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采用D-最优组合设计方法描述提取参数对超热水提取藜麦-大麦麦芽提取物产量的影响。

Use of D-optimal combined design methodology to describe the effect of extraction parameters on the production of quinoa-barley malt extract by superheated water extraction.

作者信息

Sabah Samireh, Sharifan Anoshe, Akhonzadeh Basti Afshin, Jannat Behrooz, TajAbadi Ebrahimi Maryam

机构信息

Department of Food Science and Technology, Science and Research Branch Islamic Azad University Tehran Iran.

Department of Food Hygiene Faculty of Veterinary Medicine University of Tehran Tehran Iran.

出版信息

Food Sci Nutr. 2021 Feb 18;9(4):2147-2157. doi: 10.1002/fsn3.2184. eCollection 2021 Apr.

Abstract

Superheated water extraction was applied to produce quinoa-barley malt extract. D-optimal combined design was used to optimize the extraction conditions (time (min), solid-water ratio and particle size to obtain maximum protein and carbohydrate content, and minimum turbidity and pH. Quinoa flour (10%-30%), barley malt flour (70%-90%), different particle sizes ( = 420 µm,  = 710 µm), time (15-45 min), and solid-water ratio (0.1-0.2) were selected as independent variable and protein, carbohydrate, turbidity, and pH as dependent factors. Polynomials models satisfactorily fitted the experimental data with the values of .9961, .9909, .9949, and .9987, respectively. The protein and carbohydrate value was affected by superheated water extraction parameters. Our results revealed that increasing quinoa/barley malt ratio has significant effect on the turbidity and pH. The optimum extraction conditions were quinoa flour (30%), barley malt flour (70%), solid-water ratio (0.2), time (45 min), and particle size ( = 420 µm).

摘要

采用超热水萃取法制备藜麦-大麦麦芽提取物。采用D-最优组合设计优化提取条件(时间(分钟)、固水比和粒径),以获得最大的蛋白质和碳水化合物含量,以及最低的浊度和pH值。选取藜麦粉(10%-30%)、大麦麦芽粉(70%-90%)、不同粒径(=420 µm,=710 µm)、时间(15-45分钟)和固水比(0.1-0.2)作为自变量,蛋白质、碳水化合物、浊度和pH值作为因变量。多项式模型分别以0.9961、0.9909、0.9949和0.9987的R²值令人满意地拟合了实验数据。超热水萃取参数会影响蛋白质和碳水化合物的值。我们的结果表明,提高藜麦/大麦麦芽比例对浊度和pH值有显著影响。最佳提取条件为藜麦粉(30%)、大麦麦芽粉(70%)、固水比(0.2)、时间(45分钟)和粒径(=420 µm)。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3d24/8020935/dcb55870f1fa/FSN3-9-2147-g009.jpg

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