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首页> 外文期刊>Journal of Nanostructures >Microwave-Assisted Chemical Preparation of ZnO Nanoparticles and Its Application on the Improving Grain Yield, Quantity and Quality of Safflower (Carthamus Tinctorius L.)
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Microwave-Assisted Chemical Preparation of ZnO Nanoparticles and Its Application on the Improving Grain Yield, Quantity and Quality of Safflower (Carthamus Tinctorius L.)

机译:微波辅助化学合成ZnO纳米粒及其在提高红花籽粒产量,数量和品质上的应用

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摘要

ZnO nanoparticles were synthesized by a microwave-assisted chemical method. ZnO nanostructures were synthesized via a fast reaction between zinc acetate and ammonia at presence citric acid and other effective agents in chemical procedure. Nanostructures were characterized by X-ray diffraction , scanning electron microscopy. Seed yield and seed quality of safflower grown under drought stress. The test includes control treatments priming with distilled water, priming with zinc sulphate in the amount of 300 mg per ml, priming with sulfate of zinc to 600 mg per liter, priming with Nano priming on the amount of 300 mg per liter, with Nano on priming rate of 600 mg per liter, priming with zinc sulphate in the amount of 300 mg/l zinc sulphate along with spraying the amount of 300 mg, zinc sulfate with priming to the amount of 600 mg/l zinc sulphate along with spraying the amount of 600 mg, priming with Nano over the amount of 300 mg per liter plus the foliar application of nano on the amount of 300 mg, priming with Nano over the amount of 600 mg per liter plus the foliar application to nano on 600 mg, zinc sulfate to foliar application with the amount of 300 mg per liter, foliar application with Nano over the amount of 300 Mg/l, respectively.
机译:ZnO纳米粒子是通过微波辅助化学方法合成的。 ZnO纳米结构是通过乙酸锌和氨在柠檬酸和其他有效试剂的存在下通过化学方法快速反应而合成的。通过X射线衍射,扫描电子显微镜对纳米结构进行表征。干旱胁迫下红花种子的产量和种子品质。该测试包括使用蒸馏水灌注的对照处理,以每毫升300 mg的硫酸锌灌注,以每升600 mg的锌的硫酸盐灌注,以每升300 mg的纳米灌注进行灌注,以Nano进行灌注。灌注速率为每升600 mg,以300毫克/升硫酸锌的量灌注硫酸锌,并喷涂300毫克,以灌注量为600毫克/升硫酸锌的硫酸锌灌注,并喷涂一定量600毫克,用每升300毫克的纳米底漆加每升300毫克的纳米叶面漆,再用600毫克的锌对纳米粉的叶面底漆。硫酸盐以每升300 mg的量施用到叶面,纳米叶面分别以300 Mg / l的量施用。

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