首页> 外文期刊>American journal of applied sciences >Controlled Release Behaviors of Tribenuron Methyl Herbicide and Potassium Nitrate Fertilizer from Natural Polymer Blended Poly(Vinyl Alcohol) Hydrogel Microspheres
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Controlled Release Behaviors of Tribenuron Methyl Herbicide and Potassium Nitrate Fertilizer from Natural Polymer Blended Poly(Vinyl Alcohol) Hydrogel Microspheres

机译:基因培酚甲基除草剂和硝酸钾肥料从天然聚合物混合聚(乙烯醇)水凝胶微球的控制释放行为

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摘要

Polyvinyl Alcohol (PVA) hydrogel microspheres for controlled release of fertilizer (KNO_3) and Tribenuron Methyl Herbicide (TBM) were prepared by blending the naturally occurring Alginate (AL) and Pectin (PE). The cross-linking in PVA hydrogel microspheres was carried out by varying the amount of glutaraldehyde from 0.5-1.0 wt%. To control the loading and release properties of PVA hydrogel microspheres, a small amount of NaCl (0.2 wt%) was also added in formulation of microspheres. The blending of PE and AL in PVA hydrogel microspheres was confirmed with FT-IR spectra and by increased thermal stability PVA hydrogel as determined by Differential Scanning Calorimetry (DSC) and Thermogravimetric (TGA) analysis. The PVA hydrogel microspheres were characterized for degree of swelling and for loading and cumulative release of fertilizer (KNO_3) and herbicide (TBM), which were carried out in solutions of different pH and at different temperatures. The Scanning Electron Micrographs (SEM) of PVA hydrogel microspheres were recorded before and after the release of loaded agrochemicals and used to confirm the shape and homogeneous blending of PE/AL in PVA hydrogels. The enhanced brittle morphology from SEM images of PVA hydrogel microspheres after the release of loaded agrochemicals has suggested the controlled release of agrochemicals through a mechanism of degradation of polymer chains. Thus natural polymer blended PVA hydrogel microspheres are found to be a potential candidate for the formulation of controlled release systems for the application of agrochemicals in soils and to overcome the environmental problem, which usually encountered on applications of fertilizers and herbicides in agricultural fields by conventional methods.
机译:通过混合天然存在的藻酸盐(Al)和果胶(PE),制备用于控制释放的聚乙烯醇(PVA)水凝胶微球和呋喃酸甲基除草剂(TBM)制备。通过0.5-1.0wt%的戊二醛的量改变PVA水凝胶微球中的交联。为了控制PVA水凝胶微球的装载和释放性质,还在分类的微球中加入少量的NaCl(0.2wt%)。用FT-IR光谱和通过差分扫描量热法(DSC)和热重分析(TGA)分析确定PVA水凝胶微球中的PE和Al的混合。 PVA水凝胶微球的特征在于肿胀程度和肥料(KNO_3)和除草剂(TBM)的加载和累积释放,其在不同pH和不同温度下进行。在释放装载的农业化学物质之前和之后,记录PVA水凝胶微球的扫​​描电子显微照片(SEM),并用于在PVA水凝胶中确认PE / Al的形状和均匀混合。载重的农业化学释放后PVA水凝胶微球的SEM图像增强了脆性形态,并通过聚合物链的降解机制来提出了农业化学物质的控制释放。因此,发现天然聚合物混合PVA水凝胶微球是制定用于在土壤中施加的控释系统的潜在候选者,并克服环境问题,这通常遇到常规方法在农业领域的肥料和除草剂的应用。

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