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化学进展 2001, Vol. 13 Issue (01): 10- 前一篇   后一篇

• 综述与评论 •

多孔炭的纳米结构及其解析

刘振宇;郑经堂;王茂章;张碧江   

  1. 中科院山西煤炭化学所 太原 030001
  • 收稿日期:1998-10-01 修回日期:2000-01-01 出版日期:2001-01-24 发布日期:2001-01-24

Nanostructure and Analysis of Porous Carbons

Liu Zhenyu;Zheng Jingtang;Wang Maozhang;Zhang Bijiang   

  1. Institute of Coa Chemistry, Chinese Academy of Sciences, Taiyuan 030001, China
  • Received:1998-10-01 Revised:2000-01-01 Online:2001-01-24 Published:2001-01-24
多孔炭是由超微粒子、表面、不规则结构以及纳米空间组成的混合体系, 其孔径范围以及超微粒子均在纳米尺度, 故而纳米结构包含两方面的内容: 纳米空间和纳米级粒子。对以上内容的研究和内在机理的阐明都是当今吸附领域研究的热点。本文就以上诸方面作一综述, 由此可能对深入理解吸附分离过程、阐明吸附模式、吸附机理等有一定的帮助。
Porous carbons are composed of nanoparticles,surfaces,irregular textures and nanospaces. Nano structure includes nanospace and nanoparticle because the pores ranges and the particles are both in the nanometer scale. The research in terests on adsorption focus on microstructure and adsorption mechanism of porous solids. These are helpful for s to further understand the process of adsorption, adsorption model and adsorption mechanism.

