Green synthesis of eco-friendly potassium nanoparticles and its application in <i>Amarathus viridis, Solanum lycopersocum </i>and <i>Hibiscus sabdariffa</i> plants

Nathan D. Aliyu, Gideon Wyasu, Bako Myek, Jamila B. Yakasai
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Abstract

Potassium Chloride and Polyalthia longifolia leaves extract were used for the synthesis of Eco-friendly Potassium Nanoparticles for application in Amarathus viridis, Solanum lycopersocum and Hibiscus sabdariffa. The synthesized Nanoparticles were characterized by scanning electron microscopy-energy dispersive X-ray (SEM-EDX) and Fourier transform infrared (FTIR). The SEM revealed a size range of 200nm with a near spherical shape synthesized Nanoparticles. Whereas EDX revealed an elemental composition of 19% Potassium, 4.46% Chlorine, 33.04% Carbon, 28.31% Oxygen and 14.30% Iron. FTIR revealed four distinctive at 3235.3cm-1, 2109.7cm-1, 1640.0cm-1 and 1069.7cm-1 for Polyalthia longifolia potassium particles (Pl-KNPs). There were significant increase in all the folia applied Pl-KNPs when determined and compared with the controlled plants: Amaranthus viridis leaves recorded the highest increase with 56.81%, Solanum lycopersocum recorded the highest stem increase with 46.15%, while Hibiscus sabdariffa recorded the overall highest percentage with 224.27% attributed to its root length. This distinctive increase observed on the selected folia applied Pl-KNPs plants parameters is a confirmation of the significance of green synthesized potassium Nanoparticles in the field of agriculture.
绿色环保钾纳米颗粒的绿色合成及其在苋菜、番茄茄和芙蓉中的应用植物
以氯化钾和长叶杜鹃花叶提取物为原料合成了环保型纳米钾,并将其应用于苋菜、番茄茄和芙蓉中。采用扫描电镜-能谱x射线(SEM-EDX)和傅里叶变换红外(FTIR)对合成的纳米颗粒进行了表征。扫描电镜显示,合成的纳米颗粒尺寸范围为200nm,形状接近球形。而EDX显示的元素组成为19%钾、4.46%氯、33.04%碳、28.31%氧和14.30%铁。FTIR结果显示,长叶蓼钾颗粒(Pl-KNPs)在3235.3cm-1、2109.7cm-1、1640.0cm-1和1069.7cm-1处有4个不同的特征。结果表明,与对照植物相比,施用了Pl-KNPs的所有叶片均有显著增加,其中绿苋菜叶片增幅最大,达56.81%,茄茎增幅最大,达46.15%,芙蓉根系增幅最大,达224.27%。在施用了Pl-KNPs的植物参数上观察到的这种显著增加,证实了绿色合成纳米钾在农业领域的重要性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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