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用于农业应用的功能性水凝胶

Functional Hydrogels for Agricultural Application.

作者信息

Kratochvílová Romana, Kráčalík Milan, Smilková Marcela, Sedláček Petr, Pekař Miloslav, Bradt Elke, Smilek Jiří, Závodská Petra, Klučáková Martina

机构信息

Faculty of Chemistry, Brno University of Technology, Purkyňova 464/118, CZ-61200 Brno, Czech Republic.

Institute of Polymer Science, Johannes Kepler University, Altenberger Strasse 69, 4040 Linz, Austria.

出版信息

Gels. 2023 Jul 22;9(7):590. doi: 10.3390/gels9070590.

Abstract

Ten different hydrogels were prepared and analyzed from the point of view of their use in soil. FT-IR spectra, morphology, swelling ability, and rheological properties were determined for their characterization and appraisal of their stability. The aim was to characterize prepared materials containing different amounts of NPK as mineral fertilizer, lignohumate as a source of organic carbon, and its combination. This study of stability was focused on utility properties in their application in soil-repeated drying/re-swelling cycles and possible freezing in winter. Lignohumate supported the water absorbency, while the addition of NPK caused a negative effect. Pore sizes decreased with NPK addition. Lignohumate incorporated into polymers resulted in a much miscellaneous structure, rich in different pores and voids of with a wide range of sizes. NPK fertilizer supported the elastic character of prepared materials, while the addition of lignohumate shifted their rheological behavior to more liquid. Both dynamic moduli decreased in time. The most stable samples appeared to contain only one fertilizer constituent (NPK or lignohumate). Repeated re-swelling resulted in an increase in elastic character, which was connected with the gradual release of fertilizers. A similar effect was observed with samples that were frozen and defrosted, except samples containing a higher amount of NPK without lignohumate. A positive effect of acrylamide on superabsorbent properties was not confirmed.

摘要

制备了十种不同的水凝胶,并从其在土壤中的应用角度进行了分析。测定了傅里叶变换红外光谱(FT-IR)、形态、溶胀能力和流变特性,以对其进行表征并评估其稳定性。目的是表征含有不同量的作为矿物肥料的氮磷钾(NPK)、作为有机碳源的木质素腐殖酸盐及其组合的制备材料。这项稳定性研究聚焦于它们在土壤中的应用——反复干燥/再溶胀循环以及冬季可能的冻结——中的实用性能。木质素腐殖酸盐提高了吸水性,而添加NPK则产生了负面影响。添加NPK后孔径减小。掺入聚合物中的木质素腐殖酸盐导致结构更加复杂,富含各种不同大小的孔隙和空隙。NPK肥料增强了制备材料的弹性,而添加木质素腐殖酸盐则使其流变行为向更具流动性转变。两个动态模量均随时间下降。最稳定的样品似乎只含有一种肥料成分(NPK或木质素腐殖酸盐)。反复再溶胀导致弹性增强,这与肥料的逐渐释放有关。在冷冻和解冻的样品中也观察到了类似的效果,但不含木质素腐殖酸盐且NPK含量较高的样品除外。未证实丙烯酰胺对高吸水性有积极作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/99e8/10378905/04c7b43738b1/gels-09-00590-g001.jpg

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