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墨西哥锡那罗亚州中北部沿海地区水体中农药的时间分布及生态风险评估

Temporal distribution and ecological risk assessment for pesticides in water from the north-central coastal zone of Sinaloa, Mexico.

作者信息

Leyva-Morales José Belisario, Bastidas-Bastidas Pedro de Jesús, Salvatierra-Stamp Vilma Del Carmen, González-Márquez Luis Carlos, Davizon Yasser A, Márquez-Pacheco Henri, Amillano-Cisneros Jesús Mateo, Cruz-Acevedo Edgar, Amézquita-López Bianca Anabel, Romo Gómez Claudia, De la Torre Espinosa Zamaria Yoselin, Rodríguez-Aguilar Brian Arturo

机构信息

Área Académica de Química, Instituto de Ciencias Básicas e Ingeniería, Universidad Autónoma del Estado de Hidalgo, Carr. Pachuca-Tulancingo km. 4.5, Mineral de la Reforma, 42184, Hidalgo, Mexico.

Centro de Investigación en Alimentación y Desarrollo, A.C. Carretera a Eldorado km. 5.5 Campo el Diez, Culiacán, C.P. 80396, Sinaloa, Mexico.

出版信息

Heliyon. 2024 Jul 25;10(15):e35207. doi: 10.1016/j.heliyon.2024.e35207. eCollection 2024 Aug 15.

Abstract

Water contamination with pesticides is one of the major pollution problems in northwestern Mexico, and this is due to the extensive use of pesticides in agriculture. In this research, water samples of ten sampling sites (fishing grounds, beaches, and both) were analyzed in the search for 28 pesticides (organochlorines, organophosphates, pyrethroids, carbamates, among other chemical classes), supplemented with a calculation of the resulting potential environmental risk. Pesticides were separated from the matrix by liquid-liquid extraction and quantified by gas chromatography coupled to electron micro-capture (organohalogenated) and pulsed flame photometric detectors (organophosphates). In addition, the ecotoxicological risk of pesticides in algae, invertebrates, and fish was assessed, based on seawater pesticide concentrations using the Risk Quotient (RQ) and Toxic Units (TU) approach. The results showed 18 pesticides identified in the analyzed samples, where cypermethrin and chlorpyrifos were identified with the maximum concentrations of 1.223 and 0.994 μg L, respectively. In addition, these two pesticides have been associated with acute toxic effects on algae, invertebrates, and fish. It is important to pay particular attention to the search for long-term alternatives to the use of chlorpyrifos and cypermethrin due to their high detection rates and the risks associated with their toxic properties. However, the adoption of alternative measures to synthetic pesticide control should be a priority, moving towards sustainable practices such as the use of biopesticides, crop rotation and polycultures.

摘要

农药对水体的污染是墨西哥西北部主要的污染问题之一,这是由于农业中广泛使用农药所致。在本研究中,对十个采样点(渔场、海滩及二者兼具的地点)的水样进行了分析,以检测28种农药(有机氯、有机磷、拟除虫菊酯、氨基甲酸酯等化学类别),并计算由此产生的潜在环境风险。通过液 - 液萃取将农药与基质分离,并采用气相色谱联用电子微捕获检测器(用于有机卤化物)和脉冲火焰光度检测器(用于有机磷)进行定量分析。此外,基于海水农药浓度,采用风险商数(RQ)和毒性单位(TU)方法评估了农药对藻类、无脊椎动物和鱼类的生态毒理学风险。结果显示,在所分析的样品中鉴定出了18种农药,其中氯氰菊酯和毒死蜱的鉴定浓度最高,分别为1.223和0.994μg/L。此外,这两种农药已被证实对藻类、无脊椎动物和鱼类具有急性毒性作用。鉴于毒死蜱和氯氰菊酯的高检出率及其毒性相关风险,特别关注寻找其长期替代物非常重要。然而,应优先采取替代措施来控制合成农药,转向可持续做法,如使用生物农药、轮作和混作。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/54cf/11337721/be1a658b723d/ga1.jpg

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