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用于太阳能蒸汽产生的廉价、简便且可扩展的活性炭基光热层。

Cheap, facile, and upscalable activated carbon-based photothermal layers for solar steam generation.

作者信息

Mnoyan Anush, Choi Myeongil, Kim Dong Hyun, Ku Bon-Jun, Kim Hyunjoung, Lee Kyung Jin, Yasin Ahmed S, Nam Sungchan, Lee Kyubock

机构信息

Graduate School of Energy Science and Technology, Chungnam National University 99 Daehak-ro, Yuseong-gu Daejeon 34134 Republic of Korea

Department of Chemical Engineering and Applied Chemistry, College of Engineering, Chungnam National University 99 Daehak-ro, Yuseong-gu Daejeon 34134 Republic of Korea.

出版信息

RSC Adv. 2020 Nov 23;10(69):42432-42440. doi: 10.1039/d0ra07746a. eCollection 2020 Nov 17.

Abstract

Solar-to-steam generation characterized by nanostructured photothermal materials and interfacial heating is developed based on various carbon nanostructures such as graphene, reduced graphene oxide, CNT, or their combinations. However, multiple and sophisticated synthetic steps are required to generate macroscopic porosity in photothermal devices for the efficient mass transport of water and generated steam. Additionally, the fabrication of photothermal layers on a practical scale constitutes the main hurdle for real applications toward solar-driven desalination. Herein, we report on the development of highly efficient photothermal layers with a commercially available low-cost material, activated carbon (AC), by using facile filtration and spray coating methods, which lead to the generation of intraparticle porous structure without any additional processing. The AC-based photothermal layers generated 1.17 kg m h of steam under 1 sun, and 4.7 wt% of polyethyleneimine coating on AC enhanced steam generation by 8.5% under 1 sun, corresponding to 1.27 kg m h of the water evaporation rate and 85.66% of the photothermal conversion efficiency. This was due to improvements in light absorption and water uptake properties with the additional advantage of mechanical robustness. The outdoor solar-to-steam generation test with the spray-coated A4-sized photothermal layer in conjunction with the desalination test demonstrated the potential for practical desalination application with upscalability.

摘要

基于石墨烯、还原氧化石墨烯、碳纳米管等各种碳纳米结构或它们的组合,开发了以纳米结构光热材料和界面加热为特征的太阳能-蒸汽产生技术。然而,为了实现水和产生的蒸汽的高效质量传输,需要多个复杂的合成步骤来在光热装置中产生宏观孔隙率。此外,实际规模的光热层制造是太阳能驱动海水淡化实际应用的主要障碍。在此,我们报告了通过使用简便的过滤和喷涂方法,利用市售低成本材料活性炭(AC)开发高效光热层的情况,这会导致在无需任何额外处理的情况下产生颗粒内多孔结构。基于AC的光热层在1个太阳光照强度下产生1.17 kg m⁻² h⁻¹的蒸汽,并且在AC上涂覆4.7 wt%的聚乙烯亚胺可使在1个太阳光照强度下的蒸汽产生量提高8.5%,对应于1.27 kg m⁻² h⁻¹的水蒸发速率和85.66%的光热转换效率。这是由于光吸收和吸水性能的改善以及机械坚固性这一额外优势。结合脱盐测试对喷涂的A4尺寸光热层进行的户外太阳能-蒸汽产生测试证明了其在实际脱盐应用中具有扩大规模的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2b78/9119321/ce34f62238d0/d0ra07746a-f1.jpg

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