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Evaluation of Superabsorbent Capacity of Soy Protein-Based Bioplastic Matrices with Incorporated Fertilizer for Crops

机译:作物施氮肥料肥料基于大豆蛋白基生物塑料基质超吸收剂能力的评价

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摘要

Recent studies proposed the use of soy protein-based bioplastic matrices with incorporated micronutrient to mitigate against the excessive use of fertilizers in horticulture. However, the micronutrient incorporation reduced the superabsorbent capacity of these bioplastic matrices. All this reduces their use as a source of water for crops in times of drought, among other possibilities. The objective of this study was to evaluate different alternatives in order to incorporate the desired micronutrient (Zn) in soy protein-based bioplastics without losing the superabsorbent capacity of the latter. For this, three salts were used: zinc sulphate monohydrate (ZnSO4 center dot H2O), zinc chloride (ZnCl2) and zinc chelated with 2,2 ',2 '',2 '''-(Ethene-1,2-diydinitrilo)tetraacetic acid (Zn-EDTA). Considering the possible factors that can affect the absorption of these bioplastic matrices, modifications were made in their pH, ionic strength and complex character of the salt. Thus, the amount of load micronutrient, mechanical and morphological properties, as well as water uptake capacity of the bioplastic matrices with different salts incorporated were evaluated. The results of this study helped to understand the effects of the loss of the superabsorbent capacity of soy protein-based bioplastic matrices with incorporated zinc.
机译:最近的研究提出了使用基于大豆蛋白的生物塑料基质,并入掺入的微量营养素来减轻园艺中过度使用的肥料。然而,微量营养素掺入降低了这些生物塑料基质的超吸收容量。所有这些都将它们作为水溶液中的农作物的水源减少,以及其他可能性。本研究的目的是评估不同的替代方案,以便在大豆蛋白基生物塑料中掺入所需的微量营养素(Zn),而不会失去后者的超吸收容量。为此,使用了三种盐:硫酸锌一水合物(ZnSO4中心点H2O),氯化锌(ZnCl2)和锌螯合含有2,2',2',2''' - (乙烯-1,2-迪替尼硝基四乙酸(Zn-EDTA)。考虑到可能影响这些生物塑料基质的吸收的可能因素,在其pH,离子强度和盐的复杂性质中进行修饰。因此,评估负荷微量营养素,机械和形态学性质的量,以及具有不同盐的生物塑料基质的水吸收能力。该研究的结果有助于了解掺入锌的基于大豆蛋白基生物塑料基质的超吸收容量的损失的影响。

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