首页> 外文期刊>African Journal of Biotechnology >Interactive effect of colloidal solution of zinc oxide nanoparticles biosynthesized using Ocimum gratissimum and Vernonia amygdalina leaf extracts on the growth of Amaranthus cruentus seeds
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Interactive effect of colloidal solution of zinc oxide nanoparticles biosynthesized using Ocimum gratissimum and Vernonia amygdalina leaf extracts on the growth of Amaranthus cruentus seeds

机译:用免费提取的Ocimum gratissimum和Vernonia amygdalina叶提取物生物合成氧化锌纳米粒子的胶体溶液对A菜种子生长的相互作用

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Nanofertilizers may be a possible replacement for organic fertilizers because they can get to targeted sites in a plant and either enhance or thwart its growth depending on the toxicity level of the used nanoparticles. Zinc oxide nanoparticles are said to be a good source of nutrients for crop production and using these nanoparticles as bio fertilizers, could help to reduce the chemical residue in the grown vegetables which may sometimes be consumed raw or at an immature stage. Zinc oxide nanoparticles used in this work were biosynthesized using Ocimum gratissimum and Vernonia amygdalina leaf extracts. They were characterized using optical spectroscopy and electron microscopy and found to be of sizes ranging from 11 to 99 nm with some agglomeration. Colloidal solutions of these nanoparticles of concentrations 10, 100 and 500 mgl-1 were used as nanofertilizer for growing black-seeded and pale-seeded Amaranthus cruentus. Percent emergence was best at 69% for the pale seeded variety to which 100 mgl-1 Og-ZnO (pH 8) nanoparticles was applied and worst at 29% for the black seeded variety treated with 10 mgl-1 Og-ZnO (pH 12) nanoparticles. Best emergence index value of 2.28 was observed for the black seeded variety on the application of pH 8, 100 mgl-1 Og-ZnO nanoparticles. The pale seeded variety to which pH 12, 10 mgl-1 of Va-ZnO nanoparticles was applied gave the best emergence rate index results. The study showed that pH and concentration of nanoparticles can affect the seedling characteristics of A. cruentus seeds.
机译:纳米肥料可能是有机肥料的替代品,因为它们可以到达植物中的目标位置,并根据所用纳米颗粒的毒性水平而增强或阻碍其生长。据说氧化锌纳米颗粒是农作物生产的良好营养来源,将这些纳米颗粒用作生物肥料可帮助减少有时可能以生食或未成熟阶段食用的蔬菜中的化学残留物。使用Ocimum gratissimum和Vernonia amygdalina叶提取物生物合成了这项工作中使用的氧化锌纳米颗粒。使用光谱学和电子显微镜对它们进行了表征,发现它们的大小在11到99 nm之间,并且有一些团聚。这些浓度分别为10、100和500 mgl-1的纳米粒子的胶体溶液用作纳米肥料,用于种植黑种子和苍白的A菜。对于使用100 mgl-1 Og-ZnO(pH 8)纳米颗粒的浅色种子品种,出苗率最高,为69%;对于用10 mgl-1 Og-ZnO(pH 12)处理的黑色种子品种,出苗率最差,为29%。 )纳米粒子。在pH 8、100 mgl-1 Og-ZnO纳米颗粒的应用下,黑种子品种的最佳出苗指数值为2.28。施用pH 12、10 mgl-1的Va-ZnO纳米粒子的浅色种子品种出苗率指数结果最佳。研究表明,pH和纳米粒子的浓度可以影响刺槐种子的幼苗特性。

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