Potential Use of Precipitates from Acid Mine Drainage (AMD) as Arsenic Adsorbents

被引:1
|
作者
Torres-Rivero, Karina [1 ,2 ]
Bastos-Arrieta, Julio [3 ,4 ]
Florido, Antonio [1 ,2 ]
Marti, Vicenc [1 ,2 ]
机构
[1] Univ Politecn Cataluna, Dept Engn Quim, Escola Engn Barcelona Est EEBE, BarcelontaTEch UPC, Ave Eduard Maristany 16, Barcelona 08019, Spain
[2] Barcelona Res Ctr Multiscale Sci & Engn, Ave Eduard Maristany 16, Barcelona 08019, Spain
[3] Univ Barcelona, Dept Engn Quim & Quim Analit, Fac Quim, Marti i Franques 1-11, Barcelona 08028, Spain
[4] Univ Barcelona UB, Inst Recerca Aigua IdRA, Barcelona 08028, Spain
关键词
acid mine drainage; adsorption; arsenic; iron oxide; AQUEOUS-SOLUTION; ADSORPTION-KINETICS; V ADSORPTION; IRON-OXIDE; REMOVAL; WATER; REMEDIATION; PHOSPHATE; GOETHITE; HEMATITE;
D O I
10.3390/w15183179
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
The role of precipitates from acid mine drainage (AMD) in arsenic removal in water is a process to be investigated in more detail. The present study is focused on the potential use of two AMD precipitates using oxidation and Ca(OH)2 (OxPFe1) or CaCO3 (OxPFe2) as As(V) adsorbents and the comparison of their performance with two commercial adsorbents (nanohematite and Bayoxide & REG;). The AMD's supernatants and precipitates were characterized using several techniques and assessed with theoretical speciation and mass balance methods. Gypsum was identified by XRD and assessed as the main component of the precipitates. Amorphous iron hydroxide was assessed as the second component (22% in mass), and jurbanite or aluminum hydroxide were present in the third likely phase. The equilibrium adsorption of As(V) in water at a pH between 4 and 6 was tested with the four adsorbents, and the Langmuir model correlated well. The maximum adsorption capacity (qmax) had the highest value for OxPFe1 and the lowest value for nanohematite (that could be explained in terms of the adsorbent surface speciation). The two precipitates have limited application to the adsorption of very low concentrations of arsenic because they have a binding constant (b) lower than the commercial adsorbents and could release a small amount of the arsenic contained in the precipitate.
引用
收藏
页数:17
相关论文
共 50 条
  • [31] Treatment of acid mine drainage (AMD) using iron oxides
    Navratil, James D.
    Akin, Andrew C.
    Feis, Justin
    [J]. INTERNATIONAL MINE WATER ASSOCIATION SYMPOSIUM (2012: BUNBURY, WESTERN AUSTRALIA) PROCEEDINGS, 2012, : 725 - 726
  • [32] FLOTATION OF THE PRECIPITATES FORMED BY THE NEUTRALIZATION OF ACID MINE DRAINAGE.
    Mamiya, Mitsuo
    Xue, Yulan
    Kuzuno, Eiichi
    [J]. 1600, (100):
  • [33] Removal of vanadium from neutralized acid mine drainage (AMD) by adsorption to saw dust
    Sjoberg, Viktor
    Karlsson, Stefan
    Allard, Bert
    [J]. INTERNATIONAL MINE WATER ASSOCIATION SYMPOSIUM (2012: BUNBURY, WESTERN AUSTRALIA) PROCEEDINGS, 2012, : 727 - 734
  • [34] Metals removal from Acid Mine Drainage (AMD) using Bioelectrochemical System (BES)
    Liu, Jia
    Peiravi, Meisam
    [J]. ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 2017, 253
  • [35] Routine determination of inorganic arsenic speciation in precipitates from acid mine drainage using orthophosphoric acid extraction followed by HPLC-ICP-MS
    Resongles, E.
    Le Pape, P.
    Fernandez-Rojo, L.
    Morin, G.
    Delpoux, S.
    Brest, J.
    Guo, S.
    Casiot, C.
    [J]. ANALYTICAL METHODS, 2016, 8 (40) : 7420 - 7426
  • [36] Optimization of arsenic removal from an acid mine drainage in an anaerobic membrane bioreactor
    Yigit, Ece
    Yurtsever, Adem
    Basaran, Senem Teksoy
    Sahinkaya, Erkan
    [J]. ENVIRONMENTAL TECHNOLOGY & INNOVATION, 2020, 18
  • [37] Porous titania beads for remediation of arsenic contamination from acid mine drainage
    Dillon, Evelyn
    Morgan, Bree
    Oldfield, Daniel T.
    Burton, Edward D.
    Veliscek-Carolan, Jessica
    [J]. JOURNAL OF ENVIRONMENTAL MANAGEMENT, 2023, 332
  • [38] Enhanced Immobilization of Arsenic from Acid Mine Drainage by Detrital Clay Minerals
    Lefticariu, Liliana
    Sutton, Stephen R.
    Lanzirotti, Antonio
    Flynn, Theodore M.
    [J]. ACS EARTH AND SPACE CHEMISTRY, 2019, 3 (11): : 2525 - 2538
  • [39] Exploring the diversity of arsenic resistance genes from acid mine drainage microorganisms
    Morgante, Veronica
    Mirete, Salvador
    de Figueras, Carolina G.
    Postigo Cacho, Marina
    Gonzalez-Pastor, Jose E.
    [J]. ENVIRONMENTAL MICROBIOLOGY, 2015, 17 (06) : 1910 - 1925
  • [40] Assessing the sustainability of acid mine drainage (AMD) treatment in South Africa
    Masindi, Vhahangwele
    Chatzisymeon, Efthalia
    Kortidis, Ioannis
    Foteinis, Spyros
    [J]. SCIENCE OF THE TOTAL ENVIRONMENT, 2018, 635 : 793 - 802