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TiO_2 nanoparticles in a biosolid-amended soil and their implication in soil nutrients, microorganisms and Pisum sativum nutrition

机译:TiO_2纳米粒子在生物杀药修正的土壤中及其在土壤养分,微生物和Pisum Sativum营养中的含义

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The wide use of nanoparticles (NPs), gives concern about their possible negative implications in the environment and living organisms. In particular, titanium dioxide (TiO2) NPs are accumulated in biosolids (Bs) coming from wastewater treatment plants, which in turn are used as farm soil amendments and are becoming an important way of NPs entrance in the terrestrial ecosystems. In this study, to simulate a low and cumulative load of TiO2 NPs, 80 and 800 mg TiO2 per Kg of soil were spiked in the Bs prior to its addition to soil. The effects of different crystal phases of TiO2 NPs (pure anatase and pure rutile or their mixture) and their non-coated bulk counterparts (larger particles) on the availability of mineral nutrients and on the status of the bacterial communities together with the nutritional status of Pisum sativum L. plants were evaluated. Results showed the reduction, to different extents, on the availability of important soil mineral nutrients (e.g. Mn 65%, Fe 20%, P 27%, averagely), in some cases size- (e.g. P) and dose-dependent. Bacterial biodiversity was also affected by the presence of high TiO2 dose in soil. The mineral nutrition of pea plants was also altered, showing the main reduction in Mn (80% in the roots and 50% in the shoots), K, Zn, P (respectively, 80, 40, and 35% in the roots), and an increase of N in the shoots, with possible consequences on the quality of the crop. The present study gives new integrated data on the effects of TiO2 NPs in the soil-plant system, on the soil health and on the nutritional quality of crops, rising new implications for future policies and human health.
机译:广泛使用纳米颗粒(NPS),令他们对环境和生物体中可能的负面影响担忧。特别地,二氧化钛(TiO 2)NPS累积在来自废水处理厂的生物糖(BS)中,其又被用作农场土壤修正,并成为陆地生态系统中NPS入口的重要方式。在本研究中,为了在其加入土壤之前,为了模拟TiO 2 NPS的低且累积的TiO 2 NPS,80和800mg TiO 2每千克土壤掺入BS。 TiO2 NPS(纯锐钛矿和纯金红石或混合物)的不同晶相的影响及其非涂层散装对应物(较大的颗粒)对矿物营养素的可用性以及细菌社区的状况以及营养状况评估了Pisum Sativum L.植物。结果表明,对不同的土壤矿物质的可用性(例如,Mn 65%,Fe 20%,P 27%,平均值),在某些情况下,在某些情况下,对不同的土壤矿物质(例如,P)和剂量依赖性的不同。细菌生物多样性也受到土壤中高TiO2剂量的影响的影响。还改变了豌豆植物的矿物营养,显示了Mn的主要减少(根部的80%,茎中50%),K,Zn,P(分别为80,40和35%),并且枝条中的n增加,可能对作物质量的影响。本研究为土壤健康和作物营养质量的土壤植物系统中TiO2 NPS效应的新综合数据提供了关于土壤 - 植物系统的影响,对未来政策和人类健康的新含义上升了新的影响。

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