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Reservoir diel water quality patterns relative to riparian shade

机译:与河岸阴影有关的水库diel水质模式

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Miranda LE, Raines CD. 2019. Reservoir diel water quality patterns relative to riparian shade. Lake Reserv Manage. XX:XX-XX. Investigations into the effects of riparian shade on water quality have focused on streams, with less emphasis on natural lakes, and almost no attention given to reservoirs. In view of this gap, our objective was to assess diel water quality patterns in the nearshore zone of a reservoir and test whether diel patterns differed relative to the presence or absence of riparian shade. Light intensity, temperature, dissolved oxygen, pH, and oxidation-reduction potential were higher in unshaded sites (P 0.05), whereas phosphate levels were higher in shaded sites. Levels of nitrate, turbidity, and specific conductance were similar in shaded and unshaded sites. Most variables exhibited distinct diel cycles. Light intensity in shaded and unshaded sites peaked simultaneously near mid-day; most other variables peaked several hours later in the afternoon and evening, but 1-2 h earlier in shaded sites. Unlike in streams, in most large lacustrine ecosystems the nearshore shaded band is small relative to the unshaded open water, and consequently is not expected to have an extensive influence on whole-lake water quality. Nevertheless, because of the diversity of microhabitats available in nearshore areas, including those created by the effects of shade on water quality, the nearshore zone plays a disproportionate role in maintaining integrity of a lake or reservoir ecosystem. Existing guidelines inform shade management in lakes and reservoirs only indirectly and in generalities; additional research is needed to develop best management practices that address shade more comprehensively.
机译:Miranda LE,Raines CD。 2019。相对于河岸阴影的水库diel水质模式。湖后备管理。 XX:XX-XX。关于河岸阴影对水质影响的研究主要集中在溪流上,而对天然湖泊的关注较少,对水库的关注几乎没有。鉴于这一差距,我们的目标是评估水库近岸地区的迪尔水质模式,并测试迪尔模式相对于河岸阴影的存在与否是否有所不同。在未遮挡的部位,光强度,温度,溶解氧,pH和氧化还原电位较高(P <0.05),而在遮挡的部位中磷酸盐含量较高。在阴凉处和未阴凉处的硝酸盐,浊度和比电导水平相似。大多数变量表现出不同的迪尔循环。阴影和非阴影位置的光线强度在中午左右同时达到峰值。其他大多数变量在下午和晚上几个小时后达到峰值,但在阴影处提前1-2小时。与河流不同,在大多数大型湖生态系统中,近岸阴影带相对于未阴影的开放水域较小,因此,预计不会对全湖水质产生广泛影响。然而,由于近岸地区可利用的微生境的多样性,包括由于阴影对水质的影响而产生的微生境,近岸区在维持湖泊或水库生态系统的完整性方面起着不成比例的作用。现有准则仅间接地和笼统地告知湖泊和水库的遮阳管理;需要开展更多研究来开发最佳管理方法,以更全面地解决阴影问题。

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