Editorial for Special Issue: “Current Status of Low-Grade Minerals and Mine Wastes Recovery: Reaction Mechanism, Mass Transfer, and Process Control”
- Section 1: Reaction mechanisms of chemical/bio-leaching—includes the leaching kinetics of copper sulfides, assisted leaching (chloride acidic leaching, iodide-assisted leaching, etc.), in situ leaching of uranium and salt deposits, etc.
- Section 2: Process detection, characterization, and visualization—includes the detection of reaction products, the visualization of fluid flow and mass transfer, the pore structure characterization of leaching systems (ore-packed beds, etc.), microbial successions of leaching bacteria, etc.
- Section 3: Recovery, recycling, and reuse of mine wastes—includes cleaner leaching, disposal and production methods (dump leaching, etc.), the recovery of mine waste (waste rock, tailings, etc.), the assessment of operations problems, etc.
Funding
Conflicts of Interest
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Yin, S.; Wang, L. Editorial for Special Issue: “Current Status of Low-Grade Minerals and Mine Wastes Recovery: Reaction Mechanism, Mass Transfer, and Process Control”. Minerals 2023, 13, 778. https://doi.org/10.3390/min13060778
Yin S, Wang L. Editorial for Special Issue: “Current Status of Low-Grade Minerals and Mine Wastes Recovery: Reaction Mechanism, Mass Transfer, and Process Control”. Minerals. 2023; 13(6):778. https://doi.org/10.3390/min13060778
Chicago/Turabian StyleYin, Shenghua, and Leiming Wang. 2023. "Editorial for Special Issue: “Current Status of Low-Grade Minerals and Mine Wastes Recovery: Reaction Mechanism, Mass Transfer, and Process Control”" Minerals 13, no. 6: 778. https://doi.org/10.3390/min13060778
APA StyleYin, S., & Wang, L. (2023). Editorial for Special Issue: “Current Status of Low-Grade Minerals and Mine Wastes Recovery: Reaction Mechanism, Mass Transfer, and Process Control”. Minerals, 13(6), 778. https://doi.org/10.3390/min13060778