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What is the actual exposure of organic compounds on Chironomus riparius? - A novel methodology enabling the depth-related analysis in sediment microcosms

机译:什么是有机化合物对骑族riparius的实际暴露? - 一种新的方法,从而实现沉积物微观的深度相关分析

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摘要

A novel active sampling method enabled determination of sediment depth profiles revealing the spatial distribution of model compounds N,N-dimethylsulfamide, fluopyram and bixafen (low, medium, high adsorption affinity) in sediment microcosms according to OECD Test 218/219 (Sediment-Water Chironomid Toxicity Test Using Spiked Sediment/Spiked Water). After the overlying water was removed, plastic tubes were inserted into the sediment and the microcosms were frozen. For depth-related analysis, each "sediment core" was mounted in a cutting device and sawed into three 5-mm-slices, respectively (top, middle, bottom). Each slice was centrifuged for sediment and pore water separation. By various sampling dates within 28 days, we could follow the behavior of model compounds depending on sorption affinities and display specific distribution patterns within the sediment. N,N-dimethylsulfamide showing no sediment adsorption, migrated unhindered in (OECD 219) and out (OECD 218) of the sediment via pore water, resulting in homogenous distributions in both test designs. Fluopyram with moderate adsorption affinity revealed a concentration gradient with declining amounts from top to bottom layer (OECD 219) and higher amounts in the middle and bottom layer as compared to the top layer (OECD 218). Bixafen providing a strong adsorption affinity accumulated in the top layer in OECD 219, while no concentration gradients became visible in OECD 218. For establishing a Toxic Substances in Surface Waters (TOXSWA) model, we compared our measurements with simulated results revealing good agreements. The presented methodology is a useful tool to determine more realistic sediment and pore water concentrations, which the Chironomid larvae are exposed to. (C) 2021 Elsevier Ltd. All rights reserved.
机译:一种新的活性采样方法,使得根据经OECD试验218/219(沉积物)(沉积水使用尖刺沉积物/尖刺水进行依湿体毒性试验。除去覆盖水后,将塑料管插入沉淀物中,并将微观冷冻。对于与深度相关的分析,每个“沉积物芯”分别安装在切割装置中,并分别锯入3个5毫米切片(顶部,中间,底部)。将每个切片离心沉积物和孔隙水分离。通过在28天内进行各种采样日期,我们可以根据吸附亲和力的模型化合物的行为,并在沉积物内显示特定的分​​布模式。 N,N-二甲基磺酰胺显示没有沉积物吸附,通过孔隙水迁移(OECD 219)和沉积物(OECD 218)迁移(OECD 218),从而在两种测试设计中产生均匀的分布。具有中等吸附亲和力的氟化吡喃透露浓度梯度,与顶层(OECD 218)相比,从上到下层(OECD 219)和底层中的较高量的浓度梯度。 Bixafen在OECD 219中的顶层中累积的强吸附亲和力,而OECD 218则不可见浓度梯度。对于在表面水域(TOXSWA)模型中建立有毒物质,我们将我们的测量结果与模拟结果进行了比较,揭示了良好的协议。呈现的方法是一种有用的工具,用于确定更现实的沉积物和孔隙水浓度,依湿式幼虫暴露于。 (c)2021 elestvier有限公司保留所有权利。

著录项

  • 来源
    《Chemosphere》 |2021年第2期|130424.1-130424.11|共11页
  • 作者单位

    Rhein Westfal TH Aachen Inst Environm Res D-52074 Aachen Germany|Bayer AG Environm Safety Crop Sci Div D-40789 Monheim Germany;

    Bayer AG Environm Safety Crop Sci Div D-40789 Monheim Germany;

    Bayer AG Environm Safety Crop Sci Div D-40789 Monheim Germany;

    Bayer AG Environm Safety Crop Sci Div D-40789 Monheim Germany;

    Bayer AG Environm Safety Crop Sci Div D-40789 Monheim Germany;

    Bayer AG Environm Safety Crop Sci Div D-40789 Monheim Germany;

    Bayer AG Environm Safety Crop Sci Div D-40789 Monheim Germany;

    Bayer AG Environm Safety Crop Sci Div D-40789 Monheim Germany;

    Bayer AG Environm Safety Crop Sci Div D-40789 Monheim Germany;

    Rhein Westfal TH Aachen Inst Environm Res D-52074 Aachen Germany|Goethe Univ Inst Ecol Evolut & Divers D-60438 Frankfurt Germany;

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

    Active Sampling; Depth-related analysis; OECD TG 218/219; Sediment risk assessment;

    机译:主动抽样;深度相关的分析;经合组织TG 218/219;沉积物风险评估;
  • 入库时间 2022-08-19 02:48:06

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