This study explores the catalytic effect of Na2CrO4 on the hydrogen storage performance of Mg(AlH4)2 and Mg(BH4)2. For Mg(AlH4)2, Na2CrO4 incorporation significantly enhances dehydrogenation characteristics. The hydrogen desorption temperatures decrease from 178.4°C and 291.6°C to 170.4°C and 279°C, respectively, while the activation energy reduces from 114.4 ± 8.3 to 103.9 ± 2.5 kJ/mol, indicating improved kinetics. Structural investigations reveal that the catalyst remains stable and facilitates the decomposition pathway involving MgH2 and Mg2Al3 formation without altering the fundamental reaction mechanism. In contrast, Mg(BH4)2 exhibits a different catalytic response. Although the activation energy remains nearly unchanged, Na2CrO4 modifies the hydrogen desorption profile by transforming the multi-step plateau behaviour into a more continuous release pattern. C-Mg(BH4)2 desorbed hydrogen rapidly near 300°C, with a total absolute amount of hydrogen release (with respect to active mass of Mg(BH4)2 only) ∼13.8 wt.%. Phase analysis confirms the transformation from α to β-Mg(BH4)2 followed by the formation of MgB2 and Mg, while the catalyst remains structurally intact. X-ray photoelectron spectroscopy study also strengthens the mechanism described for both alanate and borohydride systems based on X-ray diffraction and infrared.
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Research Article|
September 21 2026
Deciphering decomposition pathways in Na2CrO4-catalysed Mg(AlH4)2 and Mg(BH4)2 systems
Ashish Sharma;
Ashish Sharma
Centre for Renewable Energy and Storage,
Suresh Gyan Vihar University
, Jaipur, India
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Shivani Agarwal;
Shivani Agarwal
Department of Physics,
JECRC University
, Jaipur, India
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Iram Sehar;
Iram Sehar
Centre for Renewable Energy and Storage,
Suresh Gyan Vihar University
, Jaipur, India
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Peter R. Makgwane;
Peter R. Makgwane
Institute for Catalysis and Energy Solutions (ICES),
University of South Africa
, Johannesburg, South Africa
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Hiroki Miyaoka;
Hiroki Miyaoka
Natural Science Centre for Basic Research & Development,
Hiroshima University
, Higashi-Hiroshima, Japan
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Takayuki Ichikawa;
Takayuki Ichikawa
Graduate School of Advanced Science & Engineering,
Hiroshima University
, Higashi-Hiroshima, Japan
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Ankur Jain
Centre for Renewable Energy and Storage,
Suresh Gyan Vihar University
, Jaipur, India
; Centre for Promotion of Research, Graphic Era (Deemed to be University), Clement Town, Dehradun, India; Natural Science Centre for Basic Research & Development, Hiroshima University, Higashi-Hiroshima, JapanCorresponding author Ankur Jain (ankur.j.ankur@gmail.com)
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Corresponding author Ankur Jain (ankur.j.ankur@gmail.com)
Publisher: Emerald Publishing
Received:
May 28 2026
Accepted:
August 06 2026
Online ISSN: 1496-256X
Print ISSN: 1496-2551
© 2026 Emerald Publishing Limited
2026
Emerald Publishing Limited
Licensed re-use rights only
Journal of Environmental Engineering and Science 1–13.
Article history
Received:
May 28 2026
Accepted:
August 06 2026
Citation
Sharma A, Agarwal S, Sehar I, Makgwane PR, Miyaoka H, Ichikawa T, Jain A (2026;), "Deciphering decomposition pathways in Na2CrO4-catalysed Mg(AlH4)2 and Mg(BH4)2 systems". Journal of Environmental Engineering and Science, Vol. ahead-of-print No. ahead-of-print. https://doi.org/10.1680/jenes.26.00108
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