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Thermodynamic Performance of Absorption Heat Transformer Using a New Working Pair: Water+Ionic Liquid 1,3-dimethylimidazolium Dimethylphosphate

机译:使用新的工作对吸收热变压器的热力学性能:水+离子液体1,3-二甲基咪唑鎓二甲基磷酸磷酸盐

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In present research ionic liquid, 1,3-dimethylimidazolium dimethylphosphate ([MMIM][DMP]) and water were taken as the new working pair for absorption heat transformer (AHT). The thermodynamic cycle performance for this working pair was simulated based on its thermodynamic data, mass and energy balance for each component in a AHT. The effects of absorption and condensing temperature on the coefficient of performance (COP), exergy efficiency (ECOP), concentration deference between dense and dilution solutions and flow rate ratio were analyzed. The cycle performance comparison for AHT using two working pairs, H_2O + [MMIM][DMP] and H_2O + LiBr was carried out. The results indicate that the COP and ECOP of AHT for H_2O+ [MMIM][DMP] are all lower than those for H_2O + LiBr, but they can still reach 0.4 and 0.5 respectively when condensing and generation temperatures are 35 and 90°C respectively. The excellent physical and chemical properties of ionic liquid mentioned above together with suitable cycle performance make this new working pair to have the potential application in absorption heat pump or absorption heat transformer.
机译:在本研究中,将1,3-二甲基咪唑硫磷酸铵(π)和水作为吸收热变压器(AHT)的新工作对。基于其AHT中每个组分的热力学数据,质量和能量平衡来模拟该工作对的热力学循环性能。分析了吸收和冷凝温度对致密和稀释溶液和流速比之间的性能系数(COP),富效效率(ECOP),浓度偏见的影响。使用两个工作对,H_2O + [MMIM] [DMP]和H_2O + LECT的AHT周期性能比较。结果表明,用于H_2O +λ[DMP]的AHT的COP和ECOP均低于H_2O + LIBL的COP和ECOP,但是当冷凝和产生温度分别为35和90°C时,它们仍然可以达到0.4和0.5。上面提到的离子液体的优异物理和化学性质以及合适的循环性能使得该新工作对具有在吸收热泵或吸收热变压器中具有潜在的应用。

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