Chemical Process Intensification with Pressure-Tunable Media
- 作者: Subramaniam B.1
-
隶属关系:
- Department of Chemical and Petroleum Engineering and Center for Environmentally Beneficial Catalysis
- 期: 卷 51, 编号 6 (2017)
- 页面: 928-935
- 栏目: American-Russian Chemical Engineering Scientific School “Modeling and Optimization of Chemical Engineering Processes and Systems” May 23–25, 2016 (Kazan National Research Technological University)
- URL: https://journals.rcsi.science/0040-5795/article/view/171809
- DOI: https://doi.org/10.1134/S004057951706015X
- ID: 171809
如何引用文章
详细
Pressure-tunable reaction media possess unique tunability of the physical and transport properties. This manuscript highlights how such media may be exploited for developing resource-efficient chemical technologies characterized by process intensification, high product selectivity, enhanced safety and facile separation steps. Alternative technology conceptsfor p-xylene oxidation and ozonolysis that employ pressuretunable media to demonstrate such process attributes are highlighted. Techno-economic and life cycle analyses reveal that the alternative processes possess process, economic and environmental benefits relative to incumbent technologies. Process intensification allows modularization of reactors and other unit operations, which is especially well suited for processing stranded or distributed resources such as biomass and shale gas to produce fuels and chemical intermediates.
作者简介
Bala Subramaniam
Department of Chemical and Petroleum Engineering and Center for Environmentally Beneficial Catalysis
编辑信件的主要联系方式.
Email: bsubramaniam@ku.edu
美国, Lawrence, KS, 66045
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