Nutrition and Bromatology Group, Analytical and Food Chemistry Department, Faculty of Food Science and Technology, University of Vigo, Ourense Campus, E32004 Ourense, Spain.
Sci Total Environ. 2014 Jan 15;468-469:1007-13. doi: 10.1016/j.scitotenv.2013.09.036. Epub 2013 Oct 4.
Fish oil has been identified as one of the most important contributors to the levels of polychlorinated biphenyls (PCBs) in food and feed products. In this study, PCB adsorption from fish oil onto activated carbon (AC), other sustainable adsorbents (mussel shell and wood waste ashes) and organic solvent such as ethanol were compared and optimized. Regarding to adsorbents, PCBs were extracted from fish oil by a 2.0% adsorbent material dose, during 6.0 h at 25 °C. Solvent extraction was carried out using 2 × 5.0 mL ethanol by manually stirring for 3.0 min, and then by Ultrasound-Assisted Solvent Extraction (UASE) for 5.0 min. The results showed that removal rates obtained by using adsorbent materials ranged from 0.0 to 10% for marker PCBs, from 0.0 to 37% for mono-ortho-PCBs, from 0.0 to 74% for PCB11 and from 0.0 to 95% for non-ortho-PCBs. Regarding to solvent extraction, ethanol was used by manually stirring and then by Ultrasound-Assisted Solvent Extraction (UASE). The samples were then centrifuged (2000 rpm/10 min) and the alcoholic phase was removed. With this method, removal efficiencies were much better (85-116%); nevertheless, high eicosapentaenoic acid (EPA) and docosahexaenoic acid (DHA) removal rates (70-78 and 71-79%, respectively) were detected. We can conclude that adsorption with adsorbents depends on the geometry of PCB congeners, as well as both type of adsorption material and their origin, and that several sorption cycles are needed. Adsorption with ethanol could be the most effective methodology but nutritional quality was impaired, what makes necessary to look for other not so polar removal solvents.
鱼油已被确定为食物和饲料产品中多氯联苯 (PCBs) 水平的最重要贡献者之一。在这项研究中,比较并优化了从鱼油中通过活性炭 (AC)、其他可持续吸附剂(贻贝壳和木废料灰)和有机溶剂(如乙醇)吸附 PCB。就吸附剂而言,在 25°C 下,用 2.0%的吸附剂材料剂量,在 6.0 小时内从鱼油中提取 PCBs。通过手动搅拌 3.0 分钟,然后通过超声辅助溶剂萃取 (UASE) 5.0 分钟,用 2×5.0 毫升乙醇萃取溶剂。结果表明,使用吸附剂材料获得的去除率为 0.0 至 10%,用于标记 PCBs;0.0 至 37%,用于单-邻位 PCBs;0.0 至 74%,用于 PCB11;0.0 至 95%,用于非邻位 PCBs。就溶剂萃取而言,手动搅拌后使用乙醇,然后通过超声辅助溶剂萃取 (UASE)。然后将样品离心(2000 rpm/10 min)并去除醇相。使用这种方法,去除效率要好得多(85-116%);然而,检测到二十碳五烯酸 (EPA) 和二十二碳六烯酸 (DHA) 的高去除率(分别为 70-78%和 71-79%)。我们可以得出结论,吸附剂的吸附取决于 PCB 同系物的几何形状,以及吸附材料的类型和来源,并且需要几个吸附循环。用乙醇吸附可能是最有效的方法,但营养质量受到损害,因此需要寻找其他非极性去除溶剂。