4.5 Article

Biomimetic Antigravity Water Transport and Remote Harvesting Powered by Sunlight

Journal

GLOBAL CHALLENGES
Volume 4, Issue 11, Pages -

Publisher

WILEY-V C H VERLAG GMBH
DOI: 10.1002/gch2.202000043

Keywords

antigravity water transport; artificial trees; biomimics; remote water harvesting; sunlight

Funding

  1. National Key R&D Program of China [2016YFA0200200]
  2. National Natural Science Foundation of China [51433005, 21674056, 51673108, 51673026, 11872227]
  3. NSFC-STINT [21911530143]
  4. China Postdoctoral Science Foundation [2017M620037, 2018T11008]
  5. ERC [NAPOLI-639720]
  6. Swedish Research Council [2018-05351]
  7. Verband der Chemischen Industrie e.V. (VCI) in Germany [15126]
  8. Wallenberg Academy Fellow program in Sweden [KAW 2017.0166]
  9. NSFC-MAECI [51861135202]

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Antigravity water transport plays important roles in various applications ranging from agriculture, industry, and environmental engineering. In natural trees, ubiquitous water-flow over 100 m high from roots through the hierarchical xylem to leaves is driven by sunlight-powered continuous evaporation and the negative pressure. Inspired by natural trees, herein an artificial trunk-leaf system is built up to structurally mimic natural trees for a continuous antigravity water delivery. The artificial tree consists of directional microchannels for antigravity water transport, and a top leaf-like hybrid hydrogel that are acts as continuous solar steam evaporator, plus a purposely engineered steam collector. It is found that continuous uniform microchannels of acetylated chitin optimize and enhance capillary rise (approximate to 37 cm at 300 min) and reduce vertical water transport resistance. A remote water harvesting, and purification is performed with a high rate of 1.6 kg m(-2) h(-1) and 184 cm in height under 1 sun irradiation and the collection efficiency up to 100% by evaporative cooling technique. It is envisioned that the basic design principles underlying the artificial tree can be used to transform solar energy into potential energy.

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