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[ 1 ] Byrne J F , Marsh H. Porosity in Carbons, Characterization and Applications (ed. Patrick J W ). New York: Halsted Press,1995. 1- 46
[ 2 ] Ermolenko I N , Lyubliner I P, Gulko N V. Chemically Modified Carbon Fibers and Their Applications. New York:VCH Publishers Inc. , 1990. 176- 199
[ 3 ] 炭素材料学会编(ed. The Japan Carbon Society). 新·炭素材料入门(New Introduction to Carbon Materials ). Tokyo:Realize Inc. , 1996. 123- 128
[ 4 ] 金子克美(Kaneko K). 固体物理(Solid State Physics). 1992,27 (6) : 403- 414
[ 5 ] 濑户山德彦(Setoyama N ) , 金子克美(Kaneko K). 材料科学(Mono Kagaku) , 1995, 32 (5) : 213- 218
[ 6 ] 金子克美(Kaneko K). PETROTECH, 1994, 17 (5) : 396- 401
[ 7 ] 铃木孝臣(Suzuki T) , 金子克美(Kaneko K). 表面(Hyomen) ,1995, 33 (3) : 157- 163
[ 8 ] Sing K S W , Everett D H, Haul R A W , Moscou L , Pierotti R A , Rouquerol J , Simmieniewska T. Pure & Appl. Chem. ,1985, 57 (4) : 603- 619
[ 9 ] Kaneko K, Ishii C, Ruike M , Kuwabara H. Carbon, 1992, 30(7) : 1075- 1088
[ 10 ] Setoyama N , Suzuki T, Kaneko K. Carbon, 1998, 36 (10) :1459- 1467
[ 11 ] Laine J , Yunes S. Carbon, 1992, 30 (4) : 601- 604
[ 12 ] Rodriguez J , Rutted F, Laine J. Carbon, 1994, 32 (4) : 1536- 1537
[ 13 ] Rodriguez-Reinoso F. Fundamental Issues in Control of Carbon Gasification Reactivity (eds. Lahaye J , Ehrburger J ).Amsterdam: Kluwer Academic Publishers, 1991. 533- 571
[ 14 ] Carrott P J M , Freeman J J. Carbon, 1991, 29 (4/5) : 499-506
[ 15 ] Walker P L J r, Austin L G, Nandi S P. Chemistry and Physics of Carbon (ed. Walker P L J r). New York: Marcel Dekker, 1966, 2: 257- 326
[ 16 ] Sircar S, Golden T C, Rao M B. Carbon, 1996, 34 (1) : 1- 12
[ 17 ] Sircar S. Fundamentals of Adsorption (ed. Kodansha S M ).Tokyo: Kofansha, 1993. 3- 10
[ 18 ] McEnaney B, Wills M A. High Temperature Chemistry of Inorganic and Ceramic Materials (eds. Glasser F P, Potter P E). London: Chemical Society, 1977. 102- 126
[ 19 ] McEnaney B, Masters K J. Thermochimica Acta, 1984, 82:81- 102
[ 20 ] Rodriguez-Reinoso F. Carbon, 1998, 36 (3) : 159- 175
[ 21 ] Srivastava M , Singh H. Erdolund Kohl-Erdgas, 1994, 47(6) : 242- 245
[ 22 ] 糸 贺清( Itoga K) , 正 则(Tsuji M ). 表面(Hyomen ) ,1995, 33 (5) : 320- 329
[ 23 ] 藤田光孝(Fujita M ). 炭素(Tanso) , 1997, 180: 257- 265
[ 24 ] 中田恭子(Nakada K) , 藤田光孝(Fujita M ). 表面(Hyomen) ,1996, 34 (4) : 237- 244
[ 25 ] McEnaney B. Carbon, 1988, 26 (3) : 267- 274
[ 26 ] Bansal R C, Donnet J B, Stoeckli H F. Active Carbon. New York: Marcel Dekker, 1988, 1- 560
[ 27 ] Bohem H P. Advancein Catalysis. New York: Academic Press, 1966, 16: 179- 287
[ 28 ] Juntegen H. Carbon, 1977, 15 (5) : 273- 283
[ 29 ] 凯里泽夫(Kellezov H B ). 吸附技术基础( Fundamental of Adsorption Technology). 太原(Taiyuan) , 1983, 21- 98
[ 30 ] Gregg S J , Sing K S W. Adsorption, Surface Area and Porosity (2nd ed. ). London: Academic Press, 1982
[ 31 ] Sing K S W. Adsorption: Sci. & Tech. Dordrecht: Kluwer Academic Publishers, 1989. 3
[ 32 ] Balbuena P B, Lastoskie C, Keith E F, Quirk N.Fundamentals of Adsorption ( ed. Kodansha S M ). Tokyo,1993. 27- 34
[ 33 ] Ryu Z Y, Zheng J T, Wang M Z, Zhang B J. Carbon, 1999,37 (4) : 1257- 1264
[ 34 ] Steele W. Surface Sci. , 1973, 36: 317- 352
[ 35 ] Steele W. Chem. Rev. , 1993, 93: 2355- 2378
[ 36 ] Kaneko K. Adsorption on New and Modified Inorganic Sorbents, Studies in Surf. Sci. Catalysis, Vol 99. Elsevier Sci. , 1996, 573- 602
[ 37 ] DubininM M. Chem. Rev. , 1960, 60: 235- 243
[ 38 ] Bhambhani M R, Cuttin P A , Sing K S W , Turk D H. J.Colloid Interface Sci. , 1972, 38: 109- 117
[ 39 ] Everett D H, Powl J C. J. Chem. Soc. , Faraday Trans. I,1976, 72: 619- 636
[ 40 ] Kaneko K, Fukuzaki N , Kakei K, Suzuki T, Ozeki S.Langmuir, 1989, 5: 960- 965
[ 41 ] Kaneko K. Langmuir, 1987, 3: 357- 363
[ 42 ] 敏明(Enoki T). 表面(Hyomen) , 1996, 34 (6) : 311- 317
[ 43 ] Dubinin M M. Chem. Phy. Carbon (ed. Walker P L J r). New York: Marcel Dekker, 1966, 2: 51- 118
[ 44 ] Daley M A , Tandon D, Economy J , Hippo E J. Carbon,1996, 34 (10) : 1191- 1200
[ 45 ] Marsh H. Carbon, 1987, 25 (1) : 49- 58
[ 46 ] Rand B. J. Colloid Interface Sci. , 1976, 56 (2) : 337- 346
[ 47 ] McEnaney B, Mays T J. Introduction to Carbon Science (ed.Marsh H). London: Butter-worths, 1989. 153- 196
[ 48 ] Carrott P J M , Roberts R A , Sing K S W. Carbon, 1987, 25(6) : 769- 770
[ 49 ] Rodrigue-Reinoso F, Martin-Martinez J M , Prado-Burguete C. J. Phys. Chem. , 1987, 91: 515- 516
[ 50 ] Kruk M , Jaroniec M , Gadkaree K P. J. Colloid Interface Sci. , 1997, 192: 250- 256
[ 51 ] Setoyama N , Suzuki T, Kaneko K. Carbon, 1998, 36 (10) :1459- 1467
[ 52 ] 金子克美(Kaneko K). 炭素(Tanso) , 1999, 186: 50- 53
[ 53 ] Seaton N A , Walton J P R B, Quirke N. Carbon, 1989, 27(16) : 853- 861
[ 54 ] Oliver J P, Conklin W B, Szombathely M V. Characterization of Porous Solids III(eds. Rouquerol J , Rodriguez-Reinoso F,Sing K S W , Unger K K). Amsterdam: Elsevier, 1994. 81-89
[ 55 ] Evans R, Bettolo V M , Tarazone P. J. Chem. Soc. , Faraday Trans. II, 1986, 82 (10) : 1763- 1787
[ 56 ] Kruk M , Jaroniec M , Bereznitski Y. J. Colloid Interface Sci. , 1996, 182: 282- 288
[ 57 ] Lastoskie C, Gubbins K E, Quirke N. J. Phys. Chem. ,1993, 97: 4786- 4796
[ 58 ] Valladares D L , Rodriguez-Reinoso F, Zgrablich G. Carbon,1998, 36 (10) : 1491- 1499
[ 59 ] Kruk M , Jaroniec M , Choma J. Carbon, 1998, 36 (10) : 1447- 1458
[ 60 ] Muller E A , Gubbins K E. Carbon, 1998, 36 (10) : 1433-1438
[ 61 ] Turner A R, Quirke N. Carbon, 1998, 36 (10) : 1439- 1446
[ 62 ] 濑户山德彦(Setoyama N ) , 铃木孝臣(Suzuki T ) , 金子克美(Kaneko K). 炭素(Tanso) , 1997, 179: 159- 166

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摘要

多孔炭的纳米结构及其解析