Attrition of six different limestones was studied during calcium looping cycles for CO2 capture in a lab-scale fluidized bed apparatus. The tests were carried out under realistic conditions representative of a process with calcination in an oxy-firing environment. The focus of the activity was to investigate the effect of the presence of SO2 both in the calcination and in the carbonation stages. Experiments without SO2 were also performed, for comparison. Attrition processes were characterized by following the modifications of bed sorbent particle size distribution and the elutriation rates of fines throughout conversion over repeated cycles. Results showed that the presence of a high SO2 concentration significantly depressed the sorbent CO...
Attrition of a limestone during calcium looping cycles for CO2 capture was studied in a lab-scale fl...
Attrition of a limestone during calcium looping cycles for CO2 capture was studied in a lab-scale fl...
The effect of steam and sulphur dioxide on CO2 capture by limestone during calcium looping was studi...
Attrition of six different limestones was studied during calcium looping cycles for CO2 capture in a...
Attrition of six different limestones was studied during calcium looping cycles for CO2 capture in a...
Attrition of six different limestones was studied during calcium looping cycles for CO2 capture in a...
Six limestones were tested for CO2 capture during calcium looping cycles in a lab-scale fluidized be...
Attrition of six different limestones during calcium looping cycles for CO2 capture was studied in a...
The CO2 capture capacity and the extent of particle attrition during simulated calcium looping cycle...
Attrition of a limestone during calcium looping cycles for CO2 capture was studied in a lab-scale f...
The CO2 capture performance and the attrition behavior of a dolomite were assessed during calcium lo...
Attrition of a limestone during calcium looping cycles for CO2 capture was studied in a lab-scale fl...
Attrition of a limestone during calcium looping cycles for CO2 capture was studied in a lab-scale fl...
Attrition of a limestone during calcium looping cycles for CO2 capture was studied in a lab-scale fl...
The effect of steam and sulphur dioxide on CO2 capture by limestone during calcium looping was studi...
Attrition of six different limestones was studied during calcium looping cycles for CO2 capture in a...
Attrition of six different limestones was studied during calcium looping cycles for CO2 capture in a...
Attrition of six different limestones was studied during calcium looping cycles for CO2 capture in a...
Six limestones were tested for CO2 capture during calcium looping cycles in a lab-scale fluidized be...
Attrition of six different limestones during calcium looping cycles for CO2 capture was studied in a...
The CO2 capture capacity and the extent of particle attrition during simulated calcium looping cycle...
Attrition of a limestone during calcium looping cycles for CO2 capture was studied in a lab-scale f...
The CO2 capture performance and the attrition behavior of a dolomite were assessed during calcium lo...
Attrition of a limestone during calcium looping cycles for CO2 capture was studied in a lab-scale fl...
Attrition of a limestone during calcium looping cycles for CO2 capture was studied in a lab-scale fl...
Attrition of a limestone during calcium looping cycles for CO2 capture was studied in a lab-scale fl...
The effect of steam and sulphur dioxide on CO2 capture by limestone during calcium looping was studi...