College of Engineering, China Agricultural University, P.O. Box 50, 17 Qinghua Donglu, Beijing 100083, China.
Carbohydr Polym. 2013 Jun 5;95(1):233-40. doi: 10.1016/j.carbpol.2013.02.062. Epub 2013 Mar 6.
A central composite design was employed to determine the optimum extraction condition to obtain higher yield, better color attribute as well as better rheological and emulsifying properties in pectin extracted from sugar beet pulp (SBP). A second-order polynomial model was developed for predicting the yield of sugar beet pulp pectin (SBPP) based on the composite design. Response surface methodology (RSM) was used to quantify the integral effect of three processing parameters (extraction temperature, time and pH) on yield, yield stress, color attribute (tint value) and emulsifying activity index (EAI). Through the frequency analysis it was found that the optimal temperature, time and pH value of the extraction were 93.7 °C, 3 h, and 1.21, respectively. The yield, yield stress and tint value of the SBPP extracted at the optimal condition were 24.45%, above 0.1 Pa and -6.0, respectively.
采用中心复合设计来确定最佳提取条件,以从糖甜菜渣中提取果胶时获得更高的得率、更好的颜色属性以及更好的流变和乳化性能。根据复合设计,建立了用于预测糖甜菜渣果胶(SBPP)产率的二阶多项式模型。响应面法(RSM)用于量化三个加工参数(提取温度、时间和 pH 值)对产率、屈服应力、颜色属性(色调值)和乳化活性指数(EAI)的综合影响。通过频率分析发现,提取的最佳温度、时间和 pH 值分别为 93.7°C、3 h 和 1.21。在最佳条件下提取的 SBPP 的产率、屈服应力和色调值分别为 24.45%、高于 0.1 Pa 和-6.0。