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首页> 外文期刊>Journal of Cleaner Production >Consequential Life Cycle Assessment of energy generation from waste wood and forest residues: The effect of resource-efficient additives
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Consequential Life Cycle Assessment of energy generation from waste wood and forest residues: The effect of resource-efficient additives

机译:废木材和森林残留物中能源生成的结果生命周期评估:资源效率添加剂的影响

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摘要

Combustion of waste wood can cause slagging, fouling and corrosion which lead to boiler failure, affecting the energy efficiency and the lifetime of the power plant. Additivation with mineral and sulfur containing additives during waste wood combustion could potentially reduce these problems. This study aims at understanding the environmental impacts of using additives to improve the operational performance of waste wood combustion. The environmental profiles of four energy plants (producing heat and/or power), located in different European countries (Poland, Austria, Sweden and Germany), were investigated through a consequential life cycle assessment (LCA). The four energy plants are all fueled by waste wood and/or residues. This analysis explored the influences of applying different additives strategies in the four power plants, different wood fuel mixes and resulting direct emissions, to the total life cycle environmental impacts of heat and power generated. The impacts on climate change, acidification, particulate matter, freshwater eutrophication, human toxicity and cumulative energy demand were calculated, considering 1 GJ of exergy as functional unit. Primary data for the operation without additives were collected from the power plant operators, and emission data for the additives scenarios were collected from onsite measurements. A sensitivity analysis was conducted on the expected increase of energy efficiency. The analysis indicated that the use of gypsum waste, halloysite and coal fly ash decreases the environmental impacts of heat and electricity produced (average of 12% decrease in all impacts studied, and a maximum decrease of 121%). The decrease of impacts is mainly a consequence of the increase of energy generation that avoids the use of more polluting marginal technologies. However, impacts on acidification may increase (up to 120% increase) under the absence of appropriate flue gas cleaning systems. Halloysite was the additive presenting the highest benefits. (C) 2020 The Author(s). Published by Elsevier Ltd.
机译:废木材的燃烧会导致脱渣,污垢和腐蚀,这导致锅炉衰竭,影响电厂的能量效率和寿命。在废木燃烧期间含有含有矿物质和含有含添加剂的添加可能会降低这些问题。本研究旨在了解使用添加剂来改善废木燃烧操作性能的环境影响。通过后果生命周期评估(LCA)研究了位于不同欧洲国家(波兰,奥地利,瑞典和德国)的四种能源植物(生产热量和/或电力)的环境型材。四种能源厂全部由废木和/或残留物燃料。该分析探讨了在四个发电厂,不同木材燃料混合物中应用不同添加剂策略,并导致直接排放的影响,从而产生了热量和发电的总生命周期环境影响。计算对气候变化,酸化,颗粒物质,淡水富营养化,人类毒性和累积能源需求的影响,考虑到1 GJ作为功能单元。从发电厂运营商收集没有添加剂的操作的主要数据,并从现场测量中收集添加剂情景的发射数据。对能效预期提高进行敏感性分析。分析表明,使用石膏废料,霍罗伊斯特和煤粉煤灰的使用降低了产生的热量和电力的环境影响(所有正在研究的所有冲击的平均减少12%,最大减少121%)。影响的减少主要是增加能源产生的结果,避免使用更多污染的边际技术。然而,在没有适当的烟气清洁系统的情况下,对酸化的影响可能会增加(高达120%)。 HalloySite是呈现最高益处的添加剂。 (c)2020提交人。 elsevier有限公司出版

著录项

  • 来源
    《Journal of Cleaner Production》 |2020年第20期|120948.1-120948.13|共13页
  • 作者单位

    Univ Utrecht Copernicus Inst Sustainable Dev Vening Meinesz Bldg A Princetonlaan 8a Utrecht 3584 CB Netherlands;

    Univ Utrecht Copernicus Inst Sustainable Dev Vening Meinesz Bldg A Princetonlaan 8a Utrecht 3584 CB Netherlands;

    BIOENERGY 2020 GmbH Inffeldgasse 21b A-8010 Graz Austria;

    Univ Utrecht Copernicus Inst Sustainable Dev Vening Meinesz Bldg A Princetonlaan 8a Utrecht 3584 CB Netherlands;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    LCA; Wood waste; Additives; Energy; Efficiency; Consequential;

    机译:LCA;木材废料;添加剂;能量;效率;相应的;

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