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生物炭添加土壤中的唑类杀菌剂环丙唑醇和戊唑醇:蚯蚓体内的降解和生物累积。

Conazole fungicides epoxiconazole and tebuconazole in biochar amended soils: Degradation and bioaccumulation in earthworms.

机构信息

RECETOX, Faculty of Science, Masaryk University, Kamenice 753/5, Brno, 625 00, Czech Republic.

RECETOX, Faculty of Science, Masaryk University, Kamenice 753/5, Brno, 625 00, Czech Republic; Department of Agrochemistry, Soil Science, Microbiology and Plant Nutrition, Faculty of Agronomy, Mendel University in Brno, Zemědělská 1/1665, 613 00, Czech Republic.

出版信息

Chemosphere. 2021 Jul;274:129700. doi: 10.1016/j.chemosphere.2021.129700. Epub 2021 Jan 26.

Abstract

Biochar usage in agriculture becomes increasingly important for the improvement of soil properties. However, from the perspective of pesticides, biochar can influence exposure to pesticides of both target and non-target organisms and also pesticides' fate in soil. Our study investigated degradation and bioaccumulation (in the Eisenia andrei earthworm) of two conazole fungicides, epoxiconazole and tebuconazole, added to high- and low-sorbing soils (by means of fungicides' sorption measured beforehand) amended with low-, moderate- and high-sorbing biochars at 0.2% and 2% doses. We aimed to investigate the effects of contrasting soil and biochar properties, different doses of biochar in soil-biochar mixtures, and different compounds on the degradation and bioaccumulation. We also wanted to explore if the beforehand determined sorption of fungicides on individual soils and biochars is manifested somehow in their degradation and/or bioaccumulation in soil-biochar mixtures. The biochars' presence in the soils promoted the degradation of fungicides with a clear effect of dose and soil, but less clear effect of biochar or compound. The bioaccumulation factors were higher in low-sorbing soil variants and also decreased with increasing biochar dose. For low-sorbing soil variants, the bioaccumulation was also influenced by the type of biochar corresponding to its sorbing potential and the possible effect on the bioavailability of the fungicides. Our results show that mixing of biochars with soils changes the fate and bioaccumulation of the conazole fungicides. However, the sorption results from original materials are not straightforwardly manifested in the more complex soil-biota system.

摘要

生物炭在农业中的应用对于改善土壤性质变得越来越重要。然而,从农药的角度来看,生物炭会影响目标和非目标生物接触农药的情况,以及农药在土壤中的归宿。我们的研究调查了两种三唑类杀菌剂,即环丙唑醇和戊唑醇,在添加了低、中、高吸附生物炭(通过事先测量的杀菌剂吸附来衡量)的高吸附和低吸附土壤(通过事先测量的杀菌剂吸附来衡量)中的降解和生物累积(在赤子爱胜蚓中),添加剂量为 0.2%和 2%。我们旨在研究不同性质的土壤和生物炭、不同剂量的生物炭在土壤-生物炭混合物中的差异,以及不同化合物对降解和生物累积的影响。我们还想探讨一下,事先确定的杀菌剂在单一土壤和生物炭上的吸附情况,是否会以某种方式体现在它们在土壤-生物炭混合物中的降解和/或生物累积中。生物炭在土壤中的存在促进了杀菌剂的降解,剂量和土壤的影响明显,但生物炭或化合物的影响不太明显。在低吸附土壤变体中,生物累积因子更高,而且随着生物炭剂量的增加而降低。对于低吸附土壤变体,生物炭的类型也会影响其吸附能力和对杀菌剂生物有效性的可能影响,从而影响生物累积。我们的研究结果表明,生物炭与土壤的混合改变了三唑类杀菌剂的归宿和生物累积。然而,原始材料的吸附结果并不能直接体现在更为复杂的土壤-生物群系系统中。

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