Co-occurrence of ionophore polyether antibiotics and pesticides in peri-urban horticultural streams: multi-matrix monitoring, partitioning, and risk assessment

IF 8.1 2区 环境科学与生态学 Q1 ENVIRONMENTAL SCIENCES
Chemosphere Pub Date : 2026-03-01 Epub Date: 2026-02-10 DOI:10.1016/j.chemosphere.2026.144861
M. Navarro , T.M. Mac Loughlin , L.L. Alonso , M. Ramos , K. Miglioranza , C. Apartin
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Abstract

Intensive horticulture and the reuse of poultry litter (PL) can introduce mixtures of pesticides and veterinary pharmaceuticals into adjacent waters. A multi-matrix study was conducted at eight stream sites in the Cinturón Hortícola Platense (Argentina) across three sampling campaigns. Surface water, suspended particulate matter (SPM), bottom sediments, and aquatic macrophytes were analyzed by LC-MS/MS. Target compounds included ionophore polyether antibiotics (IPAs), selected pesticides, avermectins and the fluoroquinolone enrofloxacin. Monensin was the most frequently detected IPA. Glyphosate and its metabolite AMPA were ubiquitous across matrices, while chlorpyrifos and its metabolite TCP were widespread in water and sediments. Prometryn and tebuconazole were consistently observed across campaigns, whereas avermectins and enrofloxacin were not detected. Macrophytes accumulated several target compounds, supporting their role as integrators of contamination. Pseudo-partition coefficients (water-sediment, water-SPM) indicated a preferential association of monensin, glyphosate, and AMPA with solid phases. Principal component analysis linked monensin with organic-matter and nutrient proxies, consistent with PL-driven runoff. A screening environmental risk assessment indicated very high risk for chlorpyrifos in water and sediment, and low risk for IPAs at observed levels. Findings highlight the complex contamination arising from horticultural practices that combine animal-derived soil amendments with pesticide applications. Sampling strategies should include transformation products and macrophyte biomonitoring, as aquatic plants can indicate agricultural contamination. The results provide actionable evidence to guide monitoring and mitigation efforts in peri-urban horticulture, emphasizing the importance of vegetated buffers, improved PL handling, and comprehensive surveillance that includes metabolites.

Abstract Image

城市周边园艺溪流中离子载体聚醚抗生素和农药的共存:多基质监测、分区和风险评估。
精耕细作的园艺和家禽垃圾的再利用会将农药和兽药的混合物引入邻近水域。在Cinturón Hortícola Platense(阿根廷)的八个河流地点进行了多矩阵研究,共进行了三次采样活动。采用LC-MS/MS对地表水、悬浮颗粒物(SPM)、底层沉积物和水生植物进行分析。目标化合物包括离子载体聚醚抗生素(IPAs)、选定的农药、阿维菌素和氟喹诺酮恩诺沙星。莫能菌素是最常检出的IPA。草甘膦及其代谢物AMPA在基质中普遍存在,毒死蜱及其代谢物TCP在水体和沉积物中广泛存在。Prometryn和tebuconazole在整个运动中都被观察到,而阿维菌素和恩诺沙星没有被检测到。大型植物积累了一些目标化合物,支持它们作为污染整合者的作用。伪分配系数(水-沉积物、水- spm)显示莫能菌素、草甘膦和AMPA与固相的优先关联。主成分分析将莫能菌素与有机质和养分代用物联系起来,与土壤驱动的径流相一致。一项筛选性环境风险评估表明,毒死蜱在水和沉积物中的风险非常高,而在观察到的水平下,IPAs的风险很低。研究结果强调了将动物源性土壤改良剂与农药应用相结合的园艺实践所产生的复杂污染。采样策略应包括转化产物和大型植物生物监测,因为水生植物可以指示农业污染。研究结果为指导城郊园艺的监测和缓解工作提供了可操作的证据,强调了植被缓冲、改进PL处理和包括代谢物在内的全面监测的重要性。
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来源期刊
Chemosphere
Chemosphere 环境科学-环境科学
CiteScore
15.80
自引率
8.00%
发文量
4975
审稿时长
3.4 months
期刊介绍: Chemosphere, being an international multidisciplinary journal, is dedicated to publishing original communications and review articles on chemicals in the environment. The scope covers a wide range of topics, including the identification, quantification, behavior, fate, toxicology, treatment, and remediation of chemicals in the bio-, hydro-, litho-, and atmosphere, ensuring the broad dissemination of research in this field.
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