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1.
石榴籽中多酚的提取及其抗氧化作用研究   总被引:8,自引:2,他引:6  
通过正交试验对石榴籽多酚的提取条件及其抗氧化活性(清除DPPH?和还原性)进行了研究.结果表明:(1)石榴籽多酚的最佳提取工艺参数为:乙醇浓度50%、pH值为4、六偏磷酸钠添加量0.4%、温度60℃;(2)石榴籽多酚提取物对DPPH?的清除率达11.34%,还原力达0.73,与VC和VE的抗氧化作用相比,其清除率大小顺序为:VC>石榴籽多酚提取物>VE,还原力大小顺序为:石榴籽多酚提取物>VC>VE,表明石榴籽多酚提取物对DPPH?有较强的清除作用,其还原力强于VC和VE.  相似文献   

2.
以乙醇为溶剂,采用加压溶剂法提取石榴籽油,对其主要影响参数(提取温度、压力、液固比和提取时间)进行优化研究。通过响应面法得到的最优提取工艺条件为液固比33∶1(m L/g),提取温度98℃,在压力0.25 MPa下提取30 min。与加热回流法相比,加压溶剂提取法提取时间缩短5倍,提取率提高了2倍。  相似文献   

3.
采用正交试验比较研究热水浸提法和微波提取法提取香菇多糖.热水浸提法的最佳工艺为:提取温度70℃、提取时间4h、料液比1∶15,提取率3.243 %;微波提取法的最佳工艺为:微波功率560W、微波处理时间60 s、料液比1∶10,提取率4.771%.微波提取法效率高、时间短,是理想的香菇多糖提取方法.  相似文献   

4.
采用正交试验比较研究热水浸提法和微波提取法提取香菇多糖。热水浸提法的最佳工艺为:提取温度70℃、提取时间4h、料液比1∶15,提取率3.243%;微波提取法的最佳工艺为:微波功率560W、微波处理时间60s、料液比1∶10,提取率4.771%。微波提取法效率高、时间短,是理想的香菇多糖提取方法。  相似文献   

5.
微波提取苦荞麦麸皮总黄酮工艺研究   总被引:15,自引:1,他引:14  
本文对苦荞麦麸皮总黄酮微波提取工艺进行了研究。试验结果表明:微波提取的最佳工艺条件为微波功率中档,微波加热120 s,乙醇浓度80%,料液比1:50,该工艺条件下总黄酮得率达5.51%;与传统提取方法相比,微波提取法具有节省时间、节约能量、提取效率高、控制方便等优点。  相似文献   

6.
通过气相色谱-质谱法分析了水酶法提取的石榴籽油的脂肪酸组成。结果表明:石榴籽油含有丰富的不饱和脂肪酸,总不饱和脂肪酸含量达94%以上。采用Schall烘箱法,以过氧化值(POV)为参考指标,研究了光线、温度及抗氧化剂对石榴籽油氧化稳定性能的影响。结果表明,温度、光线对石榴籽油的氧化过程都有影响,温度的影响更为显著;叔丁基对苯二酚(TBHQ)对石榴籽油具有良好的抗氧化效果,并与抗坏血酸(VC)具有较好的协同增效作用;生育酚(VE)和没食子酸丙酯(PG)对石榴籽油无显著抗氧化作用。  相似文献   

7.
采用正交试验方法研究了超临界CO_2萃取石榴(Punica granatum L)籽油的技术体系,并用气相色谱-质谱联用仪对石榴籽油的化学成分进行了分析。结果表明,超临界CO_2萃取石榴籽油的最佳工艺条件为:萃取压力25 MPa,萃取温度30℃,分离温度55℃,萃取时间70min,在此条件下油脂产率为20.4%。GC-MS分析的结果显示,石榴籽油的主要成分是脂肪酸。饱和脂肪酸以棕榈酸为主,不饱和脂肪酸主要是亚麻酸和亚油酸,占脂肪酸总量的86.86%。  相似文献   

8.
以红松籽仁为原料,以无水乙醇为提取溶剂,优化高速匀质-微波辅助提取红松籽油的工艺,考察了匀质速度、匀质时间、液料比、微波温度、微波功率及微波时间对红松籽油提取率的影响,最终确定了红松籽油最佳提取条件为:匀质速度12 000 r·min-1,匀质时间120 s,液料比20 mL·g-1,微波温度60℃,微波功率700 W,微波时间50 min。在上述条件下,红松籽油最优提取率可达60.3%。利用GC-MS对得到的红松籽油的脂肪酸成分进行了分析,其主要成分为棕榈酸、皮诺敛酸、亚油酸、反-13-十八碳烯酸、顺-13-十八碳烯酸、硬脂酸,不饱和脂肪酸含量高达85.55%,其中松籽油所含有的特异性不饱和脂肪酸-皮诺敛酸含量可达13.65%。此外,对该工艺提取得到的红松籽油的抗氧化活性及理化性质进行了评估,发现红松籽油清除DPPH自由基能力强,其IC50值为0.095 4 g·mL-1。此外,红松籽油过氧化值和酸值较低,碘值较高,表明红松籽油是一种品质优良的天然油脂。  相似文献   

