Nalazite se na CroRIS probnoj okolini. Ovdje evidentirani podaci neće biti pohranjeni u Informacijskom sustavu znanosti RH. Ako je ovo greška, CroRIS produkcijskoj okolini moguće je pristupi putem poveznice www.croris.hr
izvor podataka: crosbi

The influence of mechanical milling parameters on hydrogen desorption from MgH2-WO3 composites (CROSBI ID 268189)

Prilog u časopisu | izvorni znanstveni rad | međunarodna recenzija

Pantić, Tijana ; Milanović, Igor ; Lukić, Miodrag ; Grbović Novaković, Jasmina ; Kurko, Sandra ; Biliškov, Nikola ; Milošević Govedarović, Sanja The influence of mechanical milling parameters on hydrogen desorption from MgH2-WO3 composites // International journal of hydrogen energy, 45 (2020), 14; 7901-7911. doi: 10.1016/j.ijhydene.2019.07.167

Podaci o odgovornosti

Pantić, Tijana ; Milanović, Igor ; Lukić, Miodrag ; Grbović Novaković, Jasmina ; Kurko, Sandra ; Biliškov, Nikola ; Milošević Govedarović, Sanja

engleski

The influence of mechanical milling parameters on hydrogen desorption from MgH2-WO3 composites

The influence of different milling conditions obtained using two high-energy mills on hydrogen desorption from MgH2-WO3 composites was investigated. The morphology, particle and crystallite size were studied as a function of milling speed, vial's volume, and ball-to-powder ratio. The vial's fill level, the number, and type of milling balls and additive's content kept constant. Changes in morphology and microstructure were correlated to desorption properties of materials. Higher milling speed reduced particle size but, there is no significant crystallite size reduction. On the other hand, additive distribution is similar regardless of the energy input. It has been noticed that different energy input on milling blend, which is the result of combined effects of above-mentioned factors, reflects on desorption temperature but not on the kinetics of desorption. In fact, desorption mechanism changes from 2D to 3D growth with constant nucleation rate, despite obtained changes in microstructure or chemical composition of the material.

MgH2 ; WO3 ; Composites ; Mechanical milling ; Desorption properties ; Kinetic analysis

nije evidentirano

nije evidentirano

nije evidentirano

nije evidentirano

nije evidentirano

nije evidentirano

Podaci o izdanju

45 (14)

2020.

7901-7911

objavljeno

0360-3199

1879-3487

10.1016/j.ijhydene.2019.07.167

Povezanost rada

Kemija

Poveznice
Indeksiranost