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Ecotoxicological Assessment and Environmental Risk of the Insecticide Chlorpyrifos for Aquatic Neotropical Indicators

机译:生态毒理学评估和水生新指标杀虫剂氯吡啶虫的环境风险

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摘要

Chlorpyrifos (CPF) is an organophosphorus insecticide detected in aquatic environments considered harmful to living beings. The aim of this research was to evaluate the ecotoxicity of CPF for neotropical aquatic organisms of distinct trophic levels (Lemna minor, Azolla caroliniana, and Wolffia brasiliensis macrophytes; Pomacea canaliculata snail; Macrobrachium acanthurus shrimp; Xiphophorus maculatus and Hyphessobrycon eques fish), to verify the risk of environmental poisoning for each organism, and to determine the best bioindicator species of aquatic contamination by the insecticide. Ecotoxicological assays were carried out with different concentrations of CPF under controlled laboratory conditions standardized for each species. IC50;7d, LC50;7d, EC50;48h, and LC50;48h values were calculated using the Trimmed Spearman Karber software with 95% confidence limits. The toxicity data were used to classify the CPF according to the ecotoxicity categories for aquatic organisms. The risk of CPF environmental poisoning was determined by the quotient method considering different environmental scenarios. The sensitivity order of neotropical aquatic organisms to chlorpyrifos was Macrobrachium acanthurus (0.002 mg L-1) Xiphophorus maculatus (0.07 mg L-1) Hyphessobrycon eques (1.65 mg L-1) Pomacea canaliculata (30.66 mg L-1) Azolla caroliniana (849.72 mg L-1) Wolffia brasiliensis (1271.63 mg L-1) = Lemna minor (1299.60 mg L-1). The risk of poisoning by chlorpyriphos may vary according to the environmental concentration of the insecticide and the exposed trophic level. The best bioindicator and with the greatest risk of environmental poisoning was shrimp. The difference in CPF ecotoxicity for distinct aquatic trophic levels shows the relevance of evaluating the effects of contaminants considering food chains and highlights the importance of studying these levels in environmental monitoring programs. Graphic Abstract
机译:氯吡啶(CPF)是一种有机磷杀虫剂,被认为是对生物有害的水生环境中。本研究的目的是评估CPF对不同营养水平的新生儿生物的生态毒性(Lemna Minor,Azolla Caroliniana和Wolffia Brasiliensis verophytes; Pomacea canaliculata蜗牛;大鼠蜡虾; Xiphophorus maculatus和Hyphessobrycon等于鱼类),验证每个生物体环境中毒的风险,并确定杀虫剂的水生污染的最佳生物indindator种类。在针对每种物种标准化的受控实验室条件下,在不同浓度的CPF中进行生态毒理学测定。 IC50; 7D,LC50; 7D,EC50; 48H和LC50;使用Trimmed Spearman Karber软件计算48H值,具有95%的置信限制。毒性数据用于根据生物生物的生态毒性类别对CPF进行分类。 CPF环境中毒的风险由考虑不同环境情景的商品确定。 NeoTropical水生生物对紫外线的敏感性顺序是大角质刺激(0.002mg L-1)& Xiphophorus Maculatus(0.07 mg L-1)& HyphessObrycon等于(1.65mg l-1)& pomacea canaliculata(30.66 mg l-1)& azolla caroliniana(849.72 mg l-1)& Wolffia Brasiliensis(1271.63 mg l-1)= Lemna minor(1299.60 mg l-1)。紫吡吡咯的中毒风险可能根据杀虫剂的环境浓度和暴露的营养水平而变化。最佳的生物indicator和最大的环境中毒风险是虾。不同水生营养水平的CPF生态毒性的差异显示了评估污染物考虑食物链的影响的相关性,并突出了在环境监测方案中研究这些水平的重要性。图形摘要

著录项

  • 来源
    《Water, air and soil pollution》 |2021年第10期|428.1-428.14|共14页
  • 作者单位

    Sao Paulo State Univ UNESP Sch Engn Ave Brasil Sul 56 BR-15385000 Ilha Solteira SP Brazil;

    Barretos Educ Fdn Lab Ecotoxicol & Pesticide Efficacy Ave Prof Roberto Frade Monte 389 BR-14783226 Barretos SP Brazil;

    Barretos Educ Fdn Lab Ecotoxicol & Pesticide Efficacy Ave Prof Roberto Frade Monte 389 BR-14783226 Barretos SP Brazil;

    Barretos Educ Fdn Lab Ecotoxicol & Pesticide Efficacy Ave Prof Roberto Frade Monte 389 BR-14783226 Barretos SP Brazil;

    Tecnol Monterrey Sch Engn & Sci Campus Monterrey Ave Eugenio Garza Sada 2501 Monterrey 64849 NL Mexico;

    Huaiyin Inst Technol Sch Life Sci & Food Engn Huaian 223003 Peoples R China;

    Sao Paulo State Univ UNESP Sch Engn Ave Brasil Sul 56 BR-15385000 Ilha Solteira SP Brazil|Brazil Univ St Carolina Fonseca 584 BR-08230030 Sao Paulo SP Brazil;

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

    Ecotoxicology; Fish; Macrophyte; Organophosphorus; Pesticide;

    机译:生态毒理学;鱼;宏观物质;有机磷;农药;

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