Man Xiaofei, Ou Leming, Wang Chenliang, Jin Saizhen, Ma Xiqi
School of Minerals Processing and Bioengineering, Central South University, Changsha, China.
Front Chem. 2019 Dec 12;7:813. doi: 10.3389/fchem.2019.00813. eCollection 2019.
Sodium oleate (NaOl), a collector in diaspore flotation, has been widely used for more than 30 years, while its low selectivity becomes an issue under today's process requirement. This study introduced tert dodecyl mercaptan (TDM) together with NaOl as a mixed collector to improve selectivity in diaspore flotation. We found that using the mixed collector of NaOl/TDM (total concentration 0.1 mM, the molar ratio 8:2 of NaOl: TDM) at pH = 9-10 significantly effectively separated diaspore and kaolinite. Comparing the recovery of AlO and the ratio of AlO to SiO (A/S) treated by NaOl/TDM (pH = 9) and NaOl (pH = 10), the AlO recovery and A/S in concentrate for NaOl/TDM are 7.5% and 2.2 higher than that for NaOl in mixed mineral flotation. Also, surface tension measurements, Zeta potential measurements and Fourier Transform Infrared (FTIR) spectra analysis were used to examine its selectivity from a flotation mechanical perspective. Surface tension measurements show that mixed collector NaOl/TDM has stronger surface activity and hydrophobic association than NaOl. The results of Zeta potential measurements and FTIR spectra analysis indicate that NaOl and TDM can selectively co-adsorb diaspore through physical adsorption. Moreover, the adsorption of TDM promotes the adsorption of NaOl on diaspore. However, when NaOl/TDM treats on kaolinite together, TDM can hardly adsorb on mineral surface, nor can it promote the adsorption of NaOl.
油酸钠(NaOl)是一水硬铝石浮选的捕收剂,已广泛应用30多年,但在当今的工艺要求下,其选择性低成为一个问题。本研究引入叔十二烷基硫醇(TDM)与NaOl作为混合捕收剂,以提高一水硬铝石浮选的选择性。我们发现,在pH = 9 - 10时使用NaOl/TDM混合捕收剂(总浓度0.1 mM,NaOl与TDM的摩尔比为8:2)能显著有效地分离一水硬铝石和高岭石。比较NaOl/TDM(pH = 9)和NaOl(pH = 10)处理后的AlO回收率以及AlO与SiO的比例(A/S),在混合矿物浮选中,NaOl/TDM处理后的精矿中AlO回收率和A/S分别比NaOl处理后的高7.5%和2.2。此外,还通过表面张力测量、Zeta电位测量和傅里叶变换红外(FTIR)光谱分析从浮选机理角度研究其选择性。表面张力测量表明,混合捕收剂NaOl/TDM比NaOl具有更强的表面活性和疏水缔合作用。Zeta电位测量和FTIR光谱分析结果表明,NaOl和TDM可通过物理吸附选择性地共吸附在一水硬铝石上。而且,TDM的吸附促进了NaOl在一水硬铝石上的吸附。然而,当NaOl/TDM一起处理高岭石时,TDM几乎不能吸附在矿物表面,也不能促进NaOl的吸附。