Affiliation:
1. Department of Building Science School of Architecture Tsinghua University Beijing 100084 China
2. Beijing Key Laboratory of Indoor Air Quality Evaluation and Control Beijing 100084 China
3. Songshan Lake Materials Laboratory Dongguan 523808 China
4. Institute of Physics Chinese Academy of Sciences Beijing 100190 China
5. Key Laboratory of Eco Planning & Green Building Ministry of Education (Tsinghua University) Beijing 100084 China
6. State Key Laboratory for Modification of Chemical Fibers and Polymer Materials College of Materials Science and Engineering Donghua University Shanghai 201620 China
Abstract
AbstractConventional adsorbents and catalysts shaped by granulation or extrusion have high pressure drop and poor flexibility for chemical, energy, and environmental processes. Direct ink writing (DIW), a kind of 3D printing, has evolved into a crucial technique for manufacturing scalable configurations of adsorbents and catalysts with satisfactory programmable automation, highly optional materials, and reliable construction. Particularly, DIW can generate specific morphologies required for excellent mass transfer kinetics, which is essential in gas‐phase adsorption and catalysis. Here, DIW methodologies for mass transfer enhancement in gas‐phase adsorption and catalysis, covering the raw materials, fabrication process, auxiliary optimization methods, and practical applications are comprehensively summarized. The prospects and challenges of DIW methodology in realizing good mass transfer kinetics are discussed. Ideal components with a gradient porosity, multi‐material structure, and hierarchical morphology are proposed for future investigations.
Funder
National Natural Science Foundation of China
Subject
General Materials Science,General Chemistry
Cited by
14 articles.
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