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首页> 外文期刊>Journal of the American Oil Chemists' Society >Flaking as a Pretreatment for Enzyme-Assisted Aqueous Extraction Processing of Soybeans
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Flaking as a Pretreatment for Enzyme-Assisted Aqueous Extraction Processing of Soybeans

机译:剥落作为大豆酶促水提取工艺的预处理

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摘要

Soybean moisture content (7.2–12.8%) and conditioning temperature (51–79 °C) during flaking were evaluated to determine their effects on oil and protein extraction and oil distribution among fractions produced in enzyme-assisted aqueous extraction processing (EAEP). Extractions were performed by using two-stage countercurrent EAEP at a 1:6 solids-to-liquid ratio with 0.5% protease (wt/g extruded flakes) at pH 9.0 and 50 °C for 1 h. Oil extraction improved when using soybeans with moisture contents ranging from 8.0 to 12.0% for flaking but was not affected by conditioning temperature. Oil extraction was reduced when moving away from 10% moisture with the lowest values at 7.2 and 12.8% moisture. Free oil extraction increased as soybean moisture content increased from 7.2 to 12.8% although total oil extraction was reduced at 12.8% moisture. Higher (79 °C) and lower conditioning temperatures (51 °C) improved free oil extraction and reduced cream emulsion formation. Skim oil content was not significantly affected by soybean moisture content and the conditioning temperature, although an undesirable high oil content in the skim was observed at 8% moisture and at 55 °C. The cream with a high oil yield was easily demulsified compared with cream containing a low oil yield (95 vs. 76.5% de-emulsification). Due to differences in cream stability, similar oil recoveries (78–80%) were obtained for treatments yielding creams with either low or high oil yields. Mean protein extraction of 95% was achieved for all treatments and was not significantly affected by soybean moisture content at flaking or conditioning temperature.
机译:评估了薄片化过程中的大豆水分含量(7.2–12.8%)和调节温度(51–79°C),以确定它们对酶辅助水提取工艺(EAEP)产生的馏分中油和蛋白质提取以及油分布的影响。通过使用固液比为1:6的两阶段逆流EAEP和0.5%蛋白酶(wt / g挤出薄片)在pH 9.0和50°C下进行萃取1小时。当使用水分含量为8.0%至12.0%的大豆作薄片时,油脂提取得到改善,但不受调节温度的影响。当从10%的水分中移出时,油的提取减少了,最低的水分含量为7.2和12.8%。游离油的提取量随着大豆含水量从7.2增加到12.8%而增加,尽管总油提取量在含水量为12.8%时减少了。较高的温度(79°C)和较低的调节温度(51°C)改善了游离油的提取并减少了乳剂乳液的形成。脱脂油含量不受大豆水分含量和调节温度的影响不明显,尽管在8%水分和55°C下观察到脱脂物中不希望有的高油含量。与含油率低的乳剂相比,含油率高的乳剂很容易被乳化(去乳化率分别为95%和76.5%)。由于乳膏稳定性的差异,对于产生低或高油产率的乳膏的处理,获得了相似的油脂回收率(78-80%)。所有处理均实现了95%的平均蛋白质提取率,并且在剥落或调理温度下,大豆水分含量并未对其产生显着影响。

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