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β-葡聚糖酶对高燕麦含量面团性质与蛋白结构的影响 被引量:3
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作者 钱海峰 潘琪锋 +2 位作者 李言 王立 樊铭聪 《粮油食品科技》 2022年第2期41-49,共9页
β-葡聚糖酶可对高燕麦含量面团流变特性、面筋蛋白结构产生较大影响。测试了燕麦面包预拌粉粉质特性、面团动态流变学特性、燕麦面团中β-葡聚糖含量和平均相对分子量、蛋白质游离巯基和SDS可萃取蛋白含量,分析了燕麦蛋白质二级结构、S... β-葡聚糖酶可对高燕麦含量面团流变特性、面筋蛋白结构产生较大影响。测试了燕麦面包预拌粉粉质特性、面团动态流变学特性、燕麦面团中β-葡聚糖含量和平均相对分子量、蛋白质游离巯基和SDS可萃取蛋白含量,分析了燕麦蛋白质二级结构、SDS-PAGE蛋白图谱和蛋白质表面疏水性,结果显示:与对照组相比,加入β-葡聚糖酶后,50%燕麦含量的面团吸水率显著下降,弹性模量(Gʹ)和粘性模量(Gʺ)显著降低,减弱了燕麦中本身存在的β-葡聚糖的成胶性并改善了面团的可变形性和流动性,面团的加工适应性得到提高。β-葡聚糖酶降低了面团中β-葡聚糖的聚合度,平均相对分子质量从350 kDa降至62 kDa,面筋蛋白间的非共价相互作用加强,面筋蛋白表面疏水性降低,蛋白二级结构由无规则卷曲和β-转角转变为β-折叠,使得面筋蛋白的水合和聚集程度得到提升。上述研究表明,β-葡聚糖酶处理对改善由于葡聚糖影响的面团加工特性具有显著作用。 展开更多
关键词 燕麦面团 Β-葡聚糖酶 粉质特性 动态流变特性 平均相对分子量 蛋白质游离巯基 可萃取蛋白含量 蛋白质二级结构 SDS-PAGE蛋白图谱 表面疏水性
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Catalytic synthesis of perfluorolyethers 被引量:1
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作者 阳卫军 方超 +2 位作者 周济苍 郭灿城 万伟 《Journal of Central South University》 SCIE EI CAS 2013年第3期629-633,共5页
Perfluorolyether is characterized by highly chemical inertness, oxidative stability, anticorrosion as well as radiation resistance. It can be used as lubricant especially in harsh environmental conditions. In this wor... Perfluorolyether is characterized by highly chemical inertness, oxidative stability, anticorrosion as well as radiation resistance. It can be used as lubricant especially in harsh environmental conditions. In this work, hexafluoropylene oxide was catalytically polymerized at low temperature using the methods of anionic polymerization, and perfluorolyethers were obtained with number-average degree of polymerization more than 15. CsF and RbF were used as catalysts and their catalytic activities were investigated. Experimental results show that perfluorolyethers with number-average molar masses up to 3 000 g/mol could be obtained using the two kinds of catalysts, respectively. As compared to CsF, the number-average degree of polymerization is higher and the relative molecular mass distribution interval is narrower when RbF is used as catalyst. The effect of factors such as impurities' content, reaction temperature and reaction time on the number-average degree of polymerization was also investigated. It is found that low impurities' content and low temperature are beneficial to the generation of high number-average degree of perfluorolyethers. The optimization reaction time is 24 h, and fiarther increase of reaction time does not significantly affect the average relative molecular mass. The product was characterized by IR, 19F NMR and GC-MS, and the catalytic mechanism was analyzed finally. 展开更多
关键词 hexafluoropylene oxide perfluorolyether POLYMERIZATION PURIFICATION
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