2000101;The four investigated independent parameters are indicated in Table 2, the dependent variable being the antimony extraction (%) in the solution at the end of the leaching
201431;The commercial route to the extraction of antimony from its sulfide mineral stibnite in Xikuangshan involves a pyrochemical process (1150 °C to 1350 °C).In this process,
51;Various materials and methods such as ion-exchange resins, in particular aminophosphonic acid resins, and solvent extraction have been reported for antimony removal
51;Antimony extraction efficiency, defined as the relationship between the antimony content in the liquid sample measured by ICP and the antimony content in the solid product
67;Antimony metallurgy is the technology that extracts antimony metal from antimony ores or produces antimony compounds. Antimony was discovered in the ancient
1026;Toxic effects of antimony on plants. Sb is a non-essential and toxic metal that is readily absorbed by plants and causes a serious reduction in growth. Lei, M. ().
201961;Antimony production involves hydrometallurgy and pyrometallurgy, the latter being still dominant. The conventional extraction of antimony from stibnite and jamesonite
2025129;To maintain sustainable antimony usage, it is essential to optimize antimony extraction efficiency from ore and secondary sources because of limited antimony resources
Pyrometallurgy routes for extraction of antimony typically contain roasting-volatilizing-reducing process, bath smelting-continuous fuming process [3] and direct smelting process [4,5]. While
The antimony extraction was performed using recycled solutions and a reconditioned electrolyte. Periodically, a portion of the solution was removed to eliminate impurities, and then
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2025129;Bench-scale experiments of antimony extraction from stibnite concentrate with goethite residue as sulfur-fixing agent validated that 85.7% of Sb was directly recovered as
displacement of antimony by zinc from its dissolved state in the brine. Dupont et al. (2016) proposed a comprehensive approach involving grinding, flotation, and density-based
20241129;The growing demand for antimony in high-performance materials necessitates efficient extraction and purification techniques. This article provides an in-depth look at the lab
2025421;antimony extraction plant. Jump To A Section: Identify the Type of Antimony Ore; Define Your Processing Goals; Recommended Process Flow Examples; Final Tip:
Antimony in the soil–plant system – a review Martin Tschan,A,C Brett H. RobinsonB and Rainer SchulinA AEidgenössischeTechnische Hochschule (ETH) Zurich, Institute ofTerrestrial
The antimony extraction was performed using recycled solutions and a reconditioned electrolyte. Periodically, a portion of the solution was removed to eliminate impurities, and then
1026;Antimony (Sb) is a dangerous heavy metal (HM) that poses a serious threat to the health of plants, animals, and humans. Leaching from mining wastes and weathering of sulfide ores are the major ways of introducing Sb
2000101;Likewise, applying this pretreatment in an andorite matrix has achieved an increase in gold extraction from ~ 49% to ~ 75% and in silver extraction from ~ 18% to ~ 90%,
Over the few last years, the extraction and utilization of metalloids, including antimony (Sb), and consequently the environmental contamination due to them, have increased exponentially
2025219;This study aimed to investigate the recovery of antimony (Sb) from slag generated in an antimony smelting plant using leaching followed by hydrolysis processes. The
51;Various materials and methods such as ion-exchange resins, in particular aminophosphonic acid resins, and solvent extraction have been reported for antimony removal
81;High antimony levels in plants inhibits the PhotoSystem (PSII) activity and chlorophyll synthesis. Recovery of antimony during their extraction or recycling of antimony
Antimony is found in trace amounts in silver, copper and lead ores, and it is usually economically possible, as well as environmentally desirable, to extract the antimony from these ores when
2025219;Antimony oxide was precipitated from the PLS via the hydrolysis process. The product composed of 81.43% Sb, 16.23% O, and 2.34% Fe. This study aimed to investigate
2024312;This paper focuses on the environmental leaching of antimony, a critical mineral, using deep eutectic solvents. Mining residues often contain embedded antimony, posing
2019121;The leaching extent for Sb can approach 99%. Plants in China have adopted this process using FeCl 3-HCl as lixivium to leach stibnite and obtain (pH = 0.645 T = 34