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首页> 外文期刊>Journal of the European Ceramic Society >Structuring adsorbents and catalysts by processing of porous powders
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Structuring adsorbents and catalysts by processing of porous powders

机译:通过处理多孔粉末来构造吸附剂和催化剂

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摘要

Microporous materials such as zeolites, metal organic frameworks, activated carbons and aluminum phosphates are suitable for catalysis and separation applications. These high surface area materials are invariably produced in particulate forms and need to be transformed into hierarchically porous structures for high performance adsorbents or catalysts. Structuring of porous powders enables an optimized structure with high mass transfer, low pressure drop, good heat management, and high mechanical and chemical stability. The requirements and important properties of hierarchically porous structures arc reviewed with a focus on applications in gas separation and catalysis. Versatile powder processing routes to process porous powders into hierarchically porous structures like extrusion, coatings of scaffolds and honeycombs, colloidal processing and direct casting, and sacrificial approaches are presented and discussed. The use and limitations of the use of inorganic binders for increasing the mechanical strength is reviewed, and the most important binder systems, e.g. clays and silica, are described in detail. Recent advances to produce binder-free and complex shaped hierarchically porous monoliths are described and their performance is compared with traditional binder-containing structured adsorbents. Needs related to better thermal management and improved kinetics and volume efficiency are discussed and an outlook on future research is also given.
机译:微孔材料,例如沸石,金属有机骨架,活性炭和磷酸铝,适用于催化和分离应用。这些高表面积材料总是以颗粒形式生产,需要转化为用于高性能吸附剂或催化剂的分层多孔结构。多孔粉末的结构可实现具有高质量传递,低压降,良好的热管理以及高机械和化学稳定性的优化结构。概述了多孔结构的要求和重要特性,重点是气体分离和催化中的应用。提出并讨论了将多孔粉末加工成分层多孔结构(例如挤压,支架和蜂窝涂层,胶体加工和直接浇铸)以及牺牲性方法的多功能粉末加工路线。综述了使用无机粘合剂来提高机械强度的用途和局限性,最重要的粘合剂体系,例如聚氨酯。详细描述了粘土和二氧化硅。描述了生产无粘合剂和形状复杂的分级多孔整料的最新进展,并将其性能与传统的含粘合剂结构化吸附剂进行了比较。讨论了与更好的热管理,改进的动力学和体积效率相关的需求,并对未来的研究提出了展望。

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