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首页> 外文期刊>Renewable & Sustainable Energy Reviews >An overview on adsorption cooling systems powered by waste heat from internal combustion engine
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An overview on adsorption cooling systems powered by waste heat from internal combustion engine

机译:内燃机余热驱动的吸附式冷却系统概述

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摘要

Chlorofluorocarbon and hydrochlorofluorocarbon refrigerants have been widely used in traditional cooling systems. These refrigerants accelerate the depletion of the Earth's ozone layer. Therefore, adsorption air-conditioning technology attracted much attention recently as an alternative solution due to its advantage of environmental friendliness. This system as it powered by waste and/or solar heat can help to reduce required energy and thermal pollution. This paper presents an overview of research which have been carried out on adsorption cooling systems powered by waste heat from automobiles. Many adsorption pairs have been studied. Zeolite-water as a working adsorption pair has been widely used in automobile adsorption cooling systems. This pair has been powered by exhaust gases from the engine due to its relatively high working temperature. Silica gel-water pair has been also widely used in automobile adsorption cooling systems. It has been powered by waste heat from water coolant in the engine due to its relatively low working temperature. Results show that this technology can help in increasing overall engine efficiency and reduce thermal pollution from engines. Various modifications in adsorption cooling systems are still required. One of the bottlenecks which prevents the improvement of adsorption cooling technology is its relatively low performance compared to conventional vapor mechanical compression technologies. (C) 2015 Elsevier Ltd. All rights reserved.
机译:氯氟烃和氢氯氟烃制冷剂已广泛用于传统的冷却系统中。这些制冷剂加速了地球臭氧层的消耗。因此,吸附空调技术作为一种替代解决方案由于其环境友好的优势,最近引起了广泛的关注。该系统由废料和/或太阳能驱动,可以帮助减少所需的能源和热污染。本文概述了由汽车废热驱动的吸附式冷却系统的研究概况。已经研究了许多吸附对。沸石-水作为工作吸附对已广泛用于汽车吸附冷却系统。由于其相对较高的工作温度,该对已经由来自发动机的废气提供动力。硅胶-水对也已广泛用于汽车吸附冷却系统。由于其较低的工作温度,它由来自发动机水冷却剂的废热提供动力。结果表明,该技术可以帮助提高整体发动机效率并减少发动机的热污染。仍然需要对吸附冷却系统进行各种修改。与传统的蒸气机械压缩技术相比,阻止吸附冷却技术改进的瓶颈之一是其相对较低的性能。 (C)2015 Elsevier Ltd.保留所有权利。

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