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Prospects of CCUS technology under resource utilization and environmental risks.

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Carbon dioxide capture, utilization, and storage (CCUS) is vital for climate mitigation but demands significant energy. CCUS offers resource efficiency and socioeconomic benefits, yet poses environmental risks requiring careful management.

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Area of Science:

  • Environmental Science
  • Climate Change Mitigation Technologies
  • Chemical Engineering

Background:

  • Carbon dioxide capture, utilization, and storage (CCUS) is crucial for global climate mitigation.
  • CCUS supports low-carbon fossil fuel use and decarbonization in challenging sectors.
  • Various CCUS technologies present different trade-offs regarding energy, resources, and environmental effects.

Purpose of the Study:

  • To systematically review energy consumption, resource implications, and environmental risks of CCUS technologies.
  • To evaluate the full CCUS chain for a comprehensive understanding.
  • To identify pathways for optimizing CCUS integration and managing associated risks.

Main Methods:

  • Systematic evaluation of energy consumption patterns.
  • Assessment of resource utilization (water, land).
  • Analysis of environmental risks (leakage, acidification, supply chain).

Main Results:

  • CCUS contributes to energy security and enables negative emissions but requires substantial energy input.
  • Improvements in water use and land productivity are achievable, offering socioeconomic advantages.
  • Large-scale CCUS deployment introduces risks like CO2 leakage, acidification, and supply-chain vulnerabilities.

Conclusions:

  • CCUS technologies present a complex balance of benefits and risks.
  • Optimizing CCUS integration requires strategic development pathways.
  • Informed policy and technological advancements are essential for effective CCUS risk management.