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A review of thermochemical upgrading of pyrolysis bio‐oil: Techno‐economic analysis, life cycle assessment, and technology readiness

机译:热解生物油热化学升级综述:技术经济分析,生命周期评估和技术准备

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Technologies for upgrading fast pyrolysis bio‐oil to drop‐in fuels and coproducts are under development and show promise for decarbonizing energy supply for transportation and chemicals markets. The successful commercialization of these fuels and the technologies deployed to produce them depend on production costs, scalability, and yield. To meet environmental regulations, pyrolysis‐based biofuels need to adhere to life cycle greenhouse gas intensity standards relative to their petroleum‐based counterparts. We review literature on fast pyrolysis bio‐oil upgrading and explore key metrics that influence their commercial viability through life cycle assessment (LCA) and techno‐economic analysis (TEA) methods together with technology readiness level (TRL) evaluation. We investigate the trade‐offs among economic, environmental, and technological metrics derived from these methods for individual technologies as a means of understanding their nearness to commercialization. Although the technologies reviewed have not attained commercial investment, some have been pilot tested. Predicting the projected performance at scale‐up through models can, with industrial experience, guide decision‐making to competitively meet energy policy goals. LCA and TEA methods that ensure consistent and reproducible models at a given TRL are needed to compare alternative technologies. This study highlights the importance of integrated analysis of multiple economic, environmental, and technological metrics for understanding performance prospects and barriers among early stage technologies.
机译:升级快速热解生物油的技术正在开发和副系列正在开发中,并展示了运输和化学品市场的能源供应脱碳的承诺。这些燃料的成功商业化和部署的技术依赖于生产成本,可扩展性和产量。为了满足环境法规,基于热解的生物燃料需要遵守相对于基于石油的对应物的生命周期温室气体强度标准。我们审查了快速热解生物油升级的文献,探讨了通过生命周期评估(LCA)和技术经济分析(TED)方法以及技术准备水平(TRL)评估来影响其商业活力的关键指标。我们调查从这些方法的经济,环境和技术指标之间的权衡,因为个人技术作为理解其近乎商业化的手段。虽然审查的技术尚未获得商业投资,但有些人已被测试过。通过模型预测预计的绩效可以通过工业经验,指导决策竞争地符合能源政策目标。 LCA和茶叶方法确保在给定的TRL处需要一致和可重复的模型来比较替代技术。本研究突出了多种经济,环境和技术指标综合分析的重要性,以了解早期技术的绩效前景和障碍。

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