Effects of soil moisture and an AC-electric field on the phytoremediation of the Cd-contaminated soil.

IF 2.2 4区 环境科学与生态学 Q3 ENVIRONMENTAL SCIENCES Environmental Technology Pub Date : 2025-02-01 Epub Date: 2024-07-17 DOI:10.1080/09593330.2024.2368687
Juanxin Hu, Bo Liu, Xiaolan Xu, Zhansheng Mao, Zhengqian Ye, Dan Liu, Xianzhi Fang
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Abstract

Phytoremediation enhanced by electric field has been considered a green and low-cost technology for remediating heavy metal-contaminated soils. Soil moisture is a main environmental factor that affects Cd availability in the soil. However, the effects of soil moisture and AC-electric field on the remediation efficiency of willow (Salix spp.) and S. Alfredii interplanted together remain unclear. In the present study, we designed four treatments (60% soil field capacity, 60% soil field capacity + 0.5 V·cm-1 AC, 100% soil field capacity, 100% soil field capacity + 0.5 V·cm-1 AC) to explore the impacts of soil moisture and AC-electric field on soil Cd availability and Cd accumulation in plants. The results showed that the application of an AC-electric field significantly increased soil Cd availability by 20.9% and 10.8% under both 60% and 100% soil field capacity, respectively. Both high water with and without AC-electric field treatments reduced the proportion of acid-extractable and reducible Cd of soil but increased the proportion of residual Cd. Compared with the control, an AC-electric field with 60% soil field capacity significantly enhanced the biomass of S. Alfredii shoots by 31.2% and increased Cd accumulation in willow leaves and S. Alfredii shoots by 14.6% and 32.3%, respectively. In addition, the biomass production of willow was significantly enhanced but the uptake of Cd by willow was dramatically decreased under an AC-electric field with high water treatment. Therefore, these results suggest that the AC-electric field combined with 60% soil field capacity may be a more promising remediation technique to clean up the Cd-contaminated soil.

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土壤湿度和交流电场对镉污染土壤植物修复的影响
利用电场增强植物修复被认为是一种绿色、低成本的重金属污染土壤修复技术。土壤湿度是影响土壤中镉含量的主要环境因素。然而,土壤水分和交流电场对柳树(Salix spp.)在本研究中,我们设计了四个处理(60% 土壤田间容量、60% 土壤田间容量 + 0.5 V-cm-1 交流电、100% 土壤田间容量、100% 土壤田间容量 + 0.5 V-cm-1 交流电)来探讨土壤水分和交流电场对土壤镉供应量和植物体内镉积累的影响。结果表明,在土壤水分为 60% 和土壤水分为 100% 的情况下,施加交流电场可显著提高土壤中镉的供应量,增幅分别为 20.9% 和 10.8%。施用交流电场的高水量处理和不施用交流电场的处理都降低了土壤中酸萃取镉和还原镉的比例,但增加了残余镉的比例。与对照组相比,60%土壤电场容量的交流电场显著提高了阿尔弗雷德柳树嫩枝生物量的 31.2%,并使柳树叶片和阿尔弗雷德柳树嫩枝中的镉积累量分别增加了 14.6% 和 32.3%。此外,在高水处理的交流电场下,柳树的生物量产量显著提高,但柳树对镉的吸收量却急剧下降。因此,这些结果表明,交流电场与 60% 的土壤场容相结合,可能是一种更有前景的净化镉污染土壤的修复技术。
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来源期刊
Environmental Technology
Environmental Technology 环境科学-环境科学
CiteScore
6.50
自引率
3.60%
发文量
0
审稿时长
4 months
期刊介绍: Environmental Technology is a leading journal for the rapid publication of science and technology papers on a wide range of topics in applied environmental studies, from environmental engineering to environmental biotechnology, the circular economy, municipal and industrial wastewater management, drinking-water treatment, air- and water-pollution control, solid-waste management, industrial hygiene and associated technologies. Environmental Technology is intended to provide rapid publication of new developments in environmental technology. The journal has an international readership with a broad scientific base. Contributions will be accepted from scientists and engineers in industry, government and universities. Accepted manuscripts are generally published within four months. Please note that Environmental Technology does not publish any review papers unless for a specified special issue which is decided by the Editor. Please do submit your review papers to our sister journal Environmental Technology Reviews at http://www.tandfonline.com/toc/tetr20/current
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