石榴皮中酚类物质的提取

Zhenbin Wang, Z. Pan, Haile Ma, G. Atungulu
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引用次数: 162

摘要

研究了不同溶剂、温度条件、料固比和粒径对从石榴酸果皮中提取总酚类、原花青素和黄酮类抗氧化剂的影响。对水、甲醇、乙醇、丙酮和乙酸乙酯在提取时间0.17 ~ 10 min、提取温度25 ~ 95℃、溶剂/固比5:1 ~ 50:1、粒径10 ~ 40目时的提取效率进行了评价。在40°C、料液比15:1、提取时间240 min、提取粒度40目条件下,甲醇对总酚的提取率最高(8.26%),其次是水(5.90%)、乙醇(1.55%)、丙酮(0.37%)和乙酸乙酯(0.18%)。然而,提取温度为95°C,总检——nolics用水提取收益率是11.15%颗粒大小40网、溶剂/固体比例15:1,和提取时间2分钟。尽管提取最低收益率在40°C萃取温度,溶剂/固体比例15:1,提取时间为240分钟,颗粒大小40网、乙酸乙酯提取了总酚醛树脂的含量最高(20.24%),原花青素(2.65%)和类黄酮提取物(3.92%)。提取物的DPPH抗氧化活性与总酚含量呈线性关系(r2 =0.9779)。研究表明,水提法可作为一种经济、安全的环保型方法,从PMP中提取抗氧化剂。
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Extract of Phenolics From Pomegranate Peels
The effects of different solvents, temperature conditions, solvent-solid ratios and particle sizes on solid-solvent extraction of the total phenolics, proanthocyanidins and flavonoids herein also referred to as antioxidant from pomegran- ate marc peel (PMP) was studied. Water, methanol, ethanol, acetone, and ethyl acetate extraction efficiencies at extraction times of 0.17 to 10 min, extraction temperatures of 25 to 95°C, ratios of solvent/solid of 5:1 to 50:1 and particle sizes of 10 to 40 mesh were evaluated. At 40 °C, solvent/solid ratio of 15:1, extraction time of 240 min and particle size of 40 mesh, methanol gave the highest extract yield of the total phenolics (8.26%), followed by water (5.90%), ethanol (1.55%), acetone (0.37%), and ethyl acetate (0.18%), respectively. However, at an extraction temperature of 95°C, the total phe- nolics extract yield with water was 11.15% for particle size of 40 mesh, solvent/solid ratio of 15:1, and extraction time of 2 min. Despite the lowest extract yield at extraction temperature of 40 °C, solvent/solid ratio of 15:1, extraction time of 240 min and particle size of 40 mesh, ethyl acetate extraction gave the highest content of the total phenolics (20.24%), proanthocyanidins (2.65%) and flavonoids (3.92%) in the extract. The DPPH antioxidant activity of extracts had a linear relationship with the total phenolics content in the extracts (R 2 =0.9779). This study revealed that water extraction, which has the economic and safety merits, can be used as an environmentally friendly method for producing antioxidants from the PMP.
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