Volume 37 Issue 11
Nov.  2011
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Xiang Liming, Li Xinghu. Analysis of features of particulate matters emitted from engine fueled with petroleum coke slurry[J]. Journal of Beijing University of Aeronautics and Astronautics, 2011, 37(11): 1421-1424. (in Chinese)
Citation: Xiang Liming, Li Xinghu. Analysis of features of particulate matters emitted from engine fueled with petroleum coke slurry[J]. Journal of Beijing University of Aeronautics and Astronautics, 2011, 37(11): 1421-1424. (in Chinese)

Analysis of features of particulate matters emitted from engine fueled with petroleum coke slurry

  • Received Date: 13 Jan 2011
  • Publish Date: 30 Nov 2011
  • Scanning electron microscope, X-ray energy dispersive spectroscopy and thermal gravimetric analyzer were used to detect the surface structure, chemical component and combustion characteristics of petroleum coke particulate matter (PM) samples and PM samples from the exhausts of engine fueled with petroleum coke slurry (PCS) and No. 0 diesel fuel respectively. The results show that PM samples from PCS array sparsely, but PM samples from diesel array closely, cohering mutually. The diameter of PM from PCS is somewhat bigger than that of petroleum coke PM, but in some sort smaller than that of PM from diesel. The superficial major element contents of PM from PCS, such as C, O and S element, are close to those of PM from diesel. But the C and S element contents of PM from PCS are lower than those of petroleum coke, and O element content is higher than that of petroleum coke. The volatile component concentration of PM from PCS is higher than that of petroleum coke, but lower than that of PM from diesel. The fixed carbon content of PM from PCS is lower than that of petroleum coke, but higher than that of PM from diesel. The ignition temperature and burnout temperature of fixed carbon content of PM from PCS and diesel are similar, but both are higher than those of petroleum coke.

     

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  • [1] BP.BP statistical review of world energy 2010. London,UK:BP,2010.http://www.bp.com/sectiongenericarticle.do?categoryId=9033088&contentId=7060602 [2] Wang J,Anthony E J,Abanades J C.Clean and efficientuse of petroleum coke for combustion and power generation [J].Fuel,2004,83:1341-1348 [3] 贾海龙,杨会宾,夏刚.油焦浆在回窑炉上的应用研究[J].轻金属,2008(7):20-22 Jia Hailong,Yang Huibin,Xia Gang.Applied experiment of petroleum coke residue slurry in rotary kiln [J].Light Metals,2008 (7):20-22(in Chinese) [4] 向立明,李兴虎,毕芸,等.油焦浆应用于柴油机燃料供给系统的改进研究//中国内燃机学会.中国内燃机学会第八届学术年会论文集.上海:同济大学出版社,2010:77-80 Xiang Liming,Li Xinghu,Bi Yun,et al.Improvemen study on fuel supply system of diesel engine fueled with petroleum coke slurry//Chinese Society for Internal Combustion Engines.The Symposium of the Eighth Annual Meeting of Chinese Society for Internal Combustion Engines.Shanghai:Tongji University Press,2010:77-80(in Chinese) [5] Li Xinling,Huang Zhen,Wang Jiasong,et al.Particle size distribution from a GTL engine [J].Science of the Total Environment,2007,382:295-303 [6] Katoshevski D,Ruzal M,Shakked T,et al.Particle grouping,a new method for reducing emission of submicron particles from diesel engines [J].Fuel,2010,89:2411-2416 [7] Lin Y C,Lee C F,Fang T.Characterization of particle size distribution from diesel engines fueled with palm-biodiesel blends and paraffinic fuel blends [J].Atmospheric Environment,2008,42:1133-1143 [8] 资新运,宁智,张春润,等.柴油机排气微粒特性及生成机理研究[J].燃烧科学与技术,2000,6(4):300-303 Zi Xinyun,Ning Zhi,Zhang Chunrun,et al.Study on physical characteristics of diesel particulates [J].Journal of Combustion Science and Technology,2000,6(4):300-303(in Chinese) [9] 葛蕴珊,何超,韩秀坤,等.生物柴油排放微粒特性的试验研究[J].环境科学,2007,28(7):1632-1636 Ge Yunshan,He Chao,Han Xiukun,et al.Experimental study on characteristics of biodiesel exhausted particle [J].Environmental Science,2007,28(7):1632-1636(in Chinese) [10] 陈虎,陈文淼,王建昕.柴油机燃用乙醇-甲酯-柴油时PM排放特性的研究[J].内燃机学报,2007,25(1):47-52 Chen Hu,Chen Wenmiao,Wang Jianxin,et al.Study on PM emission characteristics of diesel engine fueled with ethanol-ester-diesel fuel [J].Transactions of CSICE,2007,25(1):47-52(in Chinese) [11] 张大同.扫描电镜与能谱仪分析技术[M].广州:华南理工大学出版社,2009:109 Zhang Datong.Analysis technique of scanning electron microscope and energy dispersive spectroscopy [M].Guangzhou:South China University of Technology Press,2009:109(in Chinese) [12] 郭素枝.扫描电镜技术及其应用[M].厦门:厦门大学出版社,2006:67 Guo Suzhi.Application and technology of scanning electron microscope [M].Xiamen:Xiamen University Press,2006:67(in Chinese) [13] 刘振海,徐国华,张洪林.热分析仪器[M].北京:化学工业出版社,2006:205-207 Liu Zhenghai,Xu Guohua,Zhang Honglin.Thermal analysis instruments [M].Beijing:Chemical Industry Press,2006:205-207(in Chinese) [14] Salvador S,Commandré J M,Stanmore B R.Reaction rates for the oxidation of highly sulphurised petroleum cokes:the influence of thermogravimetric conditions and some coke properties [J].Fuel,2003,82:715-720
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