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利用煤矸石合成的氧化铝-硅纳米改良剂固定污染土壤中的 Pb 和 Zn。

Immobilization of Pb and Zn in Contaminated Soil Using Alumina-Silica Nano-Amendments Synthesized from Coal Fly Ash.

机构信息

School of Chemistry and Civil Engineering, Shaoguan University, Shaoguan 512005, China.

出版信息

Int J Environ Res Public Health. 2022 Dec 3;19(23):16204. doi: 10.3390/ijerph192316204.

Abstract

To apply coal fly ash to the remediation of heavy-metal-contaminated soil, an alumina-silica nano-amendment (ASNA) was synthesized from coal fly ash and was used for the immobilization of lead and zinc in contaminated soil. The investigation on the synthesis of the ASNA shows that the ASNA can be obtained under a roasting temperature of 700 °C, a ratio of alkali to coal fly ash of 1.2:1, and a molar ratio of silicon to aluminum of 1:1. The ASNA could increase the soil pH and cation exchange capacity (CEC) and decrease the bioavailability of Pb and Zn. When the ASNA addition increased from 0 to 2%, the bioavailability (extracted by CaCl) of Pb and Zn decreased by 47% and 72%, respectively. Moreover, the addition of the ASNA facilitated the transformation of Pb from a reducible fraction to oxidizable and residual fractions and Zn from an exchangeable fraction to a residual fraction. The correlation analysis and cluster analysis verify that the ASNA modulates the chemical speciation of heavy metals by increasing the soil's CEC and pH, thereby immobilizing heavy metals. It is expected that this study can provide a new method for the remediation of Pb- and Zn-contaminated soil.

摘要

为了将粉煤灰应用于重金属污染土壤的修复,本研究从粉煤灰中合成了一种氧化铝-硅纳米添加剂(ASNA),并将其用于污染土壤中铅和锌的固定。ASNA 的合成研究表明,在 700°C 的焙烧温度、碱与粉煤灰的比例为 1.2:1 和硅与铝的摩尔比为 1:1 的条件下可以获得 ASNA。ASNA 可以提高土壤 pH 值和阳离子交换容量(CEC),降低 Pb 和 Zn 的生物有效性。当 ASNA 添加量从 0 增加到 2%时,Pb 和 Zn 的生物有效性(用 CaCl 提取)分别降低了 47%和 72%。此外,ASNA 的添加促进了 Pb 从可还原态向可氧化态和残渣态以及 Zn 从可交换态向残渣态的转化。相关性分析和聚类分析验证了 ASNA 通过增加土壤的 CEC 和 pH 值来调节重金属的化学形态,从而固定重金属。预计本研究可为 Pb 和 Zn 污染土壤的修复提供一种新方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ab10/9740954/1c5dab0a3b16/ijerph-19-16204-g001.jpg

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