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Composite sorbent of methanol 'LiCl in mesoporous silica gel' for adsorption cooling: Dynamic optimization

机译:甲醇“中孔硅胶中的LiCl”的复合吸附剂用于吸附冷却:动态优化

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A novel composite sorbent of methanol "LiCl in mesoporous silica gel" has recently been proposed for AC (adsorption cooling). Its testing in a lab-scale adsorption chiller resulted in the specific cooling power of 210-290 W/kg and the cooling COP of 0.32-0.4. Although these values are rather encouraging, a room for their enhancement still exists. The aim of this paper was a dynamic optimization of the composite performance in AC cycles. Dynamics of methanol sorption on loose grains of the LiCl/silica composites was studied by a Large Temperature Jump method under typical conditions of AC cycle. Effects of number of the sorbent layers, salt content, grain size and cycle boundary temperatures were studied. Physico-chemical processes in the three-phase system (salt, solution, vapor) were shown to be quite complex and can strongly affect the dynamics of methanol ad-/desorption. Several obstacles which can retard the sorption were analyzed. Appropriate recommendations on improving the cycle dynamics, which concern optimal conversion degree, salt content and relative durations of ad- and desorption phases, were made.
机译:最近,有人提出了一种新型的甲醇复合吸附剂“中孔硅胶中的LiCl”用于AC(吸附冷却)。在实验室规模的吸附式冷却器上进行的测试得出的比冷却功率为210-290 W / kg,冷却COP为0.32-0.4。尽管这些值令人鼓舞,但仍有提高的空间。本文的目的是动态优化交流循环中的复合材料性能。在典型的交流循环条件下,采用大温度跳跃法研究了LiCl /二氧化硅复合材料的疏松晶粒上甲醇的吸附动力学。研究了吸附剂层数,盐含量,晶粒尺寸和循环边界温度的影响。三相系统(盐,溶液,蒸气)中的物理化学过程非常复杂,会严重影响甲醇吸附/脱附的动力学。分析了一些阻碍吸附的障碍。提出了有关改善循环动力学的适当建议,其中涉及最佳转化率,含盐量以及吸附和解吸阶段的相对持续时间。

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