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首页> 外文期刊>Environmental Science and Pollution Research >Integrating ecotoxicity and chemical approaches to compare the effects of ZnO nanoparticles, ZnO bulk, and ZnCl2 on plants and microorganisms in a natural soil
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Integrating ecotoxicity and chemical approaches to compare the effects of ZnO nanoparticles, ZnO bulk, and ZnCl2 on plants and microorganisms in a natural soil

机译:结合生态毒性和化学方法,比较了ZnO纳米颗粒,ZnO块和ZnCl2对天然土壤中植物和微生物的影响

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摘要

This work compared the toxicity of ZnO nanoparticles (ZnO-NPs), ZnO bulk, and ZnCl2 on microbial activity (C and N transformations and dehydrogenase and phosphatase activities) and their uptake and toxic effects (emergence, root elongation, and shoot growth) on three plant species namely wheat, radish, and vetch in a natural soil at 1000 mg Zn kg(-1). Additionally, plants were also tested at 250 mg Zn kg(-1). The effects of the chemical species on Zn extractability in soil were studied by performing single and sequential extractions. ZnCl2-1000 presented the highest toxicity for both taxonomic groups. For microorganisms, ZnO-NPs demonstrated adverse effects on all measured parameters, except on N transformations. The effects of both ZnO forms were similar. For plants, ZnO-NPs affected the growth of more plant species than ZnO bulk, although the effects were small in all cases. Regarding accumulation, the total Zn amounts were higher in plants exposed to ZnO-NP than those exposed to ZnO bulk, except for vetch shoots. The soil sequential extraction revealed that the Zn concentration in the most labile forms (water soluble (WS) and exchangeable (EX)) was similar in soil treated with ZnO (NP and bulk) and lower than that of ZnCl2-treated soil, indicating the higher availability of the ionic forms. The strong correlations obtained between WS-Zn fraction and the Zn concentrations in the roots, shoots, and the effects on shoot weight show the suitability of this soil extraction method for predicting bioavailable Zn soil for the three plant species when it was added as ZnO-NPs, ZnO bulk, or ZnCl2. In this work, the hazard associated with the ZnO-NPs was similar to ZnO bulk in most cases.
机译:这项工作比较了ZnO纳米颗粒(ZnO-NPs),ZnO本体和ZnCl2对微生物活性(碳和氮转化以及脱氢酶和磷酸酶活性)的毒性以及它们对微生物的吸收和毒性作用(出苗,根伸长和枝条生长)。三种植物物种,即小麦,萝卜和紫-1菜,在天然土壤中的含量为1000 mg Zn kg(-1)。此外,还对植物进行了250 mg Zn kg(-1)的测试。通过进行单次和连续萃取研究了化学物质对土壤中Zn萃取能力的影响。 ZnCl2-1000对两个分类组均显示出最高的毒性。对于微生物,ZnO-NPs除N转化外,对所有测得的参数均显示出不利影响。两种ZnO的作用都相似。对于植物而言,ZnO-NPs影响的植物种类多于ZnO本体,尽管在所有情况下其影响均很小。关于积累,除v子枝外,暴露于ZnO-NP的植物的总Zn含量高于暴露于ZnO体的植物。土壤序贯提取显示,在用ZnO(NP和散装)处理的土壤中,最不稳定形式(水溶性(WS)和可交换(EX))的Zn浓度相似,但低于ZnCl2处理的土壤。离子形式的可用性更高。 WS-Zn分数与根,茎中锌浓度之间的强相关性以及对茎重的影响表明,当以ZnO-作为添加物时,这种土壤提取方法适用于预测三种植物的生物有效性Zn土壤。 NP,ZnO块或ZnCl2。在这项工作中,与ZnO-NPs相关的危害在大多数情况下与ZnO散装相似。

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