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首页> 外文期刊>Journal of Plant Nutrition >Nano zinc carriers influences release kinetics of zinc and iron in a laboratory incubation experiment under Inceptisol and Alfisol
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Nano zinc carriers influences release kinetics of zinc and iron in a laboratory incubation experiment under Inceptisol and Alfisol

机译:纳米锌载体影响锌和铁的释放动力学在高溶胶和阿尔法尔下的实验室孵育实验中

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摘要

Zinc (Zn) deficiency is a widespread phenomenon globally. Conventional Zn fertilizers viz zinc sulfate (ZnSO4 center dot 7H(2)O) reported to have very low use efficiency (1-5%). Hence, technological interventions in increasing Zn use efficiency are of utmost important. Keeping this in view, a laboratory incubation study was undertaken to evaluate the effect of various Zn carriers on release kinetics of zinc and iron under Inceptisol and Alfisol. Zincated nanoclay polymer composite (ZNCPC), nano zinc oxide (n-ZnO), Zn-citrate were compared with conventional one i.e., zinc sulfate. ZNCPC attributed highest DTPA-Zn content at 45 days of incubation in Inceptisol (2.99 mg kg(-1)) and at 60 days of incubation in Alfisol (2.36 mg kg (-1)). Zn citrate was found another efficient Zn carrier followed by ZNCPC but superior over n-ZnO as per as the Zn availability and control release behavior is concern. Thus, ZNCPC was found to be the most efficient Zn carrier as compared to conventional zinc sulfate and other nano Zn carriers. High aspect ratio of n-ZnO curbs its soil application.
机译:锌缺乏是全球普遍存在的现象。据报道,传统的锌肥料,即硫酸锌(ZnSO4中心dot 7H(2)O)的利用率非常低(1-5%)。因此,提高锌利用效率的技术干预至关重要。考虑到这一点,我们进行了一项实验室培养研究,以评估各种锌载体对在Inceptisol和Alfisol下锌和铁释放动力学的影响。比较了锌化纳米粘土聚合物复合材料(ZNCPC)、纳米氧化锌(n-ZnO)、柠檬酸锌和传统的硫酸锌。ZNCPC将DTPA锌的最高含量归因于在Inceptisol中培养45天(2.99 mg kg(-1))和在Alfisol中培养60天(2.36 mg kg(-1))。柠檬酸锌是继ZNCPC之后的另一种高效锌载体,但由于锌的有效性和控制释放行为,柠檬酸锌优于n-ZnO。因此,与传统的硫酸锌和其他纳米锌载体相比,ZNCPC是最有效的锌载体。高长径比的n-ZnO限制了其在土壤中的应用。

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