Andrade Larissa Renata Santos, Felisardo Raul José Alves, Cruz Ianny Andrade, Bilal Muhammad, Iqbal Hafiz M N, Mulla Sikandar I, Bharagava Ram Naresh, Souza Ranyere Lucena de, Azevedo Lucas Carvalho Basilio, Ferreira Luiz Fernando Romanholo
Graduate Program in Process Engineering, Tiradentes University, Av. Murilo Dantas, 300, Farolândia, Aracaju 49032-490, SE, Brazil.
Biomass Technology Laboratory, Université de Sherbrooke, 2500 Boul, de L'Université, Sherbrooke, QC J1K 2R1, Canada.
Plants (Basel). 2022 Dec 18;11(24):3577. doi: 10.3390/plants11243577.
Commonly known as a subsistence culture, cassava came to be considered a commodity and key to adding value. However, this tuber's processing for starch and flour production is responsible for generating a large amount of waste that causes serious environmental problems. This biomass of varied biochemical composition has excellent potential for producing fuels (biogas, bioethanol, butanol, biohydrogen) and non-energetic products (succinic acid, glucose syrup, lactic acid) via biorefinery. However, there are environmental challenges, leading to uncertainties related to the sustainability of biorefineries. Thus, the provision of information generated in life cycle assessment (LCA) can help reduce bottlenecks found in the productive stages, making production more competitive. Within that, this review concentrates information on the production of value-added products, the environmental impact generated, and the sustainability of biorefineries.
木薯通常被视为一种自给自足的作物,但后来被视为一种商品,也是增值的关键。然而,这种块茎用于淀粉和面粉生产的加工过程会产生大量废物,从而导致严重的环境问题。这种具有不同生化成分的生物质通过生物精炼有极好的潜力生产燃料(沼气、生物乙醇、丁醇、生物氢气)和非能源产品(琥珀酸、葡萄糖浆、乳酸)。然而,存在一些环境挑战,导致生物精炼厂的可持续性存在不确定性。因此,提供生命周期评估(LCA)中产生的信息有助于减少生产阶段发现的瓶颈,使生产更具竞争力。在此范围内,本综述集中介绍了增值产品的生产、产生的环境影响以及生物精炼厂的可持续性方面的信息。