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Multi-aspect evaluation of integrated forest-based biofuel production pathways: Part 2. economics, GHG emissions, technology maturity and production potentials

机译:基于林的生物燃料生产路径的多方面评价:第2部分。经济学,温室气体排放,技术成熟度和生产潜力

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摘要

Promoting the deployment of forest-based drop-in and high blend biofuels is considered strategically important in Sweden but many aspects of the overall performance of the foremost production technologies are as yet unexamined. This paper evaluates the technology maturity, profitability, investment requirements, GHG performance and Swedish biofuel production potential of six commercially interesting forest-based biofuel production pathways.Significant heterogeneity in technology maturity was observed. Lack of technical demonstration in industrially representative scales renders the liquefaction-hydrotreatment route for drop-in biofuels less mature than its gasification-catalytic upgrading counterpart. It is a paradox that short-term priority being accorded to pathways with the lowest technology maturity. Nth-of-a-kind investments in (a) gasification-based methanol, (b) hydropyrolysis-based petrol/diesel, and (c) lignin depolymerization-based petrol/diesel were profitable for a range of plant sizes. The profitability of pulp mill-integrated small gasification units (100 MW) goes against the common perception of gasification being economically feasible only in large scales. New low-cost options for debottlenecking production at recovery boiler-limited kraft mills appear worth investigating. GHG emission reductions ranged from 66 to 95%; a penalty was incurred for high consumption of natural gas-based hydrogen. Swedish biofuel production potentials ranged from 4 to 27 TWh/y but a more feasible upper limit is 12-15 TWh/y. (C) 2019 Elsevier Ltd. All rights reserved.
机译:促进森林的辍学和高共混物生物燃料的部署被认为是在瑞典的战略重要性的,但最重要的生产技术的整体性能的许多方面也尚未审视。本文评估了六种商业上有趣的森林的生物燃料生产途径的技术成熟度,盈利能力,投资要求,温室气体绩效和瑞典生物燃料生产潜力。观察到技术成熟的异质性。工业代表性尺度缺乏技术示范使得液化 - 加氢处理途径比其气化催化升级对应物更少成熟的生物燃料。这是一种悖论,即伴随技术成熟度最低的途径。在(a)基于气化的甲醇,(b)基于氢化吡吡解的汽油/柴油中的N-A的投资,以及(c)木质素脱聚类的汽油/柴油在一系列植物尺寸下有利可图。纸浆磨机综合小型气化单元(<100 MW)的盈利能力反对气化的常见感知,其在大规模中仅在经济上可行。回收锅炉有限的牛皮纸厂的脱位生产的新的低成本选择似乎值得调查。温室气体排放减少范围从66升至95%;对天然气基氢的高消耗产生了罚款。瑞典生物燃料生产潜力范围为4至27 TWH / Y,但上限更可行为12-15 TWH / Y。 (c)2019 Elsevier Ltd.保留所有权利。

著录项

  • 来源
    《Energy》 |2019年第1期|1312-1328|共17页
  • 作者单位

    Lulea Univ Technol Div Energy Sci Energy Engn S-97187 Lulea Sweden;

    Lulea Univ Technol Div Energy Sci Energy Engn S-97187 Lulea Sweden;

    RISE Res Inst Sweden POB 5604 S-11486 Stockholm Sweden|Vattenfall AB SE-16992 Stockholm Sweden;

    RISE Res Inst Sweden POB 5604 S-11486 Stockholm Sweden;

    Preem AB S-11280 Stockholm Sweden;

    Lulea Univ Technol Div Energy Sci Energy Engn S-97187 Lulea Sweden|RISE Res Inst Sweden POB 5604 S-11486 Stockholm Sweden|IVL Swedish Environm Res Inst Ltd POB 210 60 S-10031 Stockholm Sweden;

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

    Biofuels; Gasification; Lignin oil; Pyrolysis oil; Black liquor; Forest residues;

    机译:生物燃料;气化;木质素油;热解油;黑色酒;森林残留物;

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