Milby T.H., Baselt R.C. Hydrogen sulfide poisoning: Clarification of some controversial issues. Am. J. Ind. Med., 1999, 35(2): 192-195
[2]
Canela M.C., Alberici R.M., Jardim W.F. Gas-phase destruction of H2S using TiO2/UV-Vis. Journal of Photochemistry and Photobiology A: Chemistry, 1998,112(1):73-80
[3]
Xia L., Gu D., Tan J., et al. Photolysis of low concentration H2S under UV/VUV irradiation emitted from microwave discharge electrodeless lamps. Chemosphere, 2008, 71(9): 1774-1780
[4]
Seinfeld J.H., Pandis S. Atmospheric Chemistry and Physics: From Air Pollution to Climate Change (2nd Edition). John Wiley & Sons, 2006
[5]
Naman S.A., Al-Mishhadani N.H., Al-Shamma L.M. Photocatalytic production of hydrogen from hydrogen sulfide in ethanolamine aqueous solution containing semiconductors dispersion. International Journal of Hydrogen Energy, 1995, 20(4): 303-307
[6]
Subrahmanyam M., Supriya V.T., Reddy P.R. Photocatalytic H2 production with CdS-based catalysts from a sulphide/sulphite substrate: An effort to develop MgO-supported catalysts. International Journal of Hydrogen Energy, 1996, 21(2): 99-106
[7]
Koca A., Sahin M. Photocatalytic hydrogen production by direct sun light from sulfide/sulfite solution. International Journal of Hydrogen Energy, 2002, 27(4): 363-367
[8]
白雪峰, 吴丹, 王鹏. 硫化氢光催化分解制氢. 太阳能学报, 2008,29(10):1256-1261 Bai X.F., Wu D., Wang P. Photodecomposition of hydrogen sulfide to produce hydrogen. Acta Energiae Solaris Sinica, 2008,29(10):1256-1261(in Chinese)
[9]
Liu X., Hwang D.W., Yang X.F., et al. Photodissociation of hydrogen sulfide at 157.6 nm: Observation of SH bimodal rotational distribution. J. Chem. Phys., 1999, 111(9): 3940-3945
[10]
Kataoka S., Lee E., Tejedor-Tejedor M.I., et al. Photocatalytic degradation of hydrogen sulfide and in situ ft-Ir analysis of reaction products on surface of TiO2. Applied Catalysis B: Environmental, 2005, 61(1-2): 159-163
[11]
Glaze W.H., Kang J.W., Chapin D.H. The chemistry of water treatment processes involving ozone, hydrogen peroxide and ultraviolet radiation. Ozone: Sci. & Eng., 1987, 9(4): 335-352
[12]
徐晓军, 宫磊, 杨虹. 恶臭气体生物净化理论与技术(第1版). 北京:化学工业出版社, 2005
[13]
Huang H., Sun Z., Lu H., et al. Study on the poisoning tolerance and stability of perovskite catalysts for catalytic combustion of volatile organic compounds. Reaction Kinetics, Mechanisms and Catalysis, 2010,101(2):417-427
[14]
Dorman D.C., Moulin F.J., McManus B.E., et al. Cytochrome oxidase inhibition induced by acute hydrogen sulfide inhalation: Correlation with tissue sulfide concentrations in the rat brain, liver, lung, and Nasal Epithelium. Toxicol. Sci., 2002,65(1):18-25
[15]
Rogers L.J., Ashfold M.N.R., Matsumi Y., et al. Photolysis of CH3SH and H2S at 243.1 nm studied by photo fragment ion imaging. J. Chem. Soc. Faraday Trans., 1996, 92(24): 5181-5183
[16]
Wilson S.H.S., Howe J.D., Ashfold M.N.R. On the near ultraviolet photodissociation of hydrogen sulphide. Mol. Phys., 1996,88(3):841-858
[17]
Martinez-Haya B., Zapater I., Quintana P., et al. Photodissociation of dimethyl sulfide at 227.5 nm: Resonance-enhanced multiphoton ionization of the methyl fragment. Chem. Phys. Lett., 1999, 311(3-4):159-166
[18]
Koda S., Koga K., Takizawa K., et al. Photodissociation of H2S doped in low temperature rare gas solids under UV irradiation. Chem. Phys., 2001, 274(2-3): 283-289
[19]
胡小玲. 亚甲基蓝分光光度法测定空气中硫化氢不确定度评定. 北方环境, 2010, 22(3): 91-93 Hu X.L. The uncertainty evaluation of hydrogen sulfite determination in air with methylene blue spectropometry. Northern Environment, 2010, 22(3): 91-93(in Chinese)
[20]
孙静, 朱艳. 亚甲基兰分光光度法测定气态硫化氢方法研究. 环境科学与技术, 2004, 27(S1): 52-54 Sun J., Zhu Y. Method study on determination of gaseous H2S with methylene blue spectrophotometry. Environmental Science and Technology, 2004,27(S1):52-54(in Chinese)
[21]
卢卫. 亚甲基蓝分光光度法测定污染源废气中的硫化氢. 福建分析测试, 2004, 13(3-4): 2025-2026 Lu W. Determination of sulfurated hydrogen in waste gases of pollution resources by simplified methylene blue spectrophotometric method. Fujian Analysis & Testing, 2004, 13(3-4): 2025-2026(in Chinese)
[22]
王卫, 李荣超, 杨丽娟,等. 臭氧检测仪的研制. 中国仪器仪表, 2005, 2(5):48-50 Wang W., Li R.C., Yang L.J., et al. Research of the ozone monitor. Chinese Instrumentation, 2005, 2(5):48-50(in Chinese)