Department of Food Science and Human Nutrition, Agricultural University of Athens, Iera Odos 75, 118 55 Athens, Greece.
Department of Chemical Engineering, University of Patras, 26504 Patras, Rio, Greece.
Bioresour Technol. 2020 Jul;307:123093. doi: 10.1016/j.biortech.2020.123093. Epub 2020 Mar 3.
The sustainable production of bio-based chemicals and polymers is highly dependent on the development of viable biorefinery concepts using crude renewable resources for the production of diversified products. Within this concept, this critical review presents the availability of fractionated co-products and fermentable sugars that could be derived from major industrial and food supply chain side streams in EU countries. Fermentable sugars could be used for the production of bio-based chemicals and polymers. The implementation of biorefinery concepts in industry should depend on the evaluation of process efficiency and sustainability including techno-economic, environmental and social impact assessment following circular bioeconomy principles. Relevant sustainability indicators and End-of-Life scenarios have been presented. A case study on the techno-economic evaluation of bio-based succinic acid production from the organic fraction of municipal solid waste has been presented focusing on the evaluation of process profitability and feedstock requirements.
可持续生产基于生物的化学品和聚合物高度依赖于利用粗可再生资源开发可行的生物炼制概念,以生产多样化的产品。在这一概念中,本批判性评论介绍了欧盟国家主要工业和食品供应链副产物中可获得的分馏副产物和可发酵糖。可发酵糖可用于生产基于生物的化学品和聚合物。生物炼制概念在工业中的实施应取决于对工艺效率和可持续性的评估,包括遵循循环生物经济原则的技术经济、环境和社会影响评估。提出了相关的可持续性指标和生命周期结束情景。从城市固体废物的有机部分生产生物基琥珀酸的技术经济评估案例研究已经提出,重点是评估工艺盈利能力和原料需求。