首页> 外文期刊>Journal of the Science of Food and Agriculture >Poly(vinyl alcohol)/sodium alginate polymer membranes as eco‐friendly and biodegradable coatings for slow release fertilizers
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Poly(vinyl alcohol)/sodium alginate polymer membranes as eco‐friendly and biodegradable coatings for slow release fertilizers

机译:聚乙烯醇/海藻酸钠聚合物膜作为缓释肥料的环保和可生物降解涂层

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Abstract BACKGROUND The use of slow release fertilizers (SRFs) is an effective approach for reducing agriculture cost, environmental and ecological issues simultaneously. The present study provides a series of poly(vinyl alcohol) (PVA)/sodium alginate (SA) polymer membranes as eco‐friendly and biodegradable coatings for SRFs. Moreover, polymer‐coated urea (PCU) granules were fabricated through coating the urea granules with the resulting membranes. Our first interest was to fabricate three membranes (PS1, PS2, PS3) of different PVA/SA weight ratios (9:1, 8:2, 7:3) using glutaraldehyde as a crosslinking agent, and crosslink the PS3 membrane with a CaCl2 solution further to obtain the PC3 membrane. The chemical properties and morphologies of the membranes were characterized. Second, the nitrogen release behavior of the PCU granules was measured and calculated, respectively. RESULTS Crosslinking with glutaraldehyde made the PS1, PS2, PS3 membranes uniform and compact, whereas crosslinking with a CaCl2 solution formed an ‘egg box’ structure inside the PC3 membrane. PS3 membrane with the minimum PVA/SA weight ratio had the highest hydrophily (water uptake: 106.25, water contact angle: 55.1o), whereas PC3 membrane had the lowest hydrophily (water uptake: 21.57, water contact angle: 67.3o). The biodegradation ratios of the membranes were in the range 44–60 in 90 days, indicating that they had excellent biodegradability. The measured fractional release on the day 30 of the PCU granules ranged from 89.33 to 97.07. The calculated nitrogen release behavior agreed well with the measured values. CONCLUSION The resulting eco‐friendly and biodegradable PVA/SA membranes are alternative coatings for SRFs. © 2022 Society of Chemical Industry.
机译:摘要 背景 使用缓释肥料(SRFs)是同时降低农业成本、环境和生态问题的有效方法。本研究提供了一系列聚乙烯醇(PVA)/海藻酸钠(SA)聚合物膜作为SRFs的环保和可生物降解涂层。此外,聚合物包衣尿素(PCU)颗粒是通过用所得膜包覆尿素颗粒来制备的。我们首先感兴趣的是使用戊二醛作为交联剂制备三种不同PVA/SA重量比(9:1、8:2、7:3)的膜(PS1、PS2、PS3),并用CaCl2溶液进一步交联PS3膜以获得PC3膜。对膜的化学性质和形貌进行了表征。其次,分别测量和计算PCU颗粒的氮释放行为;结果 与戊二醛交联使PS1、PS2、PS3膜均匀致密,而与CaCl2溶液交联在PC3膜内形成“蛋盒”结构。PVA/SA重量比最小的PS3膜的亲水性最高(吸水率:106.25%,水接触角:55.1o),而PC3膜的亲水性最低(吸水率:21.57%,水接触角:67.3o)。膜在90天内的生物降解率在44-60%范围内,表明它们具有优异的生物降解性。PCU颗粒第30天测得的释放分数范围为89.33%至97.07%。计算得到的氮释放行为与实测值吻合较好。结论 由此产生的环保和可生物降解的PVA/SA膜是SRFs的替代涂层。 © 2022化学工业学会.

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