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A review on carbonized natural green flora for solar desalination

Author

Listed:
  • Arunkumar, T.
  • Lim, Hyeong Woo
  • Denkenberger, David
  • Lee, Sang Joon

Abstract

Solar desalination is one of the green energy processes to treat saline water and wastewater. Solar evaporation systems, formally solar stills, have been widely used to evaporate water to purify it. However, the evaporation rate in solar stills is typically low due to incoming energy used to heat the entire bulk water. In order to minimize the bulk heating, researchers have developed capillary flow-based, self-floatable, broadband photothermal absorbers (250–2500 nm wavelength) for fast solar evaporation. Recently, interfacial solar steam generation (ISSG) has attracted attention due to significant advantages in desalination and water treatment. In general, ISSG materials are classified into plasmonic metals, semiconductors, black carbon and polymer-based materials. The basic requirements for these photothermal materials include being self-floatable and having high solar absorption, fast water transport (capillary action) and low thermal conductivity to confine the heat locally. Some natural plant species satisfy these prerequisites and have been used as photothermal materials in solar steam generation (SSG). The present review exclusively focuses on the carbonized botanical species, including bamboo, corncob, corn-stalk, coconut-husk, carrot, fruit residues (cherry, grape, orange and apple), green algae, loofah fruit, magnolia fruit, mushroom, lotus leaf and seedpods, sugarcane, sunflower head, tofu, wheat flour and wood pieces for improving the evaporation rate and efficiency. Carbonization technique improves the solar absorption by increasing the carbon concentration. In addition, these floatable solar absorbers evaporate the water with the aid of natural microchannels. These materials not only improve the efficiency, but also have economic and environmental benefits.

Suggested Citation

  • Arunkumar, T. & Lim, Hyeong Woo & Denkenberger, David & Lee, Sang Joon, 2022. "A review on carbonized natural green flora for solar desalination," Renewable and Sustainable Energy Reviews, Elsevier, vol. 158(C).
  • Handle: RePEc:eee:rensus:v:158:y:2022:i:c:s1364032122000491
    DOI: 10.1016/j.rser.2022.112121
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    1. Kasaeian, Alibakhsh & Eshghi, Amin Toghi & Sameti, Mohammad, 2015. "A review on the applications of nanofluids in solar energy systems," Renewable and Sustainable Energy Reviews, Elsevier, vol. 43(C), pages 584-598.
    2. Seongmin Shin & Seongtae Ji, 2021. "Consumers’ Willingness to Purchase Imported Cherries towards Sustainable Market: Evidence from the Republic of Korea," Sustainability, MDPI, vol. 13(10), pages 1-13, May.
    3. Miranda Svanidze & Ivan Đurić, 2021. "Global Wheat Market Dynamics: What Is the Role of the EU and the Black Sea Wheat Exporters?," Agriculture, MDPI, vol. 11(8), pages 1-13, August.
    4. Shine Raju Kappil & Ranjan Aneja & Poonam Rani, 2021. "Decomposing the performance metrics of coconut cultivation in the South Indian States," Palgrave Communications, Palgrave Macmillan, vol. 8(1), pages 1-8, December.
    5. Joseph Rajabu Kangile & Reuben M. J. Kadigi & Charles Peter Mgeni & Bernadetha Pantaleo Munishi & Japhet Kashaigili & Pantaleo K. T. Munishi, 2021. "The Role of Coffee Production and Trade on Gender Equity and Livelihood Improvement in Tanzania," Sustainability, MDPI, vol. 13(18), pages 1-15, September.
    6. Ghafurian, Mohammad Mustafa & Niazmand, Hamid & Ebrahimnia-Bajestan, Ehsan & Taylor, Robert A., 2020. "Wood surface treatment techniques for enhanced solar steam generation," Renewable Energy, Elsevier, vol. 146(C), pages 2308-2315.
    7. Svanidze, Miranda & Đurić, Ivan, 2021. "Global wheat market dynamics: What is the role of the EU and the Black Sea wheat exporters?," EconStor Open Access Articles and Book Chapters, ZBW - Leibniz Information Centre for Economics, vol. 11(8).
    8. Elsheikh, A.H. & Sharshir, S.W. & Mostafa, Mohamed E. & Essa, F.A. & Ahmed Ali, Mohamed Kamal, 2018. "Applications of nanofluids in solar energy: A review of recent advances," Renewable and Sustainable Energy Reviews, Elsevier, vol. 82(P3), pages 3483-3502.
    9. Arunkumar, T. & Ao, Yali & Luo, Zhifang & Zhang, Lin & Li, Jing & Denkenberger, D. & Wang, Jiaqiang, 2019. "Energy efficient materials for solar water distillation - A review," Renewable and Sustainable Energy Reviews, Elsevier, vol. 115(C).
    Full references (including those not matched with items on IDEAS)

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