首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >Integrated Pyrolysis Regenerated Plant (IPRP): An Efficient and Scalable Concept for Gas Turbine Based Energy Conversion From Biomass and Waste
【24h】

Integrated Pyrolysis Regenerated Plant (IPRP): An Efficient and Scalable Concept for Gas Turbine Based Energy Conversion From Biomass and Waste

机译:集成热解再生装置(IPRP):一种高效且可扩展的概念,用于基于燃气轮机的生物质和废物能源转化

获取原文
获取原文并翻译 | 示例
           

摘要

A massive effort towards sustainability is necessary to prevent global warming and energy sources impoverishment: both biomass and waste to energy conversion may represent key actions to reach this goal. At the present, state of the art available technologies for biomass and waste to energy conversion are similar and include low to mid efficiency grate incineration or fluidized bed combustion with steam power cycles or mid to high efficiency gas turbine based cycles through integrated gasification technology. Nevertheless, these plants are all available from mid-to-high scale range that can be highly intrusive on protected areas and socially unacceptable. This paper proposes an innovative, low cost, high efficiency plant in which the residue is gasified in the absence of oxygen (pyrolysis), in a rotary kiln, by means of a highly regenerative gas turbine based cycle. Pyrolysis is preferred to gasification, because the syngas obtained has a higher low heating value and produces char or tar as a by-product with an interesting energy content to be re-utilized inside the cycle. Different plant configurations are proposed and discussed through principal thermodynamic variables parametric analysis. Results show that very interesting efficiencies are obtainable in the 30-40% range for every plant scale. This fact shows how IPRP technology can provide an interesting alternative to traditional technologies, especially for the small size (below 5MW). Moreover, the IPRP technology provides a unique solution for microscale (below 500 kW) power plants, opening a new and competitive possibility for distributed biomass or waste to energy conversion systems where low environmental and social impact turns into higher interest and positive dissemination effect.
机译:为防止全球变暖和能源匮乏,需要为可持续发展做出巨大努力:将生物质和废物转化为能源可能代表实现这一目标的关键行动。当前,用于将生物质和废物转化为能量的现有技术水平相似,包括中低效率的炉排焚烧或流化床燃烧,蒸汽动力循环或中,高效燃气轮机通过集成气化技术的循环。然而,这些植物都可以从中高规模获得,这可能对保护区造成高度侵扰,并且在社会上是不可接受的。本文提出了一种创新的,低成本,高效率的设备,该设备中的残渣在旋转窑中通过高再生燃气轮机循环在无氧条件下进行气化(热解)。热解优于气化,因为所获得的合成气具有较高的低热值,并产生焦炭或焦油作为副产物,具有令人关注的能量含量,可在循环内重新利用。通过主要的热力学变量参数分析,提出并讨论了不同的设备配置。结果表明,对于每种工厂规模,都可以在30%至40%的范围内获得非常有趣的效率。这一事实说明了IPRP技术如何能够提供传统技术的有趣替代方案,尤其是对于小尺寸(5兆瓦以下)的技术。此外,IPRP技术为微型(500 kW以下)发电厂提供了独特的解决方案,为分布式生物质或废物向能量转换系统的发展提供了新的竞争性可能性,其中低环境和社会影响转化为更高的兴趣和积极的传播效果。

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