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深入了解干浮萍[Wolffia arrhiza(L.)Wimm]的吸湿特性、营养成分、抗氧化和形态特性。

New insights into moisture sorption characteristics, nutritional composition, and antioxidant and morphological properties of dried duckweed [Wolffia arrhiza (L.) Wimm].

机构信息

Department of Food Science and Technology, Faculty of Home Economics Technology, Rajamangala University of Technology Phra Nakhon, Bangkok, Thailand.

Plateforme Dimacell/Imagerie spectroscopique UMR Procédés Alimentaires et Microbiologiques Equipe Procédés Microbiologiques et Biotechnologiques, AgroSup Dijon Nord, Dijon, France.

出版信息

J Sci Food Agric. 2022 Mar 30;102(5):2135-2143. doi: 10.1002/jsfa.11555. Epub 2021 Oct 11.

Abstract

BACKGROUND

Duckweed has been considered as an alternative future food material as a result of its high nutritional values, although it also has a high moisture content resulting in a short shelf life. Moisture sorption isotherms are used to design dehydration and storage conditions to prolong the shelf life food products. To date, information regarding the sorption isotherm of duckweed has not been reported. Scanning electron microscopy (SEM) is frequently used to study food microstructure. However, this technique has to be performed under high-vacuum conditions and takes a long time. In the present study, two-photon imaging microscopy was selected to investigate the microstructure of dried duckweed instead of SEM.

RESULTS

Among five sorption isotherm models, the Peleg model gave the highest goodness of fit. The monolayer moisture content (M ) of duckweed was in the range 7.43-7.92% dry basis (d.b.) and 8.87-8.86% d.b. for the GAB and BET multilayer kinetic models, respectively. The moisture changing behavior at each relative humidity step could be described by two exponential and reaction order kinetics. A clear cell structure (hexagonal shape) and stomata, as well as structural images (both 2D and 3D), were obtained using the two-photon microscopy technique.

CONCLUSION

The Peleg model best described the moisture sorption behaviors of dried duckweed and the shape of sorption isotherms were classified as type III isotherm. The M of dried duckweed ranged from 7.43 to 8.86% d.b. Two-photon microscopy was a potent tool for investigating the microstructure and composition of dried duckweed. © 2021 Society of Chemical Industry.

摘要

背景

由于营养价值高,浮萍已被认为是未来的一种替代食品,但它的水分含量也很高,导致保质期短。水分吸附等温线用于设计脱水和储存条件,以延长食品的保质期。迄今为止,关于浮萍吸附等温线的信息尚未报道。扫描电子显微镜(SEM)常用于研究食品微观结构。然而,这种技术必须在高真空条件下进行,并且需要很长时间。在本研究中,选择双光子成像显微镜代替 SEM 来研究干浮萍的微观结构。

结果

在五种吸附等温线模型中,Peleg 模型拟合度最高。浮萍的单层水分含量(M)在 7.43-7.92%干基(d.b.)范围内,GAB 和 BET 多层动力学模型分别为 8.87-8.86% d.b。在每个相对湿度步骤下的水分变化行为可以用两个指数和反应级数动力学来描述。使用双光子显微镜技术可以获得清晰的细胞结构(六边形形状)和气孔,以及结构图像(二维和三维)。

结论

Peleg 模型最能描述干浮萍的水分吸附行为,吸附等温线的形状被归类为 III 型等温线。干浮萍的 M 范围为 7.43-8.86% d.b.双光子显微镜是研究干浮萍微观结构和组成的有力工具。© 2021 化学工业协会。

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