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首页> 外文期刊>Australian Journal of Crop Science >Application of metal nanoparticles for pre-sowing treatment of spring barley seeds
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Application of metal nanoparticles for pre-sowing treatment of spring barley seeds

机译:金属纳米粒子在春麦片种子前播种处理的应用

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This paper presents data on the pre-sowing treatment of spring barley (Hordeum vulgare L.) seeds by polymer coating with metal nanoparticles (NPs) affecting on seed germination and morphometric parameters of seedlings. Metal NPs [Fe (56.0 ± 0.9 nm, phase composition: Fe 0 -27.9 ± 2.1%, Fe 3 O 4 - 72.1 ± 3.6%); Zn (60.6 ± 3.7 nm, phase composition: Zn 0 - 100%); Cu (65.0 ± 1.2 nm, phase composition: Cu 0 - 100%)] were incorporated into a polymer coating about 10 microns thick, consisting of Na-carboxymethyl cellulose (Na-CMC) and polyethylene glycol-400 (PEG-400), with a dye rhodamine 6G (Rh6G). We developed and studied polymer compositions as with individual NPs in concentrations 10 -4 % - 10 -10 % and their combinations. To compare effects of NPs with metal ions, we tested polymer film coating with metal sulfates in equivalent amounts. Pre-sowing treatment of barley seeds with metal NPs or metal ions in the polymer coating affected germination, fresh green and root mass (FM and RM) of seedlings. Film thickness was less than 10% of the caryopsis shell. The surface of seeds treated with the polymer composition was uniform. The defects and irregularities were smoothed. There were no significant differences in the endosperm structure on sections of the treated and control samples. Iron, zinc and copper NPs composition at 10 -8 %, 10 -4 % and 10 -8 % concentrations were the best in laboratory experiments. In the field trials, it stimulated barley crop yields and decreased the moisture content of the bunker grain compared with the control.
机译:本文介绍了用金属纳米粒子(NPS)的聚合物涂层对苗芽(NPS)进行春季大麦(Hordeum Vulgare L.)种子的数据。金属NPS [Fe(56.0±0.9 nm,相组成:Fe 0 -27.9±2.1%,Fe 3 O 4 - 72.1±3.6%); Zn(60.6±3.7nm,相成分:Zn 0 - 100%);将Cu(65.0±1.2nm,相组合物:Cu 0-100%)]掺入约10微米厚的聚合物涂层中,由Na-羧甲基纤维素(Na-CMC)和聚乙二醇-400(PEG-400)组成,用染料罗丹明6g(RH6G)。我们开发和研究了聚合物组合物,与浓度为10 -4%-10%及其组合的个体NPS。为了比较NPS与金属离子的影响,我们用相当量的金属硫酸盐测试了聚合物膜涂层。用金属NPS或金属离子在聚合物涂层中的预播种处理苗种,新鲜的绿色和根肿块(FM和RM)的芽。薄膜厚度小于Caryopsis壳的10%。用聚合物组合物处理的种子表面是均匀的。缺陷和不规则性平滑。在处理和对照样品的部分上的胚乳结构没有显着差异。铁,锌和铜NPS组成为10 -8%,10 -4%和10-8%浓度在实验室实验中最好。在现场试验中,与对照相比,它刺激了大麦作物产量并降低了燃烧颗粒的水分含量。

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