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用于盐辅助太阳能蒸汽蒸发器的具有低曲折度通道的离子液体辅助取向玉米秸秆微晶纤维素气凝胶

Ionic Liquid-Assisted Alignment of Corn Straw Microcrystalline Cellulose Aerogels with Low Tortuosity Channels for Salt-Assistance Solar Steam Evaporators.

作者信息

Li Jiyan, Zhou Xu, Jing Yanju, Sun Hanxue, Zhu Zhaoqi, Liang Weidong, Li An

机构信息

College of Petrochemical Technology, Lanzhou University of Technology, Langongping Road No. 287, Lanzhou 730050, P. R. China.

出版信息

ACS Appl Mater Interfaces. 2021 Mar 17;13(10):12181-12190. doi: 10.1021/acsami.1c02278. Epub 2021 Mar 8.

Abstract

The development of a highly salt-resistant solar evaporator with long-term energy conversion is essential for practical solar desalination. Herein, we first report the ionic liquid-assisted alignment of corn straw-based microcrystalline and oxidized microcrystalline cellulose for preparation of biomass aerogel (abbreviated as CSMCA and CSOMCA) evaporators with low tortuosity channels for salt-assistance solar steam generation. By coating of carbonized cornstalk nanoparticles onto CSMCA and CSOMCA as light-absorbing layers (named C-CSMCA and C-CSOMCA), the light absorption of C-CSMCA and C-CSOMCA reaches 92 and 95%, respectively. The formation of strong H-bonding between pyranoid rings of cellulose in the presence of the ionic liquid would result in a reorientation of microcrystalline cellulose, which makes it possible to create vertically aligned channels of CSMCA and CSOMCA after replacement of solvents, followed by freeze drying. Combined with their low thermal conductivity (0.037 and 0.043 W m K), high porosity, and intrinsic superhydrophilicity, C-CSMCA and C-CSOMCA exhibit high evaporation rates (1.44 and 1.36 kg m h) and excellent energy conversion efficiencies (88 and 84%). In particular, bearing with vertically aligned channels, C-CSMCA and C-CSOMCA possess excellent salt tolerance for solar desalination due to a rapid resolving and return of the crystalline salt into water, for example, no surface salt crystallization for C-CSMCA after 20 days of continuous evaporation. Moreover, both C-CSMCA and C-CSOMCA have excellent sewage treatment capacity and can efficiently absorb dyes and heavy-metal ions in water bodies, showing great potential in actual desalination and sewage treatment based on their cost-effective, simple, scalable, and green manufacture.

摘要

开发一种具有长期能量转换能力的高耐盐性太阳能蒸发器对于实际的太阳能海水淡化至关重要。在此,我们首次报道了离子液体辅助下基于玉米秸秆的微晶纤维素和氧化微晶纤维素的排列,用于制备具有低曲折度通道的生物质气凝胶(简称为CSMCA和CSOMCA)蒸发器,以辅助盐析太阳能蒸汽产生。通过将碳化玉米秸秆纳米颗粒涂覆在CSMCA和CSOMCA上作为光吸收层(命名为C-CSMCA和C-CSOMCA),C-CSMCA和C-CSOMCA的光吸收率分别达到92%和95%。在离子液体存在下,纤维素吡喃环之间形成强氢键会导致微晶纤维素重新取向,这使得在溶剂置换后通过冷冻干燥能够创建CSMCA和CSOMCA的垂直排列通道。结合其低导热率(0.037和0.043 W m K)、高孔隙率和固有的超亲水性,C-CSMCA和C-CSOMCA表现出高蒸发速率(1.44和1.36 kg m h)和优异的能量转换效率(88%和84%)。特别是,由于具有垂直排列的通道,C-CSMCA和C-CSOMCA在太阳能海水淡化方面具有出色的耐盐性,这是因为结晶盐能够快速溶解并回到水中,例如,C-CSMCA连续蒸发20天后表面无盐结晶。此外,C-CSMCA和C-CSOMCA都具有出色的污水处理能力,能够有效吸收水体中的染料和重金属离子,基于其经济高效、简单、可扩展和绿色制造的特点,在实际海水淡化和污水处理中显示出巨大潜力。

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