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A comparison of the effects of silver nanoparticles and silver nitrate on a suite of soil dwelling organisms in two field soils

机译:纳米银和硝酸银对两种田间土壤中一套土壤生物的影响的比较

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摘要

Nanomaterials are increasingly used in a wide range of products, leading to growing concern of their environmental fate. In order to understand the fate and effects of silver nanoparticles in the soil environment, a suite of toxicity tests including: plant growth with Elymus lanceolatus (northern wheatgrass) and Trifolium pratense (red clover); collembolan survival and reproduction (Folsomia candida); and earthworm avoidance, survival and reproduction (Eisenia andrei) was conducted. The effect of silver nanoparticles (AgNP) was compared with the effect of ionic silver (as AgNO3) in two agricultural field soils (a sandy loam and a silt loam). Lethal (LC50) or sub lethal (IC50) effect levels are presented for all endpoints and demonstrate that in most cases AgNO3 (i.e. ionic silver) was found to be more toxic than the AgNP across test species. The difference in effects observed between the two forms of silver varied based on test species, endpoint and soil type. In tests that were conducted across different soil types, organisms in the sandier soil had a greater response to the Ag (ionic and nano) than those in soil with a high silt content. Earthworms (avoidance behavior and reproduction) were the most sensitive to both AgNP and AgNO3, while plant emergence was the least sensitive endpoint to both forms of Ag. The use of a test battery approach using natural field soils demonstrates the need to better quantify the dissolution and transformation products of nanomaterials in order to understand the fate and effects of these materials in the soil environment.
机译:纳米材料越来越广泛地用于各种产品中,导致人们越来越关注它们的环境命运。为了了解银纳米颗粒在土壤环境中的命运和影响,进行了一系列毒性测试,包括:披草除草剂(Elymus lanceolatus,北部小麦草)和and叶草(Trifolium pratense,红三叶草)生长; collembolan的生存和繁殖(念珠菌);并进行了avoid规避,生存和繁殖(Eisenia andrei)。将银纳米颗粒(AgNP)的作用与离子银(作为AgNO3)在两种农田土壤(沙壤土和粉质壤土)中的作用进行了比较。列出了所有终点的致死性(LC50)或次致死性(IC50)影响水平,并证明在大多数情况下,发现整个测试物种中的AgNO3(即离子银)比AgNP更具毒性。两种形式的银之间观察到的效果差异因测试物种,终点和土壤类型而异。在对不同土壤类型进行的测试中,沙质土壤中的生物对银(离子和纳米)的响应要比高淤泥土壤中的生物更大。 Ag(回避行为和繁殖)对AgNP和AgNO3最敏感,而植物出苗对两种形式的Ag最不敏感。使用天然土壤测试电池的方法表明需要更好地量化纳米材料的溶解和转化产物,以便了解这些材料在土壤环境中的命运和影响。

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