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Eco-friendly films prepared from plantain flour/PCL blends under reactive extrusion conditions using zirconium octanoate as a catalyst

机译:使用奥辛酸锆作为催化剂的反应性挤出条件下由植物面粉/ PCL制备的环保薄膜

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摘要

Plantain flour ( Musa ssp., group AAB, sub-group clone Harton)/ poly(e-caprolactone) (PCL) blends, containing glycerol as a plasticizer, were prepared by reactive extrusion (REx) in a twin-screw extruder using zirconium octanoate (Zr(Oct)(4)) as a catalyst, followed by thermo-compression molding for film development. The films were then characterized in terms of their: infrared (FTIR) spectra, water solubility, thermogravimetric (TGA) curves, differential scanning calorimetry (DSC) thermograms, and X-ray diffraction (XDR) diffractograms, as well as their microstructural, mechanical and antimicrobial properties in order to (1) compare the effects of PCLs with two different molecular weights (M-w) on the characteristics of the plantain flour/PCL blends, and (2) determine whether using Zr(Oct)(4) in the production of active composite polymer materials improves their properties. The plantain flour/PCL blends were all developed successfully. The higher Mw PCL gave more hydrophobic and thermally stable films with improved mechanical properties. The addition of the Zr(Oct)(4) catalyst to the plantain flour/PCL blends also resulted in films with similar characteristics to those described above, due to the cross-linking of the polymers. In addition, the films containing the catalyst showed antimicrobial activity against Escherichia coli O157: H7 and Staphylococcus aureus indicating a dual effect of Zr(Oct)(4), and making it an attractive alternative for the development of active films.
机译:使用锆的双螺杆挤出机中的反应性挤出(REX)制备植物面粉(Musa SSP,群AAB,亚组克隆哈丁顿)/聚(e-己内酯)(PCL)共混物,用锆在双螺杆挤出机中的反应挤出(REX)制备辛酸(Zr(OCT)(4))作为催化剂,其次是热压缩成型用于薄膜发育。然后在其:红外(FTIR)光谱,水溶性,热重度(TGA)曲线,差示扫描量热法(DSC)热图和X射线衍射(XDR)衍射图以及它们的微观结构,机械和抗微生物性质以(1)比较PCLS与两种不同分子量(MW)对植物面粉/ PCL共混物的特性的影响,(2)确定是否在生产中使用Zr(OCT)(4)活性复合聚合物材料改善了它们的性质。植物面粉/ PCL共混物都成功开发。较高的MW PCL具有更高的机械性能的疏水性和热稳定的薄膜。由于聚合物的交联,将Zr(OCT)(4)催化剂加入植物面粉/ PCL共混物中的薄膜也导致上述具有与上述类似特性的膜。此外,含有催化剂的薄膜显示对大肠杆菌O157:H7和金黄色葡萄球菌的抗微生物活性,表明Zr(OCT)(4)的双重作用,并使其成为活性膜的发育的有吸引力的替代方案。

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