This book delves into the novel theory of supercritical adsorption and its practical applications in energy storage and environmental management. It is divided into two parts. The first part provides a comprehensive theory of supercritical adsorption, illustrated with examples that showcase significant progress in both applied and theoretical research due to advancements in adsorption theory. Building on this theoretical foundation, the second part demonstrates how supercritical adsorption theory can address research questions in the fields of energy and environmental science. It explores how the ideas, chemical reactions, and materials/adsorbents used in supercritical adsorption research can transform approaches to environmental challenges. Additionally, it highlights how adsorptive technology enhances natural gas sweetening and methane enrichment from low-quality gas. More importantly, it presents an efficient and feasible strategy for achieving carbon circulation within the energy consumption and generation cycle. Overall, this book has the potential to make a substantial contribution to the fields of chemical engineering, energy, and environmental science.
Zhou
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Weitere Infos & Material
Preface
Part I: Progress in Adsorption
Chapter 1. Classic Adsorption Theory
Chapter 2. Acquisition of Supercritical Adsorption Isotherms
Chapter 3. Collection of Supercritical Adsorption Isotherms
Chapter 4. Theoretical Basis of Supercritical Adsorption
Part II. Effect of Adsorption Progress on Energy and Environment
Chapter 5. Carbon Reduction makes Coal Power Emission-Free
Chapter 6. Adsorption/Reaction Compound Function removes Sulfur from Oil Fuels
Chapter 7. Adsorptive Approaches for Methane-Majored Fuels
Chapter 8. Studies on Hydrogen Energy
Epilogue
Li Zhou was previously a professor working in the School of Chemical Engineering at Tianjin University, China. He retired from this University in 2009. He was served as Director Board Member of the International Adsorption Society from 2004-2010.