Biorefining Research Institute, Lakehead University, Thunder Bay, ON, Canada P7B 5Z5.
Biotechnol Adv. 2012 Nov-Dec;30(6):1627-40. doi: 10.1016/j.biotechadv.2012.07.001. Epub 2012 Jul 7.
For a hundred years or more, oil and natural gas has supplied fuel and other raw chemicals to support economic growth. In the last decades their shrinking reservoirs and the increasing cost of production has become obvious, leading researchers to look for alternative substitutes of all the chemical materials presently derived from oil and gas. This review is focused on xylan, the second most abundant plant polysaccharide on our planet. Some xylan-derived products have already found commercial applications (ethanol, xylitol, xylo-oligosaccharides) while others could have a great future in a wide range of industries. The chemical and structural variations of xylans produced by different plants, and the concentration of xylan in various plant resources are summarized. This review discusses the latest research developments in extraction and purification methodologies, and chemical modification, as well as the analytical methods necessary for xylan related research.
一个多世纪以来,石油和天然气为经济增长提供了燃料和其他原材料。在过去几十年中,其储量的减少和生产成本的增加已经变得明显,这促使研究人员寻找替代所有目前从石油和天然气中提取的化学物质的替代品。本文重点介绍了木聚糖,这是地球上第二丰富的植物多糖。一些木聚糖衍生产品已经找到了商业应用(乙醇、木糖醇、木二糖寡糖),而其他产品在广泛的行业中可能有很大的未来。本文总结了不同植物产生的木聚糖的化学和结构变化,以及各种植物资源中木聚糖的浓度。本文还讨论了提取和纯化方法、化学修饰以及与木聚糖相关研究所需的分析方法的最新研究进展。