Suazo-Hernández Jonathan, Arancibia-Miranda Nicolás, Mlih Rawan, Cáceres-Jensen Lizethly, Bolan Nanthi, Mora María de la Luz
Center of Plant, Soil Interaction and Natural Resources Biotechnology, Scientific and Biotechnological Bioresource Nucleus (BIOREN-UFRO), Universidad de La Frontera, Avenida Francisco Salazar 01145, Temuco 4780000, Chile.
Department of Chemical Sciences and Natural Resources, Universidad de La Frontera, Avenida Francisco Salazar 01145, Temuco 4811230, Chile.
Nanomaterials (Basel). 2023 Jan 31;13(3):572. doi: 10.3390/nano13030572.
In recent years, the release of metal and metallic oxide engineered nanoparticles (ENPs) into the environment has generated an increase in their accumulation in agricultural soils, which is a serious risk to the ecosystem and soil health. Here, we show the impact of ENPs on the physical and chemical properties of soils. A literature search was performed in the Scopus database using the keywords ENPs, plus soil physical properties or soil chemical properties, and elements availability. In general, we found that the presence of metal and metallic oxide ENPs in soils can increase hydraulic conductivity and soil porosity and reduce the distance between soil particles, as well as causing a variation in pH, cation exchange capacity (CEC), electrical conductivity (EC), redox potential (Eh), and soil organic matter (SOM) content. Furthermore, ENPs or the metal cations released from them in soils can interact with nutrients like phosphorus (P) forming complexes or precipitates, decreasing their bioavailability in the soil solution. The results depend on the soil properties and the doses, exposure duration, concentrations, and type of ENPs. Therefore, we suggest that particular attention should be paid to every kind of metal and metallic oxide ENPs deposited into the soil.
近年来,金属和金属氧化物工程纳米颗粒(ENPs)释放到环境中,导致它们在农业土壤中的积累增加,这对生态系统和土壤健康构成严重风险。在此,我们展示了ENPs对土壤物理和化学性质的影响。使用关键词ENPs以及土壤物理性质、土壤化学性质和元素有效性在Scopus数据库中进行了文献检索。总体而言,我们发现土壤中金属和金属氧化物ENPs的存在可增加水力传导率和土壤孔隙度,减小土壤颗粒间的距离,还会导致土壤pH值、阳离子交换容量(CEC)、电导率(EC)、氧化还原电位(Eh)和土壤有机质(SOM)含量发生变化。此外,土壤中的ENPs或其释放的金属阳离子可与磷(P)等养分相互作用形成络合物或沉淀物,降低其在土壤溶液中的生物有效性。结果取决于土壤性质以及ENPs的剂量、暴露持续时间、浓度和类型。因此,我们建议应特别关注沉积到土壤中的各类金属和金属氧化物ENPs。