Solar-assisted isotropically thermoconductive sponge for highly viscous crude oil spill remediation

Efficiently cleaning up high-viscosity crude oil spills is still a serious global problem. In this paper, a composite filler PPy-polydopamine/BN (PPB) with high photothermal effect and high thermal conductivity was first prepared. Then the polyurethane sponge is decorated with polydimethylsiloxane a...

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Main Authors: Wu, Xingwang, Li, Shuhui, Huang, Jianying, Chen, Zhong, Cai, Weilong, Lai, Yuekun
Other Authors: School of Materials Science and Engineering
Format: Article
Language:English
Published: 2022
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Online Access:https://hdl.handle.net/10356/160684
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-1606842023-07-14T16:05:51Z Solar-assisted isotropically thermoconductive sponge for highly viscous crude oil spill remediation Wu, Xingwang Li, Shuhui Huang, Jianying Chen, Zhong Cai, Weilong Lai, Yuekun School of Materials Science and Engineering Engineering::Materials Environmental Science Materials Chemistry Efficiently cleaning up high-viscosity crude oil spills is still a serious global problem. In this paper, a composite filler PPy-polydopamine/BN (PPB) with high photothermal effect and high thermal conductivity was first prepared. Then the polyurethane sponge is decorated with polydimethylsiloxane and PPB to obtain a solar-assisted isotropically thermoconductive adsorbent (PPB@PU), which exhibits remarkable stability and durable mechanical properties. Meanwhile, the PPB@PU sponge has good thermal conductivity, and its surface temperature rises to 91°C in just 1 min under irradiation (1 sun). Therefore, the PPB@PU sponge can quickly heat and adsorb the crude oil contacted by the surface, significantly speed up the crude oil recovery process, and the adsorption capacity is as high as about 45 g/g. Finally, the oil adsorption method of the three-dimensional adsorbent is demonstrated, which provides a new idea for the subsequent development of advanced oil spill adsorbent. Published version The authors thank the National Natural Science Foundation of China (51972063, 22075046), Natural Science Funds for Distinguished Young Scholar of Fujian Province (2020J06038), and Natural Science Foundation of Fujian Province (2019J01256), 111 Project (No. D17005). 2022-08-01T02:12:02Z 2022-08-01T02:12:02Z 2021 Journal Article Wu, X., Li, S., Huang, J., Chen, Z., Cai, W. & Lai, Y. (2021). Solar-assisted isotropically thermoconductive sponge for highly viscous crude oil spill remediation. IScience, 24(6), 102665-. https://dx.doi.org/10.1016/j.isci.2021.102665 2589-0042 https://hdl.handle.net/10356/160684 10.1016/j.isci.2021.102665 34189434 2-s2.0-85107813280 6 24 102665 en iScience © 2021 The Author(s). This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/). application/pdf
institution Nanyang Technological University
building NTU Library
continent Asia
country Singapore
Singapore
content_provider NTU Library
collection DR-NTU
language English
topic Engineering::Materials
Environmental Science
Materials Chemistry
spellingShingle Engineering::Materials
Environmental Science
Materials Chemistry
Wu, Xingwang
Li, Shuhui
Huang, Jianying
Chen, Zhong
Cai, Weilong
Lai, Yuekun
Solar-assisted isotropically thermoconductive sponge for highly viscous crude oil spill remediation
description Efficiently cleaning up high-viscosity crude oil spills is still a serious global problem. In this paper, a composite filler PPy-polydopamine/BN (PPB) with high photothermal effect and high thermal conductivity was first prepared. Then the polyurethane sponge is decorated with polydimethylsiloxane and PPB to obtain a solar-assisted isotropically thermoconductive adsorbent (PPB@PU), which exhibits remarkable stability and durable mechanical properties. Meanwhile, the PPB@PU sponge has good thermal conductivity, and its surface temperature rises to 91°C in just 1 min under irradiation (1 sun). Therefore, the PPB@PU sponge can quickly heat and adsorb the crude oil contacted by the surface, significantly speed up the crude oil recovery process, and the adsorption capacity is as high as about 45 g/g. Finally, the oil adsorption method of the three-dimensional adsorbent is demonstrated, which provides a new idea for the subsequent development of advanced oil spill adsorbent.
author2 School of Materials Science and Engineering
author_facet School of Materials Science and Engineering
Wu, Xingwang
Li, Shuhui
Huang, Jianying
Chen, Zhong
Cai, Weilong
Lai, Yuekun
format Article
author Wu, Xingwang
Li, Shuhui
Huang, Jianying
Chen, Zhong
Cai, Weilong
Lai, Yuekun
author_sort Wu, Xingwang
title Solar-assisted isotropically thermoconductive sponge for highly viscous crude oil spill remediation
title_short Solar-assisted isotropically thermoconductive sponge for highly viscous crude oil spill remediation
title_full Solar-assisted isotropically thermoconductive sponge for highly viscous crude oil spill remediation
title_fullStr Solar-assisted isotropically thermoconductive sponge for highly viscous crude oil spill remediation
title_full_unstemmed Solar-assisted isotropically thermoconductive sponge for highly viscous crude oil spill remediation
title_sort solar-assisted isotropically thermoconductive sponge for highly viscous crude oil spill remediation
publishDate 2022
url https://hdl.handle.net/10356/160684
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