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柑橘废弃物生物聚合物生产的扩大与可持续性评估:提供碳捕获与利用途径

Scale-up and Sustainability Evaluation of Biopolymer Production from Citrus Waste Offering Carbon Capture and Utilisation Pathway.

作者信息

Durkin Alex, Taptygin Ivan, Kong Qingyuan, Gunam Resul Mohamad F M, Rehman Abdul, Fernández Ana M L, Harvey Adam P, Shah Nilay, Guo Miao

机构信息

Department of Chemical Engineering Imperial College London London SW7 2AZ UK.

School of Engineering Newcastle University Newcastle upon Tyne NE1 7RU UK.

出版信息

ChemistryOpen. 2019 Mar 7;8(6):668-688. doi: 10.1002/open.201900015. eCollection 2019 Jun.

Abstract

Poly(limonene carbonate) (PLC) has been highlighted as an attractive substitute to petroleum derived plastics, due to its utilisation of CO and bio-based limonene as feedstocks, offering an effective carbon capture and utilisation pathway. Our study investigates the techno-economic viability and environmental sustainability of a novel process to produce PLC from citrus waste derived limonene, coupled with an anaerobic digestion process to enable energy cogeneration and waste recovery maximisation. Computational process design was integrated with a life cycle assessment to identify the sustainability improvement opportunities. PLC production was found to be economically viable, assuming sufficient citrus waste is supplied to the process, and environmentally preferable to polystyrene (PS) in various impact categories including climate change. However, it exhibited greater environmental burdens than PS across other impact categories, although the environmental performance could be improved with a waste recovery system, at the cost of a process design shift towards energy generation. Finally, our study quantified the potential contribution of PLC to mitigating the escape of atmospheric CO concentration from the planetary boundary. We emphasise the importance of a holistic approach to process design and highlight the potential impacts of biopolymers, which is instrumental in solving environmental problems facing the plastic industry and building a sustainable circular economy.

摘要

聚(柠檬烯碳酸酯)(PLC)因其利用一氧化碳和生物基柠檬烯作为原料,提供了一条有效的碳捕获和利用途径,而被视为石油衍生塑料的一种有吸引力的替代品。我们的研究调查了一种由柑橘废弃物衍生的柠檬烯生产PLC的新工艺的技术经济可行性和环境可持续性,并结合厌氧消化工艺以实现能源联产和废物回收最大化。将计算过程设计与生命周期评估相结合,以确定可持续性改进机会。研究发现,假设向该工艺供应足够的柑橘废弃物,PLC生产在经济上是可行的,并且在包括气候变化在内的各种影响类别中,其环境性能优于聚苯乙烯(PS)。然而,在其他影响类别中,它表现出比PS更大的环境负担,尽管通过废物回收系统可以改善环境性能,但代价是工艺设计向能源生产方向转变。最后,我们的研究量化了PLC对减轻大气中二氧化碳浓度从地球边界逸出的潜在贡献。我们强调了整体方法对工艺设计的重要性,并突出了生物聚合物的潜在影响,这有助于解决塑料行业面临的环境问题并建立可持续的循环经济。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4407/6547945/f1a172b905cc/OPEN-8-668-g001.jpg

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