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Advances in Synthesis Gas: Syngas Purification and Separation

Objektkategorie:
Elektronische Ressource
Verlag:
Elsevier
Veröffentlichungsort:
San Diego
Entstehungszeit:
2022
Umfang, Illustration, Format:
1 online resource (476 pages)
Sprache:
Englisch
Bereitstellende Institution:
Abstract:
Intro -- Advances in Synthesis Gas:Methods, Technologies and Applications: Volume 2: Syngas Purification and Separation -- Copyright -- Contents -- Contributors -- About the Editors -- Preface -- Reviewer Acknowledgments -- Section 1: Absorption techniques for syngas purification -- Chapter 1: Characteristics of syngas impurities -- Physical and chemical properties -- 1. Introduction -- 2. Syngas impurities -- 3. Properties of syngas impurities -- 4. Purification technologies -- 4.1. Acid gas removal (AGR) processes -- 4.1.1. H2S and CO2 removal -- Physical absorption processes -- Chemical absorption processes -- Adsorption processes -- 4.1.2. COS removal -- 4.1.3. Trace contaminants removal -- 4.2. Nitrogen containing compounds removal -- 4.2.1. HCN removal -- 4.2.2. N2 removal -- 4.2.3. NH3 removal -- 4.3. HCl removal -- 4.4. Hg removal -- 4.5. Alkalis and heavy metals -- 4.6. Tar removal -- 5. Conclusion -- Chapter 2: Syngas purification by common solvents -- 1. Introduction -- 2. Basic concepts of syngas purification by common solvents -- 3. Commercially available solvents for syngas purification -- 3.1. Amines -- 3.2. Hot potassium carbonate -- 3.3. Chilled ammonia -- 3.4. Physical solvents -- 3.5. Ionic liquids -- 4. Process integration approaches for enhanced performance -- 5. Effect of the technology selection on the overall efficiency of an ammonia production plant -- 6. Conclusion and future outlook -- A. Selected stream properties in the chemical and physical absorption-based syngas purification units -- Chapter 3: Syngas purification by ionic liquids and DESs -- 1. Introduction -- 2. Overview of impurities -- 3. Properties of IL and DES useful for syngas cleanup -- 3.1. Properties of ionic liquids involved in carbon capture -- 3.2. Properties of deep eutectic solvents involved in carbon capture.
Objekttext:
Description based on publisher supplied metadata and other sources
Universität Erfurt
Forschungsbibliothek Gotha
Schloss Friedenstein
Schlossplatz 1
99867 Gotha
+49 361 737-5540
bibliothek.gotha(at)uni-erfurt.de
Datensatz angelegt am:
2023-04-12
Zuletzt geändert am:
2022-10-28
In Portal übernommen am:
2023-04-12