Study of the Influence of Xanthate Derivative Structures on Copper Sulfide Mineral Adsorption Under Acidic Conditions

被引:0
作者
D. M. Ávila-Márquez
I. A. Reyes-Domínguez
A. Blanco-Flores
H. P. Toledo-Jaldin
G. López-Téllez
J. Aguilar-Carrillo
E. J. Gutiérrez-Castañeda
机构
[1] Universidad Autónoma de San Luis Potosí,Instituto de Metalurgia
[2] Catedrático CONACyT - Consejo Nacional de Ciencia y Tecnología,Facultad de Ingeniería
[3] Tecnológico de Estudios Superiores de Tianguistenco,División de Mecánica
[4] Universidad Autónoma del Estado de México,Facultad de Química
[5] Centro Conjunto de Investigación en Química Sustentable UAEM-UNAM,undefined
[6] (CCIQS),undefined
来源
Metallurgical and Materials Transactions B | 2019年 / 50卷
关键词
Xanthene Derivatives; Copper Sulfide; Adsorption Kinetic Experiments; Best-fitting Isotherm Models; Pseudo-first Order Model;
D O I
暂无
中图分类号
学科分类号
摘要
Adsorption of commercial xanthate derivatives on copper sulfide mineral (covellite, CuS) was studied by kinetics and isotherm adsorption experiments. The adsorption of xanthate derivatives was confirmed by FTIR (Fourier transform infrared spectroscopy) and XPS (X-ray photoelectron spectroscopy) results. Experiments were performed with two different xanthate derivatives, C-4410 (O-pentyl S-2-propenyl ester) and C-4940 (isobutyl xanthogen ethyl formate), on individual doses of 0.05 g of powdered covellite. It was found that the equilibrium times at pH 2, 4, and 6 were different for both xanthate derivatives. The shortest times were achieved at pH 2 and 4. The results suggest that C-4110 can be used as collector in a wide range of pH, while C-4940 is limited to lower pH values. Pseudo first- and pseudo second-order kinetics models were thus applied to the experimental data for pH 2. The information obtained from the kinetics models combined with XPS allowed proposing the adsorption mechanism for the covellite-xanthate derivative pair. The adsorption takes place through a non-covalent interaction for C-4410 and chemisorption process for C-4940. The best-fitting isotherm models for C-4410 and C-4940 adsorption were Redlich–Peterson and Freundlich, respectively, which yield a maximum adsorption capacity of 57.07 mg g−1 for C-4410 and 44.62 mg g−1 for C-4940.
引用
收藏
页码:86 / 97
页数:11
相关论文
共 94 条
  • [1] Chen T.T.(1988)undefined Metall. Trans. B 19 803-17
  • [2] Dutrizac J.E.(2000)undefined Int. J. Miner. Process. 58 1-13
  • [3] Ackerman P.K.(2017)undefined J. Taiwan Inst. Chem. E. 71 38-46
  • [4] Harris G.H.(2015)undefined Spectrochim. Acta A 139 346-55
  • [5] Klimpel R.R.(2012)undefined Miner. Eng. 39 140-48
  • [6] Aplan F.F.(2006)undefined J. Petrol. Sci. Eng. 52 198-212
  • [7] Xiao J.(2014)undefined Colloid. Surf. A 456 203-10
  • [8] Liu G.(2014)undefined Environ Technol 35 1508-19
  • [9] Zhong H.(1996)undefined Int. J. Miner. Process. 46 137-53
  • [10] Huang Y.(1987)undefined J. Mol. Catal. 43 225-36