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马铃薯皮生物炭对污染土壤中重金属的吸附和固定效率。

The efficiency of potato peel biochar for the adsorption and immobilization of heavy metals in contaminated soil.

作者信息

Gholami Leila, Rahimi Ghasem

机构信息

Soil Science Department, Faculty of Agriculture, Bu-Ali Sina University, Hamedan, Iran.

出版信息

Int J Phytoremediation. 2023;25(2):263-273. doi: 10.1080/15226514.2022.2073962. Epub 2022 May 17.

Abstract

We investigated the potential application of potato peel biochar (PPB) for the adsorption and immobilization of heavy metals (Cd, Pb, and Ni) in contaminated acidic soil. The addition of PPB to the soil, especially at the application rate of 8%, increased soil pH, cation exchange capacity (CEC), and organic carbon (OC). The maximum adsorption capacity of Cd, Pb, and Ni in the soil amended with PPB at the application rate of 8% was 3215.9, 4418.67, and 3508.51 mg kg, respectively. Compared to the control, the addition of 8% PPB to the soil decreased the soluble and exchangeable fraction of Cd, Pb, and Ni to 84.3, 90.6, and 79.1 mg kg, respectively. In contrast, the addition of 8% PPB to the soil increased the organically-bound and residual fractions of metals in the following order: Pb > Cd > Ni, and Cd > Pb > Ni, respectively. The results of this study showed that potato peel biochar has the potential to stabilize and reduce the bioavailability of heavy metals in contaminated acidic soil. Therefore, potato peel biochar can serve as an eco-friendly, low-cost, and efficient adsorbent to immobilization of heavy metals in contaminated acidic soils.NOVELTY STATEMENTEffect of biochar produced from potato peel on the adsorption of the heavy metals in contaminated acidic soil.Immobilization of heavy metals in contaminated acidic soil amended with potato peel biochar.Improving the chemical properties of soil amended with potato peel biochar.

摘要

我们研究了马铃薯皮生物炭(PPB)在吸附和固定污染酸性土壤中重金属(镉、铅和镍)方面的潜在应用。向土壤中添加PPB,尤其是添加量为8%时,可提高土壤pH值、阳离子交换容量(CEC)和有机碳(OC)。添加量为8%的PPB改良土壤中镉、铅和镍的最大吸附容量分别为3215.9、4418.67和3508.51 mg/kg。与对照相比,向土壤中添加8%的PPB可使镉、铅和镍的可溶态和交换态含量分别降至84.3、90.6和79.1 mg/kg。相比之下,向土壤中添加8%的PPB可使金属的有机结合态和残留态含量按以下顺序增加:铅>镉>镍,以及镉>铅>镍。本研究结果表明,马铃薯皮生物炭具有稳定和降低污染酸性土壤中重金属生物有效性的潜力。因此,马铃薯皮生物炭可作为一种生态友好、低成本且高效的吸附剂,用于固定污染酸性土壤中的重金属。

新颖性声明

马铃薯皮产生的生物炭对污染酸性土壤中重金属吸附的影响。

用马铃薯皮生物炭改良污染酸性土壤中重金属的固定化。

改善用马铃薯皮生物炭改良土壤的化学性质。

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