木质素基多元醇环境可持续性的生命周期评价模型

IF 10.9 1区 环境科学与生态学 Q1 ENVIRONMENTAL STUDIES Sustainable Production and Consumption Pub Date : 2024-12-01 DOI:10.1016/j.spc.2024.11.019
Léo Staccioli , Andreia Maria Rodrigues dos Santos , José Gallego , Ana Kalliola , Olesya Fearon , Pablo Ortiz , Walter Pitacco , Ana Carvalho
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引用次数: 0

摘要

木质素基多元醇通过为各种类型的生物树脂涂料提供新的合成途径,有望提供显著的环境效益。目前,文献中还没有评估木质素多元醇的模型,因此,本研究引入了一个新的模型来评估与木质素多元醇合成相关的环境影响,并评估其在生物制品制造中的潜在环境优势。该模型遵循生命周期评估方法,并基于木质素多元醇生产的中试规模,从硫酸盐木质素提取开始,然后是溶剂分馏。结果表明,与石化产品相比,木质素基多元醇在特定条件下(如使用生物基溶剂和适当的能源组合)表现出优越的环保性能。四氢呋喃和电力消耗成为气候变化、化石资源使用和水使用等环境影响类别的主要热点,被确定为木质素基多元醇生产对整体环境影响的主要贡献者。采用蒙特卡罗模拟进行了不确定性分析。根据研究结果,生产商可以考虑将木质素多元醇作为一种有前景的原料,如果他们用生物基的四氢呋喃替代木质素多元醇,并采用可再生能源组合进行生产。研究人员和/或从业者可以很容易地扩展该模型,以进一步评估木质素多元醇衍生的生物产品对环境的影响。此外,这项研究的结果可以指导决策者制定生物产品政策,因为木质素多元醇显示出作为一种更可持续的化学替代品的希望。
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A life cycle assessment model to evaluate the environmental sustainability of lignin-based polyols
Lignin-based polyols are expected to provide significant environmental benefits by offering new synthetic routes to various types of bio-resins for coating applications. Currently, no models evaluating lignin-based polyols are available in the literature, therefore, the present study introduces a new model to assess environmental impacts associated with the synthesis of lignin-based polyols and to evaluate their potential environmental advantages in bio-product manufacturing. The model follows the life cycle assessment methodology and is based on lignin-based polyols production at a pilot scale, beginning with kraft lignin extraction, followed by solvent fractionation. The results indicate that, compared to their petrochemical counterparts, lignin-based polyols demonstrate superior environmental performance under specific conditions, such as the use of bio-based solvents and an appropriate energy mix. Tetrahydrofuran and electricity consumption emerge as the primary hotspots contributing to environmental impact categories such as climate change, fossil resource use, and water use—identified as the main contributors to the overall environmental impact of lignin-based polyol production. An uncertainty analysis was conducted using Monte Carlo simulation. Based on the findings, producers can consider lignin-based polyols as a promising raw material if they replace tetrahydrofuran with its bio-based counterpart and adopt a renewable energy mix for production. This model can be easily extended by researchers and/or practitioners to further evaluate the environmental impacts of bio-products derived from lignin-based polyols. Moreover, the results of this study can guide policymakers in shaping bio-product policies, as lignin-based polyols show promise as a more sustainable chemical alternative.
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来源期刊
Sustainable Production and Consumption
Sustainable Production and Consumption Environmental Science-Environmental Engineering
CiteScore
17.40
自引率
7.40%
发文量
389
审稿时长
13 days
期刊介绍: Sustainable production and consumption refers to the production and utilization of goods and services in a way that benefits society, is economically viable, and has minimal environmental impact throughout its entire lifespan. Our journal is dedicated to publishing top-notch interdisciplinary research and practical studies in this emerging field. We take a distinctive approach by examining the interplay between technology, consumption patterns, and policy to identify sustainable solutions for both production and consumption systems.
期刊最新文献
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