Zhang Yan, Zhao Chen, Yu Aixin, Zhao Wanli, Ren Fangyun, Liu Yucan
College of Civil Engineering, Yantai University, Yantai 264000, China.
Toxics. 2022 Oct 12;10(10):603. doi: 10.3390/toxics10100603.
Atrazine, one of the most commonly used herbicides in the world, is of concern because of its frequent occurrence in various water bodies and the potential threat it constitutes to ecosystems. The transport of contaminants in seasonally ice-covered lakes is an important factor affecting the under-ice water environment, and changes in phase during ice growth and melting cause redistribution of atrazine between ice and water phases. To explore the migration pattern of atrazine during freezing and thawing, laboratory simulation experiments involving freezing and thawing were carried out. The effects of ice thickness, freezing temperature, and initial concentration on the migration ability of atrazine during freezing were investigated. The results showed that the relationship between the concentration of atrazine in ice and water during freezing was ice layer < water before freezing < water layer under the ice. Atrazine tended to migrate to under-ice water during the freezing process, and the intensity of migration was positively correlated with the ice thickness, freezing temperature, and initial concentration. During the thawing phase, atrazine trapped in the ice was released into the water in large quantities in the early stages. The first 20% of meltwater concentration was significantly higher than the average concentration in ice, with the highest case being 2.75 times the average concentration in ice. The results reported in this study are a useful reference for planning possible pollution control measures on such lakes during their freeze-thaw process.
阿特拉津是世界上最常用的除草剂之一,因其频繁出现在各种水体中并对生态系统构成潜在威胁而备受关注。季节性冰封湖泊中污染物的迁移是影响冰下水环境的一个重要因素,结冰和融化过程中的相变会导致阿特拉津在冰和水相之间重新分布。为了探究阿特拉津在冻融过程中的迁移模式,开展了涉及冻融的实验室模拟实验。研究了冰层厚度、冻结温度和初始浓度对阿特拉津在冻结过程中迁移能力的影响。结果表明,冻结过程中冰和水中阿特拉津浓度的关系为:冰层<冻结前的水<冰下的水层。在冻结过程中,阿特拉津倾向于迁移到冰下水体中,迁移强度与冰层厚度、冻结温度和初始浓度呈正相关。在解冻阶段,被困在冰中的阿特拉津在早期大量释放到水中。融化的前20%的水体中阿特拉津浓度显著高于冰中的平均浓度,最高可达冰中平均浓度的2.75倍。本研究报告的结果为规划此类湖泊在冻融过程中可能的污染控制措施提供了有用的参考。