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Life cycle assessment for sustainable mining /

Detalles Bibliográficos
Clasificación:Libro Electrónico
Autores principales: Farjana, Shahjadi Hisan (Autor), Mahmud, M. A. Parvez (Autor), Huda, Nazmul (Autor)
Formato: Electrónico eBook
Idioma:Inglés
Publicado: Amsterdam ; Cambridge, MA : Elsevier, [2021]
Temas:
Acceso en línea:Texto completo
Tabla de Contenidos:
  • Front Cover
  • Life Cycle Assessment for Sustainable Mining
  • Life Cycle Assessment for Sustainable Mining
  • Copyright
  • Contents
  • Preface
  • 1
  • Introduction to Life Cycle Assessment
  • Definition of Life Cycle Assessment
  • Applications of LCA
  • Use of Environmental Information from LCA in Decision-making
  • Levels of LCA
  • Essential Steps of Life Cycle Assessment
  • Goal and Scope Definition
  • Life Cycle Inventory Analysis
  • Life Cycle Impact Assessment
  • Results Interpretation
  • Advantages and Limitations of LCA
  • Impact Categories
  • Acidification Potential
  • Global Warming Potential
  • Ozone Depletion Potential
  • Smog Creation Potential
  • Eutrophication Potential
  • Human Toxicity Potential
  • Ecotoxicity Potential
  • Particulate Matter Formation
  • 2
  • Life Cycle Assessment in Mining Industries
  • Introduction
  • Analysis Methodology
  • Goal and Scope Definition in LCA of Mining
  • Life Cycle Inventory Analysis
  • Life Cycle Impact Assessment Methods
  • Results Analysis based on Metal Mining Industries
  • LCA in Aluminium Mining
  • LCA in Coal Mining
  • LCA in Copper Mining
  • LCA in Ferroalloy Mining
  • LCA in Gold Mining
  • LCA in Iron Mining
  • LCA in Nickel Mining
  • LCA in Rare-Earth Elements Mining
  • LCA in Stainless Steel Mining
  • LCA in Uranium Mining
  • LCA in Zinc Mining
  • LCA Studies of Other Metals
  • Discussion
  • Conclusion
  • References
  • 3
  • Life cycle Assessment of Ilmenite and Rutile Production in Australia
  • Introduction
  • Ilmenite-Rutile Mining and Processing
  • Life Cycle Assessment Methodology
  • Goal and Scope Definition
  • Life Cycle Inventory Analysis
  • Life Cycle Impact Assessment
  • Comparative Impact Assessment Results using ILCD Method
  • Comparative Impact Assessment Results from Cumulative Energy Demand Method
  • Sensitivity Analysis of Ilmenite and Rutile Extraction Routes
  • Conclusion
  • References
  • 4
  • Comparative Life Cycle Assessment of Uranium Extraction Processes
  • Introduction
  • Uranium Mining Process
  • Sustainability Challenges of Uranium Mining
  • Materials and Method
  • Goal and Scope De nition
  • Life Cycle Inventory Analysis
  • Life Cycle Impact Analysis
  • Open-pit Mining
  • Underground Mining
  • In-situ Leaching
  • Results Interpretation and Discussion
  • Comparative Assessment of Life cycle Assessment Results
  • Comparative Assessment of Results using the Cumulative Energy Demand Method
  • Sensitivity Analysis
  • Conclusion
  • References
  • 5
  • Life Cycle Assessment of Copper-Gold- Lead-Silver-Zinc Beneficiation Process
  • Introduction
  • Copper-Gold-Lead-Silver-Zinc Beneficiation Process
  • Life Cycle Assessment
  • Results from the Life Cycle Assessment
  • Sensitivity Analysis based on Electricity Mix and Energy Mix
  • Discussion
  • Limitations and Future Recommendations
  • Conclusion
  • References
  • 6
  • Life Cycle Assessment of Solar Process Heating System Integrated in Mining Process