• Other language title
    ﺑﺮرﺳﯽ ﻣﮑﺎﻧﯿﺰم ﺟﺬب ﮔﺰﻧﺘﺎت و ﻫﯿﺪروﮐﺴﺎﻣﺎت در ﺳﻄﺢ ﻣﺎﻻﮐﯿﺖ
  • Title of article

    Investigation of Mechanism of Adsorption of Xanthate and Hydroxamate on Malachite

  • Author/Authors

    Khalesi, M.R Department of mining Engineering - Tarbiat Modares University - Tehran, Iran , Mohammadkhani, M. Department of mining Engineering - Tarbiat Modares University - Tehran, Iran , Abdollahy, M Department of mining Engineering - Tarbiat Modares University - Tehran, Iran

  • Pages
    13
  • From page
    921
  • To page
    933
  • Abstract
    Copper oxide minerals such as malachite do not respond well to the traditional copper sulfide collectors, and require alternative flotation schemes. In many copper ore mines, significant copper oxide minerals, especially malachite, are associated with sulfide minerals. Considering that xanthates are most widely used in the flotation of sulfide minerals as well as copper sulfide minerals and, hydroxamate has shown a good selectivity for copper oxide minerals. Use of the synergistic effect of xanthate and hydroxamate can be an effective way to increase the flotation efficiency of copper oxide minerals along with sulfide minerals. In this work, we investigate the individual interactions of potassium amyl xanthate (PAX) and potassium alkyl hydroxamate (HXM) with the natural malachite and explore their synergistic effects on the malachite flotation. The results of solubility of malachite in collector solutions, changes in the malachite surface potential, adsorption kinetics, adsorption densities, dynamic contact angles, FT-IR analyses, and small-scale flotations, are discussed. The results obtained demonstrate that PAX and HXM are chemically co-adsorbed on the malachite surface, and the amount of PAX adsorbed on the malachite surface is considerably increased in the mixed PAX/HXM systems because of the co-adsorption mechanism. The flotation results confirm that the mixed PAX/HXM exhibit a superior flotation performance of malachite compared to the individual system of PAX or HXM. Based on these results, the mixed PAX/HXM exhibit a remarkable synergism effect on malachite surface hydrophobicity.
