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Low-cost floating emergence net and bottle trap: comparison of two designs

机译:低成本浮出水网和瓶式疏水器:两种设计的比较

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Sampling emergent aquatic insects is of interest to many freshwater ecologists. Many quantitative emergence traps require the use of aspiration for collection. However, aspiration is infeasible in studies with large amounts of replication that is often required in large biomonitoring projects. We designed an economic, collapsible pyramid-shaped floating emergence trap with an external collection bottle that avoids the need for aspiration. This design was compared experimentally to a design of similar dimensions that relied on aspiration to ensure comparable results. The pyramid-shaped design captured twice as many total emerging insects. When a preservative was used in bottle collectors, 95% of the emergent abundance was collected in the bottle. When no preservative was used, 81% of the total insects were collected from the bottle. In addition to capturing fewer emergent insects, the traps that required aspiration took significantly longer to sample. Large studies and studies sampling remote locations could benefit from the economical construction, speed of sampling, and capture efficiency.
机译:对淡水水生昆虫进行采样是许多淡水生态学家所感兴趣的。许多定量的出水陷阱需要使用抽吸进行收集。但是,在大型生物监测项目中经常需要进行大量复制的研究中,进行抽吸是不可行的。我们设计了一种经济,可折叠的金字塔形浮出水阱,带有一个外部收集瓶,从而避免了需要抽吸的情况。通过实验将该设计与类似尺寸的设计进行了比较,该设计依赖于抽吸以确保可比较的结果。金字塔形的设计捕获了总共两倍于总数的新兴昆虫。当在瓶收集器中使用防腐剂时,> 95%的涌出丰度被收集在瓶中。当不使用防腐剂时,从瓶子中收集的昆虫总数超过81%。除了捕获更少的新兴昆虫外,需要抽吸的诱集器需要花费更长的时间进行采样。大型研究和对偏远地区采样的研究可以从经济的结构,采样速度和捕获效率中受益。

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