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首页> 外文期刊>International Journal of Heat and Mass Transfer >Water sorption properties, diffusion and kinetics of zeolite NaX modified by ion-exchange and salt impregnation
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Water sorption properties, diffusion and kinetics of zeolite NaX modified by ion-exchange and salt impregnation

机译:离子交换和盐浸渍改性的NaX沸石的吸水特性,扩散和动力学

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Zeolite NaX is one of the most popular water sorption materials for dehumidification, thermal energy storage and sorption cooling. In this paper, zeolite NaX is modified by magnesium chloride to achieve ion-exchange (zeolite NaMgX) and salt impregnation (zeolite NaX/MgCl2) with the aim of improving water sorption capacity and thermal performance. The pore structure, desorption heat, water equilibrium sorption property, adsorption kinetics and cycling stability of zeolite NaX, NaMgX and NaX/MgCl2 were studied to evaluate their potential for sorption application. Experimental results show the zeolite NaMgX has stronger hydrophilic and can improve the water sorption capacity from 0.17 g/g to 0.20 g/g at 2500 Pa. The zeolite NaX/MgCl2 with 12.6 wt% salt confined inside the meso-/macro-pore, can improve the water sorption capacity from 0.17 g/g to 0.26 g/g with sorption heat of 842 J/g. The sorption rate of zeolite NaX/MgCl2 is much lower than that of pure zeolite NaX, while zeolite NaMgX has a slight lower sorption rate than pure zeolite NaX. The diffusivity of zeolite NaX is in the range of 8.03 x 10(-10)-1.97 x 10(-9) m(2)/s at 1000-2500 Pa, while zeolite NaMgX and zeolite NaX/MgCl2 have diffusivities in the range of 5.22 x 10(-10)-1.73 x 10(-9) m(2)/s and 3.76 x 10(-10)-9.87 x 10(-10) m(2)/s respectively. The diffusivities of different zeolite samples increase with temperature which can be described by activated energy factor, and the relation between diffusivity and pressure is strongly coupled with the equilibrium equation. The modified zeolites have good thermal stabilities and no obvious uptake loss after ten adsorption-desorption cycles, making them feasible, scalable and economical for sorption thermal energy storage and cooling applications. (C) 2019 Elsevier Ltd. All rights reserved.
机译:NaX沸石是用于除湿,热能存储和吸收冷却的最受欢迎的吸水材料之一。本文通过改良氯化镁对NaX沸石进行改性,以实现离子交换(NaMgX沸石)和盐浸渍(NaX / MgCl2沸石),以提高吸水率和热性能。研究了沸石NaX,NaMgX和NaX / MgCl2的孔结构,脱附热,水平衡吸附特性,吸附动力学和循环稳定性,以评估其吸附潜力。实验结果表明,NaMgX沸石在2500 Pa时具有更强的亲水性,并能将吸水量从0.17 g / g提高至0.20 g /g。NaX/ MgCl2沸石含12.6 wt%的盐,被限制在中孔/大孔内,能够以842 J / g的吸附热量将水的吸附量从0.17 g / g提高到0.26 g / g。 NaX / MgCl2沸石的吸附速率远低于纯NaX沸石,而NaMgX沸石的吸附速率比纯NaX沸石略低。 NaX沸石在1000-2500 Pa下的扩散率在8.03 x 10(-10)-1.97 x 10(-9)m(2)/ s的范围内,而NaMgX和NaX / MgCl2沸石的扩散率在此范围内分别为5.22 x 10(-10)-1.73 x 10(-9)m(2)/ s和3.76 x 10(-10)-9.87 x 10(-10)m(2)/ s。不同沸石样品的扩散系数随温度升高而增加,这可以用活化能因子来描述,并且扩散系数与压力之间的关系与平衡方程密切相关。改性沸石具有良好的热稳定性,经过十次吸附-解吸循环后没有明显的吸收损失,使其在吸附热能存储和冷却应用中可行,可扩展且经济。 (C)2019 Elsevier Ltd.保留所有权利。

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