  • Farsi abstract
    ﻗﺎﺑﻠﯿﺖ ﺷﻨﺎوري ﮐﺎﻧﯽﻫﺎي اﮐﺴﯿﺪي ﻣﺲ ﻣﺎﻧﻨﺪ ﻣﺎﻻﮐﯿﺖ ﺑﺎ اﺳﺘﻔﺎده از ﮐﻠﮑﺘﻮرﻫﺎي ﻣﺮﺳﻮم ﻓﻠﻮﺗﺎﺳﯿﻮن ﮐﺎﻧﯽﻫﺎي ﺳﻮﻟﻔﯿﺪي ﻣﺲ، ﭘﺎﯾﯿﻦ ﺑﻮده و ﻓﻠﻮﺗﺎﺳﯿﻮن آﻧﻬﺎ ﻧﯿﺎزﻣﻨﺪ اﺳﺘﻔﺎده از ﮐﻠﮑﺘﻮرﻫﺎ و ﻃﺮحﻫﺎي ﻓﻠﻮﺗﺎﺳﯿﻮن ﺟﺪﯾﺪ اﺳﺖ. در ﺑﺴﯿﺎري از ﻣﻌﺎدن ﻣﺲ، ﻣﻘﺪار ﻗﺎﺑﻞ ﺗﻮﺟﻬﯽ ﮐﺎﻧﯽﻫﺎي اﮐﺴﯿﺪي ﻣﺲ ﺑﻪ وﯾﮋه ﻣﺎﻻﮐﯿﺖ ﮐﺎﻧﯽﻫﺎي ﺳﻮﻟﻔﯿﺪي ﻣﺲ را ﻫﻤﺮاﻫﯽ ﻣﯽﮐﻨﻨﺪ. ﺑﺎ ﺗﻮﺟﻪ ﺑﻪ اﯾﻦ ﮐﻪ ﮔﺰﻧﺘﺎتﻫﺎ ﭘﺮﮐﺎرﺑﺮدﺗﺮﯾﻦ ﮐﻠﮑﺘﻮرﻫﺎي ﻣﻮرد اﺳﺘﻔﺎده در ﻓﻠﻮﺗﺎﺳﯿﻮن ﮐﺎﻧﯽﻫﺎي ﺳﻮﻟﻔﯿﺪي و ﺑﻮﯾﮋه ﮐﺎﻧﯽﻫﺎي ﺳﻮﻟﻔﯿﺪي ﻣﺲ ﻫﺴﺘﻨﺪ و ﻓﻠﻮﺗﺎﺳﯿﻮن ﻣﻮﻓﻖ ﮐﺎﻧﯽﻫﺎي اﮐﺴﯿﺪي ﻣﺲ ﺗﻮﺳﻂ ﻫﯿﺪروﮐﺴﺎﻣﺎتﻫﺎ ﻧﯿﺰ اﻧﺠﺎم ﺷﺪه اﺳﺖ. اﺳﺘﻔﺎده از اﺛﺮ ﻫﻢاﻓﺰاﯾﯽ ﮐﻠﮑﺘﻮرﻫﺎي ﮔﺰﻧﺘﺎت و ﻫﯿﺪروﮐﺴﺎﻣﺎت ﻣﯽ ﺗﻮاﻧﺪ ﯾﮏ روش ﻣﺆﺛﺮ در اﻓﺰاﯾﺶ ﮐﺎراﯾﯽ ﻓﻠﻮﺗﺎﺳﯿﻮن ﮐﺎﻧﯽﻫﺎي اﮐﺴﯿﺪ ﻣﺲ ﺑﻪ ﻫﻤﺮاه ﮐﺎﻧﯽﻫﺎي ﺳﻮﻟﻔﯿﺪي ﺑﺎﺷﺪ. در اﯾﻦ ﺗﺤﻘﯿﻖ، اﻧﺪرﮐﻨﺶﻫﺎي آﻣﯿﻞ ﮔﺰﻧﺘﺎت ﭘﺘﺎﺳﯿﻢ و آﻟﮑﯿﻞ ﻫﯿﺪروﮐﺴﺎﻣﺎت ﭘﺘﺎﺳﯿﻢ ﺑﺼﻮرت ﻣﻨﻔﺮد ﺑﺎ ﻣﺎﻻﮐﯿﺖ ﻃﺒﯿﻌﯽ، و اﺛﺮات ﻫﻢاﻓﺰاﯾﯽ آﻧﻬﺎ در ﺷﻨﺎورﺳﺎزي ﻣﺎﻻﮐﯿﺖ ﺑﺮرﺳﯽ ﺷﺪه اﺳﺖ. دادهﻫﺎي ﺑﺪﺳﺖ آﻣﺪه از ﺣﻼﻟﯿﺖ ﻣﺎﻻﮐﯿﺖ در ﻣﺤﻠﻮلﻫﺎي ﮐﻠﮑﺘﻮري، ﺗﻐﯿﯿﺮات در ﭘﺘﺎﻧﺴﯿﻞ ﺳﻄﺢ ﻣﺎﻻﮐﯿﺖ، ﺳﯿﻨﺘﯿﮏﻫﺎ و داﻧﺴﯿﺘﻪﻫﺎي ﺟﺬب ﮐﻠﮑﺘﻮرﻫﺎ، ﺗﻐﯿﯿﺮات زاوﯾﻪ ﺗﻤﺎس دﯾﻨﺎﻣﯿﮑﯽ، ﺗﺠﺰﯾﻪ و ﺗﺤﻠﯿﻞﻫﺎي FT-IR و آزﻣﺎﯾﺶﻫﺎي ﻓﻠﻮﺗﺎﺳﯿﻮن، ﻣﻮرد ﺗﺠﺰﯾﻪ و ﺗﺤﻠﯿﻞ ﻗﺮار ﮔﺮﻓﺘﻪ اﺳﺖ. ﻧﺘﺎﯾﺞ ﺑﻪ دﺳﺖ آﻣﺪه ﻧﺸﺎن ﻣﯽدﻫﺪ ﮔﺰﻧﺘﺎت و ﻫﯿﺪروﮐﺴﺎﻣﺎت ﺑﻪ ﺻﻮرت ﻫﻤﺰﻣﺎن ﺑﺎ ﻣﮑﺎﻧﯿﺰم ﺷﯿﻤﯿﺎﯾﯽ روي ﺳﻄﺢ ﻣﺎﻻﮐﯿﺖ ﺟﺬب ﻣﯽﺷﻮﻧﺪ. ﻣﻘﺪار ﮔﺰﻧﺘﺎت ﺟﺬب ﺷﺪه در ﺳﻄﺢ ﻣﺎﻻﮐﯿﺖ در ﻣﺤﻠﻮل ﻣﺨﻠﻮط ﮐﻠﮑﺘﻮري ﮔﺰﻧﺘﺎت- ﻫﯿﺪروﮐﺴﺎﻣﺎت ﺑﻪ دﻟﯿﻞ ﺟﺬب ﻫﻤﺰﻣﺎن ﺑﻪ ﻃﻮر ﻗﺎﺑﻞ ﺗﻮﺟﻬﯽ اﻓﺰاﯾﺶ ﻣﯽﯾﺎﺑﺪ. ﻧﺘﺎﯾﺞ ﻓﻠﻮﺗﺎﺳﯿﻮن، اﻓﺰاﯾﺶ ﻗﺎﺑﻠﯿﺖ ﺷﻨﺎوري ﻣﺎﻻﮐﯿﺖ را در ﻣﺤﻠﻮل ﻣﺨﻠﻮط ﮔﺰﻧﺘﺎت- ﻫﯿﺪروﮐﺴﺎﻣﺎت را ﻧﺴﺒﺖ ﺑﻪ ﻣﺤﻠﻮلﻫﺎي ﻣﻨﻔﺮد ﮔﺰﻧﺘﺎت و ﻫﯿﺪروﮐﺴﺎﻣﺎت ﺗﺄﯾﯿﺪ ﻣﯽﮐﻨﺪ. ﺑﺮ اﺳﺎس ﻧﺘﺎﯾﺞ، ﻣﺨﻠﻮط ﮔﺰﻧﺘﺎت- ﻫﯿﺪروﮐﺴﺎﻣﺎت اﺛﺮ ﻫﻢ اﻓﺰاﯾﯽ ﻗﺎﺑﻞ ﺗﻮﺟﻬﯽ در آبﮔﺮﯾﺰي ﺳﻄﺢ ﻣﺎﻻﮐﯿﺖ ﻧﺸﺎن ﻣﯽدﻫﺪ.
  • Keywords
    Froth flotation , Malachite , Surface potential , Adsorption , Synergism
  • Journal title
    Journal of Mining and Environment
  • Serial Year
    2020
  • Record number

    2529815