Konował Emilia, Sybis Marta, Prochaska Krystyna
Institute of Chemistry and Technical Electrochemistry, Poznan University of Technology, Berdychowo 4, 60-965 Poznan, Poland.
Department of Construction and Geoengineering, Poznan University of Life Sciences, Piatkowska 94 E, 60-649 Poznan, Poland.
Materials (Basel). 2024 Nov 12;17(22):5526. doi: 10.3390/ma17225526.
The manuscript presents research focusing on the adsorption and emulsion properties of starch hydrolysates modified through acetylation, oxidation, and cross-linking. The techniques used in this study included measurements of equilibrium surface tension (du Noüy ring) dynamic surface tension (drop shape analysis), and the preparation and evaluation of emulsion stability (TURBISCAN). The surface activity of the acetylated starch hydrolysates is affected by the degree of acetylation. The acetylated starch 0.02Ac-H exhibited higher surface activity than the more highly substituted derivative 0.1Ac-H. Furthermore, it was shown that the surface activity of the components increased as the acetylated oxidized starch underwent hydrolysis. The fractions collected after 180 min using a membrane with a low separation capability (8 kDa) revealed the highest capacity for reducing surface tension. In binary systems consisting of starch derivatives and surfactants, synergistic effects in reducing surface tension were particularly noticeable in systems containing ionic surfactants. The addition of a cationic surfactant to the modified starch hydrolysate solution (1:6 mol/mol) resulted in a significantly more efficient saturation of the air/water interface. This study demonstrated that emulsions stabilized with modified starch hydrolysates remained stable over time, even when these hydrolysates constituted up to 60% of the emulsifier mixture.
该手稿展示了关于通过乙酰化、氧化和交联改性的淀粉水解产物的吸附和乳化特性的研究。本研究中使用的技术包括平衡表面张力(杜诺伊环法)、动态表面张力(滴形分析法)的测量,以及乳液稳定性的制备和评估(TURBISCAN)。乙酰化淀粉水解产物的表面活性受乙酰化程度的影响。乙酰化淀粉0.02Ac-H比取代度更高的衍生物0.1Ac-H表现出更高的表面活性。此外,研究表明,随着乙酰化氧化淀粉的水解,各组分的表面活性增加。使用分离能力较低的膜(8 kDa)在180分钟后收集的馏分显示出最高的降低表面张力的能力。在由淀粉衍生物和表面活性剂组成的二元体系中,在含有离子表面活性剂的体系中,降低表面张力的协同效应尤为明显。向改性淀粉水解产物溶液(1:6摩尔/摩尔)中添加阳离子表面活性剂会使空气/水界面的饱和效率显著提高。本研究表明,用改性淀粉水解产物稳定的乳液随时间保持稳定,即使这些水解产物占乳化剂混合物的比例高达60%。