Examining the performance of three ballast water compliance monitoring devices for quantifying live organisms in both regulated size classes (≥50 μm and ≥10-<50 μm).

IF 1.9 3区 环境科学与生态学 Q2 MARINE & FRESHWATER BIOLOGY Journal of Plankton Research Pub Date : 2023-05-01 DOI:10.1093/plankt/fbad014
Oscar Casas-Monroy, Torben Brydges, Jocelyn Kydd, Dawson Ogilvie, Robin M Rozon, Sarah A Bailey
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Abstract

A number of ballast water compliance monitoring devices (CMDs) have been made commercially available to verify the efficacy of ballast water management systems by quantifying the living organisms for both plankton size classes (≥50 μm and ≥10-<50 μm). This study aimed to examine whether new CMDs can provide a reliable indication of compliance regarding Regulation D-2 and to evaluate their performance for indicative analysis of organisms by assessing their accuracy (comparison to microscopy) and precision (comparison within measurement). Challenge fresh water samples were collected in four locations of Lake Ontario, Canada, whereas marine challenge water samples were collected around the Bay of Fundy, New Brunswick, Canada. Ballast water samples were collected from ships visiting several ports across Canada. Overall, accuracy was higher (>80%) in estimating organisms from prepared-challenge water (Ballast Eye and BallastWISE) than from ballast water samples (>70%) (B-QUA only). The sensitivity ranged from 50 to 100% for the ≥50 μm organism size class, whereas for the ≥10-<50 μm organism size class, it was higher for freshwater samples (>75%) than for marine samples (>50%). The performance of CMDs should be assessed under real-world conditions for a better understanding and to improve their use.

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研究了三个压载水合规监测装置的性能,用于量化两种规格规格(≥50 μm和≥10-<50 μm)的活生物体。
许多压载水合规监测设备(cmd)已经商业化,通过量化两种浮游生物大小类别(≥50 μm和≥10-80%)的生物来评估准备挑战水(压载水眼和BallastWISE)的生物,而不是压载水样品(>70%)(仅B-QUA)的生物,从而验证压载水管理系统的有效性。对于≥50 μm的生物体,灵敏度为50% ~ 100%,而对于≥10 ~ 75%的海洋样品,灵敏度为>50%。应在实际条件下评估cd的性能,以便更好地理解和改进其使用。
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来源期刊
Journal of Plankton Research
Journal of Plankton Research 生物-海洋学
CiteScore
3.50
自引率
9.50%
发文量
65
审稿时长
1 months
期刊介绍: Journal of Plankton Research publishes innovative papers that significantly advance the field of plankton research, and in particular, our understanding of plankton dynamics.
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