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生物炭改良与植物修复:一种用于有效去除靶场土壤中铅的联合方法。

Biochar Amendments and Phytoremediation: A Combined Approach for Effective Lead Removal in Shooting Range Soils.

作者信息

Maceiras Rocio, Perez-Rial Leticia, Alfonsin Victor, Feijoo Jorge, Lopez Ignacio

机构信息

Defense University Center, Spanish Naval Academy, Plaza de España s/n, 36920 Marín, Spain.

出版信息

Toxics. 2024 Jul 19;12(7):520. doi: 10.3390/toxics12070520.

Abstract

The increasing contamination of soil with heavy metals poses a problem to environmental sustainability. Among these pollutants, lead is particularly concerning due to its persistence in the environment, with harmful effects on human health and ecosystems. Various strategies that combine phytoremediation techniques with soil amendments have emerged to mitigate lead contamination. In this context, biochar has gained significant attention for its potential to enhance soil quality and remediate metal-contaminated environments. This study aims to investigate the combined effect of biochar amendments on the phytoremediation of lead-contaminated shooting range soils. A series of experiments were conducted to determine the impact of the amount and distribution of biochar on lead removal from soil. Soil samples were incubated with biochar for one week, after which two types of seeds ( and ) were planted. Plant and root lengths, as well as the number of germinated seeds, were measured, and a statistical analysis was conducted to determine the influence of the amendments. After one month, the Pb concentration decreased by more than 70%. Our results demonstrate that seed germination and plant growth were significantly better in soil samples where biochar was mixed rather than applied superficially, with the optimal performance observed at a 10% wt. biochar amendment. Additionally, the combined use of biochar and phytoremediation proved highly effective in immobilizing lead and reducing its bioavailability. These findings suggest that the combination of biochar, particularly when mixed at appropriate concentrations, and significantly improved lead removal efficiency.

摘要

土壤中重金属污染的不断加剧对环境可持续性构成了问题。在这些污染物中,铅因其在环境中的持久性以及对人类健康和生态系统的有害影响而格外令人担忧。各种将植物修复技术与土壤改良剂相结合的策略已应运而生,以减轻铅污染。在此背景下,生物炭因其提升土壤质量和修复金属污染环境的潜力而备受关注。本研究旨在调查生物炭改良剂对铅污染靶场土壤植物修复的综合影响。进行了一系列实验以确定生物炭的用量和分布对土壤中铅去除的影响。将土壤样品与生物炭一起培养一周,之后种植两种类型的种子( 和 )。测量了植物和根的长度以及发芽种子的数量,并进行了统计分析以确定改良剂的影响。一个月后,铅浓度下降了70%以上。我们的结果表明,在生物炭混合而非表面施用的土壤样品中,种子发芽和植物生长明显更好,在生物炭添加量为10%(重量)时观察到最佳性能。此外,生物炭与植物修复的联合使用在固定铅并降低其生物有效性方面被证明非常有效。这些发现表明,生物炭的组合,特别是在以适当浓度混合时,显著提高了铅的去除效率。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/97d9/11281196/a744d2771f4d/toxics-12-00520-g001.jpg

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