首页> 外文期刊>Journal of Polymers and the Environment >Encapsulation of Rosemary Essential Oil into Biodegradable Polymers for Application in Crop Management
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Encapsulation of Rosemary Essential Oil into Biodegradable Polymers for Application in Crop Management

机译:将迷迭香精油封装成可生物降解的聚合物,用于作物管理中的应用

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In recent years, there is an increasing demand for replacing hazardous agrochemicals in intensive farming systems with natural pesticides, such as essential oils. Essential oils are sources of antimicrobial compounds and have the potential to combat weeds, pathogens and insects. Their use in greenhouse cultures seems promising, but their action is very rapid due to their high volatility. The aim of the current study was the encapsulation of essential oils into biopolymers for enhancing their efficiency and controlling their release. The essential oil of Rosemarinus officinalis (rosemary) (REO) was encapsulated in zein and polylactic acid (PLA) using electrohydrodynamic processing (EHD) and extrusion. The effect of various process parameters was evaluated through scanning electron microscopy (SEM), differential scanning calorimetry (DSC) and Attenuated Total Reflectance FT-IR Spectroscopy (ATR-FTIR). Ultraviolet-visible spectroscopy (UV-VIS) determined the encapsulation efficiency. The stability and release of encapsulated compounds was also tested during their storage in controlled conditions. The examined encapsulation parameters affected in different ways the morphology and properties of the structures. Encapsulation efficiency was in the range of 70-90% with EHD presenting the highest values. ATR-FTIR analysis confirmed the presence of REO in the structures. The produced structures offer great potential to be incorporated in greenhouse films to replace agrochemicals.
机译:近年来,在具有天然农药的密集农业系统中取代危险农用化学的需求日益增加,如精油。精油是抗微生物化合物的来源,有可能打击杂草,病原体和昆虫。他们在温室文化中的使用似乎很有希望,但由于它们的波动性高,他们的行动非常快。目前研究的目的是将精油封装成生物聚合物,以提高其效率并控制释放。利用电液动力学加工(EHD)和挤出,在玉米醇内酯和聚乳酸(PLA)中包封了Rosemarinus Officinalis(Rosemary)(REO)的精油。通过扫描电子显微镜(SEM),差示扫描量热法(DSC)和衰减的总反射率FT-IR光谱(ATR-FTIR)评估各种工艺参数的效果。紫外 - 可见光光谱(UV-VI)确定封装效率。在其在受控条件下储存期间还测试了包封化合物的稳定性和释放。检查的封装参数以不同的方式影响结构的形态和性质。封装效率在70-90%的范围内,呈现最高值。 ATR-FTIR分析证实了结构中的REO存在。所生产的结构提供了巨大的潜力,可以在温室薄膜中掺入以取代农用化学品。

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