Total Microcystin Concentration Variability in Water Samples and Recommended Minimum Volume (20 mL) for Freeze Thaw Cycles

IF 0.9 Q4 WATER RESOURCES
Brian E. Haggard, Bradley J. Austin
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引用次数: 1

Abstract

Cyanobacterial harmful algal blooms (cyanoHABs) continue to be a monitoring and research focus, particularly on the occurrence of toxins like total microcystins. The objectives of this study were to evaluate sampling and analytical variability in measured total microcystin concentrations and then to evaluate the volume of raw water needed in the freeze thaw cycle to reduce sampling variability. Water samples were collected from a recreational lake with annual cyanoHABs, and then 2 mL was used in freeze thaw cycles before total microcystin analysis. Then, sample volumes used in the freeze thaw cycles varied from 2 to 300 mL for total microcystin analysis. With three separate experiments, we observed a great deal of sampling variability (when using 2 mL in the freeze thaw cycles) while analytical variability was much less. In fact, sampling variability could potentially account for temporal variability observed in the routine monitoring. However, when sample volume used in the freeze thaw cycles increased, total microcystin variability decreased. We recommend at least 20 mL to be used in the freeze thaw cycles when analyzing total microcystins in environmental samples.

Abstract Image

水样中微囊藻毒素总浓度的变异性和冻融循环的推荐最小体积(20mL)
蓝藻有害藻华(cyanHABs)仍然是监测和研究的重点,特别是总微囊藻毒素等毒素的发生。本研究的目的是评估测量的总微囊藻毒素浓度的采样和分析变异性,然后评估冻融循环中所需的原水体积,以减少采样变异性。从一个每年都有蓝藻的休闲湖采集水样,然后在总微囊藻毒素分析之前,在冻融循环中使用2mL。然后,冻融循环中使用的样品体积在2至300mL之间变化,用于总微囊藻毒素分析。通过三个单独的实验,我们观察到了很大的采样可变性(当在冻融循环中使用2 mL时),而分析可变性要小得多。事实上,采样变异性可能是常规监测中观察到的时间变异性的潜在原因。然而,当冻融循环中使用的样品体积增加时,总微囊藻毒素的变异性降低。在分析环境样品中的总微囊藻毒素时,我们建议在冻融循环中至少使用20 mL。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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