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首页> 外文期刊>Sustainable Energy Technologies and Assessments >Performance analysis of a modified solar still using reduced graphene oxide coated absorber plate with activated carbon pellet
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Performance analysis of a modified solar still using reduced graphene oxide coated absorber plate with activated carbon pellet

机译:用活性炭颗粒的改性太阳静电氧化物涂层吸收板的性能分析

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摘要

The present experimental work aims to improve the performance of single basin solar still using two different augmentation approach namely, reduced graphene oxide (RGO) coated absorber plate in solar still and RGO coated absorber plate along with activated carbon pellet as sensible heat energy storage medium. Results showed that utilization of RGO coated absorber plate along with activated carbon pellet in solar still augmented the water yield by 58.15% and full-day average energy efficiency by 64.44%, respectively, compared to conventional solar still. The fractional evaporation exergy was maximum for solar still integrated with RGO coating and activated carbon pellet, owing to the higher water temperature of the basin. The solar still integrated with RGO and activated carbon pellet caused the maximum average full-day exergy efficiency, due to excellent solar-thermal conversion efficiency and high conductivity of RGO along with high energy storage capacity of porous activated carbon. Cost analysis indicated that cost of fresh water produced per liter using RGO and RGO along with activated carbon pellet were lower than conventional solar still by 1.1% and 15.5%, respectively. Exergo-economic and environmental assessments of modified solar stills exhibited a cost-effective method and highly beneficial in reducing the carbon footprint by CO2 mitigation.
机译:本实验工作旨在提高单个盆地太阳能仍然使用两种不同的增强方法的性能即,太阳静物和RGO涂覆的吸收板中的氧化石墨烯(RGO)涂覆的吸收板以及活性炭颗粒作为明智的热能存储介质。结果表明,与常规的太阳相比,仍然在太阳下的rgo涂覆吸收板和太阳中的活性炭颗粒的利用仍将水产量增强了58.15%,每天平均能量效率为64.44%。由于盆的水温较高,仍然与rgo涂层和活性炭颗粒集成的太阳能最大的分数蒸发。该太阳仍然与RGO和活性炭颗粒集成导致最高平均的全天高效效率,由于出色的太阳能转换效率和RGO的高导电性以及多孔活性炭的高储能能力。成本分析表明,使用RGO和RGO与活性炭颗粒一起产生的淡水的成本低于常规的太阳,仍然分别为1.1%和15.5%。改性太阳剧本的Exergo-经济和环境评估表现出一种成本效益的方法,并对CO 2缓解降低碳足迹的高度有益。

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