Comparative study of the regeneration characteristics of LiCl and a new mixed liquid desiccant solution
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DOI: 10.1016/j.energy.2018.08.188
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Cited by:
- Wen, Tao & Lu, Lin, 2019. "A review of correlations and enhancement approaches for heat and mass transfer in liquid desiccant dehumidification system," Applied Energy, Elsevier, vol. 239(C), pages 757-784.
- Su, Wei & Lu, Zhifei & She, Xiaohui & Zhou, Junming & Wang, Feng & Sun, Bo & Zhang, Xiaosong, 2022. "Liquid desiccant regeneration for advanced air conditioning: A comprehensive review on desiccant materials, regenerators, systems and improvement technologies," Applied Energy, Elsevier, vol. 308(C).
- Dong, Hye-Won & Jeong, Jae-Weon, 2022. "Energy and economic analysis of organic Rankine cycle for liquid desiccant system," Energy, Elsevier, vol. 241(C).
- Luo, Jielin & Yang, Hongxing, 2022. "A state-of-the-art review on the liquid properties regarding energy and environmental performance in liquid desiccant air-conditioning systems," Applied Energy, Elsevier, vol. 325(C).
- Zuzanna Sydow & Krzysztof Bieńczak & Kasper Górny & Tomasz Bernat & Karolina Perz & Krzysztof Gaszek, 2023. "Research on the Use of Potassium Formate in the Indirect Contact Freezing System Used in Food Preservation," Energies, MDPI, vol. 16(20), pages 1-12, October.
- Kerry C. Rippy & Emily Volk & Reagan Beers & Eric Kozubal & Kristin Gauderman & Judith Vidal, 2022. "Corrosion of Metal Alloys in Potassium Acetate Solutions for Liquid Desiccant Dehumidification and Air Conditioning," Energies, MDPI, vol. 15(12), pages 1-19, June.
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Keywords
Lithium chloride; Hydroxyethyl urea; Mixed liquid desiccant; Corrosion; Falling film regeneration;All these keywords.
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