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CO^sub 2^ sequestration using accelerated gas-solid carbonation of pre-treated EAF steel-making bag house dust
Mineral CO... sequestration is a promising process for the reduction of carbon dioxide emissions to the atmosphere. In this paper, alkaline calcium-rich dust particles collected from bag filters of electric arc furnaces (EAF) for steel making were utilized as a viable raw material for mineral CO......
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Published in: | Journal of environmental management 2015-06, Vol.156, p.218 |
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creator | El-Naas, Muftah H El Gamal, Maisa Hameedi, Suhaib Mohamed, Abdel-Mohsen O |
description | Mineral CO... sequestration is a promising process for the reduction of carbon dioxide emissions to the atmosphere. In this paper, alkaline calcium-rich dust particles collected from bag filters of electric arc furnaces (EAF) for steel making were utilized as a viable raw material for mineral CO... sequestration. The dust particles were pre-treated through hydration, drying and screening. The pre-treated particles were then subjected to direct gas-solid carbonation reaction in a fluidized-bed reactor. The carbonated products were characterized to determine the overall sequestration capacity and the mineralogical structures. Leaching tests were also performed to measure the extracted minerals from the carbonated dust and evaluate the carbonation process on dust stabilization. The experimental results indicated that CO... could be sequestered using the pre-treated bag house dust. The maximum sequestration of CO... was 0.657 kg/kg of dust, based on the total calcium content. The highest degree of carbonation achieved was 42.5% and the carbonation efficiency was 69% at room temperature. (ProQuest: ... denotes formulae/symbols omitted.) |
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In this paper, alkaline calcium-rich dust particles collected from bag filters of electric arc furnaces (EAF) for steel making were utilized as a viable raw material for mineral CO... sequestration. The dust particles were pre-treated through hydration, drying and screening. The pre-treated particles were then subjected to direct gas-solid carbonation reaction in a fluidized-bed reactor. The carbonated products were characterized to determine the overall sequestration capacity and the mineralogical structures. Leaching tests were also performed to measure the extracted minerals from the carbonated dust and evaluate the carbonation process on dust stabilization. The experimental results indicated that CO... could be sequestered using the pre-treated bag house dust. The maximum sequestration of CO... was 0.657 kg/kg of dust, based on the total calcium content. The highest degree of carbonation achieved was 42.5% and the carbonation efficiency was 69% at room temperature. (ProQuest: ... denotes formulae/symbols omitted.)</description><identifier>ISSN: 0301-4797</identifier><identifier>EISSN: 1095-8630</identifier><identifier>CODEN: JEVMAW</identifier><language>eng</language><publisher>London: Academic Press Ltd</publisher><subject>Carbon dioxide ; Carbon sequestration ; Dust ; Emissions control ; Furnaces ; Leaching</subject><ispartof>Journal of environmental management, 2015-06, Vol.156, p.218</ispartof><rights>Copyright Academic Press Ltd. 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In this paper, alkaline calcium-rich dust particles collected from bag filters of electric arc furnaces (EAF) for steel making were utilized as a viable raw material for mineral CO... sequestration. The dust particles were pre-treated through hydration, drying and screening. The pre-treated particles were then subjected to direct gas-solid carbonation reaction in a fluidized-bed reactor. The carbonated products were characterized to determine the overall sequestration capacity and the mineralogical structures. Leaching tests were also performed to measure the extracted minerals from the carbonated dust and evaluate the carbonation process on dust stabilization. The experimental results indicated that CO... could be sequestered using the pre-treated bag house dust. The maximum sequestration of CO... was 0.657 kg/kg of dust, based on the total calcium content. The highest degree of carbonation achieved was 42.5% and the carbonation efficiency was 69% at room temperature. 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In this paper, alkaline calcium-rich dust particles collected from bag filters of electric arc furnaces (EAF) for steel making were utilized as a viable raw material for mineral CO... sequestration. The dust particles were pre-treated through hydration, drying and screening. The pre-treated particles were then subjected to direct gas-solid carbonation reaction in a fluidized-bed reactor. The carbonated products were characterized to determine the overall sequestration capacity and the mineralogical structures. Leaching tests were also performed to measure the extracted minerals from the carbonated dust and evaluate the carbonation process on dust stabilization. The experimental results indicated that CO... could be sequestered using the pre-treated bag house dust. The maximum sequestration of CO... was 0.657 kg/kg of dust, based on the total calcium content. The highest degree of carbonation achieved was 42.5% and the carbonation efficiency was 69% at room temperature. 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source | International Bibliography of the Social Sciences (IBSS); ScienceDirect Freedom Collection 2022-2024 |
subjects | Carbon dioxide Carbon sequestration Dust Emissions control Furnaces Leaching |
title | CO^sub 2^ sequestration using accelerated gas-solid carbonation of pre-treated EAF steel-making bag house dust |
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