提高从大豆榨油机中提取蛋白质的能力:探索沉淀剂和面粉与水的比例对功能特性的影响

Q3 Agricultural and Biological Sciences Progress in Agricultural Engineering Sciences Pub Date : 2024-07-02 DOI:10.1556/446.2024.00112
María Nieves Andrín, María Angeles Guraya, C. Accoroni, Pablo Antonio Torresi, E. Godoy, M. A. Reinheimer
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引用次数: 0

摘要

本研究探讨了通过 pH 值转换工艺从大豆榨油机中生产蛋白质的可持续方法,旨在通过调整每个循环的固液比来减少碱性萃取的用水量,并采用乳酸和乳酸菌(Lactiplantibacillus plantarum 和 Lactococcus Lactis)等等电沉淀剂,在较宽的 pH 值范围内增强功能性和抗氧化性。结果表明,最有效的方法是以乳酸菌作为沉淀剂,进行三次 1:10 (w/v)的萃取循环,这表明生产率高,耗水量低。与耗水量较高或不太环保的沉淀剂相比,蛋白质含量和回收率没有明显差异。尽管溶解度较低,但用乳酸菌沉淀的蛋白质产品可形成稳定的乳液,表现出卓越的自由基清除活性。
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Enhancing protein extraction from soybean expeller: Exploring the impact of precipitating agents and flour-to-water ratios on functional properties
This study investigates sustainable methods for producing protein from soybean expeller via pH-shifting processes, aiming to reduce water usage in alkaline extraction by adjusting solid-to-liquid ratios per cycle and employing isoelectric precipitants like lactic acid and lactic acid bacteria (Lactiplantibacillus plantarum and Lactococcus Lactis) to enhance functional and antioxidant properties over a wide pH range. Results indicate that the most efficient approach involves three 1:10 (w/v) extraction cycles with lactic acid bacteria as precipitants, demonstrating high productivity and low specific water consumption. Protein content and recovery yield showed no significant differences compared to alternatives with higher water consumption or less eco-friendly precipitants. Despite lower solubility, protein products precipitated with lactic acid bacteria formed stable emulsions, exhibiting superior free radical scavenging activity.
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来源期刊
Progress in Agricultural Engineering Sciences
Progress in Agricultural Engineering Sciences Engineering-Industrial and Manufacturing Engineering
CiteScore
1.80
自引率
0.00%
发文量
6
期刊介绍: The Journal publishes original papers, review papers and preliminary communications in the field of agricultural, environmental and process engineering. The main purpose is to show new scientific results, new developments and procedures with special respect to the engineering of crop production and animal husbandry, soil and water management, precision agriculture, information technology in agriculture, advancements in instrumentation and automation, technical and safety aspects of environmental and food engineering.
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