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利用同步辐射X射线吸收光谱法对经受冻融过程的生物基水凝胶进行状态分析。

State analysis of a biobased hydrogel subjected to freeze and thaw processes by X ray absorption spectroscopy using synchrotron radiation.

作者信息

Monta Kana, Hidaka Masafumi, Ishikawa Daitaro, Fujii Tomoyuki

机构信息

Graduate School of Agricultural Science, Tohoku University, 468-1 Aramaki Aza Aoba, Aoba-ku, Sendai, 981-8555, Miyagi, Japan.

出版信息

Sci Rep. 2024 Nov 5;14(1):26731. doi: 10.1038/s41598-024-76152-z.

Abstract

Freezing hydrogels can compromise their network structures and modify their properties as a result of ice crystal formation. Therefore, understanding the internal structure, including ice crystals and the state of chemical components within hydrogels, is essential. In this study, we evaluated the elemental distribution in bio-based hydrogels subjected to freezing-thaw process using X-ray absorption spectroscopy with synchrotron radiation. A bio-based hydrogel, prepared from Alaska pollock, underwent both slow and rapid freezing processes. Tomographic images and linear X-ray absorption coefficient distributions of the rapidly frozen hydrogel displayed a uniform image with a mean absorption coefficient of 2.81 cm. Conversely, the slowly frozen sample exhibited distinct contrasts with peaks at 2.516 cm (dark) and 3.691 cm (bright), occupying 28% and 72% of the image, respectively. The mean absorption coefficient of the slowly frozen sample was comparable to that of the rapidly frozen sample, indicating no elemental loss. The elements within the hydrogel were categorized into organic elements, macrominerals, and trace elements. The bright areas in the images were attributed to the concentration of macrominerals. Notably, Cl and Na were the primary contributors to the absorption coefficients among the elements present, signifying salt migration during freezing. These findings suggest that the contrast observed in X-ray computed tomography images after freezing reflects the elemental distribution within the hydrogel and successfully demonstrates element localization due to cryoconcentration.

摘要

冷冻水凝胶会因冰晶形成而破坏其网络结构并改变其性质。因此,了解包括冰晶和水凝胶内化学成分状态在内的内部结构至关重要。在本研究中,我们使用同步辐射X射线吸收光谱法评估了经历冻融过程的生物基水凝胶中的元素分布。一种由狭鳕鱼制备的生物基水凝胶经历了缓慢冷冻和快速冷冻过程。快速冷冻水凝胶的断层图像和线性X射线吸收系数分布显示出均匀图像,平均吸收系数为2.81 cm。相反,缓慢冷冻的样品表现出明显的对比度,峰值分别位于2.516 cm(暗)和3.691 cm(亮)处,分别占图像的28%和72%。缓慢冷冻样品的平均吸收系数与快速冷冻样品相当,表明没有元素损失。水凝胶中的元素分为有机元素、大量矿物质和微量元素。图像中的亮区归因于大量矿物质的浓度。值得注意的是,Cl和Na是所含元素中吸收系数的主要贡献者,表明冷冻过程中盐的迁移。这些发现表明,冷冻后X射线计算机断层扫描图像中观察到的对比度反映了水凝胶内的元素分布,并成功证明了由于冷冻浓缩导致的元素定位。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5bc9/11535234/54bf59ed80fe/41598_2024_76152_Fig1_HTML.jpg

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