Call For Papers

SMAM 2025 will focus in areas of sustainable metallurgy and advanced materials. SMAM 2025 provides a leading international forum that brings together researchers and practitioners from diverse fields with the purpose of exploring the fundamental roles, interactions as well as practical impacts of related fields. The conference programme will include paper presentations and poster sessions, along with prominent keynote speakers and industrial workshops. All submitted papers will be reviewed by experts in the field based on the criteria of originality, significance, quality and clarity.

Topic:

T1: Sustainable Metallurgical Processes
  • Green Extraction Techniques
  • Recycling of Metals
  • Bioleaching and Bioremediation
  • Energy-Efficient Metallurgical Processes
  • Hydrometallurgy Advances
  • Electrochemical Metallurgy
  • Waste Minimization in Metallurgy
  • Life Cycle Assessment in Metallurgy

  • T2: Advanced Materials for Sustainable Applications
  • Lightweight Alloys
  • High-Performance Coatings
  • Smart Materials
  • Biodegradable Composites
  • Nanomaterials for Sustainability
  • Reinforced Sustainable Materials
  • Thermal Management Materials
  • Sustainable Ceramics

  • T3: Recycling and Circular Economy in Metallurgy
  • Closed-Loop Recycling Systems
  • Urban Mining
  • End-of-Life Metal Recovery
  • Material Flow Analysis
  • Policy and Regulation for Recycling
  • Consumer Awareness and Participation
  • Innovative Recycling Technologies
  • Economic Viability of Recycling

  • T4: Environmental Impact and Sustainability Assessment
  • Carbon Footprint of Metallurgical Processes
  • Water Management in Metallurgy
  • Air Quality and Emissions Control
  • Sustainability Metrics and Indicators
  • Impact of Mining on Ecosystems
  • Sustainable Supply Chain Management
  • Environmental Risk Assessment
  • Community Engagement in Sustainable Practices

  • T5: Innovations in Material Characterization and Testing
  • Advanced Characterization Techniques
  • Non-Destructive Testing Methods
  • Microstructural Analysis
  • Mechanical Properties Testing
  • Corrosion Resistance Evaluation
  • Thermal and Electrical Conductivity Testing
  • Fatigue and Fracture Testing
  • Modeling and Simulation of Material Behavior

  • T6: Policy, Education, and Industry Collaboration
  • Sustainable Metallurgy Policies
  • Industry-Academia Partnerships




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