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首页> 外文期刊>Catena: An Interdisciplinary Journal of Soil Science Hydrology-Geomorphology Focusing on Geoecology and Landscape Evolution >Interactive effects of microplastics and glyphosate on the dynamics of soil dissolved organic matter in a Chinese loess soil
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Interactive effects of microplastics and glyphosate on the dynamics of soil dissolved organic matter in a Chinese loess soil

机译:微塑料和草甘膦对中国黄土土壤土壤溶解有机物动态的互动效应

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摘要

The increased use of plastic films and pesticides on agricultural soil leads to the accumulation of plastic debris and pesticide residues in soil. This accumulation has become a serious environmental issue, as it threatens life of earthworms, inhibits the enzyme activities and microbial diversity, and contributes to the loss of soil microbial carbon and nitrogen. However, little information is available regarding the effects of pesticides on soil dissolved organic matter (DOM). It is also unknown how plastic debris, especially small-sized particles called micro plastics, influences the effects of pesticides on soil DOM. In this study, we performed a 30-day soil incubation experiment. Three levels of the common herbicide glyphosate were applied to soil: 0 (control, CK), 3.6 kg ha(-1) (G1) and 7.2 kg ha(-1) (G2). We also tested four levels of glyphosate and microplastics (homopolymer polypropylene powder) co-addition: 3.6 kg ha(-1) + 7% (w/w) (M1G1), 3.6 kg ha(-1)+ 28% (w/w) (M2G1), 7.2 kg ha(-1) + 7% (w/w) (M1G2), and 7.2 kg ha(-1)+ 28% (w/w) (M2G2). Glyphosate addition slightly increased soil fluorescein diacetate hydrolase (FDAse) and phenol oxidase (PO) activities. Although the glyphosate addition significantly promoted the accumulation of dissolved organic phosphorus (DOP) within the first 14 days, the M2 treatment decreased DOP at day 30. M2G1 and M2G2 increased soil FDAse activity and promoted the accumulation of DOC and DOP relative to G1 and G2 respectively while M1G1 and M1G2 benefited DON accumulation. Our results highlighted that the interaction between glyphosate and low microplastics content negatively affected DOC and DOP dynamics, leading to the loss of bioavailable C and P loss. The interaction between glyphosate and high content microplastics negatively affected DON compared with glyphosate addition, possibly decreasing DON.
机译:在农业土壤上增加使用塑料薄膜和农药导致塑料碎片和土壤中农药残留的积累。这种积累已成为一个严重的环境问题,因为它威胁蚯蚓的寿命,抑制酶活性和微生物多样性,有助于土壤微生物碳和氮的丧失。但是,有关农药对土壤溶解有机物(DOM)的影响的信息很少。它还不知道如何如何塑料碎片,特别是叫做微塑料的小粒子,影响农药对土壤中的影响。在这项研究中,我们进行了30天的土壤孵化实验。将三种水平的普通除草剂草甘膦施用于土壤:0(对照,CK),3.6kg ha(-1)(g1)和7.2kg ha(-1)(g2)。我们还测试了四种水平的草甘膦和微塑料(均聚物聚丙烯粉末)(均聚物聚丙烯粉末)共加成:3.6kg ha(-1)+ 7%(w / w)(m1g1),3.6kg ha(-1)+ 28%(w / W)(M2G1),7.2kg ha(-1)+ 7%(w / w)(m1g2),7.2kg ha(-1)+ 28%(w / w)(m2g2)。草甘膦添加略微增加土壤荧光素二乙酸酯水解酶(FDase)和酚氧化酶(PO)活性。虽然草甘膦的添加显着促进了在前14天内的溶解有机磷(DOP)的积累,但M2处理在第30天的DOP下降。M2G1和M2G2增加了土壤FDASE活性,并促进了DOC和DOP的积累相对于G1和G2分别在M1G1和M1G2受益于唐积累时。我们的结果强调,草甘膦和低微薄含量之间的相互作用受到了负面影响的DOC和DOP动态,导致生物可利用的C和P损失。草甘膦与高含量微薄的相互作用与草甘膦添加相比,唐胁迫,可能会减少唐。

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