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增强木质纤维素纳米晶体稳定的Pickering 乳液的界面性能和稳定性:鞣酸的主导作用。

Enhanced Interface Properties and Stability of Lignocellulose Nanocrystals Stabilized Pickering Emulsions: The Leading Role of Tannic Acid.

机构信息

College of Food Science, Southwest University, No. 2, Tiansheng Road, Beibei District, Chongqing 400715, China.

State Key Laboratory of Biobased Material and Green Papermaking, Qilu University of Technology, Shandong Academy of Sciences, Jinan 250353, China.

出版信息

J Agric Food Chem. 2021 Dec 8;69(48):14650-14661. doi: 10.1021/acs.jafc.1c04930. Epub 2021 Nov 23.

Abstract

Cellulose and tannin are both abundant and biodegradable biopolymers, whose integrations show great potential in the food field due to their nutritional properties and biological activity. Here, lignocellulose nanocrystals (LCNC) isolated from pineapple peel were complexed with tannic acid (TA) through hydrogen-bonding interaction to prepare the LCNC/TA complex for stabilizing Pickering emulsions. Introducing TA decreased the interfacial tension (23.8-20.1 mN/m) and water contact angle (83.2-56.2°) with the LCNC/TA ratio ranging from 1:0 to 1:0.8 (w/w) but increased the size of the LCNC/TA complex. The droplet size of emulsions decreased from 115.0 to 51.3 μm accompanied by improved rheological properties. The emulsions stabilized by the LCNC/TA complex exhibited higher storage and environmental stabilities than those stabilized by LCNC alone. Interestingly, TA effectively promoted the interfacial adsorption of LCNC to build a stronger interfacial layer. The emulsion network structure was enhanced due to the formation of hydrogen-bonding interaction between LCNC and TA in the continuous phase.

摘要

纤维素和单宁都是丰富且可生物降解的生物聚合物,由于其营养特性和生物活性,它们在食品领域的结合具有巨大的潜力。在这里,从菠萝皮中分离出的木质纤维素纳米晶体 (LCNC) 通过氢键相互作用与单宁酸 (TA) 复合,以制备用于稳定 Pickering 乳液的 LCNC/TA 复合物。随着 TA 的引入,LCNC/TA 比例为 1:0 至 1:0.8(w/w)时,界面张力(23.8-20.1 mN/m)和水接触角(83.2-56.2°)均增加,但 LCNC/TA 复合物的粒径增大。乳液的液滴尺寸从 115.0μm 减小到 51.3μm,同时流变性能得到改善。与单独使用 LCNC 稳定的乳液相比,由 LCNC/TA 复合物稳定的乳液具有更高的储存和环境稳定性。有趣的是,TA 有效地促进了 LCNC 在界面上的吸附,从而形成了更强的界面层。由于在连续相中 LCNC 和 TA 之间形成了氢键相互作用,乳液的网络结构得到了增强。

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