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Sugar beet factory lime affects the mobilization of Cd, Co, Cr, Cu, Mo, Ni, Pb, and Zn under dynamic redox conditions in a contaminated floodplain soil.
J Environ Manage. 2017 Jan 15; 186(Pt 2):253-260.JE

Abstract

The impact of sugar beet factory lime (SBFL) on the release dynamics and mobilization of toxic metals (TMs) under dynamic redox conditions in floodplain soils has not been studied up to date. Therefore, the aim of this study was to verify the scientific hypothesis that SBFL is able to immobilize Cd, Co, Cr, Cu, Fe, Mn, Mo, Ni, Pb, and Zn under different redox potentials (EH) in a contaminated floodplain soil. For this purpose, the non-treated contaminated soil (CS) and the same soil treated with SBFL (CS+SBFL) were flooded in the laboratory using a highly sophisticated automated biogeochemical microcosm apparatus. The experiment was conducted stepwise from reducing (-13 mV) to oxidizing (+519 mV) soil conditions. Soil pH decreased under oxic conditions in CS (from 6.9 to 4.0) and in CS+SBFL (from 7.5 to 4.4). The mobilization of Cu, Cr, Pb, and Fe were lower in CS+SBFL than in CS under both reducing/neutral and oxic/acidic conditions. Those results demonstrate that SBFL is able to decrease concentrations of these elements under a wide range of redox and pH conditions. The mobilization of Cd, Co, Mn, Mo, Ni, and Zn were higher in CS+SBFL than in CS under reducing/neutral conditions; however, these concentrations showed an opposite behavior under oxic/acidic conditions and were lower in CS+SBFL than in CS. We conclude that SBFL immobilized Cu, Cr, Pb, and Fe under dynamic redox conditions and immobilized Cd, Co, Mn, Mo, Ni, and Zn under oxic acidic conditions; however, the latter elements were mobilized under reducing neutral conditions in the studied soil. Therefore, the addition of SBFL to acid floodplain soils contaminated with TMs might be an important alternative for ameliorating these soils with view to a sustainable management of these soils.

Authors+Show Affiliations

University of Kafrelsheikh, Faculty of Agriculture, Department of Soil and Water Sciences, 33 516, Kafr El-Sheikh, Egypt; University of Wuppertal, Soil- and Groundwater-Management, Pauluskirchstraβe 7, 42285, Wuppertal, Germany. Electronic address: smshaheen@agr.kfs.edu.eg.University of Wuppertal, Soil- and Groundwater-Management, Pauluskirchstraβe 7, 42285, Wuppertal, Germany. Electronic address: rinklebe@uni-wuppertal.de.

Pub Type(s)

Journal Article

Language

eng

PubMed ID

27499501

Citation

Shaheen, Sabry M., and Jörg Rinklebe. "Sugar Beet Factory Lime Affects the Mobilization of Cd, Co, Cr, Cu, Mo, Ni, Pb, and Zn Under Dynamic Redox Conditions in a Contaminated Floodplain Soil." Journal of Environmental Management, vol. 186, no. Pt 2, 2017, pp. 253-260.
Shaheen SM, Rinklebe J. Sugar beet factory lime affects the mobilization of Cd, Co, Cr, Cu, Mo, Ni, Pb, and Zn under dynamic redox conditions in a contaminated floodplain soil. J Environ Manage. 2017;186(Pt 2):253-260.
Shaheen, S. M., & Rinklebe, J. (2017). Sugar beet factory lime affects the mobilization of Cd, Co, Cr, Cu, Mo, Ni, Pb, and Zn under dynamic redox conditions in a contaminated floodplain soil. Journal of Environmental Management, 186(Pt 2), 253-260. https://doi.org/10.1016/j.jenvman.2016.07.060
Shaheen SM, Rinklebe J. Sugar Beet Factory Lime Affects the Mobilization of Cd, Co, Cr, Cu, Mo, Ni, Pb, and Zn Under Dynamic Redox Conditions in a Contaminated Floodplain Soil. J Environ Manage. 2017 Jan 15;186(Pt 2):253-260. PubMed PMID: 27499501.
* Article titles in AMA citation format should be in sentence-case
TY - JOUR T1 - Sugar beet factory lime affects the mobilization of Cd, Co, Cr, Cu, Mo, Ni, Pb, and Zn under dynamic redox conditions in a contaminated floodplain soil. AU - Shaheen,Sabry M, AU - Rinklebe,Jörg, Y1 - 2016/08/04/ PY - 2016/02/18/received PY - 2016/07/16/revised PY - 2016/07/18/accepted PY - 2016/8/9/pubmed PY - 2017/3/28/medline PY - 2016/8/9/entrez KW - Agro-environmental management KW - Liming materials release kinetics KW - Redox processes KW - Toxic metals KW - Wetlands SP - 253 EP - 260 JF - Journal of environmental management JO - J Environ Manage VL - 186 IS - Pt 2 N2 - The impact of sugar beet factory lime (SBFL) on the release dynamics and mobilization of toxic metals (TMs) under dynamic redox conditions in floodplain soils has not been studied up to date. Therefore, the aim of this study was to verify the scientific hypothesis that SBFL is able to immobilize Cd, Co, Cr, Cu, Fe, Mn, Mo, Ni, Pb, and Zn under different redox potentials (EH) in a contaminated floodplain soil. For this purpose, the non-treated contaminated soil (CS) and the same soil treated with SBFL (CS+SBFL) were flooded in the laboratory using a highly sophisticated automated biogeochemical microcosm apparatus. The experiment was conducted stepwise from reducing (-13 mV) to oxidizing (+519 mV) soil conditions. Soil pH decreased under oxic conditions in CS (from 6.9 to 4.0) and in CS+SBFL (from 7.5 to 4.4). The mobilization of Cu, Cr, Pb, and Fe were lower in CS+SBFL than in CS under both reducing/neutral and oxic/acidic conditions. Those results demonstrate that SBFL is able to decrease concentrations of these elements under a wide range of redox and pH conditions. The mobilization of Cd, Co, Mn, Mo, Ni, and Zn were higher in CS+SBFL than in CS under reducing/neutral conditions; however, these concentrations showed an opposite behavior under oxic/acidic conditions and were lower in CS+SBFL than in CS. We conclude that SBFL immobilized Cu, Cr, Pb, and Fe under dynamic redox conditions and immobilized Cd, Co, Mn, Mo, Ni, and Zn under oxic acidic conditions; however, the latter elements were mobilized under reducing neutral conditions in the studied soil. Therefore, the addition of SBFL to acid floodplain soils contaminated with TMs might be an important alternative for ameliorating these soils with view to a sustainable management of these soils. SN - 1095-8630 UR - https://www.unboundmedicine.com/medline/citation/27499501/Sugar_beet_factory_lime_affects_the_mobilization_of_Cd_Co_Cr_Cu_Mo_Ni_Pb_and_Zn_under_dynamic_redox_conditions_in_a_contaminated_floodplain_soil_ DB - PRIME DP - Unbound Medicine ER -