Recipient
York UniversityDepartment
National Research Council CanadaAmount
$300.0K
Province
ONType
Grant
Agreement Number
172-2025-2026-Q3-1035282
Purpose
The Project aims to develop rapid and accurate point-of-need (PoN) tools for real-time, on-site mineral sample analysis to enhance mineral processing efficiency and AI-guided process control. Current methods like Inductively Coupled Plasma mass spectrometry and optical emission spectroscopy are time-consuming or inaccurate. The Project first will extract and concentrate target minerals using ion-imprinted polymers and porous membrane filters to selectively capture and concentrate metal ions. This involves optimizing these materials with real hydro- or solvo-metallurgical samples. Secondly, the Project will develop portable optofluidic and bench-top electrochemical sensors for PoN detection and quantification of ions. These sensors will be integrated with sample preparation devices to create a comprehensive field-deployable system that will be tested against existing methods. The outcomes will support real-time monitoring of mineral processing reactors for efficient metal ion extraction and recycling, contributing to sustainable metal recovery and improved process parameter optimization through AI tools.
York University × National Research Council Canada
9 grants totalling $1.6M
Collaborative Science, Technology and Innovation Program - Collaborative R&D Initiatives
1,000 grants totalling $355.2M
Related Grants
| Recipient | Amount | Program |
|---|---|---|
| University of Ottawa | $3.6M | Collaborative Science, Technology and In... |
| University of Ottawa | $3.6M | Collaborative Science, Technology and In... |
| University of Ottawa | $3.6M | Collaborative Science, Technology and In... |
| University of Ottawa | $3.6M | Collaborative Science, Technology and In... |
| The Governing Council of the University of Toronto | $3.0M | Collaborative Science, Technology and In... |