• Home
  • /
  • Course
  • /
  • Repurposing Zinc Smelter Waste into Iron and Zinc Nanoparticles

Repurposing Zinc Smelter Waste into Iron and Zinc Nanoparticles

INR ₹2,499.00 INR ₹24,999.00Price range: INR ₹2,499.00 through INR ₹24,999.00

The Repurposing Zinc Smelter Waste into Iron and Zinc Nanoparticles course offers a comprehensive guide to transforming industrial zinc smelter waste into high-value nanomaterials. This course introduces the fundamental principles of nanoparticle synthesis, sustainable recycling, and the environmental and economic benefits of repurposing zinc waste.

Feature
Details
Course Format
Online structured program
Duration
3 Weeks
Level
Intermediate to Advanced
Discipline
Nanotechnology, Materials Science, Environmental Engineering
Learning Style
Conceptual foundations + hands-on lab simulations
Techniques Covered
Nanoparticle synthesis, SEM/TEM characterization, chemical processing
Domain Relevance
Waste management, sustainable materials, industrial nanotechnology

About the Course
This program explores repurposing zinc smelter waste into iron and zinc nanoparticles for sustainable, high-value applications. Participants learn the chemistry, nanoparticle synthesis principles, and characterization methods to evaluate size, morphology, and stability.
The course bridges industrial waste management with nanomaterials applications, including medicine, environmental remediation, and electronics. Learners gain the ability to design nanoparticles from industrial by-products, understand sustainability implications, and explore industrial-scale production.

Why This Topic Matters
  • Environmental mitigation: Reduces hazardous waste entering landfills and water streams.
  • Resource recovery: Produces iron and zinc nanoparticles with high industrial demand.
  • Sustainable manufacturing: Converts waste into functional materials, following circular economy principles.
  • Industrial innovation: Enables applications in medicine, catalysis, electronics, and environmental remediation.

What Participants Will Learn
• Nanoparticle synthesis fundamentals from industrial waste
• Chemical processes for converting zinc smelter residues
• Characterization: SEM, TEM, XRD, DLS analysis
• Optimization of nanoparticle size, shape, and stability
• Applications in medicine, environmental cleanup, and energy storage
• Sustainability and environmental life-cycle considerations

Course Structure / Table of Contents
Module 1 — Introduction to Nanotechnology and Industrial Waste Repurposing
  • Nanotechnology in materials engineering
  • Zinc smelting processes and waste types
  • Role of nanoparticles in enhancing material properties
  • Environmental and industrial relevance
Module 2 — Chemical Processes in Nanoparticle Synthesis
  • Methods for synthesizing iron and zinc nanoparticles from smelter waste
  • Reaction parameters affecting size, shape, and stability
  • Waste-to-resource chemistry principles
  • Safety and chemical handling considerations
Module 3 — Characterization and Applications
  • Physical and chemical characterization: SEM, TEM, XRD, DLS
  • Evaluating morphology, surface area, and crystallinity
  • Applications in medicine, environmental remediation, electronics, and energy storage
  • Case studies of industrial and research implementations
Module 4 — Scaling, Sustainability, and Future Prospects
  • Industrial-scale synthesis challenges
  • Commercial applications and market potential
  • Sustainability and environmental impact
  • Emerging trends in nanotechnology for waste repurposing

Tools, Techniques, or Platforms Covered
Chemical nanoparticle synthesis
SEM/TEM characterization
XRD/DLS analysis
Lab protocols for waste processing
Industrial-scale synthesis considerations
Sustainability assessment tools

Who Should Attend
  • Nanotechnology researchers and students
  • Materials scientists and engineers
  • Environmental scientists and sustainability professionals
  • Chemical engineering professionals in waste management or process development
  • Industry professionals exploring value-added recycling solutions

Frequently Asked Questions
What is the focus of this course?
It teaches conversion of zinc smelter waste into iron and zinc nanoparticles for industrial and environmental applications.
Who should enroll?
Nanotechnology researchers, environmental engineers, materials scientists, chemical engineers, and students in related fields.
Are prior laboratory skills required?
Basic chemistry knowledge is recommended; practical concepts are taught during the course.
What applications can these nanoparticles have?
Drug delivery, antimicrobial coatings, pollutant removal, catalysis, energy storage, and industrial materials.
Will I gain hands-on experience?
Yes. Participants learn synthesis techniques, characterization methods, and application testing in real-world scenarios.
Category

E-LMS, E-LMS+Video, E-LMS+Video+Live Lectures

Reviews

There are no reviews yet.

Be the first to review “Repurposing Zinc Smelter Waste into Iron and Zinc Nanoparticles”

Your email address will not be published. Required fields are marked *

Certificate Image

What You’ll Gain

  • Full access to e-LMS
  • Publication opportunity
  • Self-assessment & final exam
  • e-Certificate

All Live Workshops

Feedbacks

Sometimes there was no pause between steps and it was easy to get lost. When teaching how to use More tools one must repeat each step more than once making sure everyone follows.
Celia Garcia Palma : 10/12/2024 at 1:05 pm

I thank you for delivering such an informative and interesting workshop. I would like to work with More you to learn and acquire more knowledge from you.
USHASI DAS : 01/07/2025 at 3:03 pm

Green Synthesis of Nanoparticles and their Biomedical Applications

The workshop was valuable and content was informative


Rachana Khati : 04/16/2024 at 3:03 pm

AI-Enabled Nano-Biosensors for Ultra-Sensitive Diagnostics

Very informative workshop


Vaibhavi Meghraj Desai : 11/07/2025 at 6:41 pm

Generative AI and GANs

Good workshop


Noelia Campillo Tamarit : 11/09/2024 at 8:47 pm

Bacterial Comparative Genomics

It would be more helpful if the prerequisites for this workshop were made available to the More participants atleast a day in advance so that all the installations are made by the participants and kept ready. That would allow the participants to work along side the instructions so that any issues can be resolved right away
Ekta Kamble : 04/01/2024 at 6:21 pm

Predicting 3D Structures of Proteins and Nucleic Acids

I sincerely appreciate the mentor’s clear and engaging way of explaining complex concepts related to More 3D structure prediction. The session was a bit unorganized due to his technical issue of device other than that it was greatly informative
Chanika Mandal : 05/20/2025 at 9:28 pm

The Green NanoSynth Workshop: Sustainable Synthesis of NiO Nanoparticles and Renewable Hydrogen Production from Bioethanol

Though he explained all things nicely, my suggestion is to include some more examples related to More hydrogen as fuel, and the necessary action required for its safety and wide use.
Pushpender Kumar Sharma : 02/27/2025 at 9:29 pm