共查询到20条相似文献,搜索用时 109 毫秒
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以60#费托蜡为原料,利用剂在油中法,以Span、Tween系列作为主乳化剂复配,探究了乳化剂种类、乳化温度、搅拌速率、滴加速率和乳化剂含量对所制备的费托蜡乳液性能的影响。结果表明,在乳化温度为80℃、搅拌速率为900 r/min、水相滴加速度为1 mL/min和乳化时间为30 min的条件下,制备出高稳定性和高分散性的亚微级费托蜡乳液,其乳液平均粒径控制在200 nm左右,蜡质量分数为35.71%,黏度在2~5 mPa·s。同时,通过对乳化剂进行适当选择以及助乳化剂的合理掺杂,能在保证乳液其他性能不受较大波动的情况下减少乳化剂的用量。 相似文献
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阳-非复合离子型氧化聚乙烯蜡乳液广泛应用于皮革涂饰、造纸、印染等领域,该文用三乙醇胺对氧化聚乙烯蜡进行酯化改性,再用相转变法和复合乳化体系对酯化改性的氧化聚乙烯蜡进行乳化,并对乳液性能进行检测分析。实验结果表明,三乙醇胺对氧化聚乙烯蜡进行酯化改性后,可明显提高氧化聚乙烯蜡的可乳化性和乳液的稳定性。乳化剂的种类、用量、乳化温度以及剪切搅拌速度等乳化因素对乳液性能有较大影响。乳化实验优化的条件为:乳化剂OS-15用量为氧化聚乙烯蜡质量的15%,乳化剂1631用量为氧化聚乙烯蜡质量的5%;乳化温度为90~95℃;连续剪切分散40~60min。 相似文献
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The critical electric field (cef) technique has been utilized to measure the stabilities of a variety of water‐in‐model oil and petroleum emulsions. The cef method allows for a fast, reproducible, and quantitative gauge of emulsion stability. Here, we have used cef to measure the stability of water‐in‐heptane‐toluene‐asphaltene emulsions and confirmed the importance of solvation of asphaltenes and the state of asphaltene aggregation to emulsion stability. Emulsion stability increased with the concentration of soluble asphaltenes near the point of precipitation. Droplet sizes were measured with optical microscopy in order to calculate interfacial areas and film thicknesses. It was found that film thickness increased with asphaltene concentration up to the solubility limit, above which increased concentration had little effect, and cef increased with interfacial film thickness up to a monolayer coverage of asphaltene aggregates, above which film thickness had a much smaller effect. These findings were applied to a cef investigation of water‐in‐ppetroleum emulsions to develop correlations of the stability of water‐in‐ccrude oil emulsions. A strong correlation (coefficient = 0.95) was found for cef with the product of asphaltene concentration and the difference in hydrogen to carbon atomic ratios of the asphaltenes and petroleum solvent. The development of a kinetic model and its fit to experimental data revealed the effects of asphaltene chemistry, solvency, and resin concentration on the adsorption and consolidation of emulsion stabilizing interfacial films. 相似文献
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Dmitrij Stehl Lena Hohl Marcel Schmidt Jessica Hübner Maren Lehmann Matthias Kraume Reinhard Schomäcker Regine von Klitzing 《化学,工程师,技术》2016,88(11):1806-1814
Emulsions stabilized by solid particles are so called Pickering emulsions which are characterized by their high stability against coalescence. This type of emulsion can be used for a lot of applications. Very little is known about how reaction conditions affect their properties. In this study the influence of important reaction conditions like shear stress, pressure, temperature, and the influence of synthesis gas on Pickering emulsions is investigated. It is shown that the emulsions remain stable in terms of coalescence in a broad range of the reaction conditions and are suitable as reaction media for industrial processes and for a reaction optimization with a subsequent separation step. 相似文献
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Water‐in‐oil‐in‐water (w/o/w) multiple emulsions are considered that could be suitable components of functional dairy products. Such emulsions enable the preparation of low‐calorie products, encapsulation of bioactive components or microorganisms, and their protection during digestion. Because of the large phase interface, w/o/w emulsions are thermodynamically unstable. Therefore, their preparation and stabilization requires specific conditions. This review describes a potential industrial application of w/o/w emulsions in dairy products in detail and summarizes the value, preparation, stabilization, and evaluation of w/o/w emulsions in a dairy system. 相似文献
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为了探究固体粒子对乳液的稳定作用,采用L-赖氨酸作为催化剂合成纳米SiO2粒子,并用六甲基二硅胺烷(HMDS)对纳米SiO2粒子进行表面疏水改性,将经过HMDS改性后的纳米SiO2粒子作为稳定剂制备出Pickering乳液。通过粒径分析仪、场发射透射电子显微镜、FTIR、TG-DSC、接触角测量仪、光学显微镜、电导率仪分别对纳米SiO2的制备、表面改性和Pickering乳液的性能进行了表征。结果表明,成功合成出粒径小且形貌均一的硅球,具有疏水性的三甲基硅基成功接枝到纳米SiO2的表面;不同纳米SiO2浓度制备的Pickering乳液,发现随着SiO2浓度的增大,乳液的稳定性逐渐增强,乳液液滴直径呈现减小的趋势;不同油水比制备的Pickering乳液,发现随着油相体积的增大,乳液的稳定性呈现增大的趋势。 相似文献
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单分散油包水(W/O)乳液在食品、化妆品、药剂以及高分子微球微囊合成等方面具有广泛的应用。该文综述了近年来单分散W/O乳液的主要制备方法及其基本原理,此外还简要介绍了其在单分散温敏性微球微囊和可生物降解微球微囊合成方面的应用,以期为单分散W/O乳液的制备提供参考。 相似文献
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为了探究固体颗粒对乳液的稳定作用,采用双亲染料分子罗丹明B对核壳结构的Fe_3O_4@SiO_2纳米颗粒进行疏水改性,并将改性后的纳米颗粒作为稳定剂制备Pickering乳液。通过Zeta电位、FTIR、XRD、SEM、接触角测量、光学显微镜、电导率仪对Fe_3O_4@SiO_2纳米颗粒以及Pickering乳液的结构、形貌和性能进行表征与分析,结果表明:制备的纳米颗粒粒径小,约为150 nm,为单分散球形核壳结构;罗丹明B成功修饰到Fe_3O_4@SiO_2纳米颗粒表面,改性后颗粒接触角由30°增加至120°;随乳化剂颗粒质量浓度的增加,制备的乳液液滴的粒径减小。另外,所得Pickering乳液具有良好的磁场响应性,可通过外加磁场实现对乳液稳定性的可逆调控,且此过程可重复3次以上。 相似文献