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第11期 朱琼琼等:纤维素在炭化和活化过程中的结构变化 ·1551· its Application in Preparation Actirated Carbon.Xuzhou:China biomass residues and char utilization for the production of activa- University of Mining and Technology Press,2002 ted carbons.J Anal Appl Pyrol,2009,85(1/2)134 (解强,边炳鑫.煤的炭化过程控制理论及其在煤基活性炭制 04] Kovalevski V V,Buseck P R,Cowley J M.Comparison of car- 备中的应用.徐州:中国矿业大学出版社,2002) bon in shungite rocks to other natural carbons:an X-ray and TEM [0]Zhang L B,Tu JH,Peng J H,et al.Study on structural change study.Carbon,2001,39 (2):243 of tobacco stems during carbonization.Chem Ind For Prod, [15]Fujimoto H.Theoretical X-ay scattering intensity of carbons with 2006,26(2):44 turbostratic stacking and AB stacking structures.Carbon,2003, (张利波,涂建华,彭金辉,等.烟杆炭化过程中结构变化的 419(8):1585 研究.林产化学与工业,2006,26(2):44) [16]El-Hendawy A N A.Variation in the FTIR spectra of a biomass [11]Prauchner M J,Pasa V,Molhallem N DS,et al.Structural evo- under impregnation,carbonization and oxidation conditions.J lution of Eucalyptus tar pitch-based carbons during carbonization. Anal Appl Pyrol,2006.75(2):159 Biomass Bioenergy,2005,28(1):53 [17]Xie Q,Zhang S Q.Theoretical fundamentals to preparation of [2]Romin S,Gonzilez J F,Gonzalez-Garcia C M,et al.Control of coal-based activated carbon with high specific surface area.Car- pore development during CO2 and steam activation of olive bon Sci Technol,2002,12(2):24 stones.Fuel Process Technol,2008,89(8):715 (解强,张双全.制备高比表面积煤基活性炭的理论基础. [13]Gonzalez J F,Romin S,Encinar J M,et al.Pyrolysis of various 炭素科技,2002,12(2):24)第 11 期 朱琼琼等: 纤维素在炭化和活化过程中的结构变化 its Application in Preparation Activated Carbon. Xuzhou: China University of Mining and Technology Press,2002 ( 解强,边炳鑫. 煤的炭化过程控制理论及其在煤基活性炭制 备中的应用. 徐州: 中国矿业大学出版社,2002) [10] Zhang L B,Tu J H,Peng J H,et al. Study on structural change of tobacco stems during carbonization. Chem Ind For Prod, 2006,26( 2) : 44 ( 张利波,涂建华,彭金辉,等. 烟杆炭化过程中结构变化的 研究. 林产化学与工业,2006,26( 2) : 44) [11] Prauchner M J,Pasa V,Molhallem N D S,et al. Structural evo￾lution of Eucalyptus tar pitch-based carbons during carbonization. Biomass Bioenergy,2005,28( 1) : 53 [12] Romn S,Gonzlez J F,Gonzlez-García C M,et al. Control of pore development during CO2 and steam activation of olive stones. Fuel Process Technol,2008,89( 8) : 715 [13] Gonzlez J F,Romn S,Encinar J M,et al. Pyrolysis of various biomass residues and char utilization for the production of activa￾ted carbons. J Anal Appl Pyrol,2009,85( 1 /2) : 134 [14] Kovalevski V V,Buseck P R,Cowley J M. Comparison of car￾bon in shungite rocks to other natural carbons: an X-ray and TEM study. Carbon,2001,39( 2) : 243 [15] Fujimoto H. Theoretical X-ray scattering intensity of carbons with turbostratic stacking and AB stacking structures. Carbon,2003, 419( 8) : 1585 [16] El-Hendawy A N A. Variation in the FTIR spectra of a biomass under impregnation,carbonization and oxidation conditions. J Anal Appl Pyrol,2006,75( 2) : 159 [17] Xie Q,Zhang S Q. Theoretical fundamentals to preparation of coal-based activated carbon with high specific surface area. Car￾bon Sci Technol,2002,12( 2) : 24 ( 解强,张双全. 制备高比表面积煤基活性炭的理论基础. 炭素科技,2002,12( 2) : 24) · 1551 ·
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