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镉在方解石上的吸附特性及其农业环境相关性。

Adsorption characteristics of cadmium onto calcite and its agricultural environmental relevance.

作者信息

Lee Hyun Ho

机构信息

Institute for Microbiology, Leibniz University Hannover, Herrenhäuser Str. 2, 30419, Hannover, Germany.

出版信息

Heliyon. 2024 Nov 15;11(1):e40241. doi: 10.1016/j.heliyon.2024.e40241. eCollection 2025 Jan 15.

Abstract

Calcite (CaCO), a common component of calcium-based fertilizers, has been recognized for its effectiveness as a cadmium (Cd) immobilization agent in the solidification/stabilization (S/S) method. This strategy is a widely used chemical remediation technique aimed at reducing the bioavailability and toxicity of Cd in contaminated soils. This study comprehensively evaluated the potential of calcite for Cd remediation through geochemical analyses, including adsorption isotherms, saturation index, ion concentration changes, and X-ray diffraction (XRD) analysis. Adsorption isotherm experiments indicated that Cd adsorption onto calcite aligns more closely with the Freundlich isotherm model, suggesting a heterogeneous surface with a maximum adsorption capacity of 1.56 mg g. Based on chemical states result, optimal conditions for CdCO precipitation with low Cd concentrations were identified at pH above 7.9. XRD analysis confirmed the formation of CaCdCO at higher Cd concentrations, indicating that chemisorption is the dominant immobilization mechanism. Additionally, variations in Ca and CO concentrations supported the substitution of Cd for Ca on the calcite surface. These findings highlight calcite's potential as an effective material for Cd immobilization, providing valuable insights for the developing more sustainable soil remediation strategies.

摘要

方解石(CaCO₃)是钙基肥料的常见成分,其作为固化/稳定化(S/S)方法中镉(Cd)固定剂的有效性已得到认可。该策略是一种广泛使用的化学修复技术,旨在降低污染土壤中镉的生物有效性和毒性。本研究通过地球化学分析全面评估了方解石修复镉的潜力,包括吸附等温线、饱和指数、离子浓度变化和X射线衍射(XRD)分析。吸附等温线实验表明,镉在方解石上的吸附更符合弗伦德利希等温线模型,表明表面不均一,最大吸附容量为1.56 mg g⁻¹。根据化学状态结果,确定了在pH高于7.9时低镉浓度下CdCO₃沉淀的最佳条件。XRD分析证实,在较高镉浓度下形成了CaCdCO₃,表明化学吸附是主要的固定机制。此外,Ca²⁺和CO₃²⁻浓度的变化支持了镉在方解石表面取代钙的过程。这些发现突出了方解石作为一种有效固定镉材料的潜力,为制定更可持续的土壤修复策略提供了有价值的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1db0/11699401/eb9a2857d554/gr1.jpg

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