TY - JOUR
T1 - Influences of Ni-Co-B catalyst on the thermal decomposition of light-weight NaNH2-NaBH4 hydrogen storage material
AU - Bai, Ying
AU - Wu, Feng
AU - Yang, Jian Hu
AU - Wu, Chuan
AU - Bao, Li Ying
PY - 2014/3
Y1 - 2014/3
N2 - NaNH2 and NaBH4 were utilized to prepare a composite hydrogen storage material, NaNH2-NaBH4. To improve the thermal decomposition kinetics of NaNH2-NaBH4, which is crucial for hydrogen-release performance, Ni-Co-B was selected as a catalyst. To prepare the catalyst-promoted light-weight hydrogen storage materials, a composite hydrogen storage system was synthesized via a ball milling method with NaNH2, NaBH4, and Ni-Co-B. X-ray diffraction patterns show that the crystal structure of the NaNH2-NaBH4 is well maintained after adding catalysts. In addition, Na3BN2 and metal Na were detected as by-products in the Ni-Co-B-promoted NaNH 2-NaBH4 (with a molar ratio of 2:1) after the thermal decomposition process. In addition, thermogravimetry-differential thermal analysis indicates that the main decomposition stages of the metal boride-promoted NaNH2-NaBH4 materials were split into three stages. Furthermore, the catalytic effects on the thermal decomposition kinetics were evaluated. The activation energy of the Ni-Co-B-promoted NaNH 2-NaBH4 below 250 °C is 99 kJ/mol, which is only 62.0% of that of pristine NaNH2-NaBH4 (2/1), implying better kinetics in the low temperature decomposition range.
AB - NaNH2 and NaBH4 were utilized to prepare a composite hydrogen storage material, NaNH2-NaBH4. To improve the thermal decomposition kinetics of NaNH2-NaBH4, which is crucial for hydrogen-release performance, Ni-Co-B was selected as a catalyst. To prepare the catalyst-promoted light-weight hydrogen storage materials, a composite hydrogen storage system was synthesized via a ball milling method with NaNH2, NaBH4, and Ni-Co-B. X-ray diffraction patterns show that the crystal structure of the NaNH2-NaBH4 is well maintained after adding catalysts. In addition, Na3BN2 and metal Na were detected as by-products in the Ni-Co-B-promoted NaNH 2-NaBH4 (with a molar ratio of 2:1) after the thermal decomposition process. In addition, thermogravimetry-differential thermal analysis indicates that the main decomposition stages of the metal boride-promoted NaNH2-NaBH4 materials were split into three stages. Furthermore, the catalytic effects on the thermal decomposition kinetics were evaluated. The activation energy of the Ni-Co-B-promoted NaNH 2-NaBH4 below 250 °C is 99 kJ/mol, which is only 62.0% of that of pristine NaNH2-NaBH4 (2/1), implying better kinetics in the low temperature decomposition range.
UR - http://www.scopus.com/inward/record.url?scp=84901044295&partnerID=8YFLogxK
U2 - 10.1063/1.4870990
DO - 10.1063/1.4870990
M3 - Article
AN - SCOPUS:84901044295
SN - 1941-7012
VL - 6
JO - Journal of Renewable and Sustainable Energy
JF - Journal of Renewable and Sustainable Energy
IS - 2
M1 - 023108
ER -