Negócios em Emersão  ·  Vamos Emergir?  ·  Cadastre-se e ganhe 50 REC de bonus

Novel polymer membrane design improves high-purity hydrogen separation

Redação Recifes
161 visualizações
Novel polymer membrane design improves high-purity hydrogen separation

Novel polymer membrane design improves high-purity hydrogen separation. In Nature Communications a research team led by Professor Tae-Hyun Bae of the KAIST Department of Chemical and Biomolecular Engineering introduced hydrogen-selective transport pathways at the angstrom scale inside polymer membranes and clarified their separation performance through the concept of "network completeness."

O que aconteceu

In Nature Communications a research team led by Professor Tae-Hyun Bae of the KAIST Department of Chemical and Biomolecular Engineering introduced hydrogen-selective transport pathways at the angstrom scale inside polymer membranes and clarified their separation performance through the concept of "network completeness."

Por que importa

A pauta interessa a quem acompanha Agro porque altera expectativas e decisões práticas.

Consequência prática

In Nature Communications a research team led by Professor Tae-Hyun Bae of the KAIST Department of Chemical and Biomolecular Engineering introduced hydrogen-selective transport pathways at the angstrom scale inside polymer membranes and clarified their separation performance through the concept of "network completeness." o movimento reforça a leitura de que decisões em Agro precisam ser acompanhadas com atenção aos dados e ao desfecho concreto.

In Nature Communications a research team led by Professor Tae-Hyun Bae of the KAIST Department of Chemical and Biomolecular Engineering introduced hydrogen-selective transport pathways at the angstrom scale inside polymer membranes and clarified their separation performance through the concept of "network completeness." o movimento reforça a leitura de que decisões em Agro precisam ser acompanhadas com atenção aos dados e ao desfecho concreto.

In Nature Communications a research team led by Professor Tae-Hyun Bae of the KAIST Department of Chemical and Biomolecular Engineering introduced hydrogen-selective transport pathways at the angstrom scale inside polymer membranes and clarified their separation performance through the concept of "network completeness." o movimento reforça a leitura de que decisões em Agro precisam ser acompanhadas com atenção aos dados e ao desfecho concreto.

In Nature Communications a research team led by Professor Tae-Hyun Bae of the KAIST Department of Chemical and Biomolecular Engineering introduced hydrogen-selective transport pathways at the angstrom scale inside polymer membranes and clarified their separation performance through the concept of "network completeness." o movimento reforça a leitura de que decisões em Agro precisam ser acompanhadas com atenção aos dados e ao desfecho concreto.

In Nature Communications a research team led by Professor Tae-Hyun Bae of the KAIST Department of Chemical and Biomolecular Engineering introduced hydrogen-selective transport pathways at the angstrom scale inside polymer membranes and clarified their separation performance through the concept of "network completeness." o movimento reforça a leitura de que decisões em Agro precisam ser acompanhadas com atenção aos dados e ao desfecho concreto.

In Nature Communications a research team led by Professor Tae-Hyun Bae of the KAIST Department of Chemical and Biomolecular Engineering introduced hydrogen-selective transport pathways at the angstrom scale inside polymer membranes and clarified their separation performance through the concept of "network completeness." o movimento reforça a leitura de que decisões em Agro precisam ser acompanhadas com atenção aos dados e ao desfecho concreto.

Artigo originalmente publicado em phys.org
Compartilhar:

Comentários

Seja o primeiro a comentar!