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Microwave hydrothermal synthesis and performance of NaA zeolite monolithic adsorbent with honeycomb ceramic matrix

机译:微波水热合成和Naa沸石整体吸附剂与蜂窝陶瓷基质的性能

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摘要

The NaA monolithic adsorbent composed of NaA zeolite and honeycomb ceramic matrix has been considered as an up-and-coming adsorbent for the utilization in adsorptive rotary dehumidification system. This contribution introduced a novel synthesis strategy of NaA monolithic adsorbent on the honeycomb ceramic matrix-in situ microwave hydrothermal synthesis. Meanwhile, the influence of several key factors during the synthesis process, including CaCl2 concentration, seed coating, microwave temperature and time, on the performances of the adsorbent was systematically analyzed. The crystalloid phase and the morphology of the as-synthesized adsorbent were used to determine by X-ray powder diffraction and Scanning electronic microscope, and its adsorption and desorption performances were measured by static adsorption and temperature programmed desorption, respectively. The test results of X-ray powder diffraction and Scanning electronic microscope indicated that NaA zeolite with cubic form and particle size of about 0.9 Arn could be quickly in situ synthesized on both the surface and the void of honeycomb ceramic matrix within 35-55min by microwave irradiation. Because of smaller size, more uniform distribution of NaA zeolite, the novel monolithic adsorbent synthesized by microwave method showed more excellent adsorption and desorption performances than that by traditional impregnation technology, which displayed a higher saturated adsorption ratio and faster early adsorption rate, as well as a lower desorption activation energy. (C) 2017 Elsevier Inc. All rights reserved.
机译:由NAA沸石和蜂窝陶瓷基质组成的NAA单片吸附剂已被认为是用于在吸附旋转除湿系统中使用的上升吸附剂。该贡献在蜂窝陶瓷基质 - 原位微波水热合成中引入了NAA整体吸附剂的新合成策略。同时,系统地分析了在合成过程中,包括CaCl 2浓度,种子涂层,微波温度和时间的若干关键因素对吸附剂的性能的影响。使用X射线粉末衍射和扫描电子显微镜来确定晶体相和形态,分别通过静态吸附和温度编程解吸测量其吸附和解吸性能。 X射线粉末衍射和扫描电子显微镜的测试结果表明,NAA沸石具有立方体形状和约0.9 ARN的粒度可以在35-55min的蜂窝陶瓷基质的表面上以35-55min在35-55min内进行的原位。辐照。由于尺寸较小,NAA沸石的均匀分布,通过微波法合成的新型整体式吸附剂显示出比传统浸渍技术更优异的吸附和解吸性能,其呈现较高的饱和吸附率和更快的早期吸附速率,以及更快的早期吸附率,以及较低的解吸激活能量。 (c)2017年Elsevier Inc.保留所有权利。

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