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Regeneration of liquid desiccant for solar air-conditioning and desalination using hybrid solar still

机译:使用混合太阳能蒸馏器再生用于太阳能空调的液体干燥剂和进行脱盐

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摘要

In a global era, continuous increment in energy requisition with its associated cost and relevant climate problems is causing accentuation in exploring more efficient ways to provide cooling/air-conditioning in enclosed space without degrading the environment. In the hot and humid area, major part of conventionally produced electrical energy is consumed by air-conditioning. Also in the rapidly growing world, scarcity of clean water is dilemma as equal as green-house effect and ozone layer depletion. Thus, there is emergence of dehumidified air for human comfort with potable clean water at a same time. In the present paper, performance of the hybrid solar still has been evaluated for the regeneration of liquid desiccant and distillation of saline water for the three days in the month of March and April 2017 at the location 20.61 degrees N, 72.91 degrees E. For the experimentation, weak liquid desiccant (40% concentration) solution of Calcium Chloride (CaCl2) was selected whose stream flows through the upper basin and constant depth (10 mm) of saline water with 0.10% concentration of Zinc Oxide (ZnO) nanofluid, to improve the energy transfer, was maintained in the lower basin of hybrid solar still. The results show that the daily water desorption of 1417.22 ml/m(2), 1253.88 ml/m(2) and 1368.74 ml/m(2) was found from the weak solution of CaCl2 in upper basin with yield of 757.22 ml/m(2), 728.33 ml/m(2) and 727.78 ml/m(2) in lower basin for three days respectively. Considering still as dehumidifier/regenerator, daily average capacity obtained to absorb the latent heat from the humid air by the regenerated liquid desiccant was 0.168 kW, 0.148 kW and 0.143 kW respectively for the three days. The overall thermal efficiency of 16.74%, 25.39% and 26.19% was achieved for the three days respectively.
机译:在全球时代,不断增长的能源需求及其相关的成本和相关的气候问题,导致人们在探索更有效的方式在封闭空间内提供制冷/空调而不破坏环境的过程中变得更加重视。在炎热和潮湿的地区,传统产生的电能的大部分被空调消耗。同样在快速增长的世界中,清洁水的匮乏是与温室效应和臭氧层消耗相同的两难境地。因此,同时出现了用于人类舒适的除湿空气和饮用水。在本文中,已经在2017年3月和2017年4月的三天内在北纬20.61度,东经72.91度的位置评估了混合太阳能在液体干燥剂的再生和盐水蒸馏中的性能。实验中,选择了氯化钙(CaCl2)的弱液体干燥剂(浓度为40%)溶液,该溶液流过上部水盆,并以0.10%浓度的氧化锌(ZnO)纳米流体恒定浓度(10 mm)的盐水进行了改良能量转移仍保留在混合太阳能静止的下部盆地中。结果表明,从上部盆地中的CaCl2稀溶液中发现每日的水分解吸量为1417.22 ml / m(2),1253.88 ml / m(2)和1368.74 ml / m(2),产量为757.22 ml / m (2),下盆分别为三天的728.33 ml / m(2)和727.78 ml / m(2)。仍将其视为除湿/再生器,三天的再生液体干燥剂从湿空气中吸收潜热的日平均容量分别为0.168 kW,0.148 kW和0.143 kW。三天的总热效率分别达到16.74%,25.39%和26.19%。

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