Wiener Jakub, Khan Muhammad Zaman, Shah Kaushal
Department of Material Engineering, Faculty of Textile Engineering, Technical University of Liberec, Studentska 2, 46117, Liberec, Czech Republic.
Sci Rep. 2024 Mar 3;14(1):5202. doi: 10.1038/s41598-024-55948-z.
The acquisition of clean drinking water in regions with limited power sources has been a challenge of paramount concern. Solar stills have emerged as a popular and sustainable option for obtaining clean water in such regions. This process involves employing solar radiation to heat up water, which is then condensed to obtain potable water. The present study introduces a solar still system that is both cost-effective and energy-efficient, while simultaneously ensuring sustainability. Fabric-coated polyurethane rollers with capillary action enhance evaporation area, leading to notable performance improvements. Water vapour condensed on the cooling chamber's inclined aluminium plate and collected in the distillate chamber within the solar still. The thermal, energetic, and economic performance and productivity of the proposed model were evaluated. The fabricated solar still boasted maximum instantaneous system efficiency and exergy efficiency of approximately 62.16% and 7.67%, respectively. This system's cost-effectiveness and performance improvements are particularly noteworthy. The daily average distillate productivity of the proposed still was estimated at 1.14 L/m, resulting in an annual production rate of 416.54 L/year. The estimated cost of producing 1 L of distillate was 0.023 $.
在电力资源有限的地区获取清洁饮用水一直是一个至关重要的挑战。太阳能蒸馏器已成为在这些地区获取清洁水的一种流行且可持续的选择。这个过程包括利用太阳辐射加热水,然后将其冷凝以获得饮用水。本研究介绍了一种既经济高效又节能,同时还能确保可持续性的太阳能蒸馏器系统。具有毛细作用的织物涂层聚氨酯滚筒增加了蒸发面积,从而显著提高了性能。水蒸气在冷却室的倾斜铝板上冷凝,并收集在太阳能蒸馏器内的馏出物室中。对所提出模型的热性能、能量性能、经济性能和生产率进行了评估。制造的太阳能蒸馏器的最大瞬时系统效率和火用效率分别约为62.16%和7.67%。该系统的成本效益和性能提升尤其值得注意。所提出的蒸馏器的日平均馏出物生产率估计为1.14升/平方米,年生产率为416.54升/年。生产1升馏出物的估计成本为0.023美元。