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Binary mixture of nanoparticles in sewage sludge: Impact on spinach growth

机译:污水污泥中纳米粒子的二元粉末:对菠菜生长的影响

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摘要

Present study carried out pot experiments and evaluated effects of single and binary mixture of nanoparticles (exposed via sludge as soil conditioner) on spinach plant. Exposure of Ag2O nanoparticles (NPs) (1 and 10 mg/kg soil-sludge) did not show significant reduction in plant as compared to control. On the other hand, TiO2 NPs (exposed as single and in binary mixture) resulted in significant increase in root length (29% and 37%) and fresh weight (60% and 48%) at highest exposure concentration. Total chlorophyll content decreased for Ag2O and binary mixture (7% and 4%, respectively) and increased for TiO2 (5%) at 10 mg/kg soil-sludge. The toxic interaction between Ag2O and TiO2 NPs was additive at both exposure concentrations. Ag2O NPs had higher tendency of root surface adsorption than TiO2 NPs. Metal content in spinach leaves at highest exposure concentration was Ag: 2.6 +/- 0.55 mg/g plant biomass(for Ag2O NPs) and 1.02 +/- 0.32 mg/g plant biomass (for Ag2O + TiO2 NPs) and for Ti: 1.12 +/- 0.78 (for TiO2 NPs) mg/g plant biomass and 0.58 +/- 0.41 mg/g (for Ag2O + TiO2 NPs). The inadvertent ingestion of NPs-contaminated spinach resulted in projected daily intake (DI) of Ag and Ti for different age-mass classes (child to adult) exceeding the oral reference dose for toxicity during oral ingestion. In conclusion, we report no acute toxicity of single and binary mixture of NPs to spinach but significant accumulation of Ag and Ti metals in spinach leaves. There are high chances that ingestion of spinach grown in such environment might lead to human health risks. (C) 2020 Published by Elsevier Ltd.
机译:目前的研究进行了盆栽试验,并在菠菜植物上进行了纳米颗粒的单颗粒和二元混合物(通过污泥暴露为土壤调节剂)的疗效。与对照相比,Ag2O纳米颗粒(NPS)(1和10mg / kg土壤污泥)的暴露在植物中没有显着降低。另一方面,TiO2 NPS(如单一和二元混合物暴露)导致在最高曝光浓度下的根长(29%和37%)和新重量(60%和48%)显着增加。对于Ag 2 O和二元混合物(分别为7%和4%),总叶绿素含量降低,并在10mg / kg土壤污泥下增加TiO 2(5%)。 Ag2O和TiO2 NP之间的毒性相互作用在曝光浓度下是添加剂。 Ag2O NPS具有比TiO2吸附的根表吸附趋势高于TiO2 NPS。菠菜叶中的金属含量以最高的曝光浓度为Ag:2.6 +/- 0.55 mg / g植物生物质(适用于Ag2O NPS)和1.02 +/- 0.32 mg / g植物生物质(用于Ag2O + TiO2 NPS)和Ti:1.12 +/- 0.78(用于TiO2 NPS)Mg / g植物生物质和0.58 +/- 0.41 mg / g(用于Ag2O + TiO2 NPS)。无所畏惧地摄取NPS污染的菠菜,导致预测的每日摄入(DI)Ag和Ti的不同年龄类别(儿童到成人)超过口服摄入期间毒性的口腔参考剂量。总之,我们报告了NPS的单一和二元混合物对菠菜的急性毒性,但在菠菜叶中的Ag和Ti金属的显着积累。在这种环境中生长的菠菜有很大的机会可能会导致人类健康风险。 (c)2020由elestvier有限公司发布

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