煤粉和油页岩颗粒流化行为研究Research on fluidization behavior of pulverized coal and oil shale particles
李国智,王松江,张振千
LI Guozhi,WANG Songjiang,ZHANG Zhenqian
摘要(Abstract):
为了研究煤粉和油页岩颗粒流动特性,在直径400 mm、300 mm循环流化床冷模试验装置上,考察了不同操作条件下煤粉和油页岩细粉物料的流化性能,并对煤粉、油页岩粉的流化特性进行了对比。结果表明,油页岩粉物料的起始流化速度约0. 043 m/s,煤粉物料约0. 023 m/s;油页岩粉的小颗粒带出速度约0. 7 m/s,煤粉约0. 6 m/s,2种物料的大颗粒带出速度约1. 4 m/s。床层表观气速在0. 1~0. 7 m/s时,床层密度沿床层高度有所降低,其中油页岩粉床层密相密度为800~350 kg/m~3,煤粉床层密相密度为750~300 kg/m~3。在提升管内随提升管高度的增加和表观气速增大,床层密度表现为由下至上逐渐降低,有一定波动的S形分布,提升管内床层密度为20~110 kg/m~3。
To clarify the flow characteristics of pulverized coal and oil shale particles,the different operating conditions of these irregular fine powder were investigated in this study base on a set of circulating fluidized bed cold model test equipment with diameter of 400 mm and 300 mm.Meanwhile,the fluidization characteristics of pulverized coal and oil shale particles were also compared.The results show that the initial fluidization velocity of the oil shale powder and pulverized coal are about 0.043 m/s and 0.023 m/s,respectively.The small particle take-out velocity of oil shale powder and pulverized coal are about 0.7 m/s and 0.6 m/s.Likewise,the velocity of the large particles take-out velocity of two kinds of materials are about 1.4 m/s.Additionally,the bed density decreases along the bed height when the apparent gas velocity of the bed layer is between 0.1 m/s to 0.7 m/s.In that case,the density of oil shale bed is between 800 kg/m~3 and 350 kg/m~3,and the density distribution of pulverized coal bed is ranging from 750 kg/m~3 to 300 kg/m~3.With the increase of the height of the riser and superficial gas velocity,the density of bed layer in the riser decreases from the bottom to the top,and it demonstrates a certain fluctuation similar S shape.In addition,the density of the bed layer in the riser is between 20 kg/m~3 and 110 kg/m~3.
关键词(KeyWords):
煤粉;油页岩粉;循环流化床;冷模试验
pulverized coal;oil shale powder;circulating fluidized bed;cold model experiment
基金项目(Foundation):
作者(Author):
李国智,王松江,张振千
LI Guozhi,WANG Songjiang,ZHANG Zhenqian
DOI: 10.13226/j.issn.1006-6772.18062601
参考文献(References):
- [1]陈俊武,李春年,陈香生.石油替代综论[M].北京:中国石化出版社,2009.
- [2]赵跃民.煤炭资源综合利用手册[M].北京:科学出版社,2004.
- [3]谢晓旭,沈湘林,汤雪美,等.煤粉流动特性若干影响因素的研究[J].煤炭学报,2008,33(1):85-88.XIE Xiaoxu,SHEN Xianglin,TANG Xuemei,et al. Study on some factors impacting flow ability of pulverizedcoal[J].Journal of China Coal Society,2008,33(1):85-88.
- [4]周云,陈小平,梁财,等.煤粉平均粒径对高压密相气力输送的影响[J].中国电机工程学报,2010,29(26):25-29.ZHOU Yun,CHEN Xiaoping,LIANG Cai,et al.Effect of mean particle size of pulverized coal on dense phase pneumatic conveying at high pressure[J].Proceedings of the CSEE,2010,29(26):25-29.
- [5]王基铭.中国煤化工发展现状及对石油化工的影响[J].当代石油化工,2010,18(6):1-6.WANG Jiming.The development status of China's coal chemical industry and its influence upon the petrochemical industry[J].Petroleum&Petrochemical Today,2010,18(6):1-6.
- [6]王伟东,邹春玉,孙国刚.油页岩固体热载体流化干馏炼油工艺中试研究[J].煤化工,2009,37(3):19-22.WANG Weidong,ZHOU Chunyu,SUN Guogang. Pilot plant research on pulverized oil shale fluidized bed retorting[J]. Coal Chemical Industry,2009,37(3):19-22.
- [7]李锦涛.粉煤干馏工艺研究与试验[J].中国石油和化工标准与质量,2013(22):258.
- [8]吕岩.粉煤低温干馏工艺及其发展趋势[C]//第七次煤炭科学技术大会文集.北京:煤炭工业出版社,2011:963-967.
- [9]漆海峰,郭晓镭,陆海峰,等.煤粉的流动性测试及评价方法[J].化工学报,2012,63(2):433-440.Qi Haifeng,Guo Xiaolei,LU Haifeng,et al. Measurement of flowability of coal powders and research methods[J]. CIESC Journal,2012,63(2):433-440.
- [10]张正德,陆海峰,郭晓镭.粒径对石油焦粉及煤粉的堆积及流动特性的影响[J].华东理工大学学报(自然科学版),2016,42(3):321-328.ZHANG Zhengde,LU Haifeng,GUO Xiaolei,et al. effect of particle size on packing characteristics and flowability of petroleum coke and coal[J].Journal of East China University of Science and Techonogy(Natural Science Edition),2016,42(3):321-328.
- [11]钱家麟,尹亮.油页岩—石油的补充能源[M].北京:中国石化出版社,2008.
- [12]刘招君,董清水,叶松青,等.中国油页岩资源现状[J].吉林大学学报(地球科学版),2006,36(6):869-876.LIU Zhaojun,DONG Qingshui,YE Songqing,et al. The situation of oil shale resources in China[J]. Journal of Jilin University(Earth Science Edition),2006,36(6):869-876.
- [13]宋岩,王莉.小颗粒油页岩干馏技术探讨[J].当代化工,2013,42(12):1746-1748.SONG Yan,WANG Li. Discussion on retorting technologies for small particle oil shale[J]. Contemporary Chemical Industry,2013,42(12):1746-1748.
- [14]王茂辉,王伟东,邹春玉,等.细颗粒油页岩最小流化特性试验研究[C]//中国颗粒学会第六届学术年会暨海峡两岸颗粒技术研讨会论文集.上海:[s.n.],2008:407-409.
- [15]陈海新,孙国刚,刘佳,等.页岩灰最小流速度的试验研究[C]//中国颗粒学会第七届学术年会暨海峡两岸颗粒技术研讨会论文集.沈阳:[s.n.],2010:348-354.