超声波纤维素酶处理对竹笋粉特性的影响

Rumaisa N., P. Tan, R.P.D. Filri, Iffah Madhira M.
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引用次数: 0

摘要

本研究旨在评估超声波纤维素酶处理的最佳条件,以实现竹笋粉中不溶性膳食纤维向可溶性膳食纤维的最高转化率。采用响应面方法(RSM)和中央复合设计(CCD)对自变量(频率、时间和纤维素酶浓度)与响应变量(持水能力、持油能力和膨胀能力)之间的相互作用进行了评估和优化。结果表明,超声波-纤维素酶处理的最佳条件为:超声波频率为 21Hz,超声波时间为 5 分钟,纤维素酶浓度为 30 毫克/克竹笋粉。由于所有响应的百分比误差均小于 5%,因此 RSM 生成的模型得到了验证。对处理过的竹笋粉和未处理过的竹笋粉进行了比较,结果表明,处理过的竹笋粉与未处理过的竹笋粉在持水率(85.68%)、持油率(39.45%)和膨胀率(50.75%)方面存在显著差异,P<0.05。结果表明,超声波纤维素酶处理成功地实现了竹笋粉中可溶性膳食纤维向可溶性膳食纤维的转化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of ultrasonic-cellulase treatment towards bamboo shoot (Gigantochloa albociliata) powder properties
This study was to evaluate the optimum condition of ultrasonic-cellulase treatment for the highest conversion of insoluble to soluble dietary fibre in bamboo shoot powder. The interaction between independent variables (frequency, time and cellulase concentration) with response variables (water holding capacity, oil holding capacity and swelling capacity) was evaluated and optimized using Response Surface Methodology (RSM) coupled with a Central Composite Design (CCD). The results showed that the optimum condition of ultrasonic-cellulase treatment was as follows, the ultrasonic frequency at 21 Hz, ultrasonic time at 5 mins, and cellulase concentration at 30 mg/g of bamboo shoot powder. The model generated by RSM was validated since all the percentage errors for all the responses were less than 5%. A comparison between treated and untreated bamboo shoot powder was performed where treated bamboo shoot powder showed significant differences from untreated bamboo shoot powder in terms of water holding capacity (85.68%), oil holding capacity (39.45%) and swelling capacity (50.75%) with P<0.05. In conclusion, the result indicated that ultrasonic-cellulase treatment on the conversion of the insoluble to soluble dietary fibre in bamboo shoot powder had been successfully achieved.
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