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Metal(loid) oxides and metal sulfides nanomaterials reduced heavy metals uptake in soil cultivated cucumber plants

机译:金属(氧化物)和金属硫化物纳米材料减少了土壤栽培黄瓜植物中重金属的吸收

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Agricultural soil is one of the main sink for both heavy metals and nanomaterials (NMs). Whether NMs can impact heavy metals uptake or bioaccumulation in plants is unknown. Here, cucumber plants were cultivated in a multi-heavy metals contaminated soil amended with four types of NMs (SiO2, TiO2, ZnS and MoS2) separately for four weeks. Physiological and biochemical parameters were determined to investigate the impact of NMs on plant growth. Inductively coupled plasma mass spectrometry was employed to determine the metal content in plants. Results showed that none of the tested NMs impacted plants biomass, but all the NMs showed different degrees of reduction in heavy metals bioaccumulation in plant roots, stems and leaves. However, four NMs showed different degrees of reduction in macro and micro nutrients uptake. MoS2 decreased the bioaccumulation of heavy metals (As, Cd, Cr, Cu, Ni, Al, Ti and Pb) for 36.4-60.6% and nutrients (Mg, Fe, K, Si and Mn) for 40.1%-50.1% in roots. Exposure to MoS2 NMs also significantly increased 23.4% of Si in leaves, 205.6% and 83.9% of Mo in roots and stems, respectively. In general, the results of this study showed promising potential for NMs to reduce uptake of heavy metals in crop plants, especially MoS2 NMs. However, the negative impacts of perturbing nutrients uptake should be paid attention as well. (C) 2019 Elsevier Ltd. All rights reserved.
机译:农业土壤是重金属和纳米材料(NMs)的主要汇聚地之一。 NMs是否会影响植物中重金属的吸收或生物富集尚不清楚。在这里,黄瓜植株在多重金属污染的土壤中种植,分别用四种类型的NM(SiO2,TiO2,ZnS和MoS2)修正了四个星期。确定了生理和生化参数以研究NMs对植物生长的影响。电感耦合等离子体质谱法用于确定植物中的金属含量。结果表明,测试的NMs均不影响植物生物量,但所有NMs均显示出植物根,茎和叶中重金属生物累积量的不同程度降低。然而,四个NMs显示出不同程度的宏观和微量营养素吸收减少。 MoS2减少了36.4-60.6%的根中重金属(As,Cd,Cr,Cu,Ni,Al,Ti和Pb)的生物积累,减少了40.1%-50.1%的养分(Mg,Fe,K,Si和Mn)的生物积累。 。暴露于MoS2 NMs也会显着增加叶片中Si的23.4%,根和茎中Mo的205.6%和83.9%。总体而言,这项研究的结果表明,NMs有望减少农作物特别是MoS2 NMs中重金属的吸收。但是,也应注意扰动养分吸收的负面影响。 (C)2019 Elsevier Ltd.保留所有权利。

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