首页> 外文期刊>Advanced Powder Technology: The internation Journal of the Society of Powder Technology, Japan >Development of fluidized bed gasifier with triple-beds and dual circulation
【24h】

Development of fluidized bed gasifier with triple-beds and dual circulation

机译:三层双循环流化床气化炉的研制

获取原文
获取原文并翻译 | 示例
           

摘要

A new type of circulating fluidized bed gasifier was proposed. The main features of this proposed gasifier are the adoption of a triple-beds structure (comprising pyrolyzer, gasifier, and combustor), the separation of a circulation path for tar-absorbing material and that for the fuel and silica sand. Independent circulation systems are employed for the fuel system and for the tar-absorbing particles, and the pyrolyzer and gasifier each have a two-stage fluidized bed: the lower stage is for the fuel system and the upper stage is for the tar-absorbing particle system. The two circulation systems each have an independent combustor. In the pyrolyzer, the tar formed together with the gas produced during the pyrolysis of the fuel in the lower stage is absorbed by tar-absorbing particles in the upper stage. By adopting this two-stage fluidized bed approach, mixing of the tar-absorbing particles, which is rather expensive, with the ash contained in the fuel can be avoided. Accordingly, accumulation of ash in the circulation path for tar-absorbing material can be avoided, and the quantity of the discharge of absorption particles can be reduced. Therefore, the quantity used can be greatly reduced. The quantity of costly tar-absorbing particles used can be further minimized by optimizing the quantity of particles with respect to the quantity of tar generated by the fuel. As the first stage towards development of the proposed new type gasifier, the fundamental experiments that simulated a two-stage pyrolyzer and gasifier were carried out. As a result, the amount of H2 formed by pyrolysis resulted in a marked increase by using porous alumina as the tar-absorbing particles than the conventional conditions of using only silica sand. The amount of H2 formed was more increased because the coke was not only cracked but also reformed by steam gasification.
机译:提出了一种新型的循环流化床气化炉。拟议的气化炉的主要特点是采用三层结构(包括热解炉,气化炉和燃烧室),分离了焦油吸收材料以及燃料和硅砂的循环路径。燃料系统和焦油吸收颗粒采用独立的循环系统,热解器和气化炉均具有两级流化床:下部用于燃料系统,上部用于吸收焦油的颗粒系统。两个循环系统各有一个独立的燃烧器。在热解炉中,与在下部燃料的热解过程中产生的气体一起形成的焦油被上部的焦油吸收颗粒吸收。通过采用这种两级流化床方法,可以避免相当昂贵的焦油吸收颗粒与燃料中所含的灰分的混合。因此,可以避免灰分在焦油吸收材料的循环路径中的积累,并且可以减少吸收颗粒的排出量。因此,可以大大减少使用量。通过相对于燃料产生的焦油的量优化颗粒的量,可以使使用的昂贵的焦油吸收颗粒的量进一步最小化。作为开发新型气化炉的第一步,进行了模拟两级热解炉和气化炉的基础实验。结果,与仅使用硅砂的常规条件相比,通过使用多孔氧化铝作为焦油吸收颗粒,通过热解形成的H 2的量导致显着增加。由于焦炭不仅裂化而且通过蒸汽气化重整,因此形成的H 2的量进一步增加。

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