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The Content of Elements in Infant Formulas and Drinks Against Mineral Requirements of Children

机译:婴幼儿配方食品和饮料中元素的含量对儿童矿物质的需求

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摘要

The present study aimed at analysing the content of fluorine (F), calcium (Ca), magnesium (Mg), iron (Fe) and zinc (Zn) in the drinks for children and infant formulas, a popular supplement or substitute for breast milk produced from cow milk on an industrial scale. Ca, Mg, Zn and Fe concentrations were determined using atomic absorption spectrophotometer, while F levels using a potentiometric method. F levels in the examined formula samples increased with the intended age range, until the intended age of 1 year, and then decreased. A lower content of Ca, Mg and Zn was observed in formulas intended for children <1 year of age and higher for older children. Fe content increased with the age range. A statistically significant higher content of Ca, Mg, Zn and Fe in samples intended for children with phenylketonuria in comparison to those intended for healthy children or children with food allergies was noted. The content of the analysed elements in juices and nectars showed the highest contents in products intended for infants (under 6 months of age). The lowest levels of elements tested were found in drinks for children over 6 months of age. In conclusion, the concentrations of the examined elements in infant formulas and juices for children were decidedly greater than the standards for the individual age groups. Although the absorption of these elements from artificial products is far lower than from breast milk, there is still the fear of consequences of excessive concentrations of these minerals.
机译:本研究旨在分析儿童和婴儿配方奶粉(一种流行的补充或替代母乳)中的饮料中氟(F),钙(Ca),镁(Mg),铁(Fe)和锌(Zn)的含量。用工业规模的牛奶生产。使用原子吸收分光光度计测定Ca,Mg,Zn和Fe的浓度,而使用电位法测定F的浓度。被检查的配方奶粉中的F水平随着预期的年龄范围增加,直到达到1岁的预期年龄,然后下降。用于1岁以下儿童的配方奶粉中的Ca,Mg和Zn含量较低,而年龄较大的儿童则较高。铁含量随着年龄的增长而增加。与健康儿童或食物过敏儿童相比,苯丙酮尿症儿童样本中的Ca,Mg,Zn和Fe含量具有统计学意义的显着增加。果汁和花蜜中所分析元素的含量显示,用于婴儿(6个月以下)的产品中含量最高。对于6个月以上的儿童,饮料中的元素含量最低。总之,婴儿配方食品和儿童果汁中所检查元素的浓度明显高于各个年龄组的标准。尽管从人造产品中吸收的这些元素远低于从母乳中吸收的元素,但仍然担心这些矿物质浓度过高会带来后果。

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