首页> 外文期刊>ACS Omega >Straightforward Processing Route for the Fabrication of Robust Hierarchical Zeolite Structures
【24h】

Straightforward Processing Route for the Fabrication of Robust Hierarchical Zeolite Structures

机译:鲁棒的分级沸石结构的直接加工路线

获取原文
           

摘要

Strong hierarchical porous zeolite structures are prepared by a sol–gel method using freeze gelation. Instead of conventional binders in powder form, such as bentonite or kaolin, it has been proven that using a freeze gelation method based on a colloidal silica sol is a more straightforward and easier-to-use-approach in fabricating highly mechanically stable zeolite monoliths. The resulting zeolite slurries possess superior rheological properties (not being pseudoplastic) and show low viscosities. This low viscosity of the slurry enables an increase in the solid content without compromising the extraordinary good flow behavior for casting applications. Additionally, in comparison to conventional powdery binders, zeolite samples prepared by using a colloidal silica sol exhibit a significantly higher mechanical strength. This mechanical strength can be further improved by either increasing the zeolite content or increasing the silica to zeolite ratio. Increasing the zeolite content leads to an increased volumetric adsorption capacity for CO_(2) as the test gas, resulting from the increased amount of zeolite particles per unit volume. In addition, a higher solid content of the zeolite monoliths leads to higher compression strengths, while showing the same elastic deformation and brittle failure characteristics. In turn, increasing the silica to zeolite ratio does not affect the volumetric adsorption capacity for CO_(2). Nevertheless, higher silica contents lead to a significant increase in the elastic deformation and absorbed work until failure. Therefore, the proposed processing route based on freeze gelation presents an easy and unique tool to tune the mechanical and gas adsorptive properties of hierarchically structured zeolite monoliths, according to the application requirements.
机译:牢固的分级多孔沸石结构是通过使用冷冻凝胶的溶胶-凝胶法制备的。业已证明,代替基于粉状膨润土或高岭土的常规粘合剂,使用基于胶体硅溶胶的冷冻凝胶法在制造高度机械稳定的沸石整料中更直接,更易于使用。所得的沸石浆料具有优异的流变性(不是假塑性的)并且显示出低粘度。浆料的这种低粘度使得能够增加固含量,而不会损害用于铸造应用的非常好的流动性能。另外,与常规的粉状粘合剂相比,通过使用胶态硅溶胶制备的沸石样品表现出明显更高的机械强度。该机械强度可通过增加沸石含量或增加二氧化硅与沸石的比例来进一步提高。沸石含量的增加导致作为测试气体的CO_​​(2)的体积吸附容量增加,这是由于每单位体积的沸石颗粒数量增加所致。另外,沸石整料的较高固含量导致较高的压缩强度,同时表现出相同的弹性变形和脆性破坏特性。反过来,增加二氧化硅与沸石的比例不会影响CO_(2)的体积吸附容量。但是,较高的二氧化硅含量会导致弹性变形和吸收功直至破坏的显着增加。因此,根据应用要求,所提出的基于冷冻凝胶化的加工路线提出了一种简单而独特的工具,可以调节分层结构的沸石整料的机械和气体吸附性能。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号