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CMC在硫化礦浮選中的抑制作用及其抑制性能影響因素

Depression effect of CMC on sulfide ore flotation and its influencing factors

  • 摘要: 抑制劑在浮選過程中對礦物的選擇性分離起著重要作用. 羧甲基纖維素(CMC)是一種高效無污染的選礦抑制劑,廣泛應用于典型硫化礦的選擇性浮選. 盡管過去研究者對CMC在選礦中的應用進行了大量研究,但CMC在硫化礦浮選中的抑制作用及抑制效果的影響因素并未進行系統地總結. 本文綜述了CMC對方鉛礦、黃銅礦、黃鐵礦等硫化礦以及硫化礦浮選中含鎂硅酸鹽脈石礦物的抑制作用機理,總結了在硫化礦浮選中,CMC自身性質、礦漿pH、其他金屬離子的存在、藥劑用量、藥劑添加順序等因素對CMC抑制性能的影響,旨在為硫化礦高效浮選分離提供參考.

     

    Abstract: Depressants are crucial for the selective separation of mineral flotation. Depressants can be classified into organic and inorganic depressants. Inorganic depressants have the disadvantages of toxicity, large dosage, and poor separation efficiency. Therefore, organic depressants are more suitable for mineral separation due to their advantages of biodegradability, comprehensive source, environmentally friendly, and high selectivity. Carboxymethyl cellulose (CMC) is an efficient, nontoxic, and biodegradable mineral-processing depressant widely used in the selective flotation of typical sulfide ores. CMC is one of the essential reagents for cyanide-free and dichromate-free flotation. Therefore, applying and promoting the use of CMC has positive practical significance environmentally. Although research on applying CMC in mineral processing has been conducted in the past, the depression effect of CMC on sulfide ore flotation and its influencing factors have not been systematically summarized. Many sulfide ores frequently coexist with magnesium-containing silicate minerals, such as talc. Adding CMC has a depression effect on sulfide ore and gangue minerals, such as talc. This paper reviews the depression mechanism of CMC on typical sulfide ores, such as galena, chalcopyrite, and pyrite. The results show that the depression effect of CMC on typical sulfide ores is primarily related to the carboxyl and hydroxyl groups in CMC. Both groups depress the typical sulfide ore through hydrogen bonding, electrostatic interaction, and chemical action on the mineral surface. There is a view that the depression of CMC on pyrite relates to its supramolecular conformation. Furthermore, this paper summarizes the depression mechanism of CMC on magnesium-containing silicate gangue. Magnesium silicate gangue, represented by talc, easily clots during grinding, increasing the beneficiation challenges. By adding CMC, the surface wettability can be adjusted and, thus, depress gangue. Finally, this paper systematically expounds on the influence of CMC’s properties, pulp pH, presence of other metal ions, reagent dosage, reagent addition order, and other factors on CMC depression performance in sulfide ore flotation. The summary of the depression effect and influencing factors of CMC can guide and provide a reference for improving the selectivity of reagents and developing new high-efficiency organic depressants. It is of great practical significance to realize the efficient separation of valuable and gangue minerals in sulfide ore flotation.

     

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