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Effects of Zinc in an Outdoor Freshwater Microcosm System

机译:锌在户外淡水微观系统中的影响

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摘要

A long-term exposure outdoor microcosm study was conducted to evaluate the effects of zinc (Zn) on zooplankton, phytoplankton, and periphyton in a freshwater system. Five Zn treatment concentrations (nominal: 8, 20, 40, 80, and 160 mu g/L Zn) and an untreated control with 3 replicates each were used. Various physical and chemical characteristics of the microcosms and biological assessment endpoints (e.g., total abundance, group abundance, species richness, chlorophyll a, etc.) were measured to determine the effects of Zn over time. In general, physical and chemical characteristics (e.g., total dissolved solids, total suspended solids, dissolved oxygen, pH, dissolved organic carbon) of water fluctuated over time, but they were not significantly different within treatments and controls during the study. Zinc significantly affected the population dynamics and community structure of plankton. The effects occurred 7 d after initial treatment exposures began and continued to the end of the treatment phase, especially at the high treatment concentrations. Total and group abundance, species richness, the Shannon index, and chlorophyll a concentrations for high Zn treatment concentrations were significantly lower than the controls during the treatment phase. The no-observed-effect, lowest-observed-effect, and median effect concentrations were generally lower than the literature-reported results from single-species toxicity tests for fish and invertebrates, suggesting that plankton are more sensitive to Zn than planktivores. Although primary producers play an important role in the ecosystem, they have not been consistently incorporated into numerical environmental quality criteria for freshwater organisms, at least in the United States. The results of the present study are useful for development of environmental quality guidelines for freshwater ecosystems and ecological risk assessment. Environ Toxicol Chem 2021;00:1-20. (c) 2021 SETAC
机译:进行了长期暴露室外微观研究,以评估ZOPLANKTON,Phytoplankton和Periphyton在淡水系统中的影响。使用5个Zn处理浓度(标称:8,20,40,80和160μg/ l Zn)和每种3重复的未处理对照。测量微观和生物评估终点的各种物理和化学特征和生物评估终点(例如,总丰富,组丰富,物种丰富,叶绿素A等),以确定Zn随时间的影响。通常,水化学特性(例如,总溶解的固体,总悬浮固体,溶解的固体,溶解的氧,pH,溶解的有机碳)随时间波动,但在研究期间,它们在治疗和对照中没有显着差异。锌显着影响了浮游生物的人口动态和社区结构。初始治疗曝光开始并继续到治疗阶段结束后,效果发生了7天,特别是在高处理浓度下。总和组丰富,物种丰富性,香农指数和叶绿素的高Zn治疗浓度浓度明显低于治疗期期间对照。无观察到的效果,最低观察到的效果和中值效应浓度通常低于鱼类和无脊椎动物的单一物种毒性试验的文献报告的结果,这表明普拉克斯比综合体更敏感。虽然小学生生产者在生态系统中发挥着重要作用,但至少在淡水生物中尚未持续纳入数值环境质量标准,至少在美国。本研究的结果可用于开发淡水生态系统和生态风险评估的环境质量指导。环境毒素化学2021; 00:1-20。 (c)2021 Setac

著录项

  • 来源
    《Environmental toxicology and chemistry》 |2021年第7期|2051-2070|共20页
  • 作者单位

    Florida Int Univ Southeast Environm Res Ctr Dept Earth & Environm Ecotoxicol & Risk Assessment Lab N Miami FL 33181 USA|Loyola Univ Chicago Sch Environm Sustainabil Chicago IL 60660 USA;

    Florida Int Univ Southeast Environm Res Ctr Dept Earth & Environm Ecotoxicol & Risk Assessment Lab N Miami FL 33181 USA;

    Univ Florida Fisheries & Aquat Sci Sch Forest Resources & Conservat Gainesville FL USA;

    Univ Florida Fisheries & Aquat Sci Sch Forest Resources & Conservat Gainesville FL USA;

    Int Zinc Assoc Durham NC USA;

    Florida Int Univ Southeast Environm Res Ctr Dept Earth & Environm Ecotoxicol & Risk Assessment Lab N Miami FL 33181 USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Zooplankton; Phytoplankton; Periphyton; Species richness; Species abundance; Shannon index; Chlorophyll a;

    机译:浮游植物;浮游植物;Periphyton;物种丰富;物种丰富;香农指数;叶绿素a;

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