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Characterization of thermo-oxidative behavior of ethylcellulose oleogels
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Characterization of thermo-oxidative behavior of ethylcellulose oleogels

Hong Fu, Y. Martin Lo, Mengtin Yan, Peixu LiYanping Cao
Food Chemistry, 卷.305, 125470
02/2020
PMID: 31610423

摘要

1H NMR Cellulose, microcrystalline (PubChem CID: 14055602) Chloroform-D (PubChem CID: 71583) Ethyl cellulose (PubChem CID: 24832091) Ethylcellulose Helium (PubChem CID: 23987) Oleogel Oxygen molecule (PubChem CID: 977) p-Anisidine (PubChem CID: 7732) Potassium hydroxide (PubChem CID: 14797) Potassium iodide (PubChem CID: 4875) Rheology Sodium thiosulfate (PubChem CID: 24477) Tetramethylsilane (PubChem CID: 6396) Thermo-oxidation Analytical Chemistry Food Science
The thermo-oxidative behavior crucial to the applicability of ethylcellulose (EC) oleogels is characterized. Not only did we take into account the composition of the gel network in relation to textural attributes, but also the dynamic chemical changes occurred during formation, heating, and holding of the gels. EC oleogel oxidative stability showed that at 6.0% EC100 concentration in the oleogels the movement of liquid oil trapped in the gel network was hindered by its high viscosity and stable gel network, thus retarding oxidation. Processing temperature ≤ 120 °C for <2 h was recommended when incorporated in food systems to minimize oxidation. As for the measurement of oxidative stability in general, p-AnV was found suitable in depicting oxidation of EC oleogels. Meanwhile, both R <sub>ao</sub> and R <sub>ad</sub> acquired from <sup>1</sup> H NMR spectra could serve as reliable oxidative indicators to gauge total oxidation of EC oleogels during storage.

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