龙舌兰副产物:其营养价值、当前应用和加工方法综述

Jimena Álvarez-Chávez, M. Villamiel, Liliana Santos-Zea, A. K. Ramírez-Jiménez
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引用次数: 9

摘要

龙舌兰,俗称“maguey”,是墨西哥传统和经济的重要组成部分,主要用于生产酒精饮料,如龙舌兰酒。工业开采产生的副产品,包括树叶、甘蔗渣和纤维,可以重新估价。龙舌兰由纤维素、半纤维素、木质素、果聚糖和果胶以及简单的碳水化合物组成。就功能特性而言,果聚糖的含量使龙舌兰成为潜在的益生元来源,具有降低血糖和增强脂质稳态的能力,当它被作为益生元成分加入饼干和格兰诺拉燕麦棒中时。龙舌兰还含有植物化学物质,如皂苷和类黄酮,具有抗炎、抗氧化、抗菌和抗癌等功效。龙舌兰纤维由于其热机械性能,被用于聚合物基复合材料的增强和细化。龙舌兰甘蔗渣被认为是一种很有前途的生物燃料原料,由于其高水效率和生物质生产力,以及其高碳水化合物含量。物理和化学预处理、酶糖化和发酵的优化是生物燃料生产的关键。新兴技术,如超声波,可以为当前的预处理工艺提供一种替代方案。总之,龙舌兰是一种丰富的副产品来源,具有广泛的工业应用潜力,因此人们正在探索新的加工方法,以实现这些残留物的可持续再增值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Agave By-Products: An Overview of Their Nutraceutical Value, Current Applications, and Processing Methods
Agave, commonly known as “maguey” is an important part of the Mexican tradition and economy, and is mainly used for the production of alcoholic beverages, such as tequila. Industrial exploitation generates by-products, including leaves, bagasse, and fibers, that can be re-valorized. Agave is composed of cellulose, hemicellulose, lignin, fructans, and pectin, as well as simple carbohydrates. Regarding functional properties, fructans content makes agave a potential source of prebiotics with the capability to lower blood glucose and enhance lipid homeostasis when it is incorporated as a prebiotic ingredient in cookies and granola bars. Agave also has phytochemicals, such as saponins and flavonoids, conferring anti-inflammatory, antioxidant, antimicrobial, and anticancer properties, among other benefits. Agave fibers are used for polymer-based composite reinforcement and elaboration, due to their thermo-mechanical properties. Agave bagasse is considered a promising biofuel feedstock, attributed to its high-water efficiency and biomass productivity, as well as its high carbohydrate content. The optimization of physical and chemical pretreatments, enzymatic saccharification and fermentation are key for biofuel production. Emerging technologies, such as ultrasound, can provide an alternative to current pretreatment processes. In conclusion, agaves are a rich source of by-products with a wide range of potential industrial applications, therefore novel processing methods are being explored for a sustainable re-valorization of these residues.
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