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石油焦是一种廉价的石油副产品,主要成分为碳.在快速发展的材料科学中,石油焦作为碳源材料显示出独特的作用,可以用来制备包括高比表面积活性炭、纳米碳化物材料、先进复合材料、电流变材料和锂离子电池负极材料等在内的新材料.这些利用途径都大大提高了石油焦的附加值,具有较大的经济效益,是石油焦传统应用领域以外的引人注目的新的应用途径.

参考文献

[1] Petroleum coke and titanium dioxide (TiO2) market trends[J].Materials World,2003,11(03):4.
[2] 申海平,王新军,王玉章,刘自宾.国产石油焦产量、质量及市场[J].化工技术经济,2004(01):11-15,20.
[3] Zamora RMR;Pilotzi AD;Mora RD;Moreno AD .Removal of detergents by activated petroleum coke from a clarified wastewater treated for reuse[J].Water Science and Technology,2004(2):91-98.
[4] 詹亮,李开喜,吕春祥,朱星明,宋燕,凌立成.超级活性炭的制备及其储氢性能初步研究[J].新型炭材料,2001(04):31-35.
[5] 邢伟,阎子峰.石油焦预氧化对超级活性炭孔结构和表面性质的影响[J].新型炭材料,2002(03):25-30.
[6] 孙新,查庆芳,郭燕生,李兆丰.石油焦系超级活性炭的孔结构控制[J].新型炭材料,2005(03):240-244.
[7] 刘海燕,凌立成,刘植昌,乔文明,刘朗.高比表面积活性炭的制备及其吸附性能的初步研究[J].新型炭材料,1999(02):21-25.
[8] 陈秋燕,袁文辉,关建郁,叶振华.炼油厂石油焦活性炭的制备[J].新型炭材料,1999(04):63-67.
[9] 陈进富,李兴存,李术元.石油焦活化机理的研究[J].燃料化学学报,2004(01):54-58.
[10] 杜亚平,毛清龙,张德祥,高晋生.石油焦基活性炭制备工艺对其吸附性能及孔结构的影响[J].新型炭材料,2003(03):225-230.
[11] 韩松,管正捷,古可隆,刘军利.石油焦制高比表面积粉状活性炭[J].石油化工,2000(03):171-175.
[12] 张晓昕;郭树才;邓贻钊 .高表面积活性碳的制备[J].材料科学与工程,1996,14(04):34-37.
[13] 张红波;伍恢和;刘洪波 .氢氧化钾石油焦质量配比对活性炭性能的影响[J].功能材料,1996,27(06):565-568.
[14] 刘洪波;张红波;伍恢和.石油焦基高比表面积活性炭的制备[J].炭素技术,1997(04):15-19.
[15] Zamora RMR.;Moreno AD.;Buitron G.;Schouwenaars R. .Production of activated carbon from petroleum coke and its application in water treatment for the removal of metals and phenol [Review][J].Water Science and Technology,2000(5-6):119-126.
[16] Schouwenaars R.;Moreno AD.;Zamora RMR. .Primary silver extraction with a high sulphur activated petroleum coke[J].Water Science and Technology,2004(1):155-162.
[17] Lee S H;Choi C S .Chemical activation of high sulfur petroleum cokes by alkali metal compounds[J].Fuel Processing Technology,2000,64:141-153.
[18] Shawwa AR.;Sego DC.;Smith DW. .Color and chlorinated organics removal from pulp mills wastewater using activated petroleum coke[J].Water research: A journal of the international water association,2001(3):745-749.
[19] 朱丽慧,马学鸣,雷景轩,赵海锋.纳米硬质合金的研究进展[J].稀有金属材料与工程,2004(04):349-353.
[20] Alizadeh A;Taheri-Nassaj E;Ehsani N .Synthesis of boron carbide powder by a carbothermic reduction method[J].Journal of the European Ceramic Society,2004,24(10-11):3227-3234.
[21] Goller G;Toy C;Tekin A et al.The production of boron carbide by carbothermic reduction[J].High Temperature Materials and Processes,1996,15(1-2):117-122.
[22] Potturu V. Kumar;Govind S. Gupta .Study of formation of silicon carbide in the Acheson process[J].Steel Research,2002(2):31-38.
[23] Rodriquez-Reinoso F;Diez MA;Narciso-Romero F .Influence of the carbon material on the synthesis of silicon carbide[J].Carbon: An International Journal Sponsored by the American Carbon Society,1999(11):1771-1778.
[24] G.S. GUPTA;P. VASANTH KUMAR;V.R. RUDOLPH .Heat-Transfer Model for the Acheson Process[J].Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science,2001(6):1301-1308.
[25] A.G. Vodop'yanov;O.A. Pamyatnykh;G.N. Kozhevnikov .Effect of Oxide Additives on the Morphology of Fine-Particle Silicon Carbide[J].Inorganic materials,2000(7):691-694.
[26] Rajagopalan PK.;Bose DK.;Krishnan TS. .Development of carbothermy for the preparation of hepta chromium carbide[J].Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics,2000(1/2):L1-L4.
[27] Cui X L;Cui L S;Wang L et al.Synthesis of titanium carbide powder from TiO2 and petroleum coke by reactive milling[J].Petroleum Science and Technology,2002,20(9-10):999-1007.
[28] Cui X L;Wang Y H;Wang L et al.Synthesis of nanometersized TiC and SiC from petroleum coke by reactive milling[J].Petroleum Science and Technology,2001,19(7-8):971-978.
[29] 崔晓龙,崔立山,王来,齐民,王燕华.石油焦反应研磨合成纳米碳化物[J].石油学报(石油加工),2002(01):14-17.
