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利用四种不同树种对硝酸盐污染水体进行植物净化

Phytodepuration of Nitrate Contaminated Water Using Four Different Tree Species.

作者信息

Regni Luca, Bartucca Maria Luce, Pannacci Euro, Tei Francesco, Del Buono Daniele, Proietti Primo

机构信息

Department of Agricultural, Food and Environmental Sciences, University of Perugia, Via Borgo XX Giugno 74, 06121 Perugia, Italy.

出版信息

Plants (Basel). 2021 Mar 10;10(3):515. doi: 10.3390/plants10030515.

Abstract

Water pollution by excessive amounts of nitrate (NO) has become a global issue. Technologies to clean up nitrate-contaminated water bodies include phytoremediation. In this context, this research aimed to evaluate four tree species ( L., L., L. and L.) to remediate nitrate-contaminated waters (100 and 300 mg L). Some physiological parameters showed that L. and L. increased particularly photosynthetic activity, chlorophyll content, dry weight, and transpired water, following the treatments with the above NO concentrations. Furthermore, these species were more efficient than the others studied in the phytodepuration of water contaminated by the two NO levels. In particular, within 15 days of treatment, L. and L. removed nitrate quantities ranging from 39 to 78%. Differently, L. and L. did not show particular responses regarding the physiological traits studied. Nonetheless, these species removed up to 30% of nitrate from water. In conclusion, these data provide exciting indications on the chance of using L. and L. to populate buffer strips to avoid NO environmental dispersion in agricultural areas.

摘要

过量硝酸盐(NO)造成的水污染已成为一个全球性问题。清理受硝酸盐污染水体的技术包括植物修复。在此背景下,本研究旨在评估四种树种([树种名称1]、[树种名称2]、[树种名称3]和[树种名称4])对受硝酸盐污染水体(100毫克/升和300毫克/升)的修复效果。一些生理参数表明,在用上述硝酸盐浓度处理后,[树种名称1]和[树种名称2]的光合活性、叶绿素含量、干重和蒸腾水量尤其增加。此外,在对受两种硝酸盐水平污染的水体进行植物净化方面,这些树种比其他研究的树种更有效。特别是,在处理的15天内,[树种名称1]和[树种名称2]去除的硝酸盐量在39%至78%之间。不同的是,[树种名称3]和[树种名称4]在所研究的生理特性方面未表现出特别的反应。尽管如此,这些树种从水中去除了高达30%的硝酸盐。总之,这些数据为利用[树种名称1]和[树种名称2]种植缓冲带以避免农业区硝酸盐的环境扩散提供了令人振奋的迹象。

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