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Environmental Fate of Antimony and Its Influence on Soil–Plant Systems

Insights for Remediation Approaches

Bibliographic Data

ID21648810
AuthorsAmit Kumar (0000-0003-4000-1780, School of Hydrology and Water Resources Nanjing University of Information Science and Technology Nanjing China), Vinod Kumar (0000-0003-4014-2305, Department of Botany Government College for Women Gandhi Nagar Jammu India), Aditi Shreeya Bali (Department of Botany Dyal Singh College Karnal Haryana India), Harleen Kaur (0000-0002-4090-3672, Department of Botany and Environmental Studies DAV University Jalandhar Punjab India), Monika Thakur (0000-0003-3004-4656, Division Botany, Department of Bio‐Sciences Career Point University Hamirpur Himachal Pradesh India), Ashish Sharma (0000-0002-9232-3688, Department of Botany and Environmental Studies DAV University Jalandhar Punjab India), Maja Radziemska (0000-0002-3526-5944, Institute of Environmental Engineering Warsaw University of Life Sciences Warsaw Poland), Rupesh Kumar (0000-0002-6590-4313, Jindal Global Business School (JGBS) O.P. Jindal Global University Sonipat Haryana India)
Year2026
Publication date2026-06-25
Peer ReviewedYes
Open AccessYes
TypeARTICLE
VenueLand Degradation and Development (JOURNAL)
Journal identifiersISSN: 1085-3278 • E-ISSN: 1099-145X
PublisherWiley (PUBLISHER • GB)
DOI10.1002/ldr.70754
OpenAlexW7165902231
LanguageEN
References cited212

The increasing concentration of antimony (Sb) in the environment has raised significant concerns throughout the globe owing to its potential toxicity. It enters the ecosystem mainly through anthropogenic activities, including coal mining, industries, leaching, urbanization, and the weathering of the parent rocks. This literature review provides an in‐depth overview of the sources of Sb contamination, its speciation and bioavailability in the soil–plant system, as well as the mechanisms governing its uptake and sequestration by the plants. The Sb toxicity adversely affects numerous characteristics of plant physiology, such as seed germination, plant growth, nutrient uptake, and interferes with the photosynthetic system. The review also examines various remediation strategies for Sb, evaluating their efficiency, economic, and applicability in different environmental contexts. These methods inclusively restore degraded land by reinstating the production and its ecosystem service value. The findings of this review offer valuable insights into the potential novel approaches for mitigating the Sb pollution, thereby improving the management of Sb contaminated soils and reducing associated ecological and human health risks

Antimony · Ecosystem · Ecosystem services · Environmental remediation · Nutrient · Soil contamination · Soil water · Weathering · Arsenic contamination and mitigation · Coal and Its By-products · Heavy metals in environment

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    Open Access•Karolina Lewińska, Anna Karczewska et al.•International Journal of…•2018

Citation velocityhistorical
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