[30] 王艳香,谭寿洪,江东亮.反应烧结碳化硅的研究与进展[J].无机材料学报,2004(03):456-462.
[31] 郭领军,李贺军,薛晖,李克智,孙国岭.焦炭颗粒的平均细度对沥青基炭复合材料性能的影响[J].新型炭材料,2005(03):235-239.
[32] Chakrabarti O P;Das P K .High temperature load-deflection behaviour of reaction bonded SiC (RBSC)[J].Ceramics International,2001,27(05):559-563.
[33] 武七德,鄢永高,赵修建,郭兵健,李美娟,刘小磐.纯碳坯渗硅制备反应烧结碳化硅的研究[J].武汉理工大学学报,2003(06):1-3.
[34] WU Qi-de,GUO Bing-jian,YAN Yong-gao,ZHAO Xiu-jian,HONG Xiao-lin.Effect of SiO2 on the Preparation and Properties of Pure Carbon Reaction Bonded Silicon Carbide Ceramics[J].武汉理工大学学报(材料科学版)英,2004(01):54-57.
[35] 武七德,鄢永高,郭兵健,李美娟,刘小磐.以淀粉为填充剂的碳坯渗硅制备反应烧结碳化硅陶瓷[J].无机材料学报,2004(02):302-306.
[36] O P CHAKRABARTI;P K DAS;S MONDAL .Study of indentation induced cracks in MoSi_2-reaction bonded SiC ceramics[J].Bulletin of Materials Science,2001(2):181-184.
[37] Chakrabarti O.;Das P.K. .Reactive Infiltration of Si-Mo Alloyed Melt into Carbonaceous Preforms of Silicon Carbide[J].Journal of the American Ceramic Society,2000(6):1548-1550.
[38] A.Mendez;R.Santamaria;M.Granda;R.Menendez .Influence of Granular Carbons on the Thermal Reactivity of Pitches[J].Energy & Fuels,2004(1):22-29.
[39] Mendez A.;Santamaria R.;Granda M.;Menendez R. .The effect of the reinforcing carbon on the microstructure of pitch-based granular composites[J].Journal of Microscopy,2003(Pt.2):81-93.
[40] A. Mendez;R. Santamaria;M. Granda .Influence of granular carbons on pitch properties[J].Fuel,2003(10):1241-1250.
[41] Mendez A;Santamaria R;Menendez R et al.Influence of granular carbons on the pyrolysis behaviour of coal-tar pitches[J].Journal of Analytical and Applied Pyrolysis,2001,58:825-840.
[42] 刘其城,徐协文,周声劢.基体炭对无粘结剂C/C复合材料性能的影响[J].炭素,2002(02):11-14.
[43] 贺持缓,周声劢,刘其城.预氧丝原位炭化无粘结剂C/C复合材料工艺研究[J].湖南大学学报(自然科学版),2000(05):21.
[44] 卫建军;宋进仁;刘朗.粘接剂含量对短炭纤维增强炭基复合材料性能的影响[J].炭素技术,1997(04):25-27.
[45] 刘其城,周声劢,徐协文,周艺.无黏结剂碳/陶复合材料的抗氧化机理[J].化工学报,2002(11):1188-1192.
[46] Korobko E V;Belous N K;Lyubliner I P et al.Electrorheological properties of carbon fiber suspensions in a polymethylsiloxane liquid[J].Colloid Journal,2000,62(02):148-151.
[47] 董鹏,王春慧,赵锁奇.高性能石油焦颗粒电流变液的研究[J].化学物理学报,2001(05):555-558.
[48] 郝兰锁,王莉,董鹏,宋怀河,沈曾民.以残渣油组分为原料制备高性能电流变液的研究[J].石油学报,2001(z1):36-42.
[49] 王春慧,董鹏,孙志伟.FCC澄清油炭化产物电流变液的特性研究[J].石油化工,2001(06):460-463.
[50] 任旭梅,吴川,何国蓉,李汉军,吴锋,王国庆,陈实.锂离子电池正负极材料研究进展[J].化学研究与应用,2000(04):360-364.
[51] 吴升晖;尤金跨;林祖赓 .锂离子电池碳负极材料的研究[J].电源技术,1998,22(01):35-39.
[52] T.D. Tran;D.J. Derwin;p. Zaleski;X. Song .Lithium intercalation studies of petroleum cokes of different Morphologies[J].Journal of Power Sources,1999(0):296-299.
[53] Tran T D;Spellman L M;Goldberger W M et al.Lithiumintercalation in heat-treated petroleum cokes[J].Journal of Power Sources,1997,68:106-109.
[54] 孟庆函,李开喜,宋燕,吕春祥,凌立成.石油焦基活性炭电极电容特性研究[J].新型炭材料,2001(04):18-21,26.
[55] J.Li;K.Naga;Y.Ohzawa;T.Nakajima;A.I.Shames;A.M.Panich .Effect of surface fluorination on the electrochemical behavior of petroleum cokes for lithium ion battery[J].Journal of Fluorine Chemistry,2005(2):265-273.
[56] Nakajima T;Li J;Naga K et al.Surface structure and electrochemical properties of surface-fluorinated petroleum cokes for lithium ion battery[J].Journal of Power Sources,2004,133:243-251.
[57] Ricardo Alcantara;Pedro Lavela;Gregorio F.Ortiz;Jose L.Tirado;Rosa Menendez;Ricardo Santamaria;Juan M.Jimenez-Mateos .Electrochemical,textural and microstructural effects of mechanical grinding on graphitized petroleum coke for lithium and sodium batteries[J].Carbon: An International Journal Sponsored by the American Carbon Society,2003(15):3003-3013.
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