A powdered mix of cape gooseberry-based pulp, seed, and peel: Optimization of formulation and spray-drying process

IF 1.5 4区 农林科学 Q3 PLANT SCIENCES Journal of Berry Research Pub Date : 2023-06-07 DOI:10.3233/jbr-220079
Soany Eraso-Grisales, Misael Cortés-Rodríguez, Manuela Gallón-Bedoya, Edgar Herrera-Herrera, Rodrigo Ortega-Toro
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Abstract

BACKGROUND: Cape gooseberry (CG) is a fruit with nutritional and sensory attributes that generate significant consumer interest. Consumption patterns of this fruit must be in line with the diversification of its value-added products to be offered to new markets. OBJECTIVE: The research aim was to optimize the encapsulants formulation and the spray-drying (SD) process for developing of a powdered mix (PMCG) of CG based pulp, seed and peel, using the response surface methodology (RSM). METHODS: A RSM was used, with a face-centered central composite experimental design (α= 1). The independent variables (IV) were gum arabic (GA) (1 – 3% w/w), maltodextrin (MD) (11,5 – 13,5% w/w), air inlet temperature (AIT) (130 – 160 °C), air outlet temperature (AOT) (75 – 85 °C), and atomizer disc speed (ADS) (18000 – 22000 rpm). The dependent variables (DV) of the PMCG were moisture, solubility, hygroscopicity, wettability (We), color coordinates L* and b*, total phenols (TP), antioxidant capacity, and yield. RESULTS: The experimental optimization presented a desirability of 68.0%, with GA and MD levels in the PMCG of 2.2 and 10.1% p/p, respectively, and process conditions of AIT = 160 °C, AOT = 77.8 °C and ADS = 21450 rpm. The IV with the most significant effect on the DV was the MD. It was observed that the increase in MD decreases the PMCG moisture content, hygroscopicity, and the content of bioactive compounds, but increases the solubility and the values of L* and b*. The SD process was an effective technology that allowed obtaining PMCG with excellent quality attributes. CONCLUSIONS: In the process, greater use was made of the structure of the CG (pulp, seed, and peel), which gave high CG solids to the PMCG obtained and allowed more effective use of the fruit and higher economic viability in the SD process.
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以醋栗为原料的果肉、种子和果皮的粉末状混合物:配方和喷雾干燥工艺的优化
背景:角醋栗(CG)是一种具有营养和感官属性的水果,引起了消费者的极大兴趣。这种水果的消费模式必须与其提供给新市场的增值产品的多样化相一致。目的:利用响应面法(RSM)优化包封剂配方和喷雾干燥工艺,以制备CG基纸浆、种子和果皮粉末混合物。方法:采用面心中心复合实验设计(α= 1)的RSM,自变量为阿拉伯胶(GA) (1 ~ 3% w/w)、麦芽糊精(MD) (11,5 ~ 13,5% w/w)、进风口温度(AIT)(130 ~ 160℃)、出风口温度(AOT)(75 ~ 85℃)、雾滴盘转速(ADS) (18000 ~ 22000 rpm)。PMCG的因变量为水分、溶解度、吸湿性、润湿性(We)、颜色坐标L*和b*、总酚(TP)、抗氧化能力和产率。结果:优化后的工艺条件为:AIT = 160℃,AOT = 77.8℃,ADS = 21450 rpm, PMCG中GA和MD含量分别为2.2 p/p和10.1% p/p。对DV影响最显著的IV是MD, MD的增加降低了PMCG的含水率、吸湿性和生物活性化合物的含量,但增加了溶解度和L*、b*的值。SD工艺是一种有效的技术,可以获得具有优良质量属性的PMCG。结论:在该工艺中,更多地利用了CG(果肉、种子和果皮)的结构,使所获得的PMCG具有较高的CG固含量,使果实得到更有效的利用,并在SD工艺中具有更高的经济可行性。
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来源期刊
Journal of Berry Research
Journal of Berry Research Biochemistry, Genetics and Molecular Biology-Biochemistry
CiteScore
3.50
自引率
11.80%
发文量
21
期刊介绍: The main objective of the Journal of Berry Research is to improve the knowledge about quality and production of berries to benefit health of the consumers and maintain profitable production using sustainable systems. The objective will be achieved by focusing on four main areas of research and development: From genetics to variety evaluation Nursery production systems and plant quality control Plant physiology, biochemistry and molecular biology, as well as cultural management Health for the consumer: components and factors affecting berries'' nutritional value Specifically, the journal will cover berries (strawberry, raspberry, blackberry, blueberry, cranberry currants, etc.), as well as grapes and small soft fruit in general (e.g., kiwi fruit). It will publish research results covering all areas of plant breeding, including plant genetics, genomics, functional genomics, proteomics and metabolomics, plant physiology, plant pathology and plant development, as well as results dealing with the chemistry and biochemistry of bioactive compounds contained in such fruits and their possible role in human health. Contributions detailing possible pharmacological, medical or therapeutic use or dietary significance will be welcomed in addition to studies regarding biosafety issues of genetically modified plants.
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