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Development of a two-step extraction process for wheat germ oil recovery.

机译:开发用于小麦胚芽油的两步萃取工艺。

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摘要

Scope and Method of Study: The main objective of this study was to optimize the mechanical extraction process parameters (cage temperature, germ pretreatment, shaft speed, back pressure and shaft arrangement) to increase wheat germ oil (WGO) yield without compromising oil quality. A two-step process: pre-pressing of wheat germ using a screw press followed by extraction of residual oil from the pressed cake by aqueous and aqueous enzymatic extraction techniques was also examined. In addition, mechanically extracted WGO quality was compared to that of hexane and supercritical CO2 extracted oil by analyzing the free fatty acid (FFA), peroxide value (PV), p- anisidine value (AV), water content, phosphorus, tocopherols and phospholipids content.;Finding and Conclusion: The highest oil yield from the screw press, about 47.7%, was obtained under the following conditions: severe shaft arrangement, cage temperature of 107 °C, germ pretreatment at 82 °C, high back pressure, and shaft speed at 400 rpm. The aqueous extraction of wheat germ (WG) cake with boric acid–NaOH (pH 8) buffer using fine particle size at liquid solid ratio (LSR) of 20 and extraction time of 0.5 h resulted in the highest oil yield, 79.64%. The enzymatic extraction of WG cake with Alcalase 2.4L FG at LSR of 16.5, enzyme concentration of 4%, and extraction time of 5.25 h resulted in 76.7% oil yield which was slightly lower than the aqueous extraction. Mechanically extracted oil had better quality (lower FFA, PV, and AV values and higher α-tocopherol content) than that of the commercially hexane-extracted oil. A two-step process involving mechanical pressing of full fat WG followed by aqueous extraction of the residual cake from the mechanical press would result in 90% WGO recovery. This process can be an environmentally benign alternative to hexane extraction.
机译:研究范围和方法:这项研究的主要目的是优化机械提取工艺参数(笼温度,胚芽预处理,竖井速度,背压和竖井布置),以增加小麦胚芽油(WGO)的产量,而又不损害油质。还检查了两步过程:使用螺旋压榨机对小麦胚芽进行预压榨,然后通过水性和水性酶促提取技术从压榨饼中提取残留油。此外,通过分析游离脂肪酸(FFA),过氧化物值(PV),对茴香胺值(AV),水含量,磷,生育酚和磷脂,将机械提取的WGO的质量与己烷和超临界CO2提取的油的质量进行了比较。发现与结论:在以下条件下,螺杆压榨机的最高产油率约为47.7%:严重的轴布置,笼式温度为107°C,82°C的细菌预处理,高背压和轴转速为400 rpm。以20的液固比(LSR)和0.5 h的提取时间,用细粒度的硼酸-NaOH(pH 8)缓冲液对小麦胚芽(WG)饼进行水提取,可得到最高的油收率79.64%。用Alcalase 2.4L FG在LSR为16.5,酶浓度为4%,提取时间为5.25 h的条件下酶法提取WG饼,得油率为76.7%,略低于水提取。机械提取的油比商用己烷提取的油具有更好的质量(较低的FFA,PV和AV值以及较高的α-生育酚含量)。分两步进行的过程包括对全脂白蛋白进行机械压榨,然后从机械压榨中对残留的饼进行含水萃取,将可回收90%的WGO。该方法可以替代己烷萃取,对环境无害。

著录项

  • 作者

    Al-Obaidi, Laith Fareed.;

  • 作者单位

    Oklahoma State University.;

  • 授予单位 Oklahoma State University.;
  • 学科 Agriculture Food Science and Technology.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 107 p.
  • 总页数 107
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:43:39

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