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采用低电压梯度原位电动修复稻田土壤中总镉和植物有效态镉。

In situ electrokinetic (EK) remediation of the total and plant available cadmium (Cd) in paddy agricultural soil using low voltage gradients at pilot and full scales.

机构信息

Key Laboratory of Heavy Metal Pollution Prevention of Guangdong Environmental Protection of Mining and Metallurgy Industry, Guangdong Engineering and Technology Research Center of Solid Waste Resource Recovery and Heavy Metal Pollution Control, Guangdong Polytechnic of Environmental Protection Engineering, No. 98 Guidan West Road, Nanhai District, Foshan 528216, PR China.

Faculty of Biological and Environmental Sciences, Ecosystems and Environment Research Programme, University of Helsinki, Niemenkatu 73, FI-15140 Lahti, Finland.

出版信息

Sci Total Environ. 2021 Sep 1;785:147277. doi: 10.1016/j.scitotenv.2021.147277. Epub 2021 Apr 23.

Abstract

Electrokinetic (EK) remediation has been widely studied at laboratory scales. However, field-scale research is far less. In this study, a 14-day EK remediation was carried out, in a field pilot (4 m) test and a full-scale (200 m) application for the first time, in a cadmium (Cd) contaminated paddy agricultural field near a mining area. A low voltage of 20 V was applied at both scales; voltage gradient was 20 V m and 4 V m at the pilot and full scales, respectively. Samples were taken from near the anode and cathode, and in the middle of the electric field, in the soil layers 0-10 cm, 10-20 cm, and 40-50 cm. After the EK remediation, a significant portion of the total Cd was removed in all the layers at the pilot scale, by 87%, 72%, and 54% from the top down, but only in the 0-10 cm layer at the full scale by 74%. As for the plant available (exchangeable and soluble) Cd, significant removal (64%) was only observed in the 0-10 cm layer at the pilot scale. The percentage reduction of the electrical conductivity and removal efficiency of the total Cd was higher near the anode than the cathode. The soil pH was elevated near the cathode but stayed below pH 6 due to the sufficient supply of lactic acid. After the EK remediation, the concentration of the total Cd dropped below the hazard threshold, i.e. 0.4 mg (kg dry wt soil) for agricultural paddy fields in China. A total energy of 2 kW·h and 0.6 kW·h was consumed at the pilot and full scales, respectively. This study showed a successful in situ EK remediation of Cd contaminated paddy agricultural soil, especially in the surface layer, with low voltage and energy demand.

摘要

电动修复(EK)已在实验室规模上得到广泛研究。然而,现场规模的研究却很少。本研究首次在矿区附近的镉(Cd)污染稻田进行了为期 14 天的现场中试(4 米)和全尺寸(200 米)EK 修复。在这两个规模上都施加了 20V 的低电压;中试和全尺寸的电压梯度分别为 20V m 和 4V m。从阳极和阴极附近以及电场中间,在土壤层 0-10cm、10-20cm 和 40-50cm 处采集了样本。EK 修复后,在中试规模的所有土层中,大部分总 Cd 被去除,从上到下分别为 87%、72%和 54%,但在全尺寸规模的仅在 0-10cm 层中去除了 74%。对于植物可利用(可交换和可溶)Cd,仅在中试规模的 0-10cm 层中观察到显著去除(64%)。总 Cd 的电导率降低率和去除效率在阳极附近比阴极附近更高。在阴极附近土壤 pH 值升高,但由于乳酸供应充足,仍保持在 pH6 以下。EK 修复后,总 Cd 浓度降至中国农业稻田的危害阈值以下,即 0.4mg(kg 干重土壤)。中试和全尺寸分别消耗了 2kW·h 和 0.6kW·h 的总能量。本研究表明,在低电压和低能耗的情况下,成功地原位修复了 Cd 污染的稻田土壤,尤其是在表层。

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