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Remanufacturing and Advanced Machining Processes for New Materials and Components : remanufacturing and advanced machining processes / / Е. S. Gevorkyan [and six others]
Remanufacturing and Advanced Machining Processes for New Materials and Components : remanufacturing and advanced machining processes / / Е. S. Gevorkyan [and six others]
Autore Gevorkyan Е.S.
Pubbl/distr/stampa London : , : Taylor & Francis, , 2022
Descrizione fisica 1 online resource (224 pages) : illustrations
Disciplina 621.9
Soggetto topico Machine-tools - Design and construction
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Chapter 1. Contemporary machining processes for new materialsChapter 2. Contemporary methods of protection and restoration of componentsChapter 3. Smart machining processes References Index.
Record Nr. UNINA-9910522598703321
Gevorkyan Е.S.  
London : , : Taylor & Francis, , 2022
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui
Synthetic sorbent materials based on metal sulphides and oxides / / D.S. Sofronov, K.N. Belikov, M. Rucki, S.N. Lavrynenko, Z. Siemi?tkowski, E. Yu . Bryleva, and O.M. Odnovolova
Synthetic sorbent materials based on metal sulphides and oxides / / D.S. Sofronov, K.N. Belikov, M. Rucki, S.N. Lavrynenko, Z. Siemi?tkowski, E. Yu . Bryleva, and O.M. Odnovolova
Autore Sofronov D. S.
Edizione [1st.]
Pubbl/distr/stampa Taylor & Francis, 2021
Descrizione fisica 1 online resource (127pages) : illustrations
Disciplina 668.42
660.284235
Soggetto topico Synthetic products
Sorbents
ISBN 9781003102335
1003102336
9781000215090
1000215091
9781000215151
1000215156
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Cover -- Half Title -- Title Page -- Copyright Page -- Table of Contents -- Authors -- Acknowledgments -- Abbreviations and Nomenclature -- Introduction -- 1. Synthesis of Zinc, Copper, Cadmium, and Iron Sulfides and Their Sorption Properties -- 1.1 Methodology of Synthesis -- 1.1.1 Overview and Classification of Synthesis Methods -- 1.1.1.1 High-Temperature Methods -- 1.1.1.2 Solvothermal Decomposition Method -- 1.1.2 Methodology and Equipment -- 1.1.3 Procedures and Reactions -- Acknowledgment -- 1.2 Precipitation with Sodium Sulfide -- 1.3 Particles Precipitation Out of Thiourea Solutions -- 1.3.1 Effect of Chemical Composition of the Reagent Environment on the Particle Formation of Zinc, Copper, and Cadmium Sulfides -- 1.3.1.1 pH effect -- 1.3.1.2 Concentration Effect -- 1.3.1.3 Effect of the Anion Nature -- 1.3.2 Impact of the Organic Additives -- 1.4 Effect of Microwave Activation on the Zinc, Cadmium, and Copper Sulfide Particles Formation -- 1.4.1 Effect of pH and Thiourea Concentration Combined with Microwave Activation -- 1.4.2 Temperature Effect -- 1.5 Effect of Metal Ion Doping on the Zinc Sulfide Particles Formation -- 1.6 Iron Sulfide FeS Formation -- 1.7 Sorption Properties of the Metal Sulfide -- 1.7.1 pH Impact on the Metal Sulfide Extraction Efficiency and Particles Stability -- 1.7.2 Impact of Specific Surface on the Sorption Capacity of Particles -- 1.7.3 Sorption Properties of Zinc Sulfide Particles Doped with Copper, Manganese, and Cerium -- 1.8 Conclusions on the Sorption Efficiency of Metal Sulfides -- 2. Formation and Sorption Properties of Iron Oxides and Manganese Oxyhydroxide -- 2.1 Synthesis of Iron Oxide -- 2.1.1 Synthesis of the Hematite Particles α-Fe[sub(2)]O[sub(3)] -- 2.1.2 Formation of Maghemite γ-Fe[sub(2)]O[sub(3)] Particles.
2.1.3 Peculiarities of the Fe[sub(3)]O[sub(4)] Particle Formation from the Aqueous Solutions -- 2.2 Synthesis of Manganese Dioxide and Oxyhydroxide -- 2.2.1 Synthesis of Manganese Oxyhydroxide in Alkaline Solutions -- 2.2.2 Synthesis of Manganese Dioxide -- 2.3 Sorption Characteristics of Iron Oxides and Manganese Dioxide and Oxyhydroxide -- 2.3.1 Iron Oxides -- 2.3.2 Manganese Oxyhydroxide and Dioxide -- 2.4 Conclusions -- Final Remarks -- References -- Index.
Record Nr. UNINA-9910831852203321
Sofronov D. S.  
Taylor & Francis, 2021
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui

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