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改性活性炭吸附二氯乙烷性能 被引量:10

Adsorption properties of modified activated carbon for 2-dichloroethane
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摘要 为探讨改性活性炭吸附有机气体性能的影响,商业活性炭分别经过1 mol/L的硝酸、盐酸、硫酸,600,700和800℃处理。通过Boehm滴定、傅式转换红外光谱(FTIR)、比表面积分析仪对活性炭样品的物化性质进行测试。以二氯乙烷为吸附质进行吸附实验研究,结果表明:酸改性样品的表面酸性官能团数量增加,热改性样品的表面碱性官能团数量增加;热改性比酸改性更有效的优化活性炭的孔结构;增大活性炭的理论有效孔容是提高二氯乙烷吸附量的有效途径,表面官能团的增加可以促进活性炭对二氯乙烷的吸附作用。 To study the adsorption characteristics of organic vapor on modified activated carbon, commercial activated carbon was treated separately with 1 mol/L nitric acid, 1 mol/L sulfuric acid, 1 mol/L hydrochloric acid at 600, 700 and 800 ℃. Physicochemical properties of these modified activated carbons were described by Boehm titration; Fourier transformed infrared spectroscopy (FTIR) and BET surface area measurement. The adsorption experiments were conducted with 2-dichloroethane acting as adsorbate. The results show that the total amount of acid groups increase after acid modification, while the amount of basic groups increases after heating modification; heating modification is more effective than acid modification for optimizing pore structure of activated carbon; increasing the effective pore volume is an effective way to improve adsorption capacity of 2-dichloroethane, while raising the surface functional groups can stimulate absorption effect of 2-dichloroethane.
出处 《中南大学学报(自然科学版)》 EI CAS CSCD 北大核心 2013年第4期1701-1707,共7页 Journal of Central South University:Science and Technology
基金 国家自然科学基金资助项目(20976200)
关键词 改性活性炭 表面基团 孔结构 吸附 吸附能 modified activated carbon surface groups pore structure adsorption adsorption energy
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参考文献21

  • 1Ao C H, Lee S C. Indoor air purification by photo catalyst TiO2 immobilized on an activated Carbon filter installed in an air cleaner[J]. Chemical Engineering Science, 2005, 60(1 ): 103-109.
  • 2Lillo-Rodenas M A, Fletcher A J, Thomas K M. Competitive adsorption of a benzene-toluene mixture on activated carbons at low concentration[J]. Carbon, 2006, 44(8): 1455-1463.
  • 3Byeon J H, Park J H, Yoon K Y, et al. Removal of volatile organic compounds by spark generated carbon aerosol particles[J]. Carbon, 2006, 44(10): 2089-2108.
  • 4Chiang Y C, Chiang P C, Huang C P, et al. Effects of pore structure and temperature on VOC adsorption activated carbon[J]. Carbon, 2001, 39(4): 523-534.
  • 5Chuang C L, Chiang P C, Chang E E, et al. Modeling VOCs adsorption onto activated carbon[J]. Chemosphere, 2003, 53(I): 17-27.
  • 6Lillo-Rodenas M A, Cazoda-Amoros D, Linares-Solano, et al. Behaviour of activated carbons with different pore size distributions and surface oxygen groups for benzene and toluene adsorption at low concentration[J]. Carbon, 2005, 43(8): 1758-1767.
  • 7Domingo-Garcia M, Lopez-Garzon F J, Perez-Mendoza M, et al.Effect of some oxidation treatments on the textural Characteristics and surface chemical nature of an activated carbon[J]. Journal of Colloid and Interface Science, 2000, 222(2) 233-240.
  • 8Valente Nabais J M, Carrott P J M, Ribeiro Carrott M M L, et al. Preparation and modification of activated carbon fibres by microwave heating[J]. Carbon, 2004, 42(7): 1315-1320.
  • 9Chert P J, Wu S. Acid/base-treated activated carbons: Characterization of functional groups and metal adsorptive properties[J]. Langmuir, 2004, 20(6): 2233-2242.
  • 10Strelko J V, Malik D J, Streat M. Characterisation of the surface of oxidized carbon adsorbents[J]. Carbon, 2002, 40(1): 95-104.

二级参考文献9

  • 1[1]Muniz J,Marban G,Fuertes A B.Low temperature selective catalytic reduction of NO over modified activated carbon fibres[J].Appl Catal B,2000,27:27-36.
  • 2[2]Wan Y Z,Wang Y L,Cheng G X.Preparation and characterization of activated carbon fibers supporting silver loaded mesopprous molecular sieves[J].Carbon,2001,39:1065-1616.
  • 3[3]Alcanizmonge J,Delacasalillo M A,Cazorlaamoros D.Methane storage in activated carbon fibres[J].Carbon,1997,35(2):291-296.
  • 4[4]Osmond N M.Activated carbon fiber adsorbent materials[J].Adsorp Sci Technol,2000,18(6):529-539.
  • 5[8]Dela M A,Alcaniz J,Raymundo E.Molecular sieve properties general purpose carbon fibres[J].Carbon,1998,36(9):1353-1360.
  • 6[9]Oka H,Kawano S.The modification of in activated carbon fibres by chemical vapour deposition and its effects on molecular sieve selectivity[J].Carbon,1998,36(4):377-382.
  • 7[10]Mangun C L,Benak K R,Economy J,et al.Surface chemistry,pore size and adsorption properties of activated carbon fibres and precurors treated with ammonia[J].Carbon,2001,39:1809-1820.
  • 8[11]Chung Tsair-Wang,Chung Chin-Chun.Increase in the amount of adsorption on modified activated carbon by using neutron flux irradiation[J].Chem Eng Sci,1999,54:1803-1809.
  • 9[14]Blanco Lopez M C,Martinez-Alonso A,Tascon J M D.Microporous texture of activated carbon fibres prepared from Nomex aramid fibres[J].Micro-Mesoporus Mater,2000,34:171-179.

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