Treatise on Process Metallurgy: Volume 5: Energy, Environment, and Future Aspects of Process Metallurgy
Editat de Seshadri Seetharaman, Alexander McLean, Roderick Guthrie, Sridhar Seetharamanen Limba Engleză Hardback – 18 iun 2025
- Covers sustainable development of metals, insight on their current and forecast supply and demand, emissions reduction and use of energy in the metallurgical industry, and more
- Features simulation-based analysis of the resource efficiency of the circular economy, and the enabling role of metallurgical infrastructure as a part of recycling with reference to slags, utilization of metallurgical scrap form, and more
- Discusses the future outlook of metal production with particular attention paid to raw materials, energy availability, CO2 emissions, flash smelting, rotary hearth furnaces, and hydrogen steelmaking
Preț: 1738.02 lei
Preț vechi: 2385.60 lei
-27%
Puncte Express: 2607
Carte tipărită la comandă
Livrare economică 04-18 septembrie
Livrare prin curier în România Termenul estimat este afișat lângă disponibilitate.
Transport gratuit pentru acest produs Plată online sau ramburs, în funcție de opțiunile comenzii.
Retur gratuit în 14 zile Comandă securizată și suport în română.
Specificații
ISBN-13: 9780443337321
ISBN-10: 0443337322
Pagini: 410
Dimensiuni: 216 x 276 x 27 mm
Greutate: 1.39 kg
Editura: ELSEVIER SCIENCE
ISBN-10: 0443337322
Pagini: 410
Dimensiuni: 216 x 276 x 27 mm
Greutate: 1.39 kg
Editura: ELSEVIER SCIENCE
Cuprins
1. Environmental Aspects
1.1 Sustainability and the role of process metallurgy
1.2 Energy Resources, Role of energy and Use in Metallurgical Industries, fossil and renewable energy sources
1.3.1 Life Cycle Assessment and Related Methodologies
1.3.2 Material Flow Analysis
1.3.3 Simulation-based analysis of the resource efficiency of the circular economy – the enabling role of metallurgical infrastructure
1.4.1 Ironmaking and Steelmaking Slags
1.4.2 Ironmaking and Steelmaking Dusts
1.4.3 Steel scraps
1.5 Total recycling of dross from aluminium remelting
2. Future of Process Metallurgy
2.1 Global outlook-raw materials
2.2.1 Challenges towards a Low-Carbon Sintering Process of Iron Ores
2.2.2 Iron Blast Furnace Process
2.3.1. COURSE50”-CO2 Ultimate Reduction in Steelmaking process by innovative technology for cool Earth 50: CO2 emission reduction technology in Japan
2.3.2 Flash Ironmaking Technology: A new ironmaking technology with greatly reduced CO2 emissions and energy consumption
2.3.3 FINEX® Process - Process of Promise
2.3.4 Rotary Hearth Furnace Process
2.3.5. Hydrogen steelmaking
1.1 Sustainability and the role of process metallurgy
1.2 Energy Resources, Role of energy and Use in Metallurgical Industries, fossil and renewable energy sources
1.3.1 Life Cycle Assessment and Related Methodologies
1.3.2 Material Flow Analysis
1.3.3 Simulation-based analysis of the resource efficiency of the circular economy – the enabling role of metallurgical infrastructure
1.4.1 Ironmaking and Steelmaking Slags
1.4.2 Ironmaking and Steelmaking Dusts
1.4.3 Steel scraps
1.5 Total recycling of dross from aluminium remelting
2. Future of Process Metallurgy
2.1 Global outlook-raw materials
2.2.1 Challenges towards a Low-Carbon Sintering Process of Iron Ores
2.2.2 Iron Blast Furnace Process
2.3.1. COURSE50”-CO2 Ultimate Reduction in Steelmaking process by innovative technology for cool Earth 50: CO2 emission reduction technology in Japan
2.3.2 Flash Ironmaking Technology: A new ironmaking technology with greatly reduced CO2 emissions and energy consumption
2.3.3 FINEX® Process - Process of Promise
2.3.4 Rotary Hearth Furnace Process
2.3.5. Hydrogen steelmaking