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监测方法的实施:塞尔维亚共和国的帕利奇-卢达斯湖系统。

Implementation of a monitoring approach: the Palic-Ludas lake system in the Republic of Serbia.

机构信息

Faculty of Civil Engineering Subotica, University of Novi Sad, Kozaracka 2a, 24000, Subotica, Serbia.

出版信息

Environ Monit Assess. 2020 Jan 30;192(2):150. doi: 10.1007/s10661-019-7927-9.

Abstract

This paper presents the development and implementation of a monitoring procedure on the Palic-Ludas lake system in the north of the Republic of Serbia. After evaluating the system's current monitoring approach, additional measurements were conducted for both hydraulic and water quality parameters. The considered area is a complex system that incorporates lakes, hydraulic structures, and a channel, with a waste water treatment plant on its upstream, and a nature protection area on its downstream end, making its monitoring and management an interesting challenge. The available data was used to analyze both spacial and temporal changes of water quality parameters throughout the area. Conclusions were made regarding the onset of anoxia and the possible release of nutrients from sediment in some parts of the lake system. Using the available data and the Canadian Council of Ministers of the Environment Water Quality Index (CCME WQI) method, it was determined that the current status of the lakes is between poor and marginal. This result certainly adds to the importance of enhancing the current monitoring approach. Consequently, the authors proposed the implementation of a monitoring system, so that the gathered information would be useful for decision makers. The CCME WQI method proved to be a beneficial way to describe and monitor the overall state of this complex lake system; therefore, future data gathering activity should be conceived in a way to facilitate this method of computing the water quality index.

摘要

本文介绍了在塞尔维亚北部的帕利奇-卢达斯湖系统中开发和实施监测程序的情况。在评估了系统当前的监测方法之后,对液压和水质参数进行了额外的测量。所考虑的区域是一个复杂的系统,包括湖泊、水力结构和渠道,其上游有一个废水处理厂,下游有一个自然保护区,因此其监测和管理是一个有趣的挑战。利用现有数据,分析了整个区域水质参数的时空变化。结论是关于缺氧的开始和湖泊系统某些部分的沉积物中可能释放营养物质。利用现有数据和加拿大环境部长理事会水质指数(CCME WQI)方法,确定了湖泊目前的状况处于较差和边缘之间。这一结果无疑增加了加强当前监测方法的重要性。因此,作者提出实施监测系统,以便收集的信息对决策者有用。CCME WQI 方法被证明是描述和监测这个复杂的湖泊系统整体状况的有益方法;因此,未来的数据收集活动应考虑以方便这种水质指数计算方法。

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