Carbon Capture Technologies: Research, Economics, and Integration
*Corresponding Author: Dr. Michael Fraser, Dept. of Chemical Engineering University of Queensland, Australia, Email: m.fraser@uq-demo.auReceived Date: Mar 01, 2025 / Accepted Date: Mar 31, 2025 / Published Date: Mar 31, 2025
Citation: Fraser DM (2025) Carbon Capture Technologies: Research, Economics, and Integration. Innov Ener Res 14: 447.DOI: 10.4172/2576-1463.1000447
Copyright: © 2025 Dr. Michael Fraser This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permitsunrestricted use, distribution and reproduction in any medium, provided the original author and source are credited.
Abstract
This compilation synthesizes current advancements in carbon capture technologies. It reviews established methods like precombustion, post-combustion, and oxy-fuel combustion, alongside emerging direct air capture and membrane-based systems. Research into novel porous materials, solid sorbents, and ionic liquids for enhanced CO₂ capture is highlighted. The techno-economic feasibility, energy efficiency, and environmental implications of these approaches are evaluated, with a focus on industrial applications and integration with renewable energy sources to achieve scalable and cost-effective carbon emission reduction strategies.

