戊二醛
牡蛎
吸附
风味
淀粉
肽
化学工程
化学
变性淀粉
表征(材料科学)
纳米纤维
材料科学
高分子化学
食品科学
有机化学
纳米技术
渔业
生物化学
生物
工程类
作者
Shiqin Qing,Wuyin Weng,Yaolin Dai,Ping Li,Zhongyang Ren,Yucang Zhang,Linfan Shi,Songnan Li
标识
DOI:10.1016/j.ijbiomac.2024.133801
摘要
The inferior hydrophobicity and mechanical properties of starch-based nanofibrous films significantly restrict their practical application. In view of this, this study prepared octenylsuccinylated starch-pullulan nanofibrous films using electrospinning and glutaraldehyde (GTA) gas-phase crosslinking. After GTA crosslinking, the starch-based nanofibrous films remained white, randomly oriented, smooth, and droplet-free. Meanwhile, as the crosslinking time increased from 0 to 24 h, the mean fibrous diameter augmented from 157.34 nm to 238.66 nm, and the water contact angle rose from 24.30° to 52.49°. Meanwhile, their tensile strength and thermal stability grow, and the mean pore area and elongation at break abate with changes in function groups. The crosslinked starch-based nanofibrous films exhibit an enhanced adsorption capacity for alcohols, ethers, esters, hydrocarbons, and N-compounds of oyster peptides. Correlation analysis shows that the adsorption capacity of the starch-based nanofibrous films was positively correlated with mean fibrous diameter and water contact angle and negatively correlated with mean pore area. These results provide a theoretical basis for the practical application of crosslinked starch-based nanofibrous film materials in deodorization.
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