Facile Production Method of PbS Nanoparticles via Mechanical Milling of Galena Ore

被引:4
作者
Al-Saqarat, Bety S. [1 ]
Al-Mobydeen, Ahmed [2 ]
AL-Masri, Ahmed N. [3 ]
Esaifan, Muayad [4 ]
Hamadneh, Imad [5 ]
Moosa, Iessa Sabbe [5 ]
AlShamaileh, Ehab [5 ]
机构
[1] Univ Jordan, Dept Geol, Amman 11942, Jordan
[2] Jerash Univ, Fac Sci, Dept Chem, Jerash 26150, Jordan
[3] Minist Energy & Infrastructure, Dept Studies Res & Dev, Abu Dhabi 11191, U Arab Emirates
[4] Univ Petra, Coll Arts & Sci, Dept Chem, Amman 11196, Jordan
[5] Univ Jordan, Dept Chem, Amman 11942, Jordan
关键词
galena; PbS; high-vibration milling machine; PbS nanoparticles;
D O I
10.3390/mi14030564
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
In this research, some physical properties such as the density, specific heat capacity, and micro-hardness of galena ore lumps purchased from the public market were determined. The microscopic study, using the scanning electron microscopy (SEM) and energy dispersive X-ray spectroscopy (EDS), confirmed that the as-received galena ore was mostly lead sulfide (PbS). The XRD pattern of the galena powder also elucidated that all the peaks were assigned to PbS. In addition, the as-received galena was roughly crushed, and fine-milled using a high-vibration milling machine with tungsten carbide rings. Nanoscale particles of about 90 nm were produced in a very short milling time of around 15 min. The obtained nanoscale powder was well investigated in the SEM at low and high magnifications to assess the exact range of particle size. Meanwhile, the SEM was employed to investigate the microstructure of sintered samples, where a part of the milled galena powder was compacted and sintered at 700 degrees C for 2 h. Again, the result of this investigation proved the formation of PbS with even smaller grain size compared with the grain size of the starting galena ore. A high relative sinter density of approximately 97% for galena powder was achieved by sintering under vacuum.
引用
收藏
页数:14
相关论文
共 26 条
  • [1] PbS Nanoparticles Prepared Using 1, 10-Phenanthroline Adduct of Lead(II) Bis(N-alkyl-N-phenyl dithiocarbamate) as Single Source Precursors
    Adeyemi, Jerry O.
    Onwudiwe, Damian C.
    [J]. MOLECULES, 2020, 25 (09):
  • [2] Effect of temperature and time on the structural properties of PbS nano films
    Akbarbeiglou, F.
    [J]. SCIENTIA IRANICA, 2019, 26 (03) : 2007 - 2012
  • [3] Mechanochemical Preparation of a Novel Slow-Release Fertilizer Based on K2SO4-kaolinite
    AlShamaileh, Ehab
    Alrbaihat, Mohammad
    Moosa, Iessa
    Abu-Afifeh, Qusay
    Al-Fayyad, Hebah
    Hamadneh, Imad
    Al-Rawajfeh, Aiman
    [J]. AGRONOMY-BASEL, 2022, 12 (12):
  • [4] Performance Comparison and Light Reflectance of Al, Cu, and Fe Metals in Direct Contact Flat Solar Heating Systems
    AlShamaileh, Ehab
    Moosa, Iessa Sabbe
    Al-Fayyad, Heba
    Lahlouh, Bashar
    Kazem, Hussein A.
    Abu-Afifeh, Qusay
    Al-Saqarat, Bety S.
    Esaifan, Muayad
    Hamadneh, Imad
    [J]. ENERGIES, 2022, 15 (23)
  • [5] Study of the Microstructure, Corrosion and Optical Properties of Anodized Aluminum for Solar Heating Applications
    AlShamaileh, Ehab
    Altwaiq, Abdelmnim M.
    Esaifan, Muayad
    Al-Fayyad, Heba
    Shraideh, Ziad
    Moosa, Iessa Sabbe
    Hamadneh, Imad
    [J]. METALS, 2022, 12 (10)
  • [6] Amalia D., 2017, INDONES MIN J, V20, P69, DOI [10.30556/imj.Vol20.No1.2017.187, DOI 10.30556/IMJ.VOL20.NO1.2017.187]
  • [7] Effect of Deposition Time on the Optoelectronics Properties of PbS Thin Films Obtained by Microwave-Assisted Chemical Bath Deposition
    Barrios-Salgado, Enue
    Rodriguez-Lazcano, Y.
    Pablo Perez-Orozco, Juan
    Colin, J.
    Altuzar, P.
    Campos, J.
    Quesada, David
    [J]. ADVANCES IN CONDENSED MATTER PHYSICS, 2019, 2019
  • [8] LOW-COST SALAR SELECTIVE ABSORBERS FROM INDIAN GALENA
    CHATTERJEE, S
    PAL, U
    [J]. OPTICAL ENGINEERING, 1993, 32 (11) : 2923 - 2929
  • [9] Ezekoye BA., 2015, Int. J. Phys. Sci, V10, P385, DOI [10.5897/IJPS2015.4354, DOI 10.5897/IJPS2015.4354]
  • [10] Faris M., 2021, IAR J ENG TECHNOL, V2, P1, DOI DOI 10.47310/IARJET.2021.V02I03.001