Study on lead levels in infusion time of imported green and black tea (Camellia sinensis L)

Niloufar Ehsani, P. Ziarati, M. Salami
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Abstract

Background: Nowadays, tea is the most popular and frequently consumed beverages in the world after water. There are some beneficial trace elements in tea such as fluoride, caffeine and essential minerals, although there may be heavy metals in tea leaves which threat seriously human health. Therefore, the main objective of current study was to determine and monitor lead content in imported black and green tea leaves (Camellia sinensis L) and time of infusion and to compare the release of Pb from them by the time factor. Materials and methods: The mean content of lead in 450 brewed samples of green and black tea were determined in three different duration time of infusion (5, 10, and 15 minutes) by graphic atomic absorption spectrophotometer. Samples were prepared by wet digestion method due to international protocols AOAC by concentrated nitric and hydrochloric acid. Analysis of variance (ANOVA) was employed to detect significances among samples from different time of infusion in samples. Results: The results showed that in the brew of dry black and green tea samples, the amount of lead was less than the allowable limit of the dry tea sample (1ppm). Also the amount in the brewed tea in 15 minutes was higher than 10 minutes and it was higher than 5 minutes. Conclusion: The amount of lead in the brewed tea was lower than in the dry samples. The best time to brew tea is 5 minutes, when the amount of lead is the lowest and the organoleptic properties have the best conditions in terms of flavor.
进口绿茶和红茶冲泡时间铅含量的研究
背景:如今,茶是世界上仅次于水的最受欢迎和最经常消费的饮料。茶叶中含有一些有益的微量元素,如氟化物、咖啡因和必需矿物质,但茶叶中可能存在严重威胁人体健康的重金属。因此,本研究的主要目的是测定和监测进口黑茶和绿茶(Camellia sinensis L)中铅的含量和冲泡时间,并通过时间因子比较它们的铅释放量。材料与方法:用图形原子吸收分光光度计测定450种冲泡绿茶和红茶样品中3种冲泡时间(5、10、15分钟)的平均铅含量。按照国际AOAC标准,用浓硝酸和盐酸湿消解法制备样品。采用方差分析(ANOVA)检验不同注射时间样品间的显著性。结果:冲泡干红茶和绿茶样品中铅含量均小于干茶样品允许限量(1ppm)。15分钟冲泡的茶中的含量高于10分钟,也高于5分钟。结论:泡茶中铅的含量低于干茶。泡茶的最佳时间为5分钟,此时含铅量最低,茶的感官特性在风味方面具有最佳条件。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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