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用于控释肥料的改性磷酸铁/聚乙烯醇复合薄膜

Modified iron phosphate/polyvinyl alcohol composite film for controlled-release fertilisers.

作者信息

Zhang Yi, Yi Zhifeng, Wei Lianmei, Kong Lingxue, Wang Lijun

机构信息

School of Environmental and Materials Engineering, College of Engineering, Shanghai Polytechnic University Shanghai 201209 P. R. China

Deakin University, Institute for Frontier Materials Geelong Campus at Waurn Ponds Geelong Victoria 3216 Australia

出版信息

RSC Adv. 2018 May 17;8(32):18146-18152. doi: 10.1039/c8ra01843j. eCollection 2018 May 14.

Abstract

Traditional soluble phosphorous (P) fertilisers can be easily leached to pollute water systems, resulting in water eutrophication, a major environmental problem from the oversupply of unused nutrients. One innovative solution is to control the release of P upon demands of the plants. This study established a new concept of controlled-release P fertiliser incorporation of ferric phosphate (FePO) as a P source in polyvinyl alcohol (PVA) films, which can immobilise the FePO particles and stimuli-responsively accelerate their release rate in the presence of citric acid. More importantly, FePO used in this work originated from steelmaking slag as a potential waste reuse. Due to the low solubility of FePO, diethylamine was introduced to modify FePO particles to facilitate the release of P before incorporating with PVA. The effects of diethylamine modification and the properties of FePO/PVA films were systematically investigated through microscopic and spectroscopic methods. The release of P from particles and films was examined in both deionised water and citric acid solution for 30 days. The results showed a tenfold increase of the release rate of modified FePO/PVA in citric acid solution compared with that in deionised water, and also a doubled release rate of the modified FePO/PVA compared to that of FePO/PVA in citric acid. The improved performance suggests that PVA can maintain the phosphorous content with exposure to water and expedite release in citric acid upon the demand of plants. This composite film offers a new opportunity for the application of insoluble phosphate as a phosphorous fertiliser.

摘要

传统的可溶性磷肥很容易被淋溶,从而污染水体,导致水体富营养化,这是未利用养分供应过剩引发的一个主要环境问题。一种创新的解决方案是根据植物的需求来控制磷的释放。本研究建立了一种控释磷肥的新概念——将磷酸铁(FePO)作为磷源掺入聚乙烯醇(PVA)薄膜中,该薄膜可以固定FePO颗粒,并在柠檬酸存在的情况下以刺激响应的方式加速其释放速率。更重要的是,本研究中使用的FePO源自炼钢炉渣,作为一种潜在的废物再利用。由于FePO的溶解度较低,在与PVA混合之前,引入二乙胺对FePO颗粒进行改性,以促进磷的释放。通过显微镜和光谱方法系统地研究了二乙胺改性的效果以及FePO/PVA薄膜的性能。在去离子水和柠檬酸溶液中对颗粒和薄膜中磷的释放情况进行了30天的检测。结果表明,改性后的FePO/PVA在柠檬酸溶液中的释放速率比在去离子水中提高了10倍,与柠檬酸溶液中的FePO/PVA相比,改性后的FePO/PVA释放速率也提高了一倍。性能的改善表明,PVA在接触水时可以保持磷的含量,并在植物需求时在柠檬酸中加速释放。这种复合薄膜为不溶性磷酸盐作为磷肥的应用提供了新的契机。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/98b2/9080590/914ed581fc15/c8ra01843j-f1.jpg

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