Forte Annachiara, Zucaro Amalia, Basosi Riccardo, Fierro Angelo
Dipartimento di Biologia, Università di Napoli Federico II, Napoli 80126, Italy.
Dipartimento di Biotecnologie, Chimica e Farmacia, Università di Siena, Siena 53100, Italy.
Materials (Basel). 2016 Jul 12;9(7):563. doi: 10.3390/ma9070563.
The bio-based industrial sector has been recognized by the European Union as a priority area toward sustainability, however, the environmental profile of bio-based products needs to be further addressed. This study investigated, through the Life Cycle Assessment (LCA) approach, the environmental performance of bio-based 1,4-butanediol (BDO) produced via direct fermentation of sugars from wheat straw, within a hypothetical regional biorefinery (Campania Region, Southern Italy). The aim was: (i) to identify the hotspots along the production chain; and (ii) to assess the potential environmental benefits of this bio-based polymer versus the reference conventional product (fossil-based BDO). Results identified the prevailing contribution to the total environmental load of bio-based BDO in the feedstock production and in the heat requirement at the biorefinery plant. The modeled industrial bio-based BDO supply chain, showed a general reduction of the environmental impacts compared to the fossil-based BDO. The lowest benefits were gained in terms of acidification and eutrophication, due to the environmental load of the crop phase for feedstock cultivation.
生物基产业部门已被欧盟认定为实现可持续发展的优先领域,然而,生物基产品的环境概况仍需进一步探讨。本研究通过生命周期评估(LCA)方法,对意大利南部坎帕尼亚地区一家假设的区域生物精炼厂内,通过小麦秸秆糖直接发酵生产的生物基1,4-丁二醇(BDO)的环境绩效进行了调查。目的是:(i)确定生产链中的热点;(ii)评估这种生物基聚合物相对于参考传统产品(化石基BDO)的潜在环境效益。结果表明,生物基BDO的总环境负荷主要来自原料生产和生物精炼厂的热量需求。与化石基BDO相比,模拟的工业生物基BDO供应链显示出总体环境影响的降低。由于原料种植作物阶段的环境负荷,在酸化和富营养化方面获得的效益最低。