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Development of nanocomposites bio-organic fertilizer

机译:纳米复合生物有机肥料的开发

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The overall aim of present investigation is to partially replace the existing chemical fertilizer by developing polymer coated nanocomposites bio-organic fertilizer. Development of nanocomposite fertilizer influences on plant growth promoting activities of nanocomposite fertilizer, nanocomposites fertilizers are analysed using Fourier Transform Infrared Spectroscopy, morphology structures of nanocomposite fertilizer using scanning electron microscope. The root growth of Allium cepa for protein humic acid composites was found to be 40mm in 7 days. The shoot growth of Solanumlycopersicum, Brassica junceae, Trigonella foenumgraecum has shown average growth in 7 days. In developing countries this system has a higher potential to achieve sustainable agricultural process. Instead of dumping fertilizers in a large amount and affecting soil fertility, these Nano composites in small amount could provide better nutrients for the plant growth.
机译:本研究的总体目标是通过开发聚合物涂层的纳米复合生物有机肥料来部分替代现有的化学肥料。纳米复合肥料的发展对植物的生长促进活性有影响,利用傅立叶变换红外光谱法对纳米复合肥料进行了分析,采用扫描电子显微镜对纳米复合肥料的形态结构进行了分析。发现在7天之内,用于蛋白质腐殖酸复合材料的葱属的根生长为40mm。茄科植物,芥菜,胡芦巴的芽生长在7天内显示出平均生长。在发展中国家,该系统在实现可持续农业过程方面具有更高的潜力。这些少量的纳米复合材料不会大量倾倒肥料而影响土壤肥力,反而可以为植物生长提供更好的养分。

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