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Assessing the Impact of Copper and Zinc Oxide Nanoparticles on Soil: A Field Study

机译:评估铜和氧化锌纳米粒子的影响土壤:考察报告

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摘要

It is not known if the annual production of tonnes of industrial nanoparticles (NPs) has the potential to impact terrestrial microbial communities, which are so necessary for ecosystem functioning. Here, we have examined the consequences of adding zero valent copper and zinc oxide NPs to soil in pots that were then maintained under field conditions. The fate of these NPs, as well as changes in the microbial communities, was monitored over 162 days. Both NP types traveled through the soil matrix, albeit at differential rates, with Cu NPs retained in the soil matrix at a higher rate compared to ZnO NPs. Leaching of Cu and Zn ions from the parent NPs was also observed as a function of time. Analysis of microbial communities using culture-dependent and independent methods clearly indicated that Cu and ZnO NPs altered the microbial community structure. In particular, two orders of organisms found in rhizosphere, Flavobacteriales and Sphingomonadales, appeared to be particularly susceptible to the presence of NPs. Together, the migration of NPs through soil matrix and the ability of these potential pollutants to influence the composition of microbial community in this field study, cannot help but raise some environmental concerns.
机译:尚不知道吨工业纳米颗粒(NPs)的年产量是否有可能影响陆地微生物群落,而这对于生态系统功能至关重要。在这里,我们检查了向盆中土壤中添加零价铜和氧化锌NP的后果,然后将其保持在田间条件下。在162天之内,对这些NP的命运以及微生物群落的变化进行了监测。两种NP类型都以不同的速率穿过土壤基质,与ZnO NP相比,Cu NP以更高的速率保留在土壤基质中。还观察到母体NP浸出的Cu和Zn离子是时间的函数。使用依赖于培养物和独立方法的微生物群落分析清楚地表明,Cu和ZnO NPs改变了微生物群落结构。特别是,在根际中发现的两个生物体,黄杆菌和鞘氨醇似乎特别容易受到NP的影响。在本次田野研究中,NPs通过土壤基质的迁移以及这些潜在污染物影响微生物群落组成的能力不免引起一些环境问题。

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