Ferrocolumbite characterization and processing from Wadi Nugrus gneiss in the Eastern Desert of Egypt
摘要
Ferrocolumbite, a niobium-bearing oxide mineral, serves as a major source of niobium (Nb). Niobium is a strategically critical metal due to its exceptional physicochemical properties, including high melting point (2468 °C), superconductivity, and corrosion resistance, which underpin its wide use in advanced technologies such as superconductors, high-performance alloys, and electronics. This study investigates the mineralogical characteristics and beneficiation potential of ferrocolumbite from the Wadi Nugrus gneiss in Egypt’s Eastern Desert, aiming to develop efficient processing strategies for Nb recovery. Comprehensive characterization using X-ray fluorescence (XRF), X-ray diffraction (XRD), scanning electron microscopy (SEM-EDS/BSE), Fourier-transform infrared spectroscopy (FTIR), and radiometric analysis revealed a heavy mineral assemblage dominated by ferrocolumbite and zircon, constituting 1.85% of the feed sample, with quartz and feldspar as major gangue components. A two-stage beneficiation process combining wet gravity concentration and high-intensity magnetic separation demonstrated exceptional efficiency, increasing the heavy mineral content from 1.85 to 11.28% in the final concentrate, with a recovery rate of 78.87% and a yield of 15.71%. Notably, the Nb₂O₅ content was enriched from 1220 ppm in the raw sample to 7080 ppm in the concentrate, achieving a high-purity ferrocolumbite fraction suitable for downstream chemical extraction. These results highlight the success of integrated physical separation methods in optimizing Nb recovery from complex mineral deposits, offering a sustainable pathway to meet growing industrial demand. The study provides critical insights into the processing of Egyptian ferrocolumbite resources, with broader implications for the beneficiation of similar refractory deposits worldwide.