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Experimental Study of a Sustainable Hybrid System for Thermoelectric Generation and Freshwater Production

机译:热电发电和淡水生产可持续混合动力系统的实验研究

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摘要

The paper presents a sustainable hybrid system, which is capable of generating electricity and producing freshwater from seawater using low grade heat source. This proposed system uses low grade heat that can be supplied from solar radiation, industrial waste heat or any other waste heat sources where the temperature is less than 150°C. The concept behind this system uses the Seebeck effect for thermoelectricity generation via incorporating the low boiling point of seawater under sub-atmospheric ambient pressure. A lab-test prototype of the proposed system was built and experimentally tested in RMIT University. The prototype utilised four commercial available thermoelectric generators (Bi_2Te_3) and a vacuum vessel to achieve the simultaneous production of electricity and freshwater. The temperature profiles, thermoelectric powers and freshwater productions were determined at several levels of salinity to study the influence of different salt concentrations. The theoretical description of system design and experimental results were analysed and discussed in detailed. The experiment results showed that 0.75W of thermoelectricity and 404g of freshwater were produced using inputs of 150W of simulated waste heat and 500g of 3% saline water. The proposed hybrid concept has demonstrated the potential to become the future sustainable system for electricity and freshwater productions.
机译:本文介绍了可持续的混合系统,其能够使用低级热源从海水产生电力和生产淡水。该提出的系统使用低等级的热量,可以从太阳辐射,工业废热或任何其他垃圾热源提供,其中温度小于150℃。该系统背后的概念通过在亚大气压环境压力下结合海水的低沸点来使用热电产生的塞贝克效应。建议系统的实验室测试原型是在RMIT大学进行建立和实验测试。原型利用四种可商用的热电发电机(Bi_2te_3)和真空容器,以实现电力和淡水的同时生产。温度分布,热电权力和生产淡水盐度的几个层次进行了测定,研究了不同盐浓度的影响。分析了系统设计和实验结果的理论描述,详细讨论。实验结果表明,使用150W的模拟废热和500g 3%盐水的输入产生0.75W的热电和404g淡水。拟议的混合概念已经证明了成为未来的电力和淡水生产的可持续系统的潜力。

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