几种茶叶的铝污染

Fogarasi Erzsébet, Fülöp Ibolya, B. Zsuzsa, Márton Kincső, Croitoru Mircea Dumitru
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摘要

摘要简介:山茶是一种应用广泛的植物,适宜生长在含铝量高的低pH土壤中。目的:比较山茶与其他植物茶中铝的含量。测定了pH值对茶叶铝含量的影响。材料与方法:采用比色法测定了48份样品的铝含量。该方法是基于铝在低pH下与二甲酚橙形成稳定配合物的能力;该配合物的最大吸收波长为555nm。结果:该方法适用于水泡茶和含柠檬酸水泡茶。结果表明,该方法在0.7 ~ 7 ug/ml范围内呈线性,变异系数在2.6 ~ 7.68%之间(取决于制茶液的pH值),准确度为92.39 ~ 102.92%,配合物稳定时间至少为1小时。测量了以下浓度:绿茶(1.59 - 7.70µg/ml),红茶(1.39 - 5.60µg/ml),果茶(1.01 - 5.63µg/ml)和凉茶(1.03 - 5.24µg/ml)。结论:该方法简便易行,可用于泡茶用植物铝含量的筛选。绿茶和黑茶的铝含量均显著高于其他茶种。加入柠檬酸,由于柠檬汁的使用,显著增加了从用于泡茶的植物中提取的铝。
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Aluminium contamination of several types of tea
Abstract Introduction: Camellia sinensis, a widely used plant, optimally grows in a low pH soil that in most cases contains high amounts of aluminum. Objectives: The aluminum content of the tea obtained from Camellia sinensis and other plants was compared. The influence of pH on the aluminum content of the tea was also measured. Materials and methods: The aluminum content of 48 samples was measured using a colorimetric method. The method is based on the ability of aluminum to form a stable complex with xylenol orange at low pH; this complex has an absorption maximum of 555 nm. Results: The method was validated for tea obtained with water and for tea obtained with water containing citric acid. The method proved linear over the rage of 0.7 – 7 ug/ml, coefficient of variation ranged between 2.6 – 7.68% (was dependent on the pH of the solution used to obtain the tea), accuracy was suitable for quantitative measurement (92.39-102.92%) and the complex proved to be stable for at least 1 hour. The following concentrations were measured: green tea (1.59 - 7.70 µg/ml), black tea (1.39 - 5.60 µg/ml), fruit tea (1.01 - 5.63 µg/ml) and herbal tea (1.03 - 5.24 µg/ml). Conclusion: The method proved useful and easily applicable for screening aluminum content of plants used for tea brewing. Camellia sinensis both green and black types had significantly higher aluminum contents than other type of teas. Adding citric acid, as would result from use of lemon juice, significantly increased the aluminum extraction from the plants used for tea brewing.
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