Ekanayake S Amanda, Godakumbura Pahan I
Department of Chemistry, Faculty of Applied Sciences, University of Sri Jayewardenepura, Gangodawila, Nugegoda 10250, Sri Lanka.
ACS Omega. 2021 Sep 28;6(40):26262-26272. doi: 10.1021/acsomega.1c03271. eCollection 2021 Oct 12.
Recent scientific breakthroughs in the field of agriculture have led to the abundant usage of nanoparticles in agrochemicals to maintain proper nutrient uptake in plants. Since less attention has been given to the supply of vital micronutrients to crop plants, the objective of this study was to develop a nanofertilizer capable of releasing micronutrients while nourishing its surrounding soil. As the initial nanonutrients, Zn and Cu were used in their metal oxide forms, which promote seed germination. Alginic acid was used as the agent responsible for soil conditioning. To form the fertilizing complex, nanoparticles were reacted with sodium alginate, which resulted in a hydrogel where alginate chains were cross-linked with Zn(II) and Cu(II) and excess metal oxide nanoparticles were distributed on the hydrogel. Spectroscopic characterization of the nanofertilizer confirmed that alginate chains were cross-linked by Zn(II) and Cu(II), while morphological analysis by scanning electron microscopy (SEM) showed that ZnO and CuO nanoparticles were embedded on the alginate matrix. The release behavior of cations in soil and water environments, experimented using the tea bag method, revealed that the cationic release was slowly increasing with time. Micronutrient uptake by plants was studied by conducting leaf analyses in tomato plants for 30 consecutive days. To experiment the release behavior of micronutrients in the presence of compost, the nanofertilizer was added with predetermined amounts of compost to tomato plants. Flame atomic absorption spectroscopy (FAAS) results indicated that in the fertilizer-applied plants, Cu concentrations showed a steady increase with time while Zn concentrations remained undetected.
农业领域最近的科学突破导致纳米颗粒在农用化学品中大量使用,以维持植物适当的养分吸收。由于对向作物提供重要微量营养素的关注较少,本研究的目的是开发一种能够在滋养周围土壤的同时释放微量营养素的纳米肥料。作为初始纳米营养素,锌和铜以金属氧化物形式使用,它们能促进种子发芽。海藻酸用作土壤改良剂。为形成施肥复合物,纳米颗粒与海藻酸钠反应,生成一种水凝胶,其中海藻酸链与锌(II)和铜(II)交联,过量的金属氧化物纳米颗粒分布在水凝胶上。纳米肥料的光谱表征证实海藻酸链由锌(II)和铜(II)交联,而扫描电子显微镜(SEM)的形态分析表明氧化锌和氧化铜纳米颗粒嵌入海藻酸盐基质中。使用茶包法在土壤和水环境中进行的阳离子释放行为实验表明,阳离子释放量随时间缓慢增加。通过连续30天对番茄植株进行叶片分析来研究植物对微量营养素的吸收。为了实验在堆肥存在下微量营养素的释放行为,向番茄植株添加了预定量堆肥的纳米肥料。火焰原子吸收光谱法(FAAS)结果表明,在施肥的植株中,铜浓度随时间稳步增加,而锌浓度未检测到。