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Life Cycle Assessment of vegetable oil based polyols for polyurethane production

机译:聚氨酯生产植物油植物油多元醇生命周期评估

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Vegetable oils offer a reliable chemical platform to synthesize polyols for polyurethane production to replace fully or partially polyurethane precursors that are derived from petrochemical resources. Rapeseed, a renewable feedstock widely available in Northern Europe, was used as a bio-based feedstock. In the present study, a cradle-to-gate Life Cycle Assessment for a pilot scale bio-based polyol production was carried out. Life Cycle Inventories were built on up-to-date regionalized inventory for rapeseed production and experimental data for polyol synthesis were obtained from a pilot scale (50 L) reactor. Bio-based polyols were compared with the petrochemical counterpart. Life Cycle Assessment was performed using SimaPro 9.0 and impacts were evaluated with ReCiPe Endpoint and Midpoint methods and Cumulative Energy Demand. The two developed rapeseed oil based polyols were analyzed with three different modelling approaches for the bio-based feedstock stage - system expansion, mass allocation and economic allocation. The results indicate that, compared to petrochemical polyols in all cases of allocation bio-based rapeseed oil polyols have a better environmental performance in 8 out of the 18 ReCiPe midpoint impact categories and lower Cumulative Energy Demand. However, results also showed that the choice of allocation in the bio-based feedstock production stage has a significant impact on the results. (C) 2020 Elsevier Ltd. All rights reserved.
机译:植物油提供可靠的化学平台,合成聚氨酯生产的多元醇,以替代来自石化资源的全部或部分聚氨酯前体。油菜籽是北欧广泛使用的可再生原料,用作生物基原料。在本研究中,进行了用于试验规模生物基多酚产量的摇篮到栅极寿命周期评估。生命周期库存建立在对油菜籽生产的最新区域化库存上,从先导秤(50L)反应器中获得多元醇合成的实验数据。将生物基多元醇与石化对应物进行比较。使用SimaPro 9.0进行生命周期评估,并使用配方端点和中点方法和累积能源需求进行影响。分析了两种不同的型菜籽油基多元醇,采用三种不同的建模方法,用于生物基原料阶段 - 系统扩张,群众分配和经济分配。结果表明,与石油化学多元醇相比,在所有分配生物的菜籽油多元醇中,在18个配方中点撞击类别中的8个和累积能源需求中有一个更好的环境性能。然而,结果还表明,生物基原料生产阶段的分配选择对结果产生了重大影响。 (c)2020 elestvier有限公司保留所有权利。

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