State Key Laboratory of Soil and Sustainable Agriculture, Institute of Soil Science, Chinese Academy of Sciences, 71N. East Beijing Road, Nanjing, 210008, China.
Sci Rep. 2018 Aug 16;8(1):12279. doi: 10.1038/s41598-018-30585-5.
Development of controlled-release urea (CRU) has attracted research attention because of food scarcity problems and environmental concerns. To slow down the nutrient release of CRU coated with waterborne polyacrylate, conventional emulsion polymerization (CEP), conventional emulsion polymerization containing hexadecane (CEP + HD), and miniemulsion polymerization (MP) were carried out to discern the influence of polymerization technique and hexadecane on the properties of emulsions, films, and on the resultant nutrient release profiles of controlled-release urea. The addition of hexadecane improved water resistance, decreased the glass-transition temperature, and slowed down the nutrient release. CEP + HD was superior to MP in retarding nutrient release since the majority of HD was distributed in the exteriors of the particles of the former and interiors of the particles of the latter. Exterior HD improved water resistance more effectively, while interior HD reduced glass-transition temperature more significantly. Overall, our findings showed that incorporation of HD into polyacrylate emulsion produces excellent coatings that delay the release of urea. It has great potential application in controlled-release fertilizers coated with waterborne polymers.
由于粮食短缺问题和环境问题,控释尿素 (CRU) 的开发引起了研究关注。为了减缓水基聚丙烯酸酯包覆的 CRU 的养分释放速度,进行了常规乳液聚合 (CEP)、含十六烷的常规乳液聚合 (CEP+HD) 和 miniemulsion 聚合 (MP),以探究聚合技术和十六烷对乳液、薄膜的性质以及控释尿素养分释放特性的影响。十六烷的添加提高了耐水性、降低了玻璃化转变温度,并减缓了养分释放。由于 HD 主要分布在前者颗粒的外部和后者颗粒的内部,因此 CEP+HD 在延迟养分释放方面优于 MP。外部 HD 更有效地提高了耐水性,而内部 HD 则更显著地降低了玻璃化转变温度。总的来说,我们的研究结果表明,将 HD 掺入聚丙烯酸酯乳液中可产生优异的包膜,可延迟尿素的释放。它在水基聚合物包覆的控释肥料中有很大的潜在应用。