Atıf Formatları
Separation of Fe and Mn from Manganiferous Iron Ores via Reductive Acid Leaching Followed by Magnetic Separation
  • IEEE
  • ACM
  • APA
  • Chicago
  • MLA
  • Harvard
  • BibTeX

S. TOP, "Separation of Fe and Mn from Manganiferous Iron Ores via Reductive Acid Leaching Followed by Magnetic Separation," MINING METALLURGY & EXPLORATION , vol.37, no.1, pp.297-309, 2020

TOP, S. 2020. Separation of Fe and Mn from Manganiferous Iron Ores via Reductive Acid Leaching Followed by Magnetic Separation. MINING METALLURGY & EXPLORATION , vol.37, no.1 , 297-309.

TOP, S., (2020). Separation of Fe and Mn from Manganiferous Iron Ores via Reductive Acid Leaching Followed by Magnetic Separation. MINING METALLURGY & EXPLORATION , vol.37, no.1, 297-309.

TOP, SONER. "Separation of Fe and Mn from Manganiferous Iron Ores via Reductive Acid Leaching Followed by Magnetic Separation," MINING METALLURGY & EXPLORATION , vol.37, no.1, 297-309, 2020

TOP, SONER. "Separation of Fe and Mn from Manganiferous Iron Ores via Reductive Acid Leaching Followed by Magnetic Separation." MINING METALLURGY & EXPLORATION , vol.37, no.1, pp.297-309, 2020

TOP, S. (2020) . "Separation of Fe and Mn from Manganiferous Iron Ores via Reductive Acid Leaching Followed by Magnetic Separation." MINING METALLURGY & EXPLORATION , vol.37, no.1, pp.297-309.

@article{article, author={SONER TOP}, title={Separation of Fe and Mn from Manganiferous Iron Ores via Reductive Acid Leaching Followed by Magnetic Separation}, journal={MINING METALLURGY & EXPLORATION}, year=2020, pages={297-309} }