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Gas phase tricholoethylene removal at low concentration using activated carbon fiber 被引量:4

Gas phase tricholoethylene removal at low concentration using activated carbon fiber
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摘要 The breakthrough adsorption behaviors of gas phase trichloroethylene in a packed bed of activated carbon fibers(ACF) were investigated. The specific surface area of the ACF was 600 m 2/g, 1400 m 2/g and 1600 m 2/g, respectively, and the concentration of trichloroethylene ranged from 270 mg/m 3 to 2700 mg/m 3. Results showed that the capacity of adsorption increased with increasing specific surface area, the relationship between the logarithms of 10% breakthrough time and concentration was approximately linear over the experimental range, the breakthrough time decreased with increasing temperature and humidity. The breakthrough curves at different inlet concentration or different temperature can be predicted by several simple theoretical models with good agreements. The breakthrough adsorption behaviors of gas phase trichloroethylene in a packed bed of activated carbon fibers(ACF) were investigated. The specific surface area of the ACF was 600 m 2/g, 1400 m 2/g and 1600 m 2/g, respectively, and the concentration of trichloroethylene ranged from 270 mg/m 3 to 2700 mg/m 3. Results showed that the capacity of adsorption increased with increasing specific surface area, the relationship between the logarithms of 10% breakthrough time and concentration was approximately linear over the experimental range, the breakthrough time decreased with increasing temperature and humidity. The breakthrough curves at different inlet concentration or different temperature can be predicted by several simple theoretical models with good agreements.
出处 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2004年第1期53-55,共3页 环境科学学报(英文版)
关键词 活性炭纤维 吸附 气相污染物 浓度 污染治理 trichloroethylene activated carbon fiber adsorption breakthrough curve
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  • 1[1]Cal M P, Rood M J, Larson S M, 1996. Removal of VOCs from humidified gas streams using activated carbon cloth[J]. Gas Separation & Purification, 10(2): 117-121.
  • 2[2]Kang F Y, Huang Z H, Liang K M et al., 2001. Adsorption of volatile organic compounds in nigrogen streams on the oxidized activated carbon fibers[ J ].Adsorption Science & Technology, 19(5): 423-433.
  • 3[3]Huang C C, Lin Y C, Fang C L, 1999. Dynamic adsorption of organic solvent vapors onto a packed bed of activated carbon cloth[J]. Separation Science and Technology, 34(4): 555-570.
  • 4[4]Li J W, Yu Z B, Ming G et al., 1997. Trihalomethanes adsorption on activated carbon fiber and granular activated carbon [ J ]. Water, Air, and Soil Pollution, 97: 367-378.
  • 5[5]McKone E T, 1987. Human exposure to volatile organic compounds in household tap water: the indoor inhalation pathway [J]. Environmental Science and Technology, 21: 1194-1201.
  • 6[6]Suzuki Motoyuki, 1991. Application of fiber adsorbents in water treatment [ J ].Water Science and Technology, 23: 1649-1658.
  • 7[7]Vanosdell D W, Owen M K, Jaffe L B, 1996. VOC removal at low contaminant concentration using granular activated carbon [ J ]. Journal of Air & Waste Management Association, 46(8): 883-890.
  • 8[8]Yoon Y H, Nelson J H, 1984a. Application of gas adsorption kinetics-Ⅰ. A theoretical model for respirator cartridge service life[J]. American Industrial Hygiene Association Journal, 45(8): 509-516.
  • 9[9]Yoon Y H, Nelson J H, 1984b. Application of gas adsorption kinetics-Ⅱ. A theoretical model for respirator cartridge sorvice life and its practical applications[J]. American Industrial Hygiene Association Journal, 45 (8):517-524.
  • 10[10]Yoshida Kikuo, 1993. Preliminary exposure assessment of volatile chlorinated hydrocarbons in Japan[J]. Chemosphere, 27(4): 621-630.

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