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Modeling of a Biomass Gasification CHP Plant: Influence of Various Parameters on Energetic and Exergetic Efficiencies

机译:生物质气化热电联产工厂的建模:各种参数对能量和能量效率的影响

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摘要

This paper presents a theoretical assessment of energy, exergy, and syngas cleaning performances in a biomass gasification combined heat and power (CHP) plant with varying operating parameters. The analysis is carried out using a detailed model of a biomass gasification CHP plant developed with Aspen Plus. The model describes: wood drying and gasification in a dual fluidized bed (DFB) reactor, syngas cleaning, as well as combustion in a gas engine for electricity production. Heat is recovered from the CHP system for internal needs and for district and domestic water heating. An accurate prediction of tar and inorganic contaminants is developed for proper modeling of syngas cleaning efficiency. The influence of wood moisture content, drying conditions, flow rate of the sand circulating in the DFB reactor, catalyst and scrubbing agent efficiencies, as well as additional electricity production through steam turbine on the overall process performances is studied. On the basis of the comparative analysis of nine case studies, it is found that the highest energetic efficiencies are obtained when forced drying is not implemented in the CHP system. Lowering the inlet wood moisture content with natural drying (energy-free) prior to the CHP plant improves the electrical efficiency. An overall energetic efficiency of 74% (23% electric, 51% thermal; based on the lower heating value of wood on anhydrous basis) is then reached with wood fed at 30% moisture content The best exergetic efficiency is reached when wood (naturally dried to 30%) is dried further to 15% by forced drying in the CHP plant and when some of the high-temperature heat is recovered for electricity production via steam turbine instead of district heating. In this case, the overall energetic efficiency is 63% (32% electric, 31% thermal). This model is a useful tool to assess process design improvements and life cycle inventory.
机译:本文介绍了在具有不同运行参数的生物质气化热电联产(CHP)装置中,能源,火用和合成气清洁性能的理论评估。使用由Aspen Plus开发的生物质气化CHP设备的详细模型进行分析。该模型描述:木材在双流化床(DFB)反应器中的干燥和气化,合成气清洁以及在燃气发动机中燃烧以发电。从热电联产系统回收的热量用于内部需求以及区域和生活用水。为合成气净化效率的正确模型开发了焦油和无机污染物的准确预测。研究了木材含水量,干燥条件,DFB反应器中循环的砂的流速,催化剂和洗涤剂的效率以及蒸汽轮机产生的额外电能对整个工艺性能的影响。根据对九个案例研究的比较分析,发现在CHP系统中未实施强制干燥时,可获得最高的能量效率。在热电联产厂之前通过自然干燥(无能源)降低进口木材的水分含量,可提高电效率。然后,以30%的水分含量进料,木材的总能量效率达到74%(23%的电力,51%的热量;基于无水木材的较低热值)。当木材(自然干燥)达到最佳的能量效率热电联产工厂通过强制干燥进一步干燥至15%,然后再将其中的一些高温热量通过蒸汽轮机代替区域供热进行发电。在这种情况下,总的能量效率为63%(电为32%,热为31%)。该模型是评估流程设计改进和生命周期清单的有用工具。

著录项

  • 来源
    《Energy & fuels》 |2013年第novaadeca期|7398-7412|共15页
  • 作者单位

    Federation Jacques Villermaux, CNRS, Universite de Lorraine, 2 av. de la Foret de Haye, 54504 Vandceuvre les Nancy, France;

    LRGP, CNRS, Universite de Lorraine, ENSIC, 1 rue Granville, 54000 Nancy, France;

    LEMTA, CNRS, Universite de Lorraine, 2 av. de la Foret de Haye, 54504 Vandceuvre les Nancy, France;

    LERMAB, Universite de Lorraine, ENSTIB, 27 rue du Merle Blanc, 88000 Epinal, France;

    LERMAB, Universite de Lorraine, ENSTIB, 27 rue du Merle Blanc, 88000 Epinal, France;

    IJL, CNRS, Universite de Lorraine, Parc de Saurupt CS 14234, 54042 Nancy Cedex, France;

    IJL, CNRS, Universite de Lorraine, Parc de Saurupt CS 14234, 54042 Nancy Cedex, France;

    LRGP, CNRS, Universite de Lorraine, ENSIC, 1 rue Granville, 54000 Nancy, France;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-18 00:40:59

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