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Sustainable additives for the production of hydrogen via sodium borohydride hydrolysis

Abstract: Finding stable solutions for hydrogen storage is one of the main challenges to boosting its deployment as an energy vector and contributing to the decarbonization of the energy sector. In this context, sodium borohydride (NaBH4) has been largely studied as a hydrogen storage material due to its significant advantages, such as low pressure, stability, and high hydrogen storage density. The development of catalysts and additive materials for the on-demand hydrolysis of NaBH4 for hydrogen release is a key research area. This work studies the effects of non-toxic and environmentally friendly additives for the hydrolysis process in terms of yield, lag time, hydrogen generation rate, and gravimetric density. Specifically, four additives, including sodium carboxymethylcellulose (CMC), polyacrylamide (PAM), sodium dodecyl sulfate (SDS), and B-cyclodextrin (BCD), were studied for their application in the storage and release of hydrogen. The best results were provided by the use of sodium carboxymethyl cellulose and polyacrylamide. In the first case, a hydrolysis yield of 85%, a lag time of 70 s, a hydrogen production rate of 1374 mL·min-1·gcat-1, and a storage capacity of 1.8 wt% were obtained. Using polyacrylamide as additive, a hydrolysis yield of almost 100% was achieved, although it required a significantly higher time period for complete conversion.

Other publications of the same journal or congress with authors from the University of Cantabria

 Authorship: Gómez-Coma L., Silva D.L., Ortiz A., Rangel C.M., Ortiz-Martínez V.M., Pinto A.M.F.R., Ortiz I.,

 Fuente: Applied Sciences, 2023, 13(12), 6995

Publisher: MDPI

 Publication date: 09/06/2023

No. of pages: 11

Publication type: Article

 DOI: 10.3390/app13126995

ISSN: 2076-3417

 Spanish project: PID2021-123120OB-I00

 European project: info:eu-repo/grantAgreement/EC/INTERREG ATLANTIC AREA/ EAPA_204%2F2016/Atlantic network for renewable generation and supply of hydrogen to promote high energy efficiency/HYLANTIC

Authorship

SILVA, DIOGO L.

CARMEN MIREYA RANGEL ARCHILA

VICTOR MANUEL ORTIZ MARTINEZ

PINTO, ALEXANDRA