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Waste to Energy (WTE): Conventional and Plasma-assisted Gasification - Experimental and Modeling Studies

机译:废物转化为能源(WTE):常规和等离子气化-实验和模型研究

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摘要

Ever-increasing amounts of industrial and residential wastes and their environmental footprint dictates the need for effective Waste Management practices. Thermal waste processing technologies play an important role in energy recovery from the waste. Conventional and more importantly Plasma-assisted Gasification, an advanced thermal processing technology, have been introduced as promising and environmentally benign ways for energy utilization from biomass and municipal solid waste (MSW).This work aims to study the thermal technologies, which result in production of synthesis gas that is useful for heat and power generation; therefore, conventional and plasma-assisted gasification of biomass/MSW are reviewed. In addition, various economic, environmental and policy-related issues are examined in this study.From the experimental and modeling perspective, this study also reports on the work conducted to characterize the gasification process using a gasification reactor called Gasifier Experimenters Kit (GEK) level IV. Both the syngas quality and quantity have been investigated based on a variety of feedstock, such as wood charcoal, poplar and tamarack wood chips. Moreover, the composition of the gas has been analyzed using a Gas Chromatography (GC) unit and the exact concentrations of carbon monoxide, hydrogen, methane and nitrogen were measured. In this study, a thermochemical model based on the experimental setup (GEK IV) has also been developed in the AspenPlus® environment, an established simulation tool in chemical engineering and the energy industry. This model is capable of predicting the syngas composition, the energy required for the gasification reactions. A comparative analysis involving the experimental and simulation results is presented in this study.
机译:不断增加的工业和住宅废物及其对环境的影响决定了对有效废物管理实践的需求。热废料处理技术在从废料中回收能源方面发挥着重要作用。引入了传统的,更重要的是等离子体辅助的气化技术-一种先进的热处理技术,作为利用生物质和城市固体废物(MSW)进行能源利用的有前途且对环境无害的方法。这项工作旨在研究热能技术,从而实现生产用于热和发电的合成气;因此,综述了传统的和等离子体辅助的生物质/城市固体废弃物气化技术。此外,本研究还研究了与经济,环境和政策相关的各种问题。从实验和建模的角度,本研究还报告了使用气化反应器(气化炉实验套件)来表征气化过程的工作。 IV。已根据各种原料(例如木炭,杨木和塔玛拉克木片)研究了合成气的质量和数量。此外,已使用气相色谱仪(GC)分析了气体的组成,并测量了一氧化碳,氢气,甲烷和氮气的确切浓度。在这项研究中,还基于AspenPlus®环境开发了基于实验装置(GEK IV)的热化学模型,该环境是化学工程和能源行业中已建立的模拟工具。该模型能够预测合成气组成,气化反应所需的能量。这项研究提供了包括实验和仿真结果的比较分析。

著录项

  • 作者

    Lavaee Mohammad Saleh;

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  • 年度 2013
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  • 原文格式 PDF
  • 正文语种 en
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