Flexible Carbon Capture and Utilization technologies in future energy systems and the utilization pathways of captured CO2
Гибкие технологии улавливания и использования углерода в будущих энергетических системах и направления использования уловленного CO₂
2019-08-22
SCID: 54.1/ygfawtzk
Discuss with AI
100% renewable energy systemsCO2 utilization pathwayscarbon capture and utilizationflexible operationvariable renewable energy
Figures from the paper
Abstract (AI)
Future 100% renewable energy systems will have to integrate different sectors, including provision of power, heating, cooling and transport. Such energy systems will be needed to mitigate the negative impacts of economic development based on the use of fossil fuels, but will rely on variable renewable energy resources. As two-thirds of global greenhouse gas emissions can be attributed to fossil fuel combustion, decarbonization of energy systems is imperative for combating the climate change. Integrating future energy systems with CO2 capture and utilization technologies can contribute to deep decarbonization. As these technologies can be operated flexibly, they can be used to balance the grid to allow for high levels of variable renewable energy in the power mix. The captured CO2 can be either utilized as a feedstock for various value-added applications in the chemical industry and related sectors such as the food and beverage industries. This paper reviews the state-of-the-art literature on CO2 capture and utilization technologies, with an emphasis on their potential integration into a low-carbon, high-renewables penetration grid. The potential market size for CO2 as raw material is also elaborated and discussed. The review paper provides an insight to the development and the technological needs of different energy system sectors, as well the limitations, challenges and research gaps to the integration of the variable renewable energy sources and flexible carbon capture and utilization technologies.
Key Findings
1
Captured CO2 can serve as a feedstock for value-added products in chemical, food, beverage, and related industries.
2
Flexible operation of carbon capture and utilization technologies can help balance grids with high penetration of variable renewable energy.
3
Integrating carbon capture and utilization technologies with future renewable energy systems can support deep decarbonization across power, heating, cooling, and transport sectors.
4
Major barriers include technological limitations, variability of renewable resources, unresolved research gaps, and the need for further development across energy-system sectors.
5
The review evaluates the state of the art, potential CO2 raw-material market size, sectoral technology needs, and integration challenges.
Research Object
Flexible carbon capture and utilization technologies integrated into future low-carbon, high-renewables energy systems, including captured CO2 utilization pathways
Research Subject
Their integration potential, operational flexibility, grid-balancing role, utilization pathways, market potential, technological needs, limitations, challenges, and research gaps
Publication Details
Publication Date
2019-08-22
Journal
Publisher
ISSN
Open access PDF
Access Type
Author Information
Download PDF
Subscribe to digest