首页> 外文会议>International Conference on Industrial, Mechanical, Electrical, and Chemical Engineering >Non-slag co-gasification of biomass and coal in entrained-bed furnace
【24h】

Non-slag co-gasification of biomass and coal in entrained-bed furnace

机译:夹带床炉中生物质和煤的非渣共气化

获取原文

摘要

Gasification is a promising candidate of processes to upgrade biomass and to yield clean gaseous fuel for utilization of renewable energy resources. However, a sufficient amount of biomass is not always available to operate a large scale of the plant. Co-gasification of biomass with coal is proposed as a solution of the problem. Tar emission is another subject during operation in shaft or kiln type of gasifiers employed conventionally for biomass. The present authors proposed co-gasification of biomass and coal in entrained-bed furnace, which is a representative process without tar emission under high temperature, but operated so to collect dust as flyash without molten slag formation. This paper presents the works performed on co-gasification performance of biomass and pulverized coal to apply to entrained-bed type of furnaces. At first, co-gasification of woody powder and pulverized coal examined using the lab-scale test furnace of the down-flow entrained bed showed that the maximum temperatures in the furnace was over 1500 K and the carbon conversion to gas achieved at higher efficiency than 80-90 percent although the residence time in the furnace was as short as a few seconds. Non-slag co-gasification was carried out successfully without slag formation in the furnace if coal containing ash with high fusion temperature was employed. The trend suggesting the effect of reaction rate enhancement of co-gasification was also observed. Secondary, an innovative sewage sludge upgrading system consisting of self-energy recovery processes was proposed to yield bio-dried sludge and to sequentially produce char without adding auxiliary fuel. Carbonization behavior of bio-dried sludge was evaluated through pyrolysis examination in a lab-scale quartz tube reactor. The thermal treatment of pyrolysis of sludge contributed to decomposition and removal of contaminant components such as nitrogen and sulfur. The gasification kinetics of sludge and coal was also determined by a thermogravimetric analysis. It was revealed that co-gasification rate of sludge and coal chars was influenced negatively due to high ash content in sludge.
机译:气化是升级生物质的有希望的过程候选过程,并产生清洁气体燃料,以利用可再生能源资源。然而,足够量的生物质并不总是可用于操作大规模的植物。提出了煤的生物质的共同气化作为问题的解决方案。焦油排放是在常规用于生物质的轴或窑型煤气中的操作过程中的另一个主题。本作者提出了夹带床炉中生物质和煤的共气化,这是在高温下没有焦油排放的代表性过程,而是在没有熔渣形成的情况下收集灰尘。本文介绍了对生物质和粉煤煤的协同气化性能进行的作品,适用于夹带床型炉。首先,使用下流夹带床的实验室测量床检查的木质粉末和粉煤的共同化表明,炉内的最高温度超过1500 k,并且以更高的效率实现的碳转化率达到80-90%虽然炉内的停留时间短截至几秒钟。如果采用含有高熔化温度的粉煤灰,则在炉中成功地进行非炉渣的共气化,如果采用具有高熔化温度的煤炭,则在炉内没有熔渣形成。还观察到表明反应率增强协商的趋势。二次,提出了一种由自我能量回收过程组成的创新污泥升级系统,得到生物干燥污泥,并在不添加辅助燃料的情况下顺序生产Char。通过在实验室级石英管反应器中通过热解检查评价生物干燥污泥的碳化行为。污泥热解的热处理有助于分解和除去污染物组分如氮和硫。污泥和煤的气化动力学也是通过热重分析确定的。据透露,由于污泥中的高灰分含量,污泥和煤炭的协同气化率受​​到负面影响。

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