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An integrated approach to assess the ecological and chemical status of lakes with HOD/AHOD: a case study of two lakes

机译:利用HOD / AHOD评估湖泊生态和化学状况的综合方法:以两个湖泊为例

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摘要

The thermal stratification of the lakes impedes the transfer of atmospheric oxygen into the lower layers of the lake.In lakes which are affected by diverse anthropogenic influences,the increasing organic matter amounts lead to a sharp decrease in hypolimnetic oxygen amounts,aided by thermal stratification,and anaerobic conditions arise.The determination of hypolimnetic oxygen demand (HOD) and areal hypolimnetic oxygen demand (AHOD) and their monitoring represent an integrated approach to investigate the oxygenation of lakes,the nutrient conditions,and the physicochemical dynamics.In this study,two lakes differing by size and affected by different anthropogenic sources,are investigated in this respect.At first,bathymetric studies were conducted to determine the depth,surface area,and volume relationships.Then,based on monitoring studies conducted in 2013 and 2014,the thermal stratification dynamics and layer properties were established using the relative thermal resistance to mixing (RTRM) index based on temperature and density profiles.Following this,the oxygen depletion rates were determined by oxygen and temperature profiling in the hypolimnion.For the years of 2013 and 2014,the AHOD values for the Borabey Pond which is far from anthropogenic influences,were found to be 0.848 and 0.569 g O2/(m·d),respectively.The AHOD values for the Porsuk Reservoir which was overburdened for years by industrial and domestic pollution were found to be 4.263 and 5.099 g O2/(m·d),larger than its counterpart by almost sevenfold.The HOD and AHOD monitoring can be considered to a valuable tool for assessing the ecological and chemical status of lakes within Annex 5 of the Water Framework Directive and as an integrated approach to assess and monitor the status of lakes.
机译:湖泊的热分层阻碍了大气氧气向湖泊下层的转移。在受到各种人为因素影响的湖泊中,有机质含量的增加导致低层次氧气的急剧减少,这归因于热分层。低氧需求量(HOD)和区域低氧需求量(AHOD)的测定及其监测是研究湖泊氧合作用,营养条件和理化动力学的综合方法。在本研究中,两个在这方面,对大小不同且受不同人为源影响的湖泊进行了研究。首先,进行了深度测量以确定深度,表面积和体积关系。然后,基于2013年和2014年进行的监测研究,使用相对混合热阻(RT)建立分层动力学和层性质(RM)指数基于温度和密度分布图。此后,通过下层水流中的氧气和温度分布图确定耗氧率.2013年和2014年,Borabey Pond的AHOD值远没有人为的影响,分别被发现为0.848和0.569 g O2 /(m·d)。经过多年的工业和生活污染,波苏克水库的AHOD值分别为4.263和5.099 g O2 /(m·d)。 HOD和AHOD监测被认为是评估《水框架指令》附件5中湖泊的生态和化学状况的宝贵工具,并且可以作为评估和监测湖泊状况的综合方法。湖泊。

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  • 来源
    《中国海洋湖沼学报(英文版)》 |2019年第1期|146-159|共14页
  • 作者

    Serdar G(O)NC(U); Erdem ALBEK;

  • 作者单位

    Anadolu University Ikieylul Campus Environmental Eng.Dept., 26555, Eski(s)ehir, Turkey;

    Anadolu University Ikieylul Campus Environmental Eng.Dept., 26555, Eski(s)ehir, Turkey;

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