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Effects of PEF-assisted extraction of anthocyanin in red raspberry

机译:花青素在红覆盆子中的PEF辅助提取的影响

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Pulsed electric field is a novel non-thermal process technology. It could be applied in the extraction of functional components from plant for its irreversible disintegration on plant cell membrane. PEF treatment caused an irreversible disintegration on the cellular membrane of raspberry cell and the extraction yield of anthocyanins from raspberry was linearly correlated to the treatment pulses of PEF. During the extraction, Cyanidin-3-glucoside, the major anthocyanins in raspberry was found to be significantly degraded by PEF. The degradation effects of Cyanidin-3-glucoside decreased with the increase of the electric field or treatment time. In the spectra curves of Cyanidin-3-glucoside treated by PEF, the intensity of the peak at 333 nm increased as electric field and treatment time increased, while the intensity of the peak at 519 nm and the shoulder at 430 nm decreased, indicating Cyanidin-3-glucoside was degraded into chalcone.
机译:脉冲电场是一种新型非热过程技术。它可以应用于从植物中的功能组分的提取,以在植物细胞膜上不可逆崩解。 PEF处理导致覆盆子细胞的细胞膜上的不可逆崩解,覆盆子的花青素的提取产率与PEF的处理脉冲线性相关。在提取过程中,发现覆盆子中的主要花青素 - 3-葡糖苷,发现覆盆子中的主要花青素被PEF显着降解。随着电场或治疗时间的增加,Cyanidin-3-葡糖苷的降解效应降低。在通过PEF处理的青霉素-3-葡糖苷的光谱曲线中,随着电场和治疗时间增加,333nm的峰的强度增加,而峰值在519nm处的峰值和430nm处的肩部下降,表明CyanInIn -3-葡萄糖苷降解到Chalcone中。

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