Department of Materials Science and Engineering, University of Maryland, College Park, MD, 20742, USA.
Department of Mechanical Engineering, University of Maryland, College Park, MD, 20742, USA.
Adv Mater. 2017 Nov;29(44). doi: 10.1002/adma.201704107. Epub 2017 Oct 10.
The solar steam process, akin to the natural water cycle, is considered to be an attractive approach to address water scarcity issues globally. However, water extraction from groundwater, for example, has not been demonstrated using these existing technologies. Additionally, there are major unaddressed challenges in extracting potable water from seawater including salt accumulation and long-term evaporation stability, which warrant further investigation. Herein, a high-performance solar steam device composed entirely of natural wood is reported. The pristine, natural wood is cut along the transverse direction and the top surface is carbonized to create a unique bilayer structure. This tree-inspired design offers distinct advantages for water extraction, including rapid water transport and evaporation in the mesoporous wood, high light absorption (≈99%) within the surface carbonized open wood channels, a low thermal conductivity to avoid thermal loss, and cost effectiveness. The device also exhibits long-term stability in seawater without salt accumulation as well as high performance for underground water extraction. The tree-inspired design offers an inexpensive and scalable solar energy harvesting and steam generation technology that can provide clean water globally, especially for rural or remote areas where water is not only scarce but also limited by water extraction materials and methods.
太阳能蒸汽过程类似于自然水循环,被认为是解决全球水资源短缺问题的一种有吸引力的方法。然而,例如,这些现有技术尚未展示从地下水提取水的能力。此外,从海水中提取饮用水还存在重大未解决的挑战,包括盐积累和长期蒸发稳定性,这需要进一步研究。在此,报道了一种完全由天然木材组成的高性能太阳能蒸汽装置。原始的天然木材沿横向切割,上表面碳化,形成独特的双层结构。这种受树木启发的设计为水提取提供了明显的优势,包括在中孔木材中快速的水输送和蒸发、表面碳化开放木材通道内约 99%的高光吸收、低导热系数以避免热损失以及成本效益。该装置在海水中也表现出长期稳定性,不会有盐积累,并且在地下水提取方面性能也很高。树木启发的设计提供了一种廉价且可扩展的太阳能收集和蒸汽生成技术,可以在全球范围内提供清洁水,特别是在水资源不仅稀缺而且受到水提取材料和方法限制的农村或偏远地区。