光催化氧化SO2的研究[J]. 催化学报, 2002, 23(1):37-40