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Alginate/κ-Carrageenan-Based Edible Films Incorporated with Clove Essential Oil: Physico-Chemical Characterization and Antioxidant-Antimicrobial Activity

机译:基于藻酸盐/κ树叉菜胶的可食用薄膜,其与丁香精油:物理化学表征和抗氧化剂 - 抗菌活性

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摘要

This study aimed to enhance the properties of CaCl2 crosslinked sodium alginate/k-carrageenan (SA/KC) incorporated with clove essential oil (CEO). An evaluation of the modification effects on physicochemical, morphological, antioxidant, and antibacterial properties was performed. The properties were observed at various SA/KC ratios (10/0 to 1.5/1), CEO (1.5% to 3%), and CaCl2 (0% to 2%). The surface morphology was improved by addition of KC and CaCl2. The Fourier transform infrared (FTIR) result showed insignificant alteration of film chemical structure. The X-ray diffraction (XRD) result confirmed the increased crystallinity index of the film by CaCl2 addition. On physicochemical properties, a higher proportion of SA/KC showed the declined tensile strength, meanwhile both elongation at break and water solubility were increased. The incorporated CEO film reduced both tensile strength and water solubility; however, the elongation at break was significantly increased. The presence of Ca2+ ions remarkably increased the tensile strength despite decreased water solubility. Overall, the addition of KC and CaCl2 helped in repairing the mechanical properties and flexibility. CEO incorporation showed the effectiveness of profiling the antioxidant and antimicrobial activity indicated by high 2,2-diphenyl-1-picrylhydrazyl (DPPH) scavenging activity up to 90.32% and inhibition zone of E. coli growth up to 113.14 mm2.
机译:该研究旨在增强CaCl2交联酸钠/ k-carrageenan(SA / KC)的性质,其含有丁香精油(CEO)。对物理化学,形态学,抗氧化剂和抗菌性质进行修饰效应的评价。在各种SA / KC比率(10/0至1.5/1),CAO(1.5%至3%),CaCl 2(0%至2%),观察到该性质。通过添加KC和CaCl 2改善了表面形态。傅里叶变换红外(FTIR)结果表明薄膜化学结构的微不足道。 X射线衍射(XRD)结果证实了CaCl 2的膜的结晶度指数增加。在物理化学性质上,较高比例的SA / KC显示出呈下降的拉伸强度,同时增加了突破和水溶性的伸长率。该公司的首席执行官薄膜降低了拉伸强度和水溶性;然而,断裂的伸长率显着增加。尽管水溶解度降低,但Ca 2 +离子的存在显着增加了拉伸强度。总体而言,加入KC和CaCl2有助于修复机械性能和柔韧性。 CEO掺入表明,析出抗氧化剂和抗微生物活性的有效性,所述抗氧化剂和抗微生物酰肼(DPPH)清除活性高达90.32%的抑制和大肠杆菌生长的抑制区高达113.14mm 2。

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