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characterization analysis of date fruit pomace: An underutilized waste bioresource rich in dietary fiber and phenolic antioxidants.

Characterization analysis of date fruit pomace: An underutilized waste bioresource rich in dietary fiber and phenolic antioxidants.

机构信息

Department of Civil and Environmental Engineering, College of Engineering, United Arab Emirates University, 15551 Al Ain, United Arab Emirates.

Department of Food Science, College of Agriculture & Veterinary Medicine, United Arab Emirates University, 15551 Al-Ain, United Arab Emirates.

出版信息

Waste Manag. 2023 May 15;163:34-42. doi: 10.1016/j.wasman.2023.03.027. Epub 2023 Mar 29.

Abstract

Date fruit pomace (DFP), an abundant byproduct of the date syrup industry, is currently underutilized. It is either fed to animals or landfilled where it ferments, causing serious environmental issues. Proper waste management through valorization strategies is required to reduce the environmental impact of date waste and foster the transition of the date processing industry towards sustainability. The implementation of valorization strategies requires characterizing the DFP composition. Herein, four DFP samples of Emirati varieties were characterized in terms of compositional and functional properties. The fresh DFPs contained moisture (∼60.0 g/100 g). On a dry matter basis, DFPs contained total dietary fiber (∼45.5 g/100 g), residual sugars (∼35.3 g/100 g), protein (∼10.6 g/100 g), ash (∼4.1 g/100 g), and fat (∼1.3 g/100 g). They were also rich in nutritionally important elements such as potassium (∼145.7 ppm), calcium (∼46 ppm), phosphorus (∼28.7 ppm), and magnesium (∼26.7 ppm). The total phenolic content varied from 170 to 260 mg gallic acid equivalents GAE/100 g, making DFP a good source of antioxidants. Scanning electron microscopy measurements revealed the presence of fibrous bundle-like structures, whose thermal stability was confirmed by thermogravimetric analysis, showing the dominance of insoluble over soluble fiber. Higher water- and oil-holding capacities were found for dried desugared pomace. The high fiber, phenolic, and elemental content highlight the high nutritional value of DFP, which can be used as dietary supplement, while its sugar content can be used to produce value-added biochemicals via fermentation. Thus, DFP may represent a valuable bioresource for food and non-food applications.

摘要

椰枣渣(DFP)是枣糖浆工业的一种丰富的副产品,目前尚未得到充分利用。它要么被喂给动物,要么被填埋在那里发酵,从而造成严重的环境问题。需要通过增值策略进行适当的废物管理,以减少枣废物对环境的影响,并促使枣加工行业向可持续性发展转变。实施增值策略需要对 DFP 的组成进行表征。在此,对来自阿联酋品种的四个 DFP 样本进行了组成和功能特性的表征。新鲜的 DFP 含有水分(约 60.0 g/100 g)。在干物质基础上,DFP 含有总膳食纤维(约 45.5 g/100 g)、残余糖(约 35.3 g/100 g)、蛋白质(约 10.6 g/100 g)、灰分(约 4.1 g/100 g)和脂肪(约 1.3 g/100 g)。它们还富含营养重要元素,如钾(约 145.7 ppm)、钙(约 46 ppm)、磷(约 28.7 ppm)和镁(约 26.7 ppm)。总酚含量在 170 到 260 mg 没食子酸当量 GAE/100 g 之间变化,使 DFP 成为抗氧化剂的良好来源。扫描电子显微镜测量显示存在纤维束状结构,热重分析证实了其热稳定性,表明不溶性纤维占优势。干燥脱糖残渣的持水和持油能力较高。高纤维、酚类和元素含量突出了 DFP 的高营养价值,可作为膳食补充剂,而其糖含量可通过发酵用于生产增值生物化学物质。因此,DFP 可能代表了用于食品和非食品应用的有价值的生物资源。

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