Kim Kiwoong, Seo Eunseok, Chang Suk-Kyu, Park Tae Jung, Lee Sang Joon
Department of Mechanical Engineering, Pohang University of Science and Technology (POSTECH), San 31, Hyoja-dong, Pohang 790-784, Republic of Korea.
Department of New Biology, Daegu Gyeongbuk Institute of Science and Technology (DGIST), 333, Techno Jungang-daero, Daegu, 711-873, Republic of Korea.
Sci Rep. 2016 Feb 5;6:20426. doi: 10.1038/srep20426.
The scarcity of fresh water is a global challenge faced at present. Several desalination methods have been suggested to secure fresh water from sea water. However, conventional methods suffer from technical limitations, such as high power consumption, expensive operating costs, and limited system durability. In this study, we examined the feasibility of using halophytes as a novel technology of desalinating high-concentration saline water for long periods. This study investigated the biophysical characteristics of sea water filtration in the roots of the mangrove Rhizophora stylosa from a plant hydrodynamic point of view. R. stylosa can grow even in saline water, and the salt level in its roots is regulated within a certain threshold value through filtration. The root possesses a hierarchical, triple layered pore structure in the epidermis, and most Na(+) ions are filtered at the first sublayer of the outermost layer. The high blockage of Na(+) ions is attributed to the high surface zeta potential of the first layer. The second layer, which is composed of macroporous structures, also facilitates Na(+) ion filtration. This study provides insights into the mechanism underlying water filtration through halophyte roots and serves as a basis for the development of a novel bio-inspired desalination method.
淡水短缺是当前面临的一项全球性挑战。人们已提出多种海水淡化方法来获取淡水。然而,传统方法存在技术局限性,如高能耗、高昂的运营成本以及有限的系统耐久性。在本研究中,我们探讨了利用盐生植物作为一种长期淡化高浓度盐水的新技术的可行性。本研究从植物流体动力学角度研究了红树红海榄根部海水过滤的生物物理特性。红海榄即使在盐水中也能生长,其根部的盐分水平通过过滤被调节在一定阈值内。根部表皮具有分层的三层孔隙结构,大多数Na⁺离子在最外层的第一个子层被过滤。Na⁺离子的高截留率归因于第一层的高表面zeta电位。由大孔结构组成的第二层也有助于Na⁺离子过滤。本研究为深入了解盐生植物根部水过滤的机制提供了见解,并为开发一种新型的仿生海水淡化方法奠定了基础。