Thermophysical Properties of Novel Zeolite Materials for Sorption Cycles

Author:

Thu Kyaw1,Kim Young Deuk2,Xi Bao Juan2,Ismail Azhar2,Ng Kim Choon2

Affiliation:

1. King Abdullah University of Science and Technology

2. National University of Singapore

Abstract

This article discusses the thermophysical properties of zeolite-based adsorbents. Three types of zeolite (Z-01, Z-02 and Z-05) with different chemical compositions developed by Mitsubishi Plastics, Inc. are analyzed for possible applications in adsorption chillers and desalination cycles driven by low-temperature waste heat sources. The experiments are performed using static volumetric method with N2 gas sorption at 77 K. Thermophysical properties such as pore surface area, micropore volume and pore size distribution are evaluated using standard multi-point Brunauer-Emmett-Teller (BET) and Non-Local Density Functional Theory (NLDFT) methods. It is observed that Aluminosilicate functionalized Z-02 exhibits the highest surface area with huge micropore volume.

Publisher

Trans Tech Publications, Ltd.

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