生物残渣中的半纤维素及其在食品工业中的应用--实现先进的生物经济和可持续的全球化学品和材料价值链

Sarah R. Mathura, Andrea C. Landázuri, Farrah Mathura, Ana Gabriela Andrade Sosa and Lourdes M. Orejuela-Escobar
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引用次数: 0

摘要

食品工业的一个主要问题是使用不可再生的石油基材料及其对环境的有害影响。因此,人们对在食品包装和其他应用中使用生物聚合物越来越感兴趣,因为生物聚合物具有可再生和可生物降解的特性,对环境有积极的好处。半纤维素是可生物降解的杂聚合物,与一年生和多年生植物的无性和贮藏组织的木质纤维素细胞壁有关。它们是一种巨大的可再生生物聚合物资源。半纤维素是木质纤维素生物质中含量第二高的成分,尽管它是木质纤维素生物质加工过程中的主要副产品或残留物,但在工业应用中却相对利用不足。因此,通过生物精炼概念将半纤维素价值化纳入其中,对促进可持续生物经济(SBE)、循环生物经济(CBE)和循环经济(CE)非常重要。通过对不同植物的提取程序,可以分离出多种不同产量和纯度的半纤维素结构。然而,与其他生物聚合物相比,半纤维素的低产率、亲水性和低机械强度使其商业用途受到了限制。虽然纯半纤维素在食品工业中的应用有限,但将半纤维素复合材料用作可食用薄膜、涂层、防腐剂、填料和乳化剂则更有前景。本综述总结了植物半纤维素生物聚合物目前在食品工业中的应用情况、在先进生物经济和化学品与材料价值链中的未来前景,以及缓解与使用这些材料相关的挑战的方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Hemicelluloses from bioresidues and their applications in the food industry – towards an advanced bioeconomy and a sustainable global value chain of chemicals and materials

Hemicelluloses from bioresidues and their applications in the food industry – towards an advanced bioeconomy and a sustainable global value chain of chemicals and materials

A major concern in the food industry is the use of non-renewable, petroleum-based materials and its detrimental impact on the environment. Consequently, there has been a growing interest in the use of biopolymers in food packaging and other applications due to their renewable origin and biodegradable properties, which have a positive environmental benefit. Hemicelluloses are biodegradable heteropolymers, which are associated with lignocellulose cell walls of vegetative and storage tissues of annual and perennial plants. They represent an immense renewable resource of biopolymers. Hemicelluloses are the second most abundant component of lignocellulosic biomass, and they are comparatively underutilized in industrial applications, even though it is a main by-product or residue in the lignocellulosic biomass processing. Therefore, it is important to include hemicellulose valorisation through the biorefinery concept to promote a Sustainable Bioeconomy (SBE), Circular Bioeconomy (CBE), and Circular Economy (CE). Extraction procedures on different plants have enabled the isolation of a diversity of hemicellulose structures with different yields and purities. However, compared to other biopolymers, their commercial uses have been underscored by their low yields, hydrophilicity, and low mechanical strength. While the applications of pure hemicelluloses are limited in the food industry, the use of hemicellulose composites as edible films, coatings, preservatives, fillers, and emulsifiers, is more promising. This review summarizes the current applications of plant hemicellulose biopolymers in the food industry and future perspectives in the advanced bioeconomy and value chain of chemicals and materials as well as ways of mitigating the challenges associated with their use.

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