Nong Lam University Ho Chi Minh City, Ho Chi Minh City 700000, Viet Nam.
Nong Lam University Ho Chi Minh City, Ho Chi Minh City 700000, Viet Nam.
Carbohydr Polym. 2024 Jun 15;334:122043. doi: 10.1016/j.carbpol.2024.122043. Epub 2024 Mar 12.
Here, we prepared ionically crosslinked films using pectin extracted from agro-wastes, specifically ambarella peels (AFP) and jackfruit seed slimy sheath (JFS). Physiochemical properties of pectins, including moisture content, molecular weight (Mw), degree of esterification (DE), and galacturonic acid (GA), were analyzed. Optimal extraction was determined, i.e., citric acid concentration 0.3 M, time 60 min, solid/liquid ratio 1:25, and temperature 90 °C for AFP or 85 °C for JFS. Pectin yields under these conditions were 29.67 % ± 0.35 % and 29.93 ± 0.49 %, respectively. AFP pectin revealed Mw, DE, and GA values of 533.20 kDa, 67.08 % ± 0.68 %, and 75.39 ± 0.82 %, while JFS pectin exhibited values of 859.94 kDa, 63.04 % ± 0.47 %, and 78.63 % ± 0.71 %, respectively. The pectin films crosslinked with Ca, Cu, Fe, or Zn exhibited enhanced tensile strength and Young's modulus, along with reduced elongation at break, moisture content, water solubility, water vapor permeability, and oxygen permeability. Structural analyses indicated metal ions were effectively crosslinked with carboxyl groups of pectin. Notably, the Cu-crosslinked film demonstrated superior water resistance, mechanical properties, and exhibited the highest antioxidant and antibacterial activities among all tested films. Therefore, the pectin films represent a promising avenue to produce eco-friendly food packaging materials with excellent properties.
在这里,我们使用从农业废弃物中提取的果胶制备了离子交联膜,特别是樱桃番茄皮(AFP)和菠萝蜜种子黏液鞘(JFS)。分析了果胶的物理化学性质,包括水分含量、分子量(Mw)、酯化度(DE)和半乳糖醛酸(GA)。确定了最佳提取条件,即柠檬酸浓度 0.3 M、时间 60 分钟、固液比 1:25 和温度 90°C(用于 AFP)或 85°C(用于 JFS)。在这些条件下,果胶的产率分别为 29.67%±0.35%和 29.93%±0.49%。AFP 果胶的 Mw、DE 和 GA 值分别为 533.20 kDa、67.08%±0.68%和 75.39%±0.82%,而 JFS 果胶的 Mw、DE 和 GA 值分别为 859.94 kDa、63.04%±0.47%和 78.63%±0.71%。用 Ca、Cu、Fe 或 Zn 交联的果胶膜表现出拉伸强度和杨氏模量的提高,同时断裂伸长率、水分含量、水溶性、水蒸气透过率和氧气透过率降低。结构分析表明,金属离子与果胶的羧基有效交联。值得注意的是,Cu 交联膜表现出优异的耐水性、机械性能,并且在所有测试的膜中表现出最高的抗氧化和抗菌活性。因此,果胶膜代表了生产具有优异性能的环保型食品包装材料的有前途的途径。