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中国精品科技期刊2020
吕成林, 汪秋宽, 宋悦凡, 任丹丹, 何云海. 羊栖菜多酚的提取及纯化工艺研究[J]. 食品工业科技, 2014, (22): 231-235. DOI: 10.13386/j.issn1002-0306.2014.22.042
引用本文: 吕成林, 汪秋宽, 宋悦凡, 任丹丹, 何云海. 羊栖菜多酚的提取及纯化工艺研究[J]. 食品工业科技, 2014, (22): 231-235. DOI: 10.13386/j.issn1002-0306.2014.22.042
LV Cheng-lin, WANG Qiu-kuan, SONG Yue-fan, REN Dan-dan, HE Yun-hai. Study on the extraction and purification of polyphenols from Sargassum fusiforme[J]. Science and Technology of Food Industry, 2014, (22): 231-235. DOI: 10.13386/j.issn1002-0306.2014.22.042
Citation: LV Cheng-lin, WANG Qiu-kuan, SONG Yue-fan, REN Dan-dan, HE Yun-hai. Study on the extraction and purification of polyphenols from Sargassum fusiforme[J]. Science and Technology of Food Industry, 2014, (22): 231-235. DOI: 10.13386/j.issn1002-0306.2014.22.042

羊栖菜多酚的提取及纯化工艺研究

Study on the extraction and purification of polyphenols from Sargassum fusiforme

  • 摘要: 以羊栖菜为原料,研究确定经济高效的羊栖菜多酚提取分离纯化的方法。检测分析乙醇浓度、料液比、提取时间、提取温度参数对多酚粗提物提取率的影响,优化得到羊栖菜多酚粗提物的最佳提取工艺为:乙醇浓度40%、料液比1∶25、提取时间5h、提取温度70℃。以多酚吸附量和解吸率为指标,对10种不同类型的大孔树脂进行了筛选,通过动态吸附与解吸实验,确定大孔树脂的最佳吸附条件。综合分析结果表明大孔树脂NKA-9对羊栖菜多酚的吸附量和解吸率最佳,吸附量和解吸率分别达到0.73mg/g和91%。NKA-9树脂分离最佳工艺条件为:上柱液p H为4,体积为300m L,流速为1m L/min;洗脱液浓度为70%,洗脱液体积为400m L,洗脱流速为1m L/min。 

     

    Abstract: Studies were carried out on the technology for separating polyphenols crude extract from Sargassum fusiforme efficiently and economically. The ethanol concentration, solid-liquid ratio, extraction time and extraction temperature were optimized by orthogonal test depending on their effects on polyphenols crude extract extracting yield. The optimized factors were ethanol concentration of 40%, solid-liquid ratio 1∶25, extraction time5 h and extraction temperature 70℃. Ten different types of macroporous resin were surveyed and selected when the adsorption capacity and desorption rate taken as indicators. The adsorption conditions of the selected macroporous resin were determined by dynamic adsorption and desorption experiment. The results showed that NKA-9 resin had the best adsorption capacity and static desorption rate for the polyphenols from Sargassum fusiforme. The adsorption capacity and desorption rates were 0.73mg/g and 91% respectively. The optimum conditions for elution were column liquid p H4, liquid column volume 300 m L, feeding rate 1m L/min;eluent concentration 70%, eluent volume 400 m L, elution rate 1m L/min.

     

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