首页> 外文期刊>European Polymer Journal >Controlled release of fertilizers from Ca(II)-alginate matrix modified by yerba mate (Ilex paraguariensis) waste
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Controlled release of fertilizers from Ca(II)-alginate matrix modified by yerba mate (Ilex paraguariensis) waste

机译:由yerba mate(inlex paraguariensis)垃圾改性的Ca(II)的肥料的控制释放 - alginate基质

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摘要

Yerba mate (ilex paraguariensis) is an infusion traditionally drunk in many countries of South America. Along its industrial manufacture, a fine yerba mate powder represents a considerable proportion of the total production, consisting of an industrial by-product not safe for human consumption, rich in minerals, that could be useful as organic compost. In line with current bioeconomic trends, here we present the recycling of yerba mate industrial by-products into urea, potassium and phosphate-containing capsules as an environmentally friendly strategy for the design of controlled-release fertilizers. The capsule matrix is based on Ca(II)-alginate with a final yerba mate powder (YMP) content of 83% w/w. The aim of this work was to study the kinetics of mineral fertilizers release both in soil and water, along with an exhaustive macro and microstructural characterization (PIM, DSC, TGA, SEM-EDX, X ray scan tomography and SAXS) to allow the analysis of structure/function relationships. The encapsulation efficiency and release in water of phosphorous were affected, being significantly lower than urea and potassium and releasing under different mechanism. Retention and degradation in soil was mainly related to capsule structure, as well as their thermal properties. The incorporation of different fertilizer induced structural changes in Ca(II)-alginate network as assessed by SAXS.
机译:Yerba Mate(Ilex Paraguariensis)是一种传统上醉酒的一种输液,在南美许多国家。沿其工业制造,优良的Yerba Mate粉末代表了总产量的相当大,由工业副产物不安全,不安全,富含矿物质,可用作有机堆肥。符合目前的生物经济趋势,在这里,我们将Yerba Mate工业副产物的再循环归入尿素,钾和磷酸盐的胶囊作为对控制释放肥料设计的环保策略。胶囊基质基于Ca(II) - 丙酸盐,最终的Yerba Mate粉末(YMP)含量为83%w / w。这项工作的目的是研究矿物肥料的动力学,均在土壤和水中释放,以及详尽的宏观和微观结构表征(PIM,DSC,TGA,SEM EDX,X射线扫描断层摄影和萨克斯),以允许分析结构/功能关系。磷的水中的封装效率和释放受到影响,显着低于尿素和钾,并在不同机制下释放。土壤中的保留和降解主要与胶囊结构相关,以及它们的热性能。 CA(II)含量诱导的CA(II)的结构变化的掺入如萨克斯评估的。

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