A Comparison of the Leaching Kinetics and Mechanism of Calcined Magnesite with an Organic Leach Reagent

被引:0
|
作者
Bakan, Feray [1 ]
Lacin, Oral [2 ]
Sarac, Hanifi [3 ]
机构
[1] Sabanci Univ, Nanotechnol Res & Applicat Ctr, TR-34956 Istanbul, Turkey
[2] Ataturk Univ, Dept Chem Engn, TR-25240 Erzurum, Turkey
[3] Yildiz Tech Univ, Dept Chem Engn, TR-34220 Istanbul, Turkey
来源
关键词
Calcined Magnesite; Lactic acid; Leaching; Kinetics; Organic reagent; ACETIC-ACID SOLUTIONS; CALCAREOUS PHOSPHATE ROCK; DISSOLUTION KINETICS; NATURAL MAGNESITE; SULFURIC-ACID; LACTIC-ACID; ULEXITE; ORE;
D O I
暂无
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
The leaching kinetics of calcined magnesite in aqueous lactic acid solutions was investigated in a batch reactor by using parameters such as temperature, acid concentration, particle size, solid/liquid ratio, and stirring speed. A mathematical model was evaluated for the rate increased by decreasing particle size and by increasing temperature; and initially the leaching is increased in terms of acid concentration and then decreased by increasing concentration. It was shown that the new mathematical model for calcined magnesite particle was: -1.9041.ln((1 - X-B)(1/3) + 1.157) + 0.952ln((1 - X-B)(2/3) - 1.1561(1 - X-B)(1/3) + 1.338 -3.298arctan(0.577(1.73(1 -X-B)(1/3) - 1)) = 3.b.k(S).C-A0/rho(B).R.t It was determined that experimental data complies with shrinking core model for fluid-solid systems. It was also found that the stirring speed did not change the dissolution and that the dissolution rate was controlled by surface chemical reaction. Additionally, the fact that leaching was controlled by the chemical reaction was also supported by the relationship between the rate constant and the particle radius. The activation energy of the process was determined to be 30.61 kJ mol(-1).
引用
收藏
页码:808 / 815
页数:8
相关论文
共 50 条
  • [41] Organic ligands influence leaching kinetics of fixated FGD material
    Cheng, Chin-Min
    Hwang, Yu Sik
    Lenhart, John J.
    Walker, Harold W.
    FUEL, 2008, 87 (13-14) : 3137 - 3146
  • [42] INVESTIGATION OF KINETICS AND MECHANISM OF PRICEITE LEACHING IN SULPHURIC ACID SOLUTIONS
    Gur, Aycan
    PHYSICOCHEMICAL PROBLEMS OF MINERAL PROCESSING, 2015, 51 (02): : 719 - 730
  • [43] Lead leaching mechanism and kinetics in electrolytic manganese anode slime
    Wang, Benjun
    Mu, Linlin
    Guo, Song
    Bi, Yafan
    HYDROMETALLURGY, 2019, 183 : 98 - 105
  • [44] Decomposition of zinc ferrite-based solid waste by reductive leaching: Leaching kinetics and mechanism
    Luo, Yongjian
    Ke, Yong
    Peng, Cong
    Li, Yun
    Wang, Yunyan
    Min, Xiaobo
    SEPARATION AND PURIFICATION TECHNOLOGY, 2025, 352
  • [45] Reaction kinetics of calcined smectite in a clinker-free model and a synthetic cement system in comparison with selected calcined phyllosilicates
    Scherb, Sebastian
    Maier, Matthias
    Mathias, Koeberl
    Beuntner, Nancy
    Thienel, Karl-Christian
    CEMENT AND CONCRETE RESEARCH, 2025, 189
  • [46] Evaluation of ozone as an efficient and sustainable reagent for chalcopyrite leaching: Process optimization and oxidative mechanism
    Wang, Jingxiu
    Faraji, Fariborz
    Ghahreman, Ahmad
    JOURNAL OF INDUSTRIAL AND ENGINEERING CHEMISTRY, 2021, 104 : 333 - 344
  • [47] Kinetics and mechanism of oxidation of L-Cysteine by Corey's reagent
    Adari, Kalyan Kumar
    Nowduri, Annapurna
    Vani, P.
    TRANSITION METAL CHEMISTRY, 2006, 31 (06) : 745 - 748
  • [48] Kinetics and mechanism of oxidation of l-Cysteine by Corey’s reagent
    Kalyan Kumar Adari
    Annapurna Nowduri
    P. Vani
    Transition Metal Chemistry, 2006, 31 : 745 - 748
  • [49] KINETICS AND MECHANISM OF OXIDATION OF LACTOSE BY NESSLERS REAGENT IN ALKALINE-MEDIUM
    SINGH, MP
    SINGH, RK
    SINGH, AK
    SISODIA, AK
    SAXENA, M
    NATIONAL ACADEMY SCIENCE LETTERS-INDIA, 1986, 9 (09): : 277 - 280
  • [50] KINETICS AND MECHANISM OF SPHALERITE LEACHING BY SODIUM NITRATE IN SULPHURIC ACID SOLUTION
    Sokic, M.
    Markovic, B.
    Matkovic, V.
    Zivkovic, D.
    Strbac, N.
    Stojanovic, J.
    JOURNAL OF MINING AND METALLURGY SECTION B-METALLURGY, 2012, 48 (02) : 185 - 195