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Performance of a RED system with ammonium hydrogen carbonate solutions

机译:RED系统与碳酸氢铵溶液的性能

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摘要

The use of closed-loop salinity gradient power (SGP) technologies has been recently presented as a viable option to generate power using low-grade heat, by coupling a SGP unit with a thermally-driven regeneration process in a closed loop where artificial solutions can be adopted for the conversion of heat into power. Among these, the closed-loop reverse electrodialysis (RED) process presents a number of advantages such as the direct production of electricity, the extreme flexibility in operating conditions and the recently demonstrated large potentials for industrial scale-up. Ammonium hydrogen carbonate (NH4HCO3) is a salt suitable for such closed-loop RED process thanks to its particular properties. At temperatures above 40–45°C, it decomposes into a gaseous phase containing NH3, CO2 and water. Thus, the use of NH4HCO3 solutions for feeding a RED unit would allow their easy regeneration (after the power generation step) just using low-temperature waste heat in a purposely designed regeneration unit. This work aims at presenting an experimental investigation performed on a RED system fed with NH4HCO3 solutions. Laboratory tests were carried out to find the best conditions for maximizing the power density and process performances of a RED unit by investigating a number of operating parameters such as fluid velocity and feed solutions concentration.
机译:通过将SGP单元与热驱动再生过程耦合在一个闭环中,人工解决方案可以在其中使用,闭环盐度梯度功率(SGP)技术的使用已成为使用低级热量发电的可行选择。用于将热量转换为电能。在这些方法中,闭环反向电渗析(RED)工艺具有许多优点,例如直接发电,在操作条件下具有极大的灵活性以及最近证明的工业规模化发展的巨大潜力。碳酸氢铵(NH4HCO3)具有特殊的性能,是适用于这种闭环RED工艺的盐。在高于40–45°C的温度下,它分解成含有NH3,CO2和水的气相。因此,使用NH4HCO3溶液为RED单元供料,仅在专门设计的再生单元中使用低温废热,即可轻松进行再生(在发电步骤之后)。这项工作旨在介绍对装有NH4HCO3溶液的RED系统进行的实验研究。通过研究许多操作参数(例如流体速度和进料溶液浓度),进行了实验室测试,以找到最佳条件,以使RED装置的功率密度和过程性能最大化。

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