Commercial Fiber Products Derived Free-Standing Porous Carbonized-Membranes for Highly Efficient Solar Steam Generation

Herein, the free-standing porous carbonized-membranes (CMs) derived from a series of commercial fiber products including airlaid papers, cellulose papers and cleanroom wipers by one-step carbonization at 160°C have for the first time explored as independent solar absorbers to realize highly efficien...

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Main Authors: Xiaofeng Lin, Meijia Yang, Wei Hong, Dingshan Yu, Xudong Chen
Format: Article
Language:English
Published: Frontiers Media S.A. 2018-12-01
Series:Frontiers in Materials
Subjects:
Online Access:https://www.frontiersin.org/article/10.3389/fmats.2018.00074/full
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spelling doaj-6c75a41d46df47e8a105dcc6eca2a3472020-11-24T21:11:19ZengFrontiers Media S.A.Frontiers in Materials2296-80162018-12-01510.3389/fmats.2018.00074429002Commercial Fiber Products Derived Free-Standing Porous Carbonized-Membranes for Highly Efficient Solar Steam GenerationXiaofeng LinMeijia YangWei HongDingshan YuXudong ChenHerein, the free-standing porous carbonized-membranes (CMs) derived from a series of commercial fiber products including airlaid papers, cellulose papers and cleanroom wipers by one-step carbonization at 160°C have for the first time explored as independent solar absorbers to realize highly efficient solar steam generation. These newly-developed CMs not only exhibit the strong absorption (low reflectance) and rapid transport of vapor/liquid, but also possess the restricted thermal diffusion. All these merits render CMs with excellent evaporation performance for solar steam generation. Particularly, the CMs derived from carbonized cellulose papers (CCPs) exhibits the best performance, which affords the water evaporation rate of 0.959 kg·m−2·h−1 and the energy conversion efficiency of 65.8% under 1 kW·m−2 solar illumination, due to the higher light absorption (92.20%) and lower thermal conductivity (0.031 W·m-1·K-1) competing favorable with those of the Au nanoparticles-loaded airlaid papers (Au-APs, 0.856 kg·m−2·h−1, 58.7%). Due to the low-cost, recyclability and highly efficient evaporation performance, the CMs, especially the CCPs, show great potential as solar absorbers for large-scale application of solar steam generation.https://www.frontiersin.org/article/10.3389/fmats.2018.00074/fullsolar absorbersolar steam generationporous membranefiber productsphotothermal conversion
collection DOAJ
language English
format Article
sources DOAJ
author Xiaofeng Lin
Meijia Yang
Wei Hong
Dingshan Yu
Xudong Chen
spellingShingle Xiaofeng Lin
Meijia Yang
Wei Hong
Dingshan Yu
Xudong Chen
Commercial Fiber Products Derived Free-Standing Porous Carbonized-Membranes for Highly Efficient Solar Steam Generation
Frontiers in Materials
solar absorber
solar steam generation
porous membrane
fiber products
photothermal conversion
author_facet Xiaofeng Lin
Meijia Yang
Wei Hong
Dingshan Yu
Xudong Chen
author_sort Xiaofeng Lin
title Commercial Fiber Products Derived Free-Standing Porous Carbonized-Membranes for Highly Efficient Solar Steam Generation
title_short Commercial Fiber Products Derived Free-Standing Porous Carbonized-Membranes for Highly Efficient Solar Steam Generation
title_full Commercial Fiber Products Derived Free-Standing Porous Carbonized-Membranes for Highly Efficient Solar Steam Generation
title_fullStr Commercial Fiber Products Derived Free-Standing Porous Carbonized-Membranes for Highly Efficient Solar Steam Generation
title_full_unstemmed Commercial Fiber Products Derived Free-Standing Porous Carbonized-Membranes for Highly Efficient Solar Steam Generation
title_sort commercial fiber products derived free-standing porous carbonized-membranes for highly efficient solar steam generation
publisher Frontiers Media S.A.
series Frontiers in Materials
issn 2296-8016
publishDate 2018-12-01
description Herein, the free-standing porous carbonized-membranes (CMs) derived from a series of commercial fiber products including airlaid papers, cellulose papers and cleanroom wipers by one-step carbonization at 160°C have for the first time explored as independent solar absorbers to realize highly efficient solar steam generation. These newly-developed CMs not only exhibit the strong absorption (low reflectance) and rapid transport of vapor/liquid, but also possess the restricted thermal diffusion. All these merits render CMs with excellent evaporation performance for solar steam generation. Particularly, the CMs derived from carbonized cellulose papers (CCPs) exhibits the best performance, which affords the water evaporation rate of 0.959 kg·m−2·h−1 and the energy conversion efficiency of 65.8% under 1 kW·m−2 solar illumination, due to the higher light absorption (92.20%) and lower thermal conductivity (0.031 W·m-1·K-1) competing favorable with those of the Au nanoparticles-loaded airlaid papers (Au-APs, 0.856 kg·m−2·h−1, 58.7%). Due to the low-cost, recyclability and highly efficient evaporation performance, the CMs, especially the CCPs, show great potential as solar absorbers for large-scale application of solar steam generation.
topic solar absorber
solar steam generation
porous membrane
fiber products
photothermal conversion
url https://www.frontiersin.org/article/10.3389/fmats.2018.00074/full
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