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Phytoremediation of atrazine by three emergent hydrophytes in a hydroponic system

机译:水培系统中三种新兴水生植物对阿特拉津的植物修复作用

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A hydroponic system was used to evaluate atrazine (ATZ) removal and uptake by three emergent hydrophytes, Iris pseudacorus, Lythrum salicaria and Acorus calamus, determining their potential as phytoremediation agents for ATZ-contaminated water. After 20 days of exposure, the relative growth rate of plants in sterile conditions was less than in natural conditions. ATZ amount in a culture solution planted with emergent plants decreased significantly compared with an unplanted solution, and the removal rate of ATZ in natural conditions was greater than in sterile conditions (p < 0.05). The degradation contributions of I. pseudacorus, L. salicaria and A. calamus were 75.6, 65.5 and 61.8%, respectively. Those of the corresponding microbial population in the solution were 5.4, 11.4 and 17.4%, respectively. Emergent plants play a dominant role in reducing the ATZ level in the water body and could be used as phytoremediation agents.
机译:水培系统用于评估三种新兴水生植物鸢尾,鸢尾柳和水Ly蒲的去除和吸收at去津(ATZ)的能力,确定它们作为被ATZ污染水的植物修复剂的潜力。暴露20天后,无菌条件下植物的相对生长速率低于自然条件下的相对生长速率。与未种植的溶液相比,种植有萌发植物的培养液中的ATZ含量显着降低,并且在自然条件下的ATZ去除率大于无菌条件下的PTZ去除率(p <0.05)。 Pseudacorus,L。salicaria和A. calamus的降解贡献分别为75.6、65.5和61.8%。溶液中相应的微生物种群分别为5.4%,11.4%和17.4%。新兴植物在降低水体中ATZ的水平中起着主导作用,可以用作植物修复剂。

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