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非离子型表面活性剂微乳液性质的研究 被引量:7
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作者 滕弘霓 周秀婷 《青岛科技大学学报(自然科学版)》 CAS 2003年第3期196-199,共4页
通过测定 AEO9/己醇 /庚烷 /水 (或盐水 )微乳液体系的相区和电导率 ,研究了盐在非离子型表面活性剂微乳液中的作用。结果表明 :盐能一定程度地促进非离子型表面活性剂微乳液的形成 ,盐离子借助于 AEO9亲水基周围的水分子的作用而渗入... 通过测定 AEO9/己醇 /庚烷 /水 (或盐水 )微乳液体系的相区和电导率 ,研究了盐在非离子型表面活性剂微乳液中的作用。结果表明 :盐能一定程度地促进非离子型表面活性剂微乳液的形成 ,盐离子借助于 AEO9亲水基周围的水分子的作用而渗入界面膜内部 ,促使 W/O型微乳液导电能力增大。微乳液的水相体积分数越大 ,界面膜越疏松 ,盐离子越易渗入界面膜内部 ,导电的活化能越低。 展开更多
关键词 非离子型表面活性剂 乳液性质 电导率 活化能 相行为
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花生油体对植脂搅打稀奶油性质的影响 被引量:3
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作者 刘莹 赵路苹 +5 位作者 杨旭凤 周莉 马彩红 韩杰 王丹 丁秀臻 《食品与发酵工业》 CAS CSCD 北大核心 2023年第12期113-119,共7页
为解决植脂奶油中反式脂肪酸带来的健康问题,该研究使用花生油体代替传统氢化植物油制备一种植脂搅打稀奶油。通过测定植脂搅打稀奶油的乳液性质、搅打性质以及流变学特性,确定花生油体在搅打稀奶油中的最适添加量。通过研究均质对花生... 为解决植脂奶油中反式脂肪酸带来的健康问题,该研究使用花生油体代替传统氢化植物油制备一种植脂搅打稀奶油。通过测定植脂搅打稀奶油的乳液性质、搅打性质以及流变学特性,确定花生油体在搅打稀奶油中的最适添加量。通过研究均质对花生奶油乳浊液粒径、表观黏度及搅打性质的影响,确定植脂搅打稀奶油的加工工艺。结果表明,花生油体添加量对搅打稀奶油性质影响显著,随着花生油体用量的提高,表观黏度逐渐增大,起泡率先升高后降低,最高能达到182.5%,泡沫稳定性均能达到92%以上,屈服应力最高为265 Pa,触变性及黏弹性均在33%(质量分数)添加量时表现最好,花生油体的最适添加量为33%。均质后奶油无法打发,均质不适用于植脂搅打稀奶油加工工艺。 展开更多
关键词 花生油体 奶油 乳液性质 搅打性能 流变学特性
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Effect of the amount of zinc-doped on the electrochemical performance of nickel hydroxide 被引量:1
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作者 YUDanmei ZHOUShangqi +2 位作者 CHENChangguo WENLi WANGHuaqing 《Journal of Chongqing University》 CAS 2004年第1期74-77,共4页
The nickel hydroxide prepared by micro-emulsion method was doped by coprecipitated Zn. The effect of the amount of zinc-doped on the properties of Ni(OH)2 such as the reversibility of the electrode reaction, the charg... The nickel hydroxide prepared by micro-emulsion method was doped by coprecipitated Zn. The effect of the amount of zinc-doped on the properties of Ni(OH)2 such as the reversibility of the electrode reaction, the charge efficiency and active material utilization ratio of nickel electrode, and discharge specific capacity was studied by cyclic voltammetry and constant current charge-discharge tests. The results indicate that the specific discharge capacity of nickel hydroxide obtained by micro-emulsion method is much less than its theoretical value because the transfer of electrons and the diffusion of protons H+ are hindered owing to its crystal grain size in a nanometer range and thus possessing higher crystal interface resistance. The crystal cells are swelled and the crystal defects increased in prepared material due to part of Ni2+ substituted by Zn2+ when zinc and nickel hydroxide are coprecipitated. Hence, the electrons and protons H+ in the electrode reaction are transferred easily, the electrochemical behavior of nickel electrode is improved and discharge specific capacity is promoted. However, the performance of Ni(OH)2 is gradually enhanced with the addition of zinc-doped at first, while slowly decreased after the content of zinc is added to a certain value. The best electrode reaction reversibility, the highest electrode charge efficiency, the highest active material utilization ratio and the largest specific capacity on discharge are available when the mass fraction of Zn doped in nickel hydroxide by coprecipitation reaches 2.5 %. 展开更多
关键词 nickel hydroxide coprecipitation zinc-doped MICRO-EMULSION
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