As global carbon dioxide (CO₂) emissions drive climate change, the development of carbon capture and conversion technologies has become critical. Recent advances in nanomaterials enhance the efficiency, selectivity, and economic viability of CO₂ capture processes by offering high surface areas, tunable pore structures, and unique catalytic properties. Various materials have demonstrated potential for capturing CO₂ from industrial emissions and from the atmosphere. Beyond capture, innovative conversion technologies enable the transformation of CO₂ into value-added products, including fuels, chemicals, and building materials, contributing to a circular carbon economy. However, the large-scale deployment of these technologies raises environmental challenges related to energy consumption, material sustainability, toxicity, and lifecycle impacts. Recent Advances in CO2 Capture and Conversion: Nanomaterials, Applications, and Environmental Considerations explores the recent advances in CO2 capture and conversion and its environmental protection technologies. It explores recent advances in the field of advanced nanomaterials, including composites materials, thin films, coatings, and novel 2D and 3D materials, revealing cutting-edge solutions to combat climate change. This book covers topics such as pollution control, nanomaterials, and materials science, and is a useful resource for engineers, academicians, researchers, and environmental scientists.
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