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Sustainable synthesis of amino acids by catalytic fixation of molecular dinitrogen and carbon dioxide

Autor
Rivas, M.; del Valle, LJ.; Turon, P.; Aleman, C.; Puiggali, J.
Tipus d'activitat
Article en revista
Revista
Green chemistry
Data de publicació
2018-02-07
Volum
20
Número
3
Pàgina inicial
685
Pàgina final
693
DOI
https://doi.org/10.1039/c7gc02911j Obrir en finestra nova
Projecte finançador
Micropiezas basadas en poliesteramidas biodegradables cargadas con bacteriofagos y biomoleculas susceptibles a procesos de desnaturalización: aplicaciones en biomedicina.
Piel electrónica inteligente
Repositori
http://hdl.handle.net/2117/114757 Obrir en finestra nova
URL
http://pubs.rsc.org/en/Content/ArticleLanding/2018/GC/C7GC02911J#!divAbstract Obrir en finestra nova
Resum
The industrial process of nitrogen fixation is complex and results in a huge economic and environmental impact. It requires a catalyst and high temperature and pressure to induce the rupture of the strong N–N bond and subsequent hydrogenation. On the other hand, carbon dioxide removal from the atmosphere has become a priority objective due to the high amount of global carbon dioxide emissions (i.e. 36 200 million tons in 2015). In this work, we fix nitrogen from N2 and carbon from CO2 and CH4 ...
Citació
Rivas, M., del Valle, LJ., Turon, P., Aleman, C., Puiggali, J. Sustainable synthesis of amino acids by catalytic fixation of molecular dinitrogen and carbon dioxide. "Green chemistry", 7 Febrer 2018, vol. 20, núm. 3, p. 685-693.
Grup de recerca
CRnE - Centre de Recerca en Ciència i Enginyeria Multiescala de Barcelona
IMEM-BRT- Innovation in Materials and Molecular Engineering - Biomaterials for Regenerative Therapies
PSEP - Polimers Sintètics: Estructura i Propietats. Polimers Biodegradables.

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