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Valorization of Ferronickel Slag into Refractory Materials: Effect of Sintering Temperature
Foquan Gu
, Zhiwei Peng
*
, Yuanbo Zhang
, Huimin Tang
, Lei Ye
, Weiguang Tian
, Guoshen Liang
,
Joonho Lee
, Mingjun Rao
, Guanghui Li
, Tao Jiang
*
Corresponding author for this work
Research output
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Contribution to journal
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Article
›
peer-review
17
Citations (Scopus)
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Keyphrases
Sintering Temperature
100%
Material Effect
100%
Ferronickel Slag
100%
Refractory Materials
100%
Forsterite
66%
Spinel Phases
66%
Sintered Magnesia
66%
Compressive Strength
33%
Increased Temperature
33%
Crystallization
33%
Appropriate Temperature
33%
Thermodynamic Calculation
33%
Rapid Growth
33%
Cm(III)
33%
Enstatite
33%
Bulk Density
33%
Spinel
33%
Apparent Porosity
33%
Refractoriness
33%
Simultaneous Reduction
33%
Broad Temperature Range
33%
Low Melting Point
33%
High Melting Point
33%
Material Science
Sintering Temperature
100%
Ferronickel
100%
Refractory Material
100%
Magnesium Oxide
66%
Sintering
66%
Density
33%
Compressive Strength
33%
Chemical Engineering
Magnesia
100%