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首页> 外文期刊>Journal of Chemical Technology & Biotechnology >Environmental sustainability assessment of renewables-based propylene glycol at full industrial scale production
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Environmental sustainability assessment of renewables-based propylene glycol at full industrial scale production

机译:全工业规模生产中可再生能源丙二醇的环境可持续性评估

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摘要

BACKGROUND Glycerol, a by-product from oleochemical or biodiesel production, can be used to produce renewables-based propylene glycol (PG). The environmental sustainability of PG was evaluated using life-cycle assessment. The effect of shifting from petrochemical to renewables-based PG was assessed by using data from an industrial scale renewables-based PG production plant. A contribution analysis was performed to identify the hotspots in the production process. The effects of implementing a sustainable sourcing strategy and producing steam/electricity by combined heat and power (CHP) were assessed. RESULTS A switch from petrochemical to renewables-based PG results in a reduction of the climate change impact between 40% and 60% kg CO2 eq. A shift of burden is found to agriculture-related indicators. For the biodiesel and oleochemical production route, respectively, 73% and 59% of the impact on climate change is related to feedstock production. By implementing two improvements, the emitted CO2 eq. for biodiesel PG could be reduced by 38%. CONCLUSIONS Switching from petrochemical to renewables-based PG has a clear environmental benefit for slowing climate change. However, the shift of burden towards agriculture-related indicators shows the need to ensure sustainable agricultural practices. Combining both on-site improvements and a more sustainable supply chain effectively decreases the environmental impact. (c) 2019 Society of Chemical Industry
机译:背景技术甘油,来自油化学或生物柴油生产的副产品,可用于生产可再生能源的丙二醇(PG)。使用生命周期评估评估PG的环境可持续性。通过使用基于工业规模的可再生能源的PG生产植物的数据来评估将石化对基于可再生能源的PG的影响。进行贡献分析以识别生产过程中的热点。评估实施可持续采购策略并通过组合热量和功率(CHP)产生蒸汽/电力(CHP)的影响。结果基于石化至可再生能源的PG的开关导致降低40%至60%KG CO2 EQ的气候变化。对农业有关的指标,发现负担的转变。对于生物柴油和油化学生产路线,分别为73%和59%的气候变化的影响与原料生产有关。通过实施两个改进,发出的CO2 EQ。对于生物柴油PG可以减少38%。结论从石化到可再生能源的PG转换为降低气候变化的清晰环境效益。但是,对农业相关指标的负担的转变表明需要确保可持续的农业实践。结合现场改进和更可持续的供应链有效地降低了环境影响。 (c)2019年化学工业协会

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