a. Synthesis of artificial construction geomaterials (ACG) from mine waste that can substitute natural geomaterials in earthworks and other infrastructure projects. b. Explore the feasibility of accelerated carbonation (AC) that can be later develope
· Development of green solvent for use in leaching process for dissolution of valuable metals such as lithium, cobalt, nickel and manganese. · Development of a pilot scale setup to demonstrate the end product in form of highly pure metals. · Sever
1. Implement a Dynamic Cooling System with Real-Time Monitoring and Adaptive Control: Create a dynamic cooling system that incorporates real-time monitoring and advanced control algorithms (e.g., AI or machine learning) to adapt cooling rates based o
a.Develop a Wireless NONEL Initiation System: Create and implement a non explosive, high-voltage spark ignition system (ESI) that operates wirelessly, removing the need for manual wiring and retrieval. b. Enhance Security Features: Add password prote
(a) First version of the AI driven models will be shared with CBM industries; along with open-source code and user manual, (b) spatially-explicit dataset of water chemistries that will be made available on Open Government Data platform in a general w
The project is expected to deliver significant advancements in liquid chemical analysis for mining and industrial applications. A primary outcome will be a portable HSI system capable of analyzing bothstatic and dynamic liquid samples with precision,
a.Optimal deposition parameters for remanufacturing of stainless steel and Ti-alloy parts using μ-TIG method b. Portable system for on-site acquisition of the geometry and shape of the defect of worn-out components c. A portable FSD system for contr
1. Development of a small-scale mine pit to replicate problems associated with the rubble-based microcavities with and without water flow 2. Collection of geophysical data using electrical resistivity technique, MASW and ground penetrating radar tech
1. An advanced recycling technique for recovering valuable metals (Li, Co, Mn, Ni) from spent LIBs with high purity and yield through the hydrometallurgy method and recycling these metals into an environmental catalyst will be the overall outcome. 2.