首页> 美国卫生研究院文献>Journal of Food Science and Technology >Migration study of optical brighteners from polymer packing materials to jam squeeze and fruit drink by spectrofluorimetry and RP-HPLC methods
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Migration study of optical brighteners from polymer packing materials to jam squeeze and fruit drink by spectrofluorimetry and RP-HPLC methods

机译:荧光增白和RP-HPLC法研究荧光增白剂从聚合物包装材料向果酱和果汁饮料的迁移

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摘要

Optical brighteners are commonly used to modify the appearance and to improve polymer properties of packaging. They are not chemically bound to polymers and able to migrate from packaging into the foods. These migrants are potentially harmful to human health. In concern with human safety an approach was made to analyze three optical brighteners such as diphenylbutadiene, Uvitex-OB, benzophenone in commercial fruit juice and jam. The migration level of these optical brighteners from low density poly ethylene packaging into fruit juice and jam was studied. Two optimized and validated analytical techniques such as spectrofluorimetry and high performance liquid chromatography with photo diode array detector used for migration study. Both methods have shown high correlation coefficients (>0.999), over a concentration range of 0.1–3.2 μg/mL, 0.1–1 μg/mL, 0.05–3.2 μg/mL for diphenylbutadiene, Uvitex-OB and benzophenone respectively. The preliminary studies confirm that the low density poly ethylene layer taken for study contained of diphenylbutadiene and the other two were absent. The migration level of diphenylbutadiene was studied at room temperature and different elevated temperature from 30 °C to 60 °C for up to 3 weeks. At room temperature no migration of diphenylbutadiene was observed where as at higher temperature migration could be observed. The maximum quantity of diphenylbutadiene migrated was found to be 0.0462 mg/kg from tetrapak, and 0.0382 mg/kg from jam squeeze after 3 weeks treatment at 60 °C. The migration of diphenylbutadiene was found to be less than allowable concentration during the study period.
机译:荧光增白剂通常用于改变外观并改善包装的聚合物性能。它们不与聚合物化学键合,并且能够从包装中迁移到食品中。这些移民潜在地危害人类健康。考虑到人类安全,采取了一种方法来分析商用果汁和果酱中的三种荧光增白剂,例如二苯丁二烯,Uvitex-OB,二苯甲酮。研究了这些荧光增白剂从低密度聚乙烯包装到果汁和果酱的迁移水平。两种经过优化和验证的分析技术,例如分光荧光法和带有光电二极管阵列检测器的高效液相色谱法,用于迁移研究。两种方法在二苯基丁二烯,Uvitex-OB和二苯甲酮的浓度范围分别为0.1–3.2μg/ mL,0.1–1μg/ mL,0.05–3.2μg/ mL时均显示出高相关系数(> 0.999)。初步研究证实,用于研究的低密度聚乙烯层不包含二苯基丁二烯,而另外两个则不存在。在室温下以及从30°C到60°C的不同升高温度下研究了二苯丁二烯的迁移水平长达3周。在室温下未观察到二苯基丁二烯的迁移,而在较高温度下可观察到迁移。在60°C下处理3周后,从四唑中迁移出的二苯丁二烯的最大量为0.0462 mg / kg,而从果酱挤压中迁移出的最大量为0.0382 mg / kg。研究期间发现二苯丁二烯的迁移小于允许的浓度。

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