Effect of sulfuric acid hydrolysis on the structure and Pickering emulsifying capacity of acorn starch
The acid-hydrolyzed acorn starch samples (HAS-1, HAS-2, HAS-3, and HAS-4) were prepared from natural acorn starch (NAS) at sulfuric acid concentrations of 1, 2, 3, and 4 mol/L for 2 d. The particle characteristics and structures of HAS were investigated, and Pickering high internal phase emulsions (...
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Veröffentlicht in: | Food Chemistry: X 2024-06, Vol.22, p.101277-101277, Article 101277 |
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Sprache: | eng |
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Zusammenfassung: | The acid-hydrolyzed acorn starch samples (HAS-1, HAS-2, HAS-3, and HAS-4) were prepared from natural acorn starch (NAS) at sulfuric acid concentrations of 1, 2, 3, and 4 mol/L for 2 d. The particle characteristics and structures of HAS were investigated, and Pickering high internal phase emulsions (HIPEs) based on HAS were constructed and characterized. The results showed that with an increase in sulfuric acid concentration, the size, yield, amylose content, molecular weight, and amylopectin chain length of HAS gradually decreased. HAS retained an A-type crystal structure, and its relative crystallinity and short-range order degree gradually increased with increasing sulfuric acid concentration. Acid hydrolysis treatment improved the wettability of NAS, and its effect was positively correlated with the sulfuric acid concentration. HAS-3 and HAS-4 could stabilize the Pickering HIPEs with an oil phase volume fraction of 80% at c ≥ 1.5%. The mechanical properties of the HIPEs were positively correlated with c.
•The sulfuric acid-hydrolyzed acorn starch (HAS) was prepared for the first time.•The size, yield, amylose content of HAS reduced with increasing sulfuric acid concentration.•The molecular weight and amylopectin chain length of HAS also gradually decreased.•The wettability of HAS was positively correlated with the sulfuric acid concentration.•The acorn starch treated with 3 or 4 mol/L sulfuric acid had good emulsifying ability. |
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ISSN: | 2590-1575 2590-1575 |
DOI: | 10.1016/j.fochx.2024.101277 |