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首页> 外文期刊>Marine & freshwater research >Pilot application of drone observations and pigment marker detection by HPLC in studies of cyanobacterial harmful algal blooms in Bulgarian inland waters
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Pilot application of drone observations and pigment marker detection by HPLC in studies of cyanobacterial harmful algal blooms in Bulgarian inland waters

机译:HPLC在保加利亚内陆水域中藻类有害藻类盛开的研究中的杂志观测和色素标志物检测的试验

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This paper describes the first use of aerial observations by a drone as an additional means for choosing sampling points during field studies of cyanobacterial harmful algal blooms (CyanoHABs) in selected Bulgarian waterbodies and the use of HPLC analysis of marker pigments for the fast determination of phytoplankton composition and biomass. The selection of waterbodies was based on the authors' personal expertise and data collected over a 25-year period. In all sites chosen by drone, there were high levels of cyanobacteria and cyanotoxins were present: microcystins (MC-LR, MC-RR, MC-YR in Durankulak Lake and MC-LR and MC-RR in the Sinyata Reka Reservoir), cylindrospermopsin (in the Vaya Lake and in the Mandra Reservoir) and saxitoxins (in Durankulak Lake). The finding of cylindrospermopsin is the first in Bulgaria, the detection of saxitoxins is the first for Durankulak Lake and the microcystins records are the first for Sinyata Reka Reservoir. Considering the high total number of wetlands in Bulgaria, many of which are lowland, small and shallow and therefore vulnerable to CyanoHABs, we recommend further use of drones and HPLC in monitoring, which should speed up detection and reduce sampling efforts while enabling valuable information to be gathered.
机译:本文介绍了无人机的鸟瞰观察,作为在选定的保加利亚水域的蓝藻有害藻类绽放(Cyanohohabs)的现场研究中选择采样点的额外方法,以及使用标记颜料的HPLC分析进行快速测定浮游植物组成和生物质。 Waterbodies的选择是基于作者的个人专业知识和在25年期间收集的数据。在无人机选择的所有网站中,患有高水平的蓝藻和氰毒素存在:微囊藻毒素(MC-LR,MC-RR,MC-YR在Durankulak Lake和MC-LR和Sinyata Reka Cholefir中的MC-RR),CylindroSpermopsin (在Vaya Lake和Mandra Chockoir中)和萨克拉汀(杜兰克坦湖)。 CylindroSpermopsin的发现是第一个在保加利亚,Saxitoxins的检测是Durankulak湖的第一个,微囊藻毒素记录是Sinyata Reka水库首先。考虑到保加利亚的湿地总数,其中许多是低地,小而浅,因此容易受到Cyanohabs的影响,我们建议进一步使用无人机和HPLC在监测中,这应该加快检测和减少对抽样努力,同时实现有价值的信息聚集。

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