Removal of Cr(III), Pb(II) and Cr-Pb Mixture by Blast Furnace Slag (BFS) in Solution

被引:0
|
作者
Chouchane, Toufik [1 ]
Khireddine, Ouahida [1 ]
Chibani, Sana [1 ]
Boukari, Ateman [1 ]
机构
[1] Res Ctr Ind Technol CRTI, POB 64, Cheraga 16014, Algeria
来源
关键词
Blast furnace slag; Cr(III); Pb(II); Kinetics; Adsorption isotherm; SOLID-PHASE EXTRACTION; AQUEOUS-SOLUTION; SIMULTANEOUS ADSORPTION; TRIVALENT CHROMIUM; HEAVY-METALS; LEAD(II); CADMIUM(II); MECHANISM; WATER; DYE;
D O I
暂无
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
Blast furnace slag (BFS) was exploited as an adsorbent for the removal of Cr(III), Pb(II), and Cr-Pb. In discontinuous mode, the influence of the contact time, stirring speed, pH, mass of the adsorbent, initial concentration, and temperature were examined. The physico-chemical tests indicated that the BFS is formed from a mixture composed mainly of silicates, aluminates, lime, and magnesium oxide. Its specific surface is 325.6 m(2) g(-1) and the pH(zpc) value corresponds to 3.8. Experimental results have indicated that the equilibrium is obtained after 60, 50, and 80 min for Cr(III), Pb(II), and the Cr-Pb mixture, respectively. Under our experimental conditions (pH 4.8, V-ag: 150 rpm, T: 20 degrees C, Os: 200 mu m, and Ms: 1 g), the adsorption capacities of Cr(III), Pb(II), Cr-Pb, Cr(III) in the mix, and Pb(II) in the mix were 43.16, 50.12, 39.91, 17.05, and 22.66 mg g(-1), respectively. Moreover, BFS has more affinity for lead in the binary mixture. The adsorption isotherms revealed that the Langmuir model was the best fit for the metal ion adsorption processes examined (R-2 = 0.99). The kinetics indicated that the adsorption of the metal ions studied follows the pseudo-second-order model and that their transfers from the solution to the adsorbent are controlled by external and intraparticle diffusion. The thermodynamic study has shown that all the processes applied are spontaneous, exothermic, and less entropic. The desorption of the binary mixture revealed that saturated BFS can be efficiently exploited over four cycles, and it is more efficient in the presence of HCL at 0.1 N.
引用
收藏
页码:251 / 268
页数:18
相关论文
共 50 条
  • [31] Mechanisms of phosphate removal from aqueous solution by blast furnace slag and steel furnace slag
    Lu, Sheng-gao
    Bai, Shi-qiang
    Shan, Hong-dan
    JOURNAL OF ZHEJIANG UNIVERSITY-SCIENCE A, 2008, 9 (01): : 125 - 132
  • [33] Mechanisms of phosphate removal from aqueous solution by blast furnace slag and steel furnace slag
    Sheng-gao Lu
    Shi-qiang Bai
    Hong-dan Shan
    Journal of Zhejiang University-SCIENCE A, 2008, 9 : 125 - 132
  • [34] Removal of phosphate from aqueous solution with blast furnace slag
    Oguz, E
    JOURNAL OF HAZARDOUS MATERIALS, 2004, 114 (1-3) : 131 - 137
  • [35] Removal of cadmium from aqueous solution with blast furnace slag
    Liu, Mingda
    Li, Zheng
    Wang, Yaosheng
    Wang, Yaojing
    ADVANCES IN ENVIRONMENTAL SCIENCE AND ENGINEERING, PTS 1-6, 2012, 518-523 : 2722 - 2726
  • [36] Heavy metals (Pb, Cr) removal from aqueous solution by modified clinoptilolite
    Zabochnicka-Swiatek, M.
    Okoniewska, E.
    METALS AND RELATED SUBSTANCES IN DRINKING WATER, 2012, : 177 - 182
  • [37] Alkali-activated blast furnace ferronickel slag for Cr immobilization
    Wang, Dengquan
    Ma, Bin
    Pang, Lang
    Wang, Qiang
    CEMENT & CONCRETE COMPOSITES, 2024, 150
  • [38] Synthesis of magnetic chrysotile nanotubes for adsorption of Pb(II), Cd (II) and Cr(III) ions from aqueous solution
    Yu, Shaoming
    Zhai, Long
    Wang, Yajun
    Liu, Xiguang
    Xu, Lianchi
    Cheng, Leilei
    JOURNAL OF ENVIRONMENTAL CHEMICAL ENGINEERING, 2015, 3 (02) : 752 - 762
  • [39] Efficient removal of Cr(VI) and Pb(II) from aqueous solution by magnetic nitrogen-doped carbon
    Wanyue Liu
    Xiaoqin Liu
    Jinming Chang
    Feng Jiang
    Shishi Pang
    Hejun Gao
    Yunwen Liao
    Sheng Yu
    Frontiers of Chemical Science and Engineering, 2021, 15 : 1185 - 1196
  • [40] Efficient removal of Cr(VI) and Pb(II) from aqueous solution by magnetic nitrogen-doped carbon
    Liu, Wanyue
    Liu, Xiaoqin
    Chang, Jinming
    Jiang, Feng
    Pang, Shishi
    Gao, Hejun
    Liao, Yunwen
    Yu, Sheng
    FRONTIERS OF CHEMICAL SCIENCE AND ENGINEERING, 2021, 15 (05) : 1185 - 1196