皮克林乳液
莲花
乳状液
机制(生物学)
乳清蛋白
化学
化学工程
材料科学
色谱法
植物
生物化学
生物
工程类
物理
量子力学
作者
Jie Wu,Ying Sun,Xueyu Jiang,Kaidi Peng,Hongxun Wang,Yang Yi
标识
DOI:10.1016/j.lwt.2025.118391
摘要
In this study, ultrafine grinding whole lotus root powder (LR) was combined with whey protein (WP) to prepare Pickering emulsions. The effects of LR/WP ratio, solid content and oil-water ratio on the stability of the emulsion were investigated, and the underlying mechanisms were explored. Results indicated that ultrafine grinding modification and WP combination significantly enhanced the surface hydrophobicity of LR. When the ratio of LR/WP ranged from 5:1 to 15:1, the solid content was ≥ 6 wt%, and the oil-water ratio spanned from 2:1 to 4:1, long-term stable emulsions could be formed with small particle sizes and high absolute values of zeta potential. Meanwhile, the combination of LR and WP enabled the preparation of various stable emulsions with different oil contents (conventional emulsions and high internal-phase emulsions), showing high adaptability. The exploration of the stability mechanism demonstrated that LR/WP complex uniformly covered the surface of the droplets, forming a dense interface layer, and the emulsion system presented an elastic-dominant gel-like network structure, thereby ensuring the stability of the emulsion system. This study elucidated the influence of the interfacial properties and stability of LR/WP Pickering emulsions, providing theoretical basis and technical support for the development of plant-based whole component emulsions. • Whole lotus root powder (LR)-based Pickering emulsions were prepared successfully. • Ultrafine grinding and WP combination enhanced the hydrophobicity of LR. • The LR/WP Pickering emulsion exhibited excellent storage stability. • LR/WP complex enabled stable emulsion systems ranging from conventional to HIPEs.
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