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利用响应面法优化奇亚籽(Salvia hispanica L.)黏液的提取。

Optimization of mucilage extraction from chia seeds (Salvia hispanica L.) using response surface methodology.

机构信息

TECSE, Departamento Ingeniería Química, Facultad de Ingeniería y Tecnología de los Alimentos, UNCPBA, Avenida del Valle 5737, Olavarría, Buenos Aires, Argentina.

CCT Tandil (CONICET), Pinto 399, 7000, Tandil, Buenos Aires, Argentina.

出版信息

J Sci Food Agric. 2018 Sep;98(12):4495-4500. doi: 10.1002/jsfa.8974. Epub 2018 Apr 18.

Abstract

BACKGROUND

Chia mucilage has potential application as a functional ingredient; advances on maximizing its extraction yield could represent a significant technological and economic impact for the food industry. Thus, first, the effect of mechanical agitation time (1-3 h) on the exudation of chia mucilage was analyzed. Then, response surface methodology was used to determine the optimal combination of the independent variables temperature (15-85 °C) and seed: water ratio (1: 12-1: 40.8 w/v) for the 2 h exudation that give maximum chia mucilage yield. Experiments were designed according to central composite rotatable design.

RESULTS

A second-order polynomial model predicted the variation in extraction mucilage yield with the variables temperature and seed: water ratio. The optimal operating conditions were found to be temperature 85 °C and a seed: water ratio of 1: 31 (w/v), reaching an experimental extraction yield of 116 ± 0.21 g kg (dry basis). The mucilage obtained exhibited good functional properties, mainly in terms of water-holding capacity, emulsifying activity, and emulsion stability.

CONCLUSION

The results obtained show that temperature, seed: water ratio, and exudation time are important variables of the process that affect the extraction yield and the quality of the chia mucilage, determined according to its physicochemical and functional properties. © 2018 Society of Chemical Industry.

摘要

背景

奇亚胶具有作为功能成分的应用潜力;最大限度地提高其提取产量的进展可能会对食品工业产生重大的技术和经济影响。因此,首先分析了机械搅拌时间(1-3 小时)对奇亚胶渗出的影响。然后,采用响应面法确定了最佳的独立变量温度(15-85°C)和种子:水比(1:12-1:40.8 w/v)组合,以在 2 小时渗出过程中获得最大的奇亚胶产量。实验根据中心复合旋转设计进行设计。

结果

二次多项式模型预测了提取胶产量随温度和种子:水比变量的变化。发现最佳操作条件为温度 85°C 和种子:水比为 1:31(w/v),达到实验提取产量 116±0.21 g kg(干基)。获得的胶具有良好的功能特性,主要在持水能力、乳化活性和乳化稳定性方面。

结论

研究结果表明,温度、种子:水比和渗出时间是影响提取产量和奇亚胶质量的重要过程变量,这取决于其物理化学和功能特性。 © 2018 化学工业协会。

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