The properties of metallurgical coke are critical to the performance of the blast furnace for iron making. While extensive work has gone into understanding the relationship between the properties of coke and its behaviour in the blast furnace, the heterogeneous nature of coke makes understanding these relationships difficult. Herein we report the use of a laboratory produced coke analogue to examine the effects of minerals on the reactivity behaviour of coke in a pseudo-CRI test. The effects of a range of minerals on the reactivity of the coke analogue are demonstrated and the effects of binary combinations of silicon and iron bearing minerals are examined
The present work aims to study the high-temperature strength of coke. Mechanisms of disintegration w...
Coke quality in blast furnace is measured by its resistance to degradation, in its role as a fuel, a...
Of all coke properties the influence of the catalytic mineral matter on reactivity of metallurgical ...
The properties of metallurgical coke are critical to the performance of the blast furnace for iron m...
The reactivity of coke analogues doped with minerals to mimic the mineralogy of specific industrial ...
The effect of the mineral matter on the reactivity of a coke analogue was examined through the addit...
The effect of combinations of minerals in the alumina-silica-magnetite ternary system on the reactiv...
Metallurgical coke is an essential reagent in the ironmaking blast furnace process. A better underst...
The effect of combinations of iron-bearing minerals and quartz on the reactivity of coke analogues w...
Coke is the fuel and the primary source of CO for the reduction of iron oxide in the blast furnace. ...
To better understand metallurgical coke behavior in blast furnace, the preparation of coke analogues...
Coke performance in an operating blast furnace is often empirically related to popular bench-scale t...
In this study the suitability of a laboratory analogue for coke for studying the reactivity of coke ...
The reaction characteristics and mechanism of coke with different coke reactivity indices (CRIs) in ...
In this study, characterization of the porosity, carbon bonding, and reactivity of coke analog mater...
The present work aims to study the high-temperature strength of coke. Mechanisms of disintegration w...
Coke quality in blast furnace is measured by its resistance to degradation, in its role as a fuel, a...
Of all coke properties the influence of the catalytic mineral matter on reactivity of metallurgical ...
The properties of metallurgical coke are critical to the performance of the blast furnace for iron m...
The reactivity of coke analogues doped with minerals to mimic the mineralogy of specific industrial ...
The effect of the mineral matter on the reactivity of a coke analogue was examined through the addit...
The effect of combinations of minerals in the alumina-silica-magnetite ternary system on the reactiv...
Metallurgical coke is an essential reagent in the ironmaking blast furnace process. A better underst...
The effect of combinations of iron-bearing minerals and quartz on the reactivity of coke analogues w...
Coke is the fuel and the primary source of CO for the reduction of iron oxide in the blast furnace. ...
To better understand metallurgical coke behavior in blast furnace, the preparation of coke analogues...
Coke performance in an operating blast furnace is often empirically related to popular bench-scale t...
In this study the suitability of a laboratory analogue for coke for studying the reactivity of coke ...
The reaction characteristics and mechanism of coke with different coke reactivity indices (CRIs) in ...
In this study, characterization of the porosity, carbon bonding, and reactivity of coke analog mater...
The present work aims to study the high-temperature strength of coke. Mechanisms of disintegration w...
Coke quality in blast furnace is measured by its resistance to degradation, in its role as a fuel, a...
Of all coke properties the influence of the catalytic mineral matter on reactivity of metallurgical ...