Suppr超能文献

中国三峡库区镉(Cd)污染土壤的植物修复效率评估

A Phytoremediation Efficiency Assessment of Cadmium (Cd)-Contaminated Soils in the Three Gorges Reservoir Area, China.

作者信息

Guo Yinhua, Liu Wei, Zeng Lixiong, Qiu Liwen, Wu Di, Wen Hao, Yuan Rui, Zhang Dingjun, Tang Rongbin, Chen Zhan

机构信息

China Three Gorges Corporation National Engineering Research Center of Eco-Environment in the Yangtze River Economic Belt, Wuhan 430010, China.

Hubei Key Laboratory of Rare Resource Plants in Three Gorges Reservoir Area, Yichang 443000, China.

出版信息

Plants (Basel). 2025 Jul 16;14(14):2202. doi: 10.3390/plants14142202.

Abstract

To investigate the remediation efficiency of different plant species on cadmium (Cd)-contaminated soil, this study conducted a pot experiment with two woody species ( and ) and two herbaceous species ( and ). Soils were collected from an abandoned coal mine and adjacent pristine natural areas within the dam-adjacent section of the Three Gorges Reservoir Area to establish three soil treatment groups: unpolluted soil (T1, 0.18 mg·kg Cd), a 1:1 mixture of contaminated and unpolluted soil (T2, 0.35 mg·kg Cd), and contaminated coal mine soil (T3, 0.54 mg·kg Cd). This study aimed to investigate the growth status of plants, Cd accumulation and translocation characteristics, and the relationship between them and soil environmental factors. Woody plants exhibited significant advantages in aboveground biomass accumulation. Under T3 treatment, the Cd extraction amount of (224.93 mg) increased by about 36 times compared to T1, and the extraction efficiency (6.42%) was significantly higher than other species. Among the herbaceous species, showed the maximum Cd extraction amount (66.26 mg) and extraction efficiency (3.11%) during T2 treatment. While exhibited a trend of increasing extraction amount but decreasing extraction efficiency with increasing concentration. With the exception of under T1 treatment ( = 0.78), the bioconcentration factor was greater than 1 in both woody ( = 1.39-6.42) and herbaceous species ( = 1.39-3.11). However, herbaceous plants demonstrated significantly higher translocation factors ( = 1.58-3.43) compared to woody species ( = 0.31-0.87). There was a significant negative correlation between aboveground phosphorus (P) content and root Cd ( < 0.05), while underground nitrogen (N) content was positively correlated to aboveground Cd content ( < 0.05). Soil total N and available P were significantly positively correlated with plant Cd absorption, whereas total potassium (K) showed a negative correlation. This study demonstrated that woody plants can achieve long-term remediation through biomass advantages, while herbaceous plants, with their high transfer efficiency, are suitable for short-term rotation. In the future, it is suggested to conduct a mixed planting model of woody and herbaceous plants to remediate Cd-contaminated soils in the tailing areas of reservoir areas. This would synergistically leverage the dual advantages of root retention and aboveground removal, enhancing remediation efficiency. Concurrent optimization of soil nutrient management would further improve the Cd remediation efficiency of plants.

摘要

为研究不同植物物种对镉(Cd)污染土壤的修复效率,本研究对两种木本植物( 和 )和两种草本植物( 和 )进行了盆栽试验。土壤采自三峡库区大坝附近段的一个废弃煤矿及相邻原始自然区域,以建立三个土壤处理组:未污染土壤(T1,镉含量0.18 mg·kg)、污染土壤与未污染土壤1:1混合土(T2,镉含量0.35 mg·kg)和污染煤矿土壤(T3,镉含量0.54 mg·kg)。本研究旨在调查植物的生长状况、镉积累和转运特征,以及它们与土壤环境因子之间的关系。木本植物在地上生物量积累方面表现出显著优势。在T3处理下, (224.93 mg)的镉提取量相比T1增加了约36倍,提取效率(6.42%)显著高于其他物种。在草本植物中, 在T2处理期间镉提取量最大(66.26 mg),提取效率(3.11%)最高。而 随着浓度增加呈现提取量增加但提取效率降低的趋势。除T1处理下的 ( = 0.78)外,木本植物( = 1.39 - 6.42)和草本植物( = 1.39 - 3.11)的生物富集系数均大于1。然而,草本植物的转运系数( = 1.58 - 3.43)显著高于木本植物( = 0.31 - 0.87)。地上磷(P)含量与根系镉含量呈显著负相关( < 0.05),而地下氮(N)含量与地上镉含量呈正相关( < 0.05)。土壤全氮和有效磷与植物镉吸收显著正相关,而全钾(K)呈负相关。本研究表明,木本植物可通过生物量优势实现长期修复,而草本植物因其高转运效率适合短期轮作。未来,建议采用木本植物和草本植物混合种植模式修复库区尾矿库镉污染土壤。这将协同利用根系固持和地上移除的双重优势,提高修复效率。同时优化土壤养分管理将进一步提高植物对镉的修复效率。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d339/12297884/b6c82d206936/plants-14-02202-g001.jpg

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验