Indian River Research and Education Center, Institute of Food and Agricultural Sciences, University of Florida, Fort Pierce, FL 34945, USA.
J Hazard Mater. 2011 May 30;189(3):710-8. doi: 10.1016/j.jhazmat.2011.02.081. Epub 2011 Mar 3.
Chemical remediation has attracted increasing attention for heavy metal contaminated soils because of its relatively low cost and high efficiency. In this study laboratory incubation and column leaching experiments were conducted to understand the mechanisms of copper (Cu) immobilization by calcium water treatment residue (Ca-WTR) and to estimate the optimal rate for remediating Cu-contaminated soils. The results showed that Ca-WTR amendment significantly raised soil pH and decreased water soluble and exchangeable Cu by 62-90% in the contaminated soils. Most of the bioavailable Cu was converted into more stable Cu fractions, i.e. oxides-bound and residual Cu. The cumulative amount of Cu in the leachate after 10 leaching events was reduced by 80% and 73%, respectively for the two tested soils at the Ca-WTR rate of 20 g kg(-1) for Alfisol and 100 g kg(-1) for Spodosol. These results indicate that Ca-WTR is effective in raising soil pH and converting labile Cu to more stable forms in the contaminated soils. A pH value of 6.5 was found to be critical for lowering Cu availability in the soils. Based on this criterion and pH response curve to Ca-WTR application, the optimal rates of Ca-WTR can be estimated for different Cu-contaminated soils.
化学修复因其成本相对较低、效率较高而受到越来越多的关注,用于重金属污染土壤。本研究通过室内培养和柱淋溶实验,研究了钙水处理残渣(Ca-WTR)对铜(Cu)的固定机制,并估算了修复 Cu 污染土壤的最佳用量。结果表明,Ca-WTR 改良剂显著提高了污染土壤的 pH 值,使水溶态和可交换态 Cu 降低了 62-90%。大部分有效态 Cu 转化为更稳定的 Cu 形态,即氧化物结合态和残渣态 Cu。在 Alfisol 和 Spodosol 中,当 Ca-WTR 用量分别为 20 和 100 g kg(-1)时,经过 10 次淋溶后,淋出液中 Cu 的累积量分别减少了 80%和 73%。这些结果表明,Ca-WTR 可有效提高土壤 pH 值,并将污染土壤中不稳定的 Cu 转化为更稳定的形态。发现 pH 值为 6.5 是降低土壤中 Cu 有效性的关键。基于这一标准和 pH 值对 Ca-WTR 应用的响应曲线,可以估算不同 Cu 污染土壤的最佳 Ca-WTR 用量。