Nickel aluminate spinel phase was successfully sintered from the thermal reactions between nickel oxide and kaolinite or γ-alumina precursor, to simulate the stabilization mechanism of hazardous metal-bearing waste by ceramic matrix. The product phases were then tested using nano-indentation to obtain their nanohardness and Young's modulus, as a means to evaluate the properties of the product after incorporating the waste material. The results indicate the beneficial effect of forming aluminate spinel phase in the system due to its superior mechanical properties. A higher sintering temperature was found to enhance crystal growth in the spinel phase, together with its nanohardness and modulus. The minimum temperature for fabricating nickel a...
Alumina-magnesia spinel is being used increasingly as a high quality refractory material in furnace ...
In this work, the effects of aluminum oxide reinforcement and Ni activated sintering on nanosized ...
Methods of enhancing of mechanical properties of ceramic–metal composites, particularly fracture tou...
Incorporating Ni-laden waste sludge into kaolinite-based construction ceramic materials appears prom...
Stabilization efficiencies of spinel-based construction ceramics incorporating simulated nickel-lade...
The feasibility of stabilizing nickel-laden sludge from commonly available Al-rich ceramic precursor...
Paper no. B305A feasibility of stabilizing nickel and copper laden sludges with commonly available c...
In this paper, the possibility of mechano-chemical synthesis, as a single step process for preparati...
High incorporation efficiency for hazardous nickel and copper were achieved via spinels (AB2O4) form...
The presented work focuses on the quantitative description of the spinel phase (NiAl2O4) located int...
X-ray diffraction (XRD) of nickel aluminate showed its structural properties such as crystallite siz...
ty o ina d in niq rosc hat It was observed that heat treatment of 15 h milled sample at 1100 C is en...
This study investigated the fundamental phase transformation process when incorporating simulated ni...
Abstract. Study of alumina–magnesia binary phase diagram reveals that around 40–50 wt % alumina dis-...
The chemical synthesis of nickel manganite powder was performed by a complex polymerization method ...
Alumina-magnesia spinel is being used increasingly as a high quality refractory material in furnace ...
In this work, the effects of aluminum oxide reinforcement and Ni activated sintering on nanosized ...
Methods of enhancing of mechanical properties of ceramic–metal composites, particularly fracture tou...
Incorporating Ni-laden waste sludge into kaolinite-based construction ceramic materials appears prom...
Stabilization efficiencies of spinel-based construction ceramics incorporating simulated nickel-lade...
The feasibility of stabilizing nickel-laden sludge from commonly available Al-rich ceramic precursor...
Paper no. B305A feasibility of stabilizing nickel and copper laden sludges with commonly available c...
In this paper, the possibility of mechano-chemical synthesis, as a single step process for preparati...
High incorporation efficiency for hazardous nickel and copper were achieved via spinels (AB2O4) form...
The presented work focuses on the quantitative description of the spinel phase (NiAl2O4) located int...
X-ray diffraction (XRD) of nickel aluminate showed its structural properties such as crystallite siz...
ty o ina d in niq rosc hat It was observed that heat treatment of 15 h milled sample at 1100 C is en...
This study investigated the fundamental phase transformation process when incorporating simulated ni...
Abstract. Study of alumina–magnesia binary phase diagram reveals that around 40–50 wt % alumina dis-...
The chemical synthesis of nickel manganite powder was performed by a complex polymerization method ...
Alumina-magnesia spinel is being used increasingly as a high quality refractory material in furnace ...
In this work, the effects of aluminum oxide reinforcement and Ni activated sintering on nanosized ...
Methods of enhancing of mechanical properties of ceramic–metal composites, particularly fracture tou...