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Antimicrobial LDPE/EVOH Layered Films Containing Carvacrol Fabricated by Multiplication Extrusion

机译:倍频挤出制备的含香芹酚的LDPE / EVOH抗菌层状膜

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摘要

This work describes the fabrication of antimicrobial multilayered polymeric films containing carvacrol (used as a model essential oil) by co-extrusion and multiplication technique. The microlayering process was utilized to produce films, with up to 65 alternating layers, of carvacrol-containing low-density polyethylene (LDPE) and ethylene vinyl alcohol copolymer (EVOH). Carvacrol was melt compounded with LDPE or loaded into halloysite nanotubes (HNTs) in a pre-compounding step prior film production. The detailed nanostructure and composition (in terms of carvacrol content) of the films were characterized and correlated to their barrier properties, carvacrol release rate, and antibacterial and antifungal activity. The resulting films exhibit high carvacrol content despite the harsh processing conditions (temperature of 200 °C and long processing time), regardless of the number of layers or the presence of HNTs. The multilayered films exhibit superior oxygen transmission rates and carvacrol diffusivity values that are more than two orders of magnitude lower in comparison to single-layered carvacrol-containing films (i.e., LDPE/carvacrol and LDPE/(HNTs/carvacrol)) produced by conventional cast extrusion. The (LDPE/carvacrol)/EVOH and (LDPE/[HNTs/carvacrol])/EVOH films demonstrated excellent antimicrobial efficacy against E. coli and Alternaria alternata in in vitro micro-atmosphere assays and against A. alternata and Rhizopus in cherry tomatoes, used as the food model. The results presented here suggest that sensitive essential oils, such as carvacrol, can be incorporated into plastic polymers constructed of tailored multiple layers, without losing their antimicrobial efficacy.
机译:这项工作描述了通过共挤塑和乘法技术制备含香芹酚(用作模型香精油)的抗菌多层聚合物薄膜。微层工艺可用于生产多达65个交替层的含香芹酚的低密度聚乙烯(LDPE)和乙烯-乙烯醇共聚物(EVOH)的薄膜。香芹酚与LDPE熔融混合或在制膜前的预混步骤中装入埃洛石纳米管(HNT)中。对薄膜的详细纳米结构和组成(就香芹酚含量而言)进行了表征,并与它们的阻隔性能,香芹酚释放速率以及抗菌和抗真菌活性相关。尽管加工条件苛刻(200°C的温度和较长的加工时间),所得膜仍显示出高香芹酚含量,而与层数或HNT的存在无关。与通过常规流延生产的单层含香芹酚的薄膜(即LDPE /香芹酚和LDPE /(HNTs /香芹酚))相比,该多层薄膜具有更高的透氧率和香芹酚扩散值,降低了两个数量级以上。挤压。 (LDPE /香芹酚)/ EVOH和(LDPE / [HNTs /香芹酚])/ EVOH膜在体外微气氛试验中对大肠杆菌和链格孢菌以及樱桃番茄中的链霉菌和根瘤菌均具有优异的抗菌作用,用作食物模型。此处显示的结果表明,可以将敏感的香精油(例如香芹酚)掺入由定制多层结构制成的塑料聚合物中,而不会失去其抗菌功效。

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