Carbon Capture and Storage: A Review of Mineral Storage of CO2 in Greece

Author:

Kelektsoglou KyriakiORCID

Abstract

As the demand for the reduction of global emissions of carbon dioxide (CO2) increases, the need for anthropogenic CO2 emission reductions becomes urgent. One promising technology to this end, is carbon capture and storage (CCS). This paper aims to provide the current state-of-the-art of CO2 capure, transport, and storage and focuses on mineral carbonation, a novel method for safe and permanent CO2 sequestration which is based on the reaction of CO2 with calcium or magnesium oxides or hydroxides to form stable carbonate materials. Current commercial scale projects of CCS around Europe are outlined, demonstrating that only three of them are in operation, and twenty-one of them are in pilot phase, including the only one case of mineral carbonation in Europe the case of CarbFix in Iceland. This paper considers the necessity of CO2 sequestration in Greece as emissions of about 64.6 million tons of CO2 annually, originate from the lignite fired power plants. A real case study concerning the mineral storage of CO2 in Greece has been conducted, demonstrating the applicability of several geological forms around Greece for mineral carbonation. The study indicates that Mount Pindos ophiolite and Vourinos ophiolite complex could be a promising means of CO2 sequestration with mineral carbonation. Further studies are needed in order to confirm this aspect.

Publisher

MDPI AG

Subject

Management, Monitoring, Policy and Law,Renewable Energy, Sustainability and the Environment,Geography, Planning and Development

Reference101 articles.

1. Intergovernmental Panel on Climate Change 2013. The Physical Science Basishttp://www.ipcc.ch/report/ar5/wg1/

2. CO2 Emissions from Fuel Combustion, Highlightshttps://webstore.iea.org/co2-emissions-from-fuel-combustion-highlights-2017

3. Paris Agreementhttp://ec.europa.eu/clima/policies/international/negotiations/paris_en

4. Carbon capture and storage (CCS): the way forward

5. A review of developments in carbon dioxide storage

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