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Combining expansion in pulp capacity with production of sustainable biofuels - Techno-economic and greenhouse gas emissions assessment of drop-in fuels from black liquor part-streams

机译:与可持续生物燃料生产的纸浆容量中的扩展 - 技术经济和温室气体排放从黑色酒零件流动的燃料

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摘要

Drop-in biofuels from forest by-products such as black liquor can help deliver deep reductions in transport greenhouse gas emissions by replacing fossil fuels in our vehicle fleet. Black liquor is produced at pulp mills that can increase their pulping capacity by upgrading some of it to drop-in biofuels but this is not well-studied. We evaluate the techno-economic and greenhouse gas performance of five drop-in biofuel pathways based on lignin separation with hydrotreatment or black liquor gasification with catalytic synthesis. We also assess how integrated biofuel production impacts different types of pulp mills and a petroleum refinery by using energy and material balances assembled from experimental data supplemented by expert input. Our results indicate that drop-in biofuels from black liquor part-streams can be produced for -80 EUR2017/MWh, which puts black liquor on the same footing (or better) as comparable forest residue-based alternatives. The best pathways in both production routes have comparable costs and their principal biofuel products (petrol for black liquor gasification and diesel for lignin hydrotreatment) complement each other. All pathways surpass European Union's sustain ability criteria for greenhouse gas savings from new plants. Supplementing black liquor with pyrolysis oil electrolysis hydrogen can improve biofuel production potentials and feedstock diversity, but better economic performance does not accompany these benefits. Fossil hydrogen represents the cheaper option for lignin hydrotreatment by some margin, but greenhouse gas savings from renewable hydrogen are nearly twice as great. Research on lignin upgrading in industrial conditions is recommended for reducing the presently significant performance uncertainties.
机译:来自森林副产品的森林副产品中的生物燃料可以帮助通过更换我们的车队中的化石燃料来提供对运输温室气体排放的深度减少。在纸浆厂生产黑液,可以通过将其中一些升高到生物燃料来增加它们的制浆能力,但这不是很好地研究。我们评估基于木质素分离的五次滴生物燃料途径的技术经济和温室气体性能,与催化合成具有加氢处理或黑液气化。我们还通过使用由专业输入补充的实验数据组装的能量和材料余额来评估综合生物燃料生产如何影响不同类型的纸浆厂和石油炼油厂。我们的研究结果表明,来自黑液零件流的掉落生物燃料可用于-80欧元2017 / MWH,这将黑液放在同样的基础(或更好)上作为可比的森林残留物的替代品。两种生产路线的最佳途径都具有可比的成本及其主要生物燃料制品(汽油用于黑液气化和木质素加氢病的柴油)相互补充。所有途径超越了欧盟的维持能力标准,从而为新植物节省的温室气体节省。用热解油电解氢气补充黑液可以提高生物燃料生产潜力和原料多样性,但更好的经济性能不会伴随这些益处。化石氢代表了木质素加氢处理的较便宜的选择,通过一些边缘,但可再生氢的温室气体储蓄几乎是两倍。建议对工业条件升级的研究,以减少目前显着的性能不确定性。

著录项

  • 来源
    《Applied Energy》 |2020年第2期|115879.1-115879.15|共15页
  • 作者单位

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

    Lulea Univ Technol Div Energy Sci S-97187 Lulea Sweden|Int Inst Appl Syst Anal IIASA A-2361 Laxenburg Austria;

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

    Preem AB S-11280 Stockholm Sweden;

    Lulea Univ Technol Div Energy Sci S-97187 Lulea Sweden|RISE Res Inst Sweden POB 5604 S-11486 Stockholm Sweden;

    Lund Univ Dept Chem Engn S-22100 Lund Sweden|SunCarbon AB S-21873 Tygelsjo Sweden;

    Lulea Univ Technol Div Energy Sci S-97187 Lulea Sweden|RISE Res Inst Sweden POB 5604 S-11486 Stockholm Sweden;

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

    Biofuels; Pulp; Black liquor; Lignin; Gasification; Hydrotreatment;

    机译:生物燃料;纸浆;黑色酒;木质素;气化;加氢处理;

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