期刊文献+

O_2/CO_2气氛下水蒸气对石灰石同时煅烧/硫化的影响 被引量:2

Effects of Steam on Simultaneous Calcination and Sulfation of Limestone under O_2/CO_2 Conditions
原文传递
导出
摘要 为进一步探讨富氧气氛下水分对硫化特性的影响,利用等温热重实验装置,进行了富氧燃烧石灰石同时煅烧/硫化实验,研究了水蒸气浓度、温度、石灰石粒径以及种类等对石灰石同时煅烧/硫化特性的影响。水蒸气提高了石灰石煅烧速率,石灰石完全分解时间缩短;在硫化反应动力学控制阶段水蒸气的影响不明显,而到扩散控制阶段促进作用变得显著。富氧气氛下水蒸气的影响随温度(实验范围)升高而突出,温度越高最终的钙转化率越高。粒径效应显著,随石灰石粒径的减小最终钙转化率明显提高。水蒸气对不同种类石灰石的同时煅烧/硫化特性影响趋势基本一致。 To further discuss the effect of steam on the sulfation characteristics under oxygen-enriched atmosphere,this paper implements the simultaneous calcination and sulfation experiment for limestone in oxygen-enriched combustion with using isothermal thermogravimetric experiment device,and studies the influences of steam concentration,temperature,particle size and limestone type on the simultaneous calcination / sulfation characteristics of limestone. The calcination rate is increased by the presence of H2O,which results in a shorter time needed for the complete decomposing of limestone. There is an obvious promotion by H2O in the diffusion controlled stage; however the influence is hardly detected in the dynamic controlled stage. The influence of steam is highlighted with the increase of temperature( within experimental range) under oxygen-enriched atmosphere,and the finally calcium conversion rate increases with the temperature increasing. The effect of particle size is significant,and the ultimate calcium conversion rate increases significantly with the decrease of limestone particle size. The influences of steam on the simultaneous calcination / sulfation characteristics of different types of limestone are basically the same.
出处 《电力建设》 北大核心 2016年第1期97-102,共6页 Electric Power Construction
基金 国家自然科学基金项目(51276064)~~
关键词 O2/CO2气氛 石灰石 煅烧/硫化 水蒸气 O2/CO2 atmosphere limestone calcination / sulfation steam
  • 相关文献

参考文献15

  • 1张学镭,崔巍.钙基吸收剂捕集1000MW机组烟气中CO_2的性能分析[J].电力建设,2015,36(5):119-124. 被引量:3
  • 2祝云飞,阎维平,王禹朋,张小玲,马飞.CFB锅炉两级脱硫系统的技术经济性分析及优化[J].电力建设,2015,36(6):109-113. 被引量:9
  • 3BAKER E H. The calcium oxide–carbon dioxide system in the pressure range 1-300 atmospheres[J]. Journal of the Chemical Society, 1962,70: 464-470.
  • 4王春波,张斌,陈亮,郭泰成.富氧燃烧气氛下石灰石煅烧/硫化特性及模型模拟[J].化工学报,2015,66(4):1537-1543. 被引量:9
  • 5WANG Y, THOMSON W J. The effects of steam and carbon dioxide on calcite decomposition using dynamic X-ray diffraction[J]. Chemical Engineering Science, 1995, 50(9): 1373-1382.
  • 6BORGWARDT R H. Calcium oxide sintering in atmospheres containing water and carbon dioxide[J]. Industrial Engineering Chemistry Research, 1989, 28(4): 493-500.
  • 7WANG Chunbo, JIA Lufei, TAN Yewen, et al. Influence of water vapor on the direct sulfation of limestone under simulated oxy-fuel fluidized-bed combustion conditions[J]. Energy & Fuel, 2011, 25(1): 617-623.
  • 8WANG Chunbo, JIA Lufei, TAN Yewen, et al. The effect of water on the sulphation of limestone[J]. Fuel, 2010, 89(9): 2628-2632.
  • 9STEWART M C, MANOVIC V, ANTHONY E J, et al. Enhancement of indirect sulphation of limestone by steam addition[J]. Environmental Science and Technology, 2010, 44(22): 8781-8786.
  • 10DUAN Lunbo, JIANG Zhongxiao, CHEN Xiaoping, et al. Investigation on water vapor effect on direct sulfation during wet-recyle oxy-coal combustion[J]. Applied Energy, 2013, 108: 121-127.

二级参考文献38

  • 1陈传敏,赵长遂,赵毅,梁财,庞克亮.利用热重分析-X射线衍射分析法研究氧/二氧化碳气氛下石灰石硫化特性[J].中国电机工程学报,2006,26(13):108-112. 被引量:9
  • 2乔春珍,肖云汉,田文栋,阳绍军.钙基CO_2吸收剂的循环特性[J].化工学报,2006,57(12):2953-2958. 被引量:18
  • 3廖永进,王力,骆文波.火电厂烟气脱硫装置成本费用的研究[J].电力建设,2007,28(4):82-86. 被引量:34
  • 4陶佩军.CFB+FGD联合脱硫效率选择的计算方法[J].上海电力,2007,20(5):468-471. 被引量:4
  • 5China Electricity Council. The current status of air polution control for coal-fired power plants in China 2009 ~ M ]. Beijing: China Electric Power Press, 2009.
  • 6Davison J. Performance and costs of power plants with capture and storage of CO2[J]. Energy, 2007, 32(7) : 1163-1176.
  • 7Wang W, Ramkumar S, Wong D, et al. Simulations and process analysis of the carbonation-calcination reaction process withintermediate hydration[ J]. Fuel, 2012, 92( 1 ) : 94-106.
  • 8Wang W,Ramkumar S, Fan L S. Energy penalty of CO2 capture for the carbonation-calcination reaction (CCR) process: parametric effects and comparisons with alternative processes [ J ]. Fuel, 2013, 104 ~ 561-574.
  • 9Wang W, Ramkumar S, Li S, et al. Sub-pilot demonstration of the carbontion-calcination reaction (CCR) process: High temperature CO2 and sulfur capture from coal fired power plants[ J]. Industrial & Engineering Chemistry Research, 2010, 49:5094 - 101.
  • 10Wang A, Deshpande N, Fan L S. Steam hydration of calcium oxide for solid sorbent based CO2 capture: Effects of sintering and fluidized bed reactor behavior[J]. Energy &Fuels, 2014.

共引文献33

同被引文献35

引证文献2

二级引证文献3

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部