Arevalo-Gallegos Alejandra, Ahmad Zanib, Asgher Muhammad, Parra-Saldivar Roberto, Iqbal Hafiz M N
School of Engineering and Science, Tecnologico de Monterrey, Campus Monterrey, Ave. Eugenio Garza Sada 2501, Monterrey, N.L., CP 64849, Mexico.
Industrial Biotechnology Laboratory, Department of Biochemistry, University of Agriculture, Faisalabad, Pakistan.
Int J Biol Macromol. 2017 Jun;99:308-318. doi: 10.1016/j.ijbiomac.2017.02.097. Epub 2017 Feb 27.
A novel facility from the green technologies to integrate biomass-based carbohydrates, lignin, oils and other materials extraction and transformation into a wider spectrum of marketable and value-added products with a zero waste approach is reviewed. With ever-increasing scientific knowledge, worldwide economic and environmental consciousness, demands of legislative authorities and the manufacture, use, and removal of petrochemical-based by-products, from the last decade, there has been increasing research interests in the value or revalue of lignocellulose-based materials. The potential characteristics like natural abundance, renewability, recyclability, and ease of accessibility all around the year, around the globe, all makes residual biomass as an eco-attractive and petro-alternative candidate. In this context, many significant research efforts have been taken into account to change/replace petroleum-based economy into a bio-based economy, with an aim to develop a comprehensively sustainable, socially acceptable, and eco-friendly society. The present review work mainly focuses on various aspects of bio-refinery as a sustainable technology to process lignocellulose 'materials' into value-added products. Innovations in the bio-refinery world are providing, a portfolio of sustainable and eco-efficient products to compete in the market presently dominated by the petroleum-based products, and therefore, it is currently a subject of intensive research.
本文综述了一种新型绿色技术设施,该设施采用零废物方法,将基于生物质的碳水化合物、木质素、油脂及其他材料的提取和转化整合为更广泛的可销售和增值产品。随着科学知识的不断增加、全球经济和环境意识的提高、立法当局的要求以及石化副产品的制造、使用和去除,在过去十年中,人们对木质纤维素基材料的价值或再利用的研究兴趣与日俱增。诸如天然丰富性、可再生性、可回收性以及全年在全球范围内易于获取等潜在特性,都使残余生物质成为具有生态吸引力的石油替代候选物。在此背景下,人们已开展了许多重要研究工作,旨在将基于石油的经济转变/替代为基于生物的经济,以建立一个全面可持续、社会可接受且生态友好的社会。本综述工作主要聚焦于生物炼制作为一种可持续技术,将木质纤维素“材料”加工成增值产品的各个方面。生物炼制领域的创新正在提供一系列可持续且生态高效的产品,以在目前由石油基产品主导的市场中竞争,因此,它目前是一个深入研究的课题。