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Reverse electrodialysis with NH4HCO3-water systems for heat-to-power conversion

机译:NH4HCO3-水系统进行反向电渗析,实现热能转化

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摘要

A Reverse ElectroDialysis Heat Engine (REDHE) system operating with â\u80\u9cthermolyticâ\u80\u9d ammonium hydrogen-carbonate (NH4HCO3) aqueous solutions as working fluids is studied. The engine is constituted by (i) a RED unit to produce electric power by mixing the solutions at different salinity and (ii) a thermally-driven regeneration unit including a stripping and an absorption column to restore the initial salinity gradient thus closing the cycle. In the present work only the RED unit and the stripping column are taken into account. In particular, a simplified integrated process model for the whole cycle was developed: it consists of (i) a lumped parameter model for the RED unit validated with experimental data and (ii) a model developed via a process simulator to assess the thermal duty of the stripping column. The effect of operating conditions as solution concentrations and velocities was investigated by a sensitivity analysis. Under the best conditions (among those investigated), a power density of about 9 W/m2of cell pair was predicted for the RED unit, and a maximum exergetic efficiency of about 22% was found for the whole cycle. A preliminary economic analysis of the process is also provided.
机译:研究了使用“碳酸氢铵”(NH4HCO3)水溶液作为工作流体的反向电渗析热机(REDHE)系统。发动机由(i)RED单元构成,该RED单元通过混合不同盐度的溶液产生电能;以及(ii)热驱动再生单元,包括汽提塔和吸收塔,以恢复初始盐度梯度,从而结束循环。在当前工作中,仅考虑了RED单元和汽提塔。特别是,开发了用于整个循环的简化集成过程模型:它包括(i)用实验数据验证的RED装置的集总参数模型,以及(ii)通过过程模拟器开发的模型,以评估热负荷。汽提柱。通过敏感性分析研究了操作条件对溶液浓度和速度的影响。在最佳条件下(在所研究的条件下),预测RED单元的电池对功率密度约为9 W / m2,在整个循环中发现最大的能量利用率为22%。还提供了对该过程的初步经济分析。

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