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具有超支化桃胶多糖的水凝胶的分层多孔结构设计和水激活用于高效太阳能水蒸发。

Hierarchical porous structure design and water activation in hydrogels containing hyperbranched peach gum polysaccharide for efficient solar water evaporation.

机构信息

Guangxi Key Laboratory of Optical and Electronic Materials and Devices, and College of Material Science & Engineering, Guilin University of Technology, Guilin 541004, China.

School of Materials Science and Engineering, South China University of Technology, Guangzhou 510640, China.

出版信息

Int J Biol Macromol. 2024 Oct;278(Pt 3):134455. doi: 10.1016/j.ijbiomac.2024.134455. Epub 2024 Aug 19.

Abstract

Solar-powered interfacial evaporation is a developing and sustainable technique increasingly utilized in desalination and wastewater purification. This technology involves the creation of cellulose nanofiber (CNF)/polylactic acid (PLA) composite aerogels through the Pickering emulsion approach. Self-floating aero-hydrogel (E-VGP) with a hierarchical porous structure was formed on a viscous mixture containing polyvinyl alcohol (PVA), peach gum polysaccharide (PGP), and polypyrrole (PPy) via an in-situ polymerization process. Furthermore, by modifying the hydrolysis time of PGP with a hyperbranched polyhydroxy structure, VGP hybrid hydrogels of varying microscopic molecular sizes were produced. Additionally, solar vapor generators (SVG) with diverse macroscopic structures were fabricated using molds. The V8G4-12hP0.2 hybrid hydrogel, synthesized using PGP hydrolyzed for 12 h, exhibited an evaporation enthalpy of water at 1204 J g. This capacity effectively activates water and enables low enthalpy evaporation. Conversely, the macrostructural design allows the cylindrical rod raised sundial-shaped structure of SVG3 to possess an expanded evaporation area, minimize energy loss, and even harness additional energy from its nonradiative side. Consequently, this micro-macrostructural design enables SVG3 to attain an exceptionally high evaporation rate of 3.13 kg m h under 1 Sun exposure. Moreover, SVG3 demonstrates robust water purification abilities, suggesting significant potential for application in both desalination and industrial wastewater treatment.

摘要

太阳能界面蒸发是一种新兴的可持续技术,越来越多地应用于海水淡化和废水净化。本研究通过 Pickering 乳液法制备纤维素纳米纤维(CNF)/聚乳酸(PLA)复合气凝胶。通过原位聚合过程,在包含聚乙烯醇(PVA)、桃胶多糖(PGP)和聚吡咯(PPy)的粘性混合物上形成具有分级多孔结构的自浮气凝胶(E-VGP)。此外,通过修饰具有超支化多羟基结构的 PGP 的水解时间,制备了具有不同微观分子尺寸的 VGP 杂化水凝胶。此外,使用模具制造了具有不同宏观结构的太阳能蒸汽发生器(SVG)。使用水解 12 小时的 PGP 合成的 V8G4-12hP0.2 杂化水凝胶的水蒸发焓为 1204 J g。这种能力有效地激活了水,并实现了低焓蒸发。相反,宏观结构设计允许 SVG3 的圆柱形棒状 raised sundial 形结构具有更大的蒸发面积,最小化能量损失,并从其非辐射侧获取额外的能量。因此,这种微-宏观结构设计使 SVG3 在 1 个太阳照射下能够达到 3.13 kg m h 的极高蒸发率。此外,SVG3 表现出强大的水净化能力,表明其在海水淡化和工业废水处理方面具有重要的应用潜力。

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