9.
主要对超临界CO2流体提取技术从塔拉籽中提取塔拉籽油的工艺与方法进行优化和油分品质分析。采用3组平行单因素实验确定塔拉籽油的提取工艺条件,以塔拉籽油提取率为指标,在单因素实验的基础上研究提取时间,提取温度,提取压强对塔拉籽油提取率的影响,经分析确定最佳提取工艺条件为:提取时间120 min,提取温度45℃,提取压强35 MPa。通过3组重复实验验证单因素实验结果,表明在最佳提取条件下塔拉籽油的实际平均提取率为21.07%与单因素实验中的结果接近较为吻合,所得提取条件现实可靠。提取的塔拉籽油呈现出透明的淡黄色,为干性油脂,不饱和脂肪酸含量较高,表明该法提取塔拉籽油具有较高的营养价值和可利用价值。  相似文献   

10.
目的:比较不同方法对北五味子总木脂素提取的影响,优选最佳提取工艺方法。研究五味子木脂素抗微波辐射损伤作用。方法:以干燥北五味子果实为原料,分别采用传统加热回流法、超声提取法、微波提取法、微波—超声提取法提取北五味子总木脂素,对这四种提取方法分别进行正交试验分析,以确定最佳提取工艺。结果:通过结果比较分析,以微波提取工艺结果最佳,在微波提取功率为200W,乙醇体积分数为80%,提取时间为40min,料液比为1:12的提取条件下,北五味子总木脂素的产量达到了16.44mg/g,使得木脂素的提取产量较传统加热回流法、超声提取法、微波—超声提取法得到了显著的提高。  相似文献   

11.
木兰科四种植物种子油的提取及脂肪酸成分分析   总被引:3,自引:1,他引:2  
刘举  陈继富 《广西植物》2013,33(2):208-213
采用超声波辅助提取法和微波辅助提取法同时提取白玉兰、凹叶厚朴、深山含笑和醉香含笑四种木兰科植物的种子油,种子油甲酯化后,运用气相色谱—质谱联用技术测定其脂肪酸成分。结果表明:四种植物种子油的提取率不同,白玉兰平均为27.35%、凹叶厚朴23.34%、深山含笑31.66%,醉香含笑9.27%。不同提取方法所得到的种子油脂肪酸成分和相对含量不同,但四种种子油的主要脂肪酸成分相同,包括油酸、亚油酸、硬脂酸和棕榈酸。  相似文献   

12.
以牡丹果荚为原料,采用响应面分析法对影响微波辅助提取牡丹果荚中芍药苷和丹皮酚的主要因素(料液比、微波功率、微波时间)进行优化。结果表明:微波辅助提取牡丹果荚中的芍药苷及丹皮酚的最佳提取工艺条件为:液料比10∶1、微波功率253 W、微波时间10 min,牡丹果荚芍药苷和丹皮酚的得率分别为2.92、0.91 mg·g-1。与传统提取法相比,微波辅助提取方法不仅提取时间短,原料使用量少,而且提取率高,是一个高效的提取方法。  相似文献   

13.
番茄红素在受热的情况下会发生反式异构体(all-trans)向顺式异构体(cis-isomers)的转化。本文研究了乙酸乙酯热回流、微波法及超声-微波协同法对番茄红素异构化的影响。结果表明:乙酸乙酯热回流处理后,6%番茄红素油树脂中顺式异构体占比高于90%番茄红素中顺式异构体占比;氮气保护对番茄红素的异构化无明显保护作用;微波对番茄红素异构化有较强的促进作用,处理5 h后顺式占比可以高达54.7%,但超声-微波协同法对番茄红素异构化的影响与微波单独使用时无明显变化。所以微波是较好的番茄红素热处理异构化方法。  相似文献   

14.
为优化银杏叶多酚提取工艺,通过单因素试验考察填充率、球磨转速、球磨时间、乙醇浓度、料液比、提取温度、提取时间七个因素对机械力辅助提取银杏叶多酚得率的影响,以银杏叶多酚得率为响应值,采用Box-Benhnken三因素三水平响应面设计优化工艺,同时比较了4种提取方法对银杏叶多酚提取得率和抗氧化活性的差异。结果表明,机械力辅助提取银杏叶多酚的最佳工艺条件为:填充率26%、球磨转速为400rpm、球磨时间为15min。在此条件下,银杏叶多酚的得率为7.33%。机械力辅助乙醇提取银杏叶多酚得率低于碱水提取法,但是抗氧化活性高于碱水法提取的银杏叶多酚;抗氧化活性与乙醇回流法提取的银杏叶多酚相当,但是提取得率高于乙醇回流法。此提取工艺高效可行,具有一定的参考价值。  相似文献   

