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Effect of Metal Oxide Nanoparticles on the Chemical Speciation of Heavy Metals and Micronutrient Bioavailability in Paddy Soil

机译:纳米金属氧化物对水稻土中重金属化学形态和微量元素生物有效性的影响

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摘要

The effects of engineered nanoparticles (ENPs) on heavy metal fate and biotoxicity in farmland soil are mostly unknown. A flooding–drying simulation experiment was conducted to study the effects of three typical metal oxide nanoparticles (TiO -NPs, ZnO-NPs and CuO-NPs) on the chemical speciation of heavy metals and micronutrient bioavailability in paddy soil. The results showed that the addition of ZnO-NPs and CuO-NPs caused significant increases in soil pH, Eh and EC after a 90-d flooding–drying process. ZnO-NPs and CuO-NPs addition caused clearly increase in the Zn and Cu concentrations in the acid-soluble fraction, Fe/Mn oxides-bound fraction and organic-bound fraction, leading to higher bioavailability in the soil. DTPA-extractable Zn and Cu increased to 184.6 mg kg and 145.3 mg kg in the maximum ZnO-NPs and CuO-NPs concentration treatments (500 mg kg ). TiO -NPs promoted the transformation of Mn from a Fe/Mn oxides-bound fraction to an acid-soluble fraction. Soil Cd bioavailability obviously decreased in the TiO -NPs treatment but increased in the ZnO-NPs and CuO-NPs treatments.
机译:工程纳米颗粒(ENPs)对农田土壤中重金属命运和生物毒性的影响尚不清楚。进行了水浸-干燥模拟实验,研究了三种典型的金属氧化物纳米颗粒(TiO -NPs,ZnO-NPs和CuO-NPs)对稻田土壤中重金属的化学形态和微量元素生物利用度的影响。结果表明,经过90天的水淹-干燥过程,ZnO-NPs和CuO-NPs的添加导致土壤pH,Eh和EC的显着增加。 ZnO-NPs和CuO-NPs的添加明显增加了酸溶部分,Fe / Mn氧化物结合部分和有机结合部分中Zn和Cu的浓度,从而提高了土壤的生物利用度。在最大ZnO-NPs和CuO-NPs浓度处理(500 mg kg)中,DTPA可萃取的Zn和Cu分别增加到184.6 mg kg和145.3 mg kg。 TiO -NPs促进了Mn从Fe / Mn氧化物结合的部分转变为酸可溶的部分。 TiO -NPs处理土壤Cd的生物利用度明显下降,而ZnO-NPs和CuO-NPs处理土壤Cd的生物利用度明显增加。

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