Aikawa, K.; Ito, M.; Kusano, A.; Jeon, S.; Park, I.; Hiroyoshi, N.
Development of a Sustainable Process for Complex Sulfide Ores Containing Anglesite: Effect of Anglesite on Sphalerite Floatability, Enhanced Depression of Sphalerite by Extracting Anglesite, and Recovery of Extracted Pb2+ as Zero-Valent Pb by Cementation Using Zero-Valent Fe. Minerals 2022, 12, 723.
https://doi.org/10.3390/min12060723
AMA Style
Aikawa K, Ito M, Kusano A, Jeon S, Park I, Hiroyoshi N.
Development of a Sustainable Process for Complex Sulfide Ores Containing Anglesite: Effect of Anglesite on Sphalerite Floatability, Enhanced Depression of Sphalerite by Extracting Anglesite, and Recovery of Extracted Pb2+ as Zero-Valent Pb by Cementation Using Zero-Valent Fe. Minerals. 2022; 12(6):723.
https://doi.org/10.3390/min12060723
Chicago/Turabian Style
Aikawa, Kosei, Mayumi Ito, Atsuhiro Kusano, Sanghee Jeon, Ilhwan Park, and Naoki Hiroyoshi.
2022. "Development of a Sustainable Process for Complex Sulfide Ores Containing Anglesite: Effect of Anglesite on Sphalerite Floatability, Enhanced Depression of Sphalerite by Extracting Anglesite, and Recovery of Extracted Pb2+ as Zero-Valent Pb by Cementation Using Zero-Valent Fe" Minerals 12, no. 6: 723.
https://doi.org/10.3390/min12060723
APA Style
Aikawa, K., Ito, M., Kusano, A., Jeon, S., Park, I., & Hiroyoshi, N.
(2022). Development of a Sustainable Process for Complex Sulfide Ores Containing Anglesite: Effect of Anglesite on Sphalerite Floatability, Enhanced Depression of Sphalerite by Extracting Anglesite, and Recovery of Extracted Pb2+ as Zero-Valent Pb by Cementation Using Zero-Valent Fe. Minerals, 12(6), 723.
https://doi.org/10.3390/min12060723