15.
From the rose hip seed, which is generally a waste material, valuable oil can be obtained for medicinal use. Various extraction methods have been compared: traditional solvent extraction with ultrasound-, microwave-, sub- and supercritical fluid extraction (SFE). Unsaturated fatty acid (UFA: oleic-, linoleic- and linolenic acid; 16.25-22.11%, 35.94-54.75%, 20.29-26.48%) and polyunsaturated fatty acid (PUFA:linoleic- and linolenic acid) content were over 90% and 60% in the recovered oils. The oils contained different amounts of metals. The concentration of some metals, particularly iron in microwave oil (27.11 microg g(-1)) is undesirable from the aspect of stability. By traditional solvent extraction, oil was obtained in 4.85 wt/wt%. Subcritical FE appeared to be the best method for the recovery of rose hip oil with highest oil yield (6.68 wt/wt%), carotene- (145.3 microg g(-1)) and linoleic acid content (54.75%). Supercritical FE without organic solvent is suitable for mild recovery of oil. The oil was rich in UFA and PUFA (92.7% and 76.25%) and contained the lowest amount of carotene and pheophytin (36.3 and 45.8 microg g(-1)). Oil yield in most new extraction methods (microwave extraction, super- and subcritical FE) was higher than in the case of traditional Soxhlet extraction. The main benefit of supercritical FE with CO2 is the solvent free oil while in the case of other extractions evaporation of the solvent is needed. Although the content of bioactive compounds in oils was different, all oils may be appropriate for medicinal use.  相似文献   

16.
应用超声提取与传统热溶剂回流法提取南瓜子油,通过正交实验法考察了料液比、提取时间和超声功率3个因素对提取率的影响,得到了最佳超声提取工艺条件:料液比为1∶15(w/v),提取时间为0.5 h,超声功率为250 W,优化条件下提取率为50.8%,对照热溶剂回流提取法的提取率49.9%(6.0 h);南瓜子油的GC-MS分析结果显示两种方法对南瓜子油成分无明显影响;超声提取的南瓜子油酸价(1.51 mg·g-1)低于热溶剂回流提取法(3.25 mg·g-1)。上述结果表明超声提取南瓜子油与热溶剂提取法比较具有操作简便、省时和低酸价的优点。  相似文献   

17.
Introduction – The aerial parts of Zygophyllum album L. are used in folk medicine as an antidiabetic agent and as a drug active against several pathologies. In this work we present the chemical composition of Algerian essential oils obtained by microwave accelerated distillation (MAD) extraction, a solventless method assisted by microwave. Objective – Under the same analytical conditions and using GC‐FID and GC‐MS, the chemical composition of the essential oil of Zygophyllum album L. extracted by MAD was compared with that achieved using hydrodistillation (HD). Methodology – The extracted compounds were hydrosoluble, and they were removed from the aqueous solution by a liquid extraction with an organic solvent. Results – Employing MAD (100°C, 30 min), the essential oil contained mainly oxygenated monoterpenes with major constituents: carvone and α‐terpineol. However, most of the compounds present in the hydrodistilled volatile fraction were not terpene species, with β‐damascenone as a major constituent. Conclusion – The MAD method appears to be more efficient than HD: after 30 min extraction time, the obtained yields (i.e. 0.002%) were comparable to those provided by HD after 3 h extraction. MAD seems to be more convenient since the volatile fraction is richer in oxygenated monoterpenes, species that are recognised for their olfactory value and their contribution to the fragrance of the essential oil. Copyright © 2010 John Wiley & Sons, Ltd.  相似文献   

18.
Present study deals with the microwave assisted extraction (MAE) of ursolic acid (UA) and oleanolic acid (OA) from Ocimum sanctum leaves. UA and OA have been reported to possess significant medicinal properties. Various experimental parameters such as selection of solvent, solvent composition, irradiation time, microwave power, solid to solvent ratio, preleaching time and number of cycles were investigated to optimize the extraction process. Under optimum conditions of irradiation time (3 min), microwave power (272 W), solid to solvent ratio (1:30), preleaching time (10 min), maximum UA and OA has been extracted in one extraction cycle with ethanol: water (80:20) as a solvent. Maximum 86.76 and 89.64% of UA and OA was extracted under above mentioned optimized experimental conditions. MAE was also compared with the batch and ultrasound assisted extraction (UAE) method. As compared to batch and UAE, higher extraction yield of these important phytochemicals have been obtained through MAE in only 3 min.  相似文献   

19.
In this study, microwave assisted transesterification of Pongamia pinnata seed oil was carried out for the production of biodiesel. The experiments were carried out using methanol and two alkali catalysts i.e., sodium hydroxide (NaOH) and potassium hydroxide (KOH). The experiments were carried out at 6:1 alcohol/oil molar ratio and 60 °C reaction temperature. The effect of catalyst concentration and reaction time on the yield and quality of biodiesel was studied. The result of the study suggested that 0.5% sodium hydroxide and 1.0% potassium hydroxide catalyst concentration were optimum for biodiesel production from P. pinnata oil under microwave heating. There was a significant reduction in reaction time for microwave induced transesterification as compared to conventional heating.  相似文献   

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