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Use of Sodium Hexametaphosphate and Citric Acid Mixture as Depressant in the Flotation Separation of Scheelite from Calcite

机译:使用六偏磷酸钠和柠檬酸混合物作为抑制剂在燃烧室的浮选分离中

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摘要

The floatability of scheelite and calcite in the presence of single depressant (SHMP or H3Cit) and mixed depressant (SHMP/H3Cit) was studied by microflotation experiments and artificial mixed mineral experiments. Solution chemical calculation, zeta potential tests, thermodynamic analysis and XPS analysis were used to explain the relevant depressive mechanism. Mixed depressant (SHMP/H3Cit) exhibited excellent selective depressive effect on calcite. The optimal molar ratio of SHMP to H3Cit was 1:4. The depressant SHMP and H3Cit can be chemically bonded with Ca2+ to form CaHPO4 and Ca3(Cit)2 at pH 8. The CaHPO4 was more easily formed than Ca3(Cit)2 on the mineral surface, which indicated that the depressive effect of SHMP was stronger than H3Cit. The SHMP and H3Cit of the mixed depressant were co-adsorbed on the calcite surface, while the H3Cit of the mixed depressant was weakly adsorbed on the scheelite surface. The mixed depressant can significantly improve the separation efficiency of scheelite from calcite.
机译:通过微型透明试验和人造混合矿物实验研究了单一抑制剂(SHMP或H3CIT)和混合抑制剂(SHMP / H3CIT)存在中的硅藻土和方解石的可浮动性。解决方案化学计算,Zeta电位测试,热力学分析和XPS分析用于解释相关的抑郁机制。混合抑制剂(SHMP / H3CIT)对方解石表现出优异的选择性抑郁效果。 SHMP至H3Cit的最佳摩尔比为1:4。抑制性SHMP和H3Cit可以与Ca 2 +化学键合形成CaHPO4和Ca 3(Cit)2,在pH8中形成CaHPO4比矿物表面上的Ca 3(Cit)2更容易形成,这表明SHMP的抑郁作用是抑郁效应比H3Cit强。混合抑制剂的SHMP和H3Cit在方解石表面上被共吸收,而混合抑制剂的H3Cit弱粘附在白血管表面上。混合的抑制剂可以显着提高方石石中硅藻土的分离效率。

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