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微波活化对石油焦气化特性的影响 被引量:9

Effect of Microwave Activation on the Characteristics of Petroleum Coke Gasification
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摘要 在常压、1200℃下,采用WRT-3P型高温微量热重分析系统和XRD、IR、ASAP测试手段考察了微波照射时间、功率和温度对石油焦气化反应活性的影响。结果表明,微波处理后石油焦CO_2气化反应速率随着石油焦转化率的增大先增加后降低,在转化率为0.1左右出现最大值;随着微波照射时间的延长和照射功率的增大,石油焦气化反应速率加快,石油焦微晶结构呈现出无定形变化的趋势;但是随着微波照射温度的升高,石油焦气化反应速率先增加后减小,石油焦微晶结构有序化程度先减弱后加强。 At atmospheric pressure, gasification of petroleum coke was carried out in WRT-3P thermogravimetric analysis system at 1200℃. The effects of microwave irradiation time, power and temperature on the gasification reactivity of petroleum coke were investigated by using X-ray diffraction(XRD), infrared absorption spectrum(IR) and accelerated surface area and porosimetry system(ASAP). The results indicated that the gasification rate of microwave-treated coke increased with the increase of the coke conversion and then decreased after reaching its maximum at the conversion of 0. 1. The gasification rate of petroleum coke increased and the microcrystallite structure of petroleum coke became amorphous with the increase of microwave irradiation time and irradiation power. However, as the irradiation temperature increased, the gasification rate of microwave-treated coke increased and then decreased, showing the crystalline ordering degree of petroleum coke weakened first and then strengthened.
出处 《石油学报(石油加工)》 EI CAS CSCD 北大核心 2011年第4期555-560,共6页 Acta Petrolei Sinica(Petroleum Processing Section)
基金 国家重点基础研究发展计划(973)项目(2010CB227000) 教育部"长江学者与创新团队发展计划"(IRT0620)项目 上海市优秀学科带头人资助计划(08XD1401306)项目资助
关键词 微波照射 气化反应速率 气化反应活性 微晶结构 microwave irradiation gasification reaction rate gasification reactivity microcrystalline
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参考文献14

  • 1ZOU Jianhui, YANG Boli, GONG Kaifeng, et al. Effect of mechanoehemieal treatment on petroleum coke- CO2 gasification[J].Fuel, 2008, 87(6): 622-627.
  • 2ZOUJ H, ZHOU Z J, WANG F C, et al. Modeling reaction kinetics of petroleum coke gasification with CO2 [J]. ChemEngProcess, 2007, 46(7): 630-636.
  • 3唐黎华,陈冬霞,朱学栋,吴勇强,倪燕慧,朱子彬.石油焦高温气化反应性[J].燃料化学学报,2005,33(6):687-691. 被引量:22
  • 4李庆峰,房倚天,张建民,王洋,时铭显,孙国刚.石油焦水蒸气气化反应特性[J].燃料化学学报,2003,31(3):204-208. 被引量:23
  • 5李庆峰,房倚天,张建民,王洋,时铭显,孙国刚.煤灰对石油焦水蒸气气化的影响[J].燃烧科学与技术,2004,10(4):359-362. 被引量:8
  • 6SANG J Y, CHOI Y C, LEE S H, et al. Thermogravimetric study of coal and petroleum coke for co-gasification[J]. Korean J Chem Eng, 2007, 24(3) : 512-517.
  • 7HE Xiaojun, LEI Jiangwei, GENG Yejing, et al. Preparation of microporous activated carbon and its electrochemical performance for electric double layer capacitor [J].Journal of Physics and Chemistry of Solids, 2009, 70:738- 744.
  • 8NICHOLAS O W. Use of microwave radiation in separating emulsions and dispersions of hydrocarbons and water: US4582629[P]. 1986-04-15.
  • 9SAHIMI M, TSOTSIS T T. Statistical modeling of gassolid reaction with pore volume growth: Kinetics regime [J]. Chem Eng Sci, 1988, 43(1): 113-121.
  • 10李庆峰,房倚天,张建民,王洋,时铭显,孙国纲.石油焦水蒸气气化过程孔隙结构和气化速率的变化[J].燃料化学学报,2004,32(4):435-439. 被引量:16

二级参考文献39

  • 1朱子彬,马智华,林石英,平户瑞穗,堀尾正■.高温下煤焦气化反应特性(Ⅱ)细孔构造对煤焦气化反应的影响[J].化工学报,1994,45(2):155-161. 被引量:21
  • 2潘英刚 严惠珍 曹建功.碱金属碳酸盐在煤气化中的催化作用:Ⅳ.复合催化剂Na-M-Ⅱ的催化活性[J].燃料化学学报,1986,14(1):63-68.
  • 3程秀秀 黄瀛华 任德庆.煤焦的孔隙结构及其于气化的关系[J].燃料化学学报,1987,15(3):261-267.
  • 4Si Hyun lee,Cheong Song Choi. Chemical activation of high sulfur petroleum coke by alkali metal compounds[ J]. Fuel Process Technol, 2000, 64(1-3) : 141-153.
  • 5Tyler R J, Smith I W. Reactivity of pelroletun coke to carbon dioxide between 1030 and 1180K[J]. Fuel, 1975, 54(2) : 99-104.
  • 6Dutta S, Wen C Y, Belt R J. Reactivity of coal and char. I. In carbon dioxide atmosphere[ J]. Ind Ellg Chem Process Des Dev ,1977, 16(1) : 31-37.
  • 7Sahimi M, Tsotsis T T. Statistical modeling of gas-solid reaction with pore volume growth: kinetics regime[ J]. Chem Eng Sci,1988, 43(1): 113-121.
  • 8Bhatia S K, Perlmutter D D. A random pore model for fluid-solid reactions: 1. Isothermal, kinetics control[ J]. AIChE J, 1980, 26(3) : 379-386.
  • 9程秀秀 黄瀛华 等.煤焦的孔隙结构及其与气化的关系[J].燃料化学学报,1987,15(3):261-267.
  • 10沙兴中 黄瀛华 等.煤的品位及其中矿物质对气化反应活性的影响[J].燃料化学学报,1986,14(2):108-115.

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