A review on sources of soil antimony pollution and recent progress on remediation of antimony polluted soils

被引:16
|
作者
Tang, Haiying [1 ,2 ,3 ]
Hassan, Muhammad Umair [1 ,2 ]
Nawaz, Mohsin [4 ]
Yang, Wenting [1 ,2 ]
Liu, Ying [3 ]
Yang, Binjuan [1 ,2 ]
机构
[1] Jiangxi Agr Univ, Minist Educ, Key Lab Crop Physiol Ecol & Genet Breeding, Nanchang 330045, Peoples R China
[2] Jiangxi Agr Univ, Res Ctr Ecol Sci, Nanchang 330045, Peoples R China
[3] Hunan Univ Humanities Sci & Technol, Sch Agr & Biotechnol, Loudi 417000, Peoples R China
[4] Jiangsu Univ, Sch Environm & Safety Engn, Inst Environm & Ecol, Zhenjiang 212013, Peoples R China
基金
中国国家自然科学基金;
关键词
Antimony; Sb-polluted soils; Sources; Mechanisms; remediation techniques; CONTAMINATED SOIL; PLANT SYSTEM; SUBCELLULAR-DISTRIBUTION; CHEMICAL SPECIATION; HEALTH-RISKS; SOLID-WASTES; LEAD PB; MOBILITY; SB; MINE;
D O I
10.1016/j.ecoenv.2023.115583
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Antimony (Sb) is a serious toxic and non-essential metalloid for animals, humans, and plants. The rapid increase in anthropogenic inputs from mining and industrial activities, vehicle emissions, and shoot activity increased the Sb concentration in the environment, which has become a serious concern across the globe. Hence, remediation of Sb-contaminated soils needs serious attention to provide safe and healthy foods to humans. Different techniques, including biochar (BC), compost, manures, plant additives, phyto-hormones, nano-particles (NPs), organic acids (OA), silicon (Si), microbial remediation techniques, and phytoremediation are being used globally to remediate the Sb polluted soils. In the present review, we described sources of soil Sb pollution, the environmental impact of antimony pollution, the multi-faceted nature of antimony pollution, recent progress in remediation techniques, and recommendations for the remediation of soil Sb-pollution. We also discussed the success stories and potential of different practices to remediate Sb-polluted soils. In particular, we discussed the various mechanisms, including bio-sorption, bio-accumulation, complexation, and electrostatic attraction, that can reduce the toxicity of Sb by converting Sb-V into Sb-III. Additionally, we also identified the research gaps that need to be filled in future studies. Therefore, the current review will help to develop appropriate and innovative strategies to limit Sb bioavailability and toxicity and sustainably manage Sb polluted soils hence reducing the toxic effects of Sb on the environment and human health.
引用
收藏
页数:16
相关论文
共 50 条
  • [1] Research Progress and Development Trend of Antimony Contaminated Soil Remediation Technology
    Zheng P.
    Cui X.
    Li H.
    Che X.
    Shi X.
    Wang L.
    Zheng Q.
    Xiyou Jinshu/Chinese Journal of Rare Metals, 2024, 48 (03): : 411 - 426
  • [2] Managing antimony pollution: Insights into Soil–Plant system dynamics and remediation Strategies
    Haider F.U.
    Zulfiqar U.
    Ain N.U.
    Mehmood T.
    Ali U.
    Ramos Aguila L.C.
    Li Y.
    Siddique K.H.M.
    Farooq M.
    Chemosphere, 2024, 362
  • [3] Antimony, a pollutant of emerging concern: A review on industrial sources and remediation technologies
    Nishad, Padala Abdul
    Bhaskarapillai, Anupkumar
    CHEMOSPHERE, 2021, 277
  • [4] Antimony mobility in lead smelter-polluted soils
    Ettler, Vojtech
    Tejnecky, Vaclav
    Mihaljevic, Martin
    Sebek, Ondrej
    Zuna, Milan
    Vanek, Ales
    GEODERMA, 2010, 155 (3-4) : 409 - 418
  • [5] Pollution assessment of antimony in shooting range soils
    Dinake, Pogisego
    Mokgosi, Serwalo Mercy
    Kelebemang, Rosemary
    Kereeditse, Tsotlhe Trinity
    Motswetla, Obakeng
    SOUTH AFRICAN JOURNAL OF CHEMISTRY-SUID-AFRIKAANSE TYDSKRIF VIR CHEMIE, 2022, 76 : 72 - 78
  • [6] Evaluation of different amendments to stabilize antimony in mining polluted soils
    Alvarez-Ayuso, E.
    Otones, V.
    Murciego, A.
    Garcia-Sanchez, A.
    CHEMOSPHERE, 2013, 90 (08) : 2233 - 2239
  • [7] Antimony and lead pollution in the soil of shooting ranges
    Gresch, M
    Oschwald, P
    Rytz, I
    Sydler, P
    Wettstein, B
    Mergenthaler, B
    Richner, T
    Attinger, W
    Grünwald, A
    Birkefeld, A
    Wingenfelder, U
    Furrer, G
    GEOCHIMICA ET COSMOCHIMICA ACTA, 2002, 66 (15A) : A290 - A290
  • [8] Introduction to the thematic set: Progress in Remediation of Polluted Soils
    Bech, Jaume
    GEOCHEMISTRY-EXPLORATION ENVIRONMENT ANALYSIS, 2019, 19 (02) : 91 - 92
  • [9] Research Progress and Hotspots in Microbial Remediation for Polluted Soils
    Zhao, Shuai
    Yuan, Xue-Tao
    Wang, Xiao-Hong
    Ai, Yan-Jun
    Li, Fu-Ping
    SUSTAINABILITY, 2024, 16 (17)
  • [10] Antimony availability in highly polluted soils and sediments - A comparison of single extractions
    Ettler, Vojtech
    Mihaljevic, Martin
    Sebek, Ondrej
    Nechutny, Zbysek
    CHEMOSPHERE, 2007, 68 (03) : 455 - 463