首页> 外文会议>Engineering Foundation Conference: Beneficiation of Phosphate III Dec, 2001 St. Pete Beach, Florida >Dispersion Characteristics of Apatite and Magnetite Fines in the Presence of Inorganic and Organic Reagents and its Influence on the Dephosphorization of Magnetite Ore
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Dispersion Characteristics of Apatite and Magnetite Fines in the Presence of Inorganic and Organic Reagents and its Influence on the Dephosphorization of Magnetite Ore

机译:无机和有机试剂存在下磷灰石和磁铁矿细粉的分散特性及其对磁铁矿脱磷的影响

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摘要

The dispersion characteristics of apatite and magnetite minerals have been assessed based on zeta-potential measurements, using various inorganic and organic reagents, namely sodium silicate, sodium tripolyphosphate, sodium hexam-etaphosphate and lignin sulphonate. These results highlight that apatite is dispersed to a greater extent vis-a-vis magnetite. Further, the dispersion efficiency of the phosphate reagents is better than that of sodium silicate or lignin sulphonate, for both apatite and magnetite. Batch flotation tests on a high phosphate magnetite ore from Kiruna indicate that higher apatite recovery with minimum phosphorous loss to the magnetite fraction can be achieved using sodium silicate as a dispersant. Although comparable dephosphorization can be attained with lignin sulphonate dispersant, the recovery of magnetite in the non-float fraction is lower, possibly due to the adverse synergistic effect of this organic reagent with the Atrac collector, resulting in the flotation of magnetite. The high intensity conditioning of pulp for up to 30 min resulted in better apatite flotation with < 0.015% phosphorous in the magnetite product.
机译:使用各种无机和有机试剂,即硅酸钠,三聚磷酸钠,六偏磷酸钠和木质素磺酸盐,基于ζ电位测量,评估了磷灰石和磁铁矿矿物的分散特性。这些结果表明,相对于磁铁矿,磷灰石的分散程度更大。此外,对于磷灰石和磁铁矿,磷酸盐试剂的分散效率优于硅酸钠或木质素磺酸盐。在来自基律纳(Kiruna)的高磷酸盐磁铁矿矿石上进行的分批浮选试验表明,使用硅酸钠作为分散剂,可以使磷灰石中磁铁矿部分的磷损失达到最低的更高磷灰石回收率。尽管使用木质素磺酸盐分散剂可实现相当的脱磷,但非浮选级分中磁铁矿的回收率较低,这可能是由于该有机试剂与Atrac捕收剂的不利协同作用,导致了磁铁矿的浮选。纸浆的高强度调节长达30分钟,导致磷灰石浮选效果更好,磁铁矿产品中的磷含量<0.015%。

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