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Stack Thermo-Osmotic System for Low-Grade Thermal Energy Conversion

机译:堆栈热渗透系统,用于低级热能转换

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Thermo-osmotic energy conversion (TOEC) technology, developed from membrane distillation, is an emerging method that has the potential of obtaining electricity efficiently from a low-grade heat source but faces the difficult problem of pump power loss. In this study, we build a novel TOEC system with a multistage architecture that can work without pump assistance. The experiment system, made of cheap commercial materials, can obtain a power density of 1.39 +/- 0.25 W/m(2), with a heating temperature of 80 degrees C, and its efficiency increased linearly with the total stage number. A theory calculation shows that a 30-stage system with a specific membrane and a working pressure of 5.0 MPa can obtain an efficiency of 2.72% with a power density of 14.0 W/m(2). By a molecular dynamics simulation, it is shown that a high-performance membrane has the potential to work at 40 MPa. This study proves that TOEC technology is a practical and competitive approach to covert low-grade thermal energy into power efficiently.
机译:热渗透能转换(TOEC)技术是由膜蒸馏技术发展而来的一种新兴方法,具有从低品位热源高效获取电能的潜力,但面临着泵功率损失的难题。在这项研究中,我们构建了一个具有多级架构的新型TOEC系统,可以在没有泵辅助的情况下工作。该实验系统由廉价的商用材料制成,在加热温度为80℃的条件下,可获得1.39+/-0.25w/m(2)的功率密度,其效率与总级数呈线性增加。理论计算表明,在功率密度为14.0w/m(2)的情况下,采用特定膜、工作压力为5.0mpa的30级系统可获得2.72%的效率。通过分子动力学模拟,表明高性能膜具有在40MPa下工作的潜力。这项研究证明,TOEC技术是一种实用且具有竞争力的方法,可以有效地将低档热能转化为电能。

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