首页> 外文期刊>Journal of the American Oil Chemists' Society >Effect of UV processing treatments on soy oil conjugated linoleic acid yields and tocopherols stability.
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Effect of UV processing treatments on soy oil conjugated linoleic acid yields and tocopherols stability.

机译:紫外线处理对大豆油共轭亚油酸收率和生育酚稳定性的影响。

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Photoirradiation has been used to synthesize 20% conjugated linoleic acid (CLA) in soy oil with an iodine catalyst. CLA yields are affected by ultraviolet (UV) irradiation time, MagnesolReg. adsorbent treatment, iodine concentration and mixed tocopherols. However, these factors in combination had not been studied. Therefore, the objectives of this study were to determine the effect of (1) a combination of photoirradiation time, MagnesolReg. adsorbent treatment and added mixed soy tocopherols on CLA yields and the oxidative stability of CLA-rich soy oil, (2) UV light on mixed tocopherol stability, as tocopherols enhance CLA yields during photoirradiation. Soy oil was initially treated with 5% MagnesolReg.. Iodine at 0 and 0.35% was mixed with MagnesolReg.-treated soy oil and irradiated for 12 and 6 h. The irradiated oil was again treated with MagnesolReg., mixed with 0, 0.35 or 0.175% iodine; 1400 MT and irradiated for 12 or 6 more hours. CLA content in soy oil was determined by conventional gas chromatography-flame ionization detector. The oxidative stability of the oil was determined by measuring peroxide value (PV). The tocopherols stability was determined by high performance liquid chromatography. The results showed that increasing photoirradiation time increased CLA yields and lowered PV. MagnesolReg. adsorption produced highest CLA yield for all treatments by removing peroxides in RBD soy oil. The gamma-tocopherols exhibited highest stability during UV irradiation. The order of tocopherol degradation was alpha-tocopherol > delta-tocopherol > gamma-tocopherols
机译:光照射已被用于用碘催化剂在大豆油中合成20%的共轭亚油酸(CLA)。 CLA的产量受紫外线(UV)照射时间,Magnesol Reg。 吸附剂处理,碘浓度和混合生育酚的影响。但是,尚未综合研究这些因素。因此,本研究的目的是确定(1)光照射时间,Magnesol Reg。 吸附剂处理以及添加的混合大豆生育酚对CLA产量和富含CLA的大豆油的氧化稳定性;(2)紫外线对混合生育酚的稳定性的影响,因为生育酚可在光照射过程中提高CLA的产量。最初用5%Magnesol Reg。 处理大豆油。将碘在0和0.35%处与经Magnesol Reg。 处理的豆油混合,并照射12和6 h。再次将辐照的油用Magnesol Reg。 处理,并与0、0.35或0.175%碘混合; 1400公吨,再照射12或6个小时。大豆油中的CLA含量通过常规气相色谱-火焰电离检测器测定。油的氧化稳定性通过测量过氧化物值(PV)来确定。通过高效液相色谱法测定生育酚的稳定性。结果表明,增加光辐照时间可提高CLA产量并降低PV。 Magnesol Reg。 吸附通过去除RBD大豆油中的过氧化物,在所有处理中均产生最高的CLA收率。 γ-生育酚在紫外线照射下表现出最高的稳定性。生育酚降解的顺序为:α-生育酚>δ-生育酚>γ-生育酚

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