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Bio-refinery system in a pulp mill for methanol production with comparison of pressurized black liquor gasification and dry gasification using direct causticization

机译:制浆厂中用于甲醇生产的生物精炼系统,比较加压黑液气化和直接苛化法的干法气化

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摘要

Black liquor gasification (BLG) for bio-fuel or electricity production at the modern pulp mills is a field in continuous evolution and the efforts are considerably driven by the climate change, fuel security, and renewable energy. This paper evaluates and compares two BLG systems for methanol production: (i) oxygen blown pressurized thermal BLG; and (ii) dry BLG with direct causticization, which have been regarded as the most potential technology candidates for the future deployment. A key objective is to assess integration possibilities of BLG technologies with the reference Kraft pulp mill producing 1000 air dried tonnes (ADt) pulp/day replacing conventional recovery cycle. The study was performed to compare the systems' performance in terms of potential methanol production, energy efficiency, and potential CO_2 reductions. The results indicate larger potential of black liquor conversion to methanol from the pressurized BLG system (about 77 million tonnes/year of methanol) than the dry BLG system (about 30 million tonnes/year of methanol) utilizing identical amount of black liquor available worldwide (220 million tDS/year). The potential CO_2 emissions reduction from the transport sector is substantially higher in pressurized BLG system (117 million tonnes/year CO_2 reductions) as compared to dry BLG system (45 million tonnes/year CO_2 reductions). However, the dry BLG system with direct causticization shows better results when considering consequences of additional biomass import. In addition, comparison of methanol production via BLG with other bio-refinery products, e.g. hydrogen, dimethyl ether (DME) and bio-methane, has also been discussed.
机译:现代制浆厂中用于生物燃料或电力生产的黑液气化(BLG)是一个不断发展的领域,气候变化,燃料安全性和可再生能源在很大程度上推动了这一努力。本文评估并比较了两种用于生产甲醇的BLG系统:(i)吹氧加压热BLG; (ii)具有直接苛性化作用的干式BLG,被认为是未来部署的最有潜力的技术候选人。一个主要目标是评估BLG技术与参考牛皮纸浆厂的集成可能性,该工厂每天可生产1000吨风干纸浆(ADt)纸浆,替代传统的回收周期。进行了这项研究以比较系统在潜在甲醇生产,能源效率和潜在CO_2减少方面的性能。结果表明,与世界范围内使用等量黑液的干式BLG系统(每年约3000万吨甲醇)相比,加压BLG系统将黑液转化为甲醇的潜力更大(约3000万吨/年甲醇)(每年2.2亿tDS)。与干式BLG系统(4500万吨/年的CO2减排量)相比,加压BLG系统中运输部门的潜在CO_2减排量要高得多(每年减少CO2排放量1.17亿吨)。但是,考虑到额外的生物质输入的后果,具有直接苛化作用的干式BLG系统显示出更好的结果。此外,比较了通过BLG与其他生物精炼产品生产甲醇的情况,例如还讨论了氢,二甲醚(DME)和生物甲烷。

著录项

  • 来源
    《Applied Energy》 |2012年第1期|p.24-31|共8页
  • 作者单位

    Department of Chemical Engineering and Technology, Royal Institute of Technology, SE-10044 Stockholm, Sweden;

    Department of Chemical Engineering and Technology, Royal Institute of Technology, SE-10044 Stockholm, Sweden,School of Sustainable Development of Society and Technology, Malardalen University, Box 883, SE-72123 Vasterds, Sweden;

    School of Sustainable Development of Society and Technology, Malardalen University, Box 883, SE-72123 Vasterds, 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

    bio-fuel; bio-refinery; black liquor gasification; methanol; pulp mill;

    机译:生物燃料生物精炼厂黑液气化;甲醇制浆厂;

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