...
首页> 外文期刊>Journal of sustainable bioenergy systems >Co-Gasification of Mesquite and Coal Blend in an Updraft Fixed Bed Gasifier
【24h】

Co-Gasification of Mesquite and Coal Blend in an Updraft Fixed Bed Gasifier

机译:立式固定床气化炉中豆科灌木和煤混合气的共气化

获取原文
           

摘要

In order to reduce the emission of NOx, SOx, and CO2 and mitigate the dependence on the fossil fuel, the use of renewable energy, especially the biomass energy, has been explored. Since most biomass fuels are hard to grind to the very fine size, gasification is the preferred technology of energy conversion. Updraft fixed bed gasification using partial oxidation process is adopted where air less than the stoichiometric quantity is admitted to oxidize the char to CO. The temperature profile within the bed reveals a characteristic temperature peak. The results reveal a correlation between the higher heating value (HHV) of producer gas and the peak gasification temperature (Tpeak). Coal with higher char content (~45%) is blended with biomass of low char content (~20%) in order to produce high quality gas. In this study, the Texas-based mesquite fuel was blended with Wyoming Power River Basin (PRB) coal with mass ratios of 100:0, 90:10, and 80:20 and fired downward into the gasifier. It was found that at a given mesquite to the coal mass ratio, the peak gasification temperature decreased with the increase in ER. With the increase of the coal ratio in the mesquite: coal blend and the peak temperature increased significantly; more combustible gases such as CO, CH4 were generated at the end of product gas, and the HHV of the product gas increased by 10%-20%. ?
机译:为了减少NOx,SOx和CO2的排放并减轻对化石燃料的依赖,已经研究了可再生能源特别是生物质能的使用。由于大多数生物质燃料很难研磨成非常细的尺寸,因此气化是能量转换的首选技术。采用部分氧化工艺的上升气流固定床气化工艺,其中允许进入空气中的化学计量量少于化学计量量,将焦炭氧化为CO。床内的温度曲线显示出特征性的温度峰值。结果揭示了产生气的较高的热值(HHV)与峰值气化温度(Tpeak)之间的相关性。将焦炭含量较高(约45%)的煤与焦炭含量较低(约20%)的生物质混合,以生产高质量的瓦斯。在这项研究中,将德克萨斯州的豆科灌木燃料与怀俄明电力河流域(PRB)煤以质量比为100:0、90:10和80:20混合,然后向下燃烧进入气化炉。发现在给定的豆科植物倍率下,随着ER的增加,峰值气化温度降低。随着豆科灌木中煤比例的增加,煤的掺合温度和峰值温度明显升高;产物气末产生更多可燃气体,如CO,CH4,产物气的HHV增加了10 %-20 %。 ?

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号