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首页> 外文期刊>Journal of Materials Research and Technology >Antimicrobial activity, physical, mechanical and barrier properties of sugar palm based nanocellulose/starch biocomposite films incorporated with cinnamon essential oil
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Antimicrobial activity, physical, mechanical and barrier properties of sugar palm based nanocellulose/starch biocomposite films incorporated with cinnamon essential oil

机译:糖棕榈纳米纤维素/淀粉生物复合薄膜的抗微生物活性,物理,机械和阻隔性能掺入肉桂精油

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The demand of antimicrobial active packaging is escalating due to the needs of improving quality and shelf life of food. In this work, sugar palm starch (SPS)/sugar palm nanocrystalline cellulose (SPNCC) incorporated with cinnamon essential oil (EO) biodegradable nanocomposite films were prepared by using solvent casting method. Mechanical properties test revealed that films incorporated with cinnamon EO showed improved tensile strength and tensile modulus values from 4.8 to 5.3?MPa and 122.49–130.52?MPa respectively. Additionally, the density and moisture content were reduced from 1.38 to 1.31?g/cm3and from 13.65 to 12.33% respectively. The antimicrobial test was carried out by agar disc method (ADM) to evaluate the inhibition effect of the films on the gram positive bacteria, gram negative bacteria and yeast. The result suggested that The higher the amount of EO used (2.0 wt) yielded, the higher the inhibition zone occurred forB. subtilis, S. aereusandE. coli,which were 7.85, 6.63, and 7.43?mm respectively. Overall, cinnamon EO incorporated SPS/SPNCC biodegradable nanocomposite film is a good candidate as an alternative for active packaging material.
机译:由于提高食物的质量和保质期的需求,抗菌活性包装的需求升级。在这项工作中,通过使用溶剂浇铸方法制备掺入肉桂精油(EO)可生物降解的纳米复合膜的糖棕榈淀粉(SPS)/糖棕榈纳米晶纤维素(SPNCC)。机械性能试验显示,与肉桂EO掺入的薄膜显示出改善的拉伸强度和从4.8至5.3·mPa和122.49-130.52μm的拉伸模量值。另外,密度和水分含量分别从1.38〜1.31?g / cm 3和12.31%的1.65%降至12.33%。通过琼脂盘法(ADM)进行抗微生物检验,以评估薄膜对革兰氏阳性细菌,革兰阴性细菌和酵母的抑制作用。结果表明,所用EO的量越高,抑制区出现越高。枯草芽孢杆菌,S.Aereusande。 Coli分别为7.85,6.63和7.43Ωmm。总体而言,Cinnamon EO Incorporated SPS / SPNCC可生物降解的纳米复合膜是一种良好的候选者,作为主动包装材料的替代方案。

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