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Charging-free electrochemical system for harvesting low-grade thermal energy

机译:收集低级热能的免充电电化学系统

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摘要

Efficient and low-cost systems are needed to harvest the tremendous amount of energy stored in low-grade heat sources (<100 °C). Thermally regenerative electrochemical cycle (TREC) is an attractive approach which uses the temperature dependence of electrochemical cell voltage to construct a thermodynamic cycle for direct heat-to-electricity conversion. By varying temperature, an electrochemical cell is charged at a lower voltage than discharge, converting thermal energy to electricity. Most TREC systems still require external electricity for charging, which complicates system designs and limits their applications. Here, we demonstrate a charging-free TREC consisting of an inexpensive soluble Fe(CN)63−/4− redox pair and solid Prussian blue particles as active materials for the two electrodes. In this system, the spontaneous directions of the full-cell reaction are opposite at low and high temperatures. Therefore, the two electrochemical processes at both low and high temperatures in a cycle are discharge. Heat-to-electricity conversion efficiency of 2.0% can be reached for the TREC operating between 20 and 60 °C. This charging-free TREC system may have potential application for harvesting low-grade heat from the environment, especially in remote areas.
机译:需要高效,低成本的系统来收集储存在低级热源(<100°C)中的大量能量。热再生电化学循环(TREC)是一种有吸引力的方法,它利用电化学电池电压的温度依赖性来构建用于直接热电转换的热力学循环。通过改变温度,电化学电池可以以比放电更低的电压充电,从而将热能转化为电能。大多数TREC系统仍然需要外部电来充电,这使系统设计复杂化并限制了其应用。在这里,我们展示了由廉价的可溶性Fe(CN)6 <3-4> 氧化还原对和固体普鲁士蓝粒子作为两个电极的活性材料组成的无电荷TREC。在此系统中,在低温和高温下,全细胞反应的自发方向是相反的。因此,一个循环中在低温和高温下的两个电化学过程都是放电的。在20至60°C的温度范围内运行的TREC可以实现2.0%的热电转换效率。这种免费的TREC系统可能具有潜在的用途,可以从环境中收集低级热量,尤其是在偏远地区。

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