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Alternative Clinker Technologies for Reducing Carbon Emissions in Cement Industry: A Critical Review
by
Horta, Ricardo Bayão
, Antunes, Mónica
, Santos, Rodrigo Lino
, Pereira, João
, Rocha, Paulo
, Colaço, Rogério
in
Carbon
/ Carbon dioxide
/ Cement industry
/ Chemical reactions
/ Climate change
/ Clinker
/ Concrete
/ Electrification
/ Emissions
/ Fossil fuels
/ Fuel combustion
/ Kilns
/ Portland cements
/ R&D
/ Research & development
/ Review
/ Rotary kilns
/ Working groups
2021
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Alternative Clinker Technologies for Reducing Carbon Emissions in Cement Industry: A Critical Review
by
Horta, Ricardo Bayão
, Antunes, Mónica
, Santos, Rodrigo Lino
, Pereira, João
, Rocha, Paulo
, Colaço, Rogério
in
Carbon
/ Carbon dioxide
/ Cement industry
/ Chemical reactions
/ Climate change
/ Clinker
/ Concrete
/ Electrification
/ Emissions
/ Fossil fuels
/ Fuel combustion
/ Kilns
/ Portland cements
/ R&D
/ Research & development
/ Review
/ Rotary kilns
/ Working groups
2021
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Do you wish to request the book?
Alternative Clinker Technologies for Reducing Carbon Emissions in Cement Industry: A Critical Review
by
Horta, Ricardo Bayão
, Antunes, Mónica
, Santos, Rodrigo Lino
, Pereira, João
, Rocha, Paulo
, Colaço, Rogério
in
Carbon
/ Carbon dioxide
/ Cement industry
/ Chemical reactions
/ Climate change
/ Clinker
/ Concrete
/ Electrification
/ Emissions
/ Fossil fuels
/ Fuel combustion
/ Kilns
/ Portland cements
/ R&D
/ Research & development
/ Review
/ Rotary kilns
/ Working groups
2021
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Alternative Clinker Technologies for Reducing Carbon Emissions in Cement Industry: A Critical Review
Journal Article
Alternative Clinker Technologies for Reducing Carbon Emissions in Cement Industry: A Critical Review
2021
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Overview
Currently, the production of one ton of ordinary Portland cement (OPC) releases considerable amounts of CO2 into the atmosphere. As the need and demand for this material grows exponentially, it has become a challenge to increase its production at a time when climate-related problems represent a major global concern. The two main CO2 contributors in this process are fossil fuel combustion to heat the rotary kiln and the chemical reaction associated with the calcination process, in the production of the clinker, the main component of OPC. The current paper presents a critical review of the existent alternative clinker technologies (ACTs) that are under an investigation trial phase or under restricted use for niche applications and that lead to reduced emissions of CO2. Also, the possibility of transition of clinker production from traditional rotary kilns based on fuel combustion processes to electrification is discussed, since this may lead to the partial or even complete elimination of the CO2 combustion-related emissions, arising from the heating of the clinker kiln.
Publisher
MDPI AG,MDPI
Subject
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