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Study on Mechanism of N, N-alkyl Dodecyl Amine in Flotation of Kaolinite and Diaspore

机译:N,N-烷基十二烷基胺在高岭石和水辉石浮选中的机理研究

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The flotation behavior of kaolinite and diaspore using N, N-diethyl dodecyl amine (DEN12) and N, N-dimethyl dodecyl amine (DRN12) as collector have been investigated through flotation experiments. The mechanism of adsorption of two tertiary amine collectors on surface of kaolinite and diaspore were investigated by FTIR spectral, Zeta potentials measurements and calculation of molecular orbital energy. It has been found that DEN12 and DRN12 have stronger collecting power to kaolinite and weaker collecting abilityto diaspore than DDA. Kaolinite and diaspore in bauxite ores can be separated by using DEN12 and DRN12 as collectors at pulp pH below 8 and 6,respectively. The results of zeta potentials and calculation of molecular orbital energy indicated that the adsorption strength on kaolinite surface is in the order DEN12>DRN12>DDA and the adsorption strength on diaspore surface is in the order DDA>DEN12>DRN12. FTIR spectral analysis and Zeta potentials approve that the action between kaolinite and tertiary amine collector is strong electrostatic adsorption and that of diaspore is weak electrostatic adsorption in the range of pH 5~6.
机译:通过浮选实验研究了以N,N-二乙基十二烷基胺(DEN12)和N,N-二甲基十二烷基胺(DRN12)为捕收剂的高岭石和辉石的浮选行为。通过FTIR光谱,Zeta电势测量和分子轨道能量的计算,研究了两种叔胺捕集剂在高岭石和水辉石表面的吸附机理。已经发现,与DDA相比,DEN12和DRN12对高岭石具有更强的捕集能力,而对水辉石的捕集能力较弱。在纸浆pH值低于8和6的情况下,可以通过使用DEN12和DRN12作为捕收剂来分离铝土矿中的高岭石和辉绿岩。 ζ电位的结果和分子轨道能量的计算结果表明,高岭石表面的吸附强度为DEN12> DRN12> DDA,而渗铝表面的吸附强度为DDA> DEN12> DRN12。 FTIR光谱分析和Zeta电势表明,在pH值为5〜6的范围内,高岭石与叔胺捕集剂之间的相互作用为强静电吸附,而水硬石则为弱静电吸附。

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