首页> 外文期刊>Journal of Geochemical Exploration: Journal of the Association of Exploration Geochemists >Trace elements and ions in Italian bottled mineral waters: Identification of anomalous values and human health related effects
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Trace elements and ions in Italian bottled mineral waters: Identification of anomalous values and human health related effects

机译:意大利瓶装矿泉水中的微量元素和离子:异常值的识别和与人类健康相关的影响

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Microbiological studies have always had an important role in the evaluation of drinking water quality. However, since geological processes are the most important factors controlling the source and distribution of chemical elements in natural waters, the importance of geochemical data must not be underestimated. This study presents data on pH, conductivity and concentrations of 69 elements and ions (Ag, Al, As, B, Ba, Be, Bi, Ca, Cd, Ce, Co, Cr, Cs, Cu, Dy, Er, Eu, Fe, Ga, Gd, Ge, Hf, Hg, Ho, I, K, La, Li, Lu, Mg, Mn, Mo, Na, Nb, Nd, Ni, Pb, Pr, Rb, Sb, Sc, Se, Sm, Sn, Sr, Ta, Tb, Te, Th, Ti,Tl, Tm, U, V, W, Y, Yb, Zn, Zr, Br~-, HCO_3~-, Cl~-, F~-, NH_4~+, NO_2~-, NO_3~-, PO_4~(3-), SO_4~(2-), SiO2) from 186 bottled mineral waters of 158 different Italian name brands. Analyses show a large range in concentrations for most of these elements, with variations up to four orders of magnitude. Our data demonstrate that some elements (such as Be), generally considered unlikely to occur, can instead reach surprisingly high levels in drinking water, and also how packaging can release some trace elements to the bottled water. Data analysis shows that the implementation of an international database of bottled water geochemistry and of potential toxicological effects is of paramount importance to provide a robust data set which would be useful to set international action levels and guidelines to secure bottled water quality, whose consumption has steadily increased in the recent years. A new formula to calculate nitrate and nitrite tolerable concentration levels in waters intended for human consumption is proposed, to take into account that about 5% of dietary nitrate in humans is converted to nitrite.
机译:微生物学研究一直在饮用水质量评估中发挥重要作用。但是,由于地质过程是控制天然水中化学元素的来源和分布的最重要因素,因此,不能低估地球化学数据的重要性。这项研究提供了有关pH,电导率和69种元素和离子(Ag,Al,As,B,Ba,Be,Bi,Ca,Cd,Ce,Co,Cr,Cs,Cu,Dy,Er,Eu, Fe,Ga,Gd,Ge,Hf,Hg,Ho,I,K,La,Li,Lu,Mg,Mn,Mo,Na,Nb,Nd,Ni,Pb,Pr,Rb,Sb,Sc,Se, Sm,Sn,Sr,Ta,Tb,Te,Th,Ti,Tl,Tm,U,V,W,Y,Yb,Zn,Zr,Br〜-,HCO_3〜-,Cl〜-,F〜- NH_4〜+,NO_2〜-,NO_3〜-,PO_4〜(3-),SO_4〜(2-),SiO2)来自158个意大利不同品牌的186个瓶装矿泉水。分析表明,大多数这些元素的浓度范围很广,变化范围高达四个数量级。我们的数据表明,通常被认为不太可能发生的某些元素(例如Be)可以在饮用水中达到惊人的高水平,而且包装还可以如何将某些微量元素释放到瓶装水中。数据分析表明,实施瓶装水地球化学和潜在毒理作用国际数据库对于提供可靠的数据集至关重要,这对于设定国际行动水平和确保瓶装水质量稳定的准则非常有用,因为瓶装水的消费量一直稳定近年来有所增加。考虑到人体中约5%的饮食硝酸盐会转化为亚硝酸盐,提出了一种新的公式来计算供人类食用的水中硝酸盐和亚硝酸盐的容许浓度水平。

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