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Fate and Distribution of Heavy Metals in Wastewater Irrigated Calcareous Soils

机译:废水灌溉钙质土壤中重金属的命运和分布

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Accumulation of heavy metals in Jordanian soils irrigated with treated wastewater threatens agricultural sustainability. This study was carried out to investigate the environmental fate of Zn, Ni, and Cd in calcareous soils irrigated with treated wastewater and to elucidate the impact of hydrous ferric oxide (HFO) amendment on metal redistribution among soil fractions. Results showed that sorption capacity for Zarqa River (ZR1) soil was higher than Wadi Dhuleil (WD1) soil for all metals. The order of sorption affinity for WD1 was in the decreasing order of Ni > Zn > Cd, consistent with electrostatic attraction and indication of weak association with soil constituents. Following metal addition, Zn and Ni were distributed among the carbonate and Fe/Mn oxide fractions, while Cd was distributed among the exchangeable and carbonate fractions in both soils. Amending soils with 3% HFO did not increase the concentration of metals associated with the Fe/Mn oxide fraction or impact metal redistribution. The study suggests that carbonates control the mobility and bioavailability of Zn, Ni, and Cd in these calcareous soils, even in presence of a strong adsorbent such as HFO. Thus, it can be inferred that in situ heavy metal remediation of these highly calcareous soils using iron oxide compounds could be ineffective.
机译:与经过治疗的废水灌溉的约旦土壤中重金属的积累威胁到农业可持续性。该研究进行了探讨用处理过的废水灌溉的钙质土壤中Zn,Ni和Cd的环境命运,并阐明含水氧化铁(HFO)修正对土壤部分金属再分布的影响。结果表明,Zarqa河(ZR1)土壤的吸附能力高于所有金属的旱绒突(WD1)土壤。对WD1的吸附亲和力顺序是Ni> Zn> Cd的降低,与静电吸引力一致,与土壤成分的弱结合的指示一致。在金属添加之后,Zn和Ni分布在碳酸盐和Fe / Mn氧化物级分之间,而Cd在两种土壤中的可交换和碳酸盐馏分中分布。使用3%HFO的修补土壤并未增加与Fe / Mn氧化物分数或冲击金属再分配相关的金属的浓度。该研究表明,即使存在强烈的吸附剂如HFO,碳酸盐酸碳酸盐控制这些钙质土壤中Zn,Ni和Cd的迁移率和生物利用度。因此,可以推断出使用氧化铁化合物的这些高钙土壤的原位重金属的修复可能是无效的。

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