共查询到17条相似文献,搜索用时 218 毫秒
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对AOT[二-(2-乙基己基)琥珀酸酯磺酸钠]/异辛烷,SDS(十二烷基硫酸钠)/异辛烷-正辛醇,DTAC(十二烷基三甲基氯化铵)/正庚烷-正己醇3种反胶束体系萃取花生蛋白质的后萃工艺进行研究.主要研究了缓冲溶液pH值、萃取时间、萃取温度、超声功率、KCl浓度对花生蛋白后萃率的影响,分别得到了3种反胶束体系萃取花生蛋白质的最佳后萃工艺条件,并做验证试验.在最优工艺条件下制备不同的花生蛋白样品.通过色差分析,从宏观上比较不同反胶束体系制备的花生蛋白产品色泽的差异,进一步对比不同反胶束体系制备的花生蛋白的扫描电镜(SEM)照片,分析其微观结构的差别,试验结果表明最适合萃取花生蛋白的反胶束体系是AOT反胶束体系,且该体系萃取花生蛋白的后萃率为83.17%,较另外2种体系的后萃率都高. 相似文献
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Xiao-Hong Sun Ke-Xue Zhu Hui-Ming Zhou 《Innovative Food Science and Emerging Technologies》2009,10(3):328-333
In this work, a novel backward extraction procedure of defatted wheat germ protein (DWGP) from reverse micelles was explored. Isooctane was recovered by vaporization firstly. Then the remained residue was dissolved in a small amount of KCl solution. The recovery of DWGP was easily performed by the ternary liquid system (acetone: deionized water: isooctane = 15:5:1) precipitation, while most of sulphosuccinic acid bis (2-ethylhexyl) ester sodium salt (AOT) remained in the ternary liquid system. In the end, the precipitation of DWGP was washed with 65% ethanol solution to further remove any residual AOT. The effects of KCl concentration, the amount of KCl solution and pH on the backward extraction efficiency of DWGP were tested. On the basis of single-factor experiments, the optimum backward extraction was achieved by response surface methodology (RSM). When the operation ran under optimized conditions, the backward extraction efficiency of DWGP achieved 80% and the end protein product was completely free of AOT.Industrial relevanceThis experimental result confirmed that this novel backward extraction method had many advantages on the extraction of protein compared to the traditional backward extraction method (changing the conditions of pH and ionic strength in a fresh aqueous phase). This method increased the backward extraction efficiency of defatted wheat germ protein (DWGP) from 57% to 80%, saved the water resource and offered the possibility of precipitating nearly pure DWGP, completely free of surfactant. On the basis of these advantages, it appears that this novel backward extraction technique may have great potential for being scaled-up to a commercially extraction process of protein. 相似文献
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研究了AOT/异辛烷反胶束法萃取玉米胚芽蛋白及玉米胚芽蛋白的加工功能性。在实验中分别考察了纤维素酶加酶量、AOT浓度、KCl浓度、缓冲液pH值、W0对玉米胚芽蛋白前萃率的影响,以及萃取时间、KCl浓度、缓冲液pH值对后萃率的影响,确定了前萃的最佳技术条件:加酶量为4 000 IU/g玉米胚芽、AOT浓度为3 g/50 mL异辛烷、萃取pH 6、KCl浓度0.1 mol/L、W0为25;后萃的最佳技术条件为:KCl浓度为0.5 mol/L、萃取pH 10.5,萃取时间40 min;对玉米胚芽蛋白的部分加工功能性进行研究,结果表明其吸油性(2.9 mL/g)、乳化性(54.5%)、乳化稳定性(86.5%)以及泡沫稳定性(58.3%)都较好,但吸水性和起泡性相对较差,玉米胚芽蛋白不但营养效价高,而且具有较好的加工功能特性,在食品工业中具有应用潜力。 相似文献
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使用双(2-乙基己基)磺基琥珀酸钠(AOT)、十六烷基三甲基溴化铵(CTAB)、十二烷基硫酸钠(SDS)分别和吐温80(Tween80)混合制备了三种反相微乳体系,并通过单因素实验研究了表面活性剂浓度、离子型表面活性剂含量、水分含量(W0)、水相pH、萃取温度和萃取时间等因素对蛋白质前萃率和KCl浓度、水相pH和萃取温度对蛋白质后萃率的影响,然后通过正交试验得到了最佳萃取条件。结果表明,Tween80-CTAB微乳体系对茶渣蛋白的提取效果较好,在表面活性剂浓度0.10 mol/L,离子型表面活性剂含量70%,水相pH13.0,W0 25,萃取温度40 ℃,萃取时间为40 min的最佳条件下,茶渣蛋白的前萃率达到最大值16.17%,其后萃率在KCl浓度为1.2 mol/L,pH7.0,提取温度40 ℃的最佳条件下可达到94.78%。SDS-PAGE电泳图的结果表明,反相微乳萃取得到的茶渣蛋白分子条带较小,即能够选择性的萃取小分子蛋白。 相似文献
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《Food chemistry》2005,93(1):95-101
Lysozyme was selectively extracted from reconstituted freeze-dried egg-white, using reverse micelles formed by the cationic surfactant, cetyldimethylammonium bromide (CDAB). The major egg-white proteins, including ovalbumin and ovotansferrin, were solubilized into the organic phase while lysozyme was recovered in the aqueous phase. The solubilization behaviours of proteins were manipulated by processing parameters, including pH and salt concentration in the aqueous phase and concentration of surfactant in the organic phase. The optimum extraction was achieved with sodium borate buffer (50 mM, pH 9, no added KCl) and organic phase containing 50 mM CDAB. After the forward extraction, 96% of total lysozyme activity was recovered. Lysozyme was efficiently purified, more than 30-fold with only a single forward extraction. The suggested extraction procedure has advantages in terms of time and cost compared to traditional reverse micellar extraction which requires both forward and backward extraction steps. 相似文献