DICAM, Alma Mater Studiorum-University of Bologna, Italy.
DICAM, Alma Mater Studiorum-University of Bologna, Italy.
N Biotechnol. 2015 Jan 25;32(1):100-8. doi: 10.1016/j.nbt.2013.11.003. Epub 2013 Nov 24.
This review aims to explore the needs and opportunities of research & development in the field of biowaste biorefinery in Europe. Modern industry in recent years is giving its close attention on organic waste as a new precious bioresource. Specific biowaste valorisation pathways are focusing on food processing waste, being food sector the first manufacture in Europe. Anyway they need to be further tested and validated and then transferred at the larger scale. In particular, they also need to become integrated, combining biomass pretreatments and recovery of biogenic chemicals with bioconversion processes in order to obtain a large class of chemicals. This will help to (a) use the whole biowaste, by avoiding producing residues and providing to the approach the required environmental sustainability, and (b) producing different biobased products that enter different markets, to get the possible economical sustainability of the whole biorefinery. However, the costs of the developed integrated processes might be high, mostly for the fact that the industry dealing with such issues is still underdeveloped and therefore dominated by high processing costs. Such costs can be significantly reduced by intensifying research & development on process integration and intensification. The low or no cost of starting material along with the environmental benefits coming from the concomitant biowaste disposal would offset the high capital costs for initiating such a biorefinery. As long as the oil prices tend to increase (and they will) this strategy will become even more attractive.
本综述旨在探讨欧洲生物废物生物炼制领域的研发需求和机遇。近年来,现代工业密切关注有机废物作为一种新的宝贵生物资源。具体的生物废物增值途径侧重于食品加工废物,因为食品行业是欧洲的第一大制造业。然而,它们需要进一步测试和验证,然后再在更大规模上转移。特别是,它们还需要进行整合,将生物质预处理和生物化学物质的回收与生物转化过程结合起来,以获得一大类化学品。这将有助于(a)利用整个生物废物,避免产生残留物,并为该方法提供所需的环境可持续性,以及(b)生产不同的生物基产品,进入不同的市场,以获得整个生物炼制厂的可能经济可持续性。然而,开发的综合工艺的成本可能很高,主要是因为处理这些问题的行业仍处于发展阶段,因此受到高加工成本的主导。通过加强对工艺集成和强化的研究与开发,可以显著降低此类成本。原材料的低或无成本以及伴随生物废物处理而来的环境效益,将抵消启动此类生物炼制厂的高额资本成本。只要石油价格有上涨的趋势(而且它们确实会上涨),这种策略将变得更具吸引力。