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首页> 外文期刊>Minerals Engineering >Effect of H2O2 and potassium amyl xanthate on separation of enargite and tennantite from chalcopyrite and bornite using flotation
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Effect of H2O2 and potassium amyl xanthate on separation of enargite and tennantite from chalcopyrite and bornite using flotation

机译:H2O2和磷酸钾氨基磺酸盐对氯霉素分离与氯霉铁分离的影响

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Effect of oxidation treatment using hydrogen peroxide (H2O2) on the floatability of copper sulfide minerals (i.e., chalcopyrite and bornite) and arsenic-bearing copper minerals (i.e., tennantite and enargite) is reported in this study. Pure mineral flotation shows that the floatability of each mineral significantly decreases after the oxidation treatment. Interestingly, flotation of mixed mineral of copper sulfide and arsenic-bearing copper minerals shows that enargite and tennantite exhibit a higher floatability compared to chalcopyrite and bornite after the oxidation treatment followed by the addition of potassium amyl xanthate (PAX). These flotation results indicate a possibility for selective flotation of copper sulfide and arsenic-bearing copper minerals. Indeed, bench-scale flotation tests show that the oxidation treatment using H2O2 and the addition of PAX can deliver a satisfying separation of copper sulfide and arsenic-bearing copper minerals. Difference oxidation products (i.e., CuO, Cu (OH)(2), CuSO4 , FeOOH, and Fe-2(SO4)(3)) on each mineral surface are likely the cause of this different flotation behavior. Furthermore, these oxidation products may affect the adsorption amount of PAX on each mineral. Indeed, the adsorption tests show that PAX is adsorbed more on tennantite, bornite, and enargite compared to chalcopyrite owing to the formation of CuSO4 and Cu(OH)(2) on the mineral surfaces under oxidizing conditions. A possible mechanism is proposed in this study to explain the selective flotation behavior of mixed minerals.
机译:据报道,使用过氧化氢(H2O2)对硫化铜矿物质(即,硫代铜矿和镀铜)和砷铜矿物(即吖啶铜矿)的浮动性的影响。纯矿物浮选表明,在氧化处理后,每种矿物的可浮动性显着降低。有趣的是,硫化铜和砷铜矿物混合矿物的浮选表明,与氧化处理后的氯偶沸石和抗氟铁矿和抗燃烧剂相比,烯丙基钛矿和腺抗蚀性具有更高的可浮动性,然后加入氨基黄嘌呤(PAX)。这些浮选结果表明硫化铜和砷铜矿物的选择性浮选的可能性。实际上,台级浮选试验表明,使用H 2 O 2的氧化处理和添加PAX可以提供富含硫化铜和砷铜矿物的满足分离。在每个矿物表面上的差异氧化产物(即CuO,Cu(OH)(2),CusO4,FeOOH和Fe-2(SO4)(3))可能是这种不同浮选行为的原因。此外,这些氧化产物可能影响每种矿物质上的PAX的吸附量。实际上,吸附试验表明,由于在氧化条件下的矿物表面上形成Cuso4和Cu(2),与醋偶沸石相比,Pax吸附了腺嘌呤,燃料和牙酮。本研究提出了一种可能的机制,以解释混合矿物的选择性浮选行为。

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