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- W3201469414 endingPage "36290" @default.
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- W3201469414 abstract "In view of its important role as raw materials in various energy and environment fields, pure oxygen has been widely required. The present cryogenic distillation, polymeric membrane and pressure swing adsorption (PSA) air separation methods are either energy-intensive or producing non-high purity oxygen. The comparative analysis of the inorganic dense ceramic-based oxygen transport membranes (OTMs) with these traditional oxygen production technologies and the H 2 /O 2 production by electrolysis of water shows irreplaceable advantages. The oxygen transport mechanism has been elaborated further to reveal the theoretical basis for the development of OTMs. The dual-phase membranes that have been widely studied are divided into three types according to the conduction paths of oxygen ions and electrons. Based on a review of the different types of OTM materials experienced in the past 30 years, its applications such as oxygen-enriched combustion involving H 2 and membrane reactors have been discussed. Finally, challenges and future directions are analyzed according to potential industrial design directions and competitive technologies of OTMs. • Progress of oxygen transport membrane architecture and materials is presented. • Dual-phase membrane is subdivided into three types by particle conduction paths. • Electrolytic water, membrane and traditional O 2 production ways are analyzed. • The development history and application of membrane are summarized in detail. • Membrane reactor to produce pure H 2 (>99.99%) for fuel cell is discussed." @default.
- W3201469414 created "2021-09-27" @default.
- W3201469414 creator A5050019755 @default.
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- W3201469414 creator A5082431442 @default.
- W3201469414 date "2021-10-01" @default.
- W3201469414 modified "2023-10-14" @default.
- W3201469414 title "A comprehensive review on oxygen transport membranes: Development history, current status, and future directions" @default.
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