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Trace elements, polycyclic aromatic hydrocarbons, mineral composition, and FT-IR characterization of unrefined sea and rock salts: environmental interactions

机译:微量元素,多环芳烃,矿物质组合物和FT-IR未精制海洋和岩石盐的表征:环境相互作用

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Unrefined sea salt originates from seawater, typically by natural evaporation. Being minimally processed, it contains the natural minerals and impurities of seawater. Despite the wide applications of salt for culinary and food preservation purposes, the available composition data is particularly limited. Since seawater often contains various harmful substances at a trace or ultra-trace level, their determination in unrefined salt is significant in terms of quality control and food safety. Twenty-four (24) samples of unrefined sea and rock salts retailed in Greece were studied in terms of their trace metals and polycyclic aromatic hydrocarbon (PAH) content, which constitute the usual pollutants examined in seawater. In addition, samples' color and mineralogy were recorded and their attenuated total reflectance Fourier transform infrared (ATR FT-IR) spectra were obtained. No statistically significant differences were found between sea and rock salts regarding their trace metal (Cd, Co, Cr, Cu, Fe, Mn, Ni, Pb, Zn) content (excluding V) and the 15 PAHs examined. ATR FT-IR succeeded to discriminate among sea, rock, flower, and underground salty water salts. Compared with the typical trace metal concentrations in seawater, quite high Pb values were determined in both sea and rock salts, whereas outliers in the rest of the trace elements examined were scarce. Median values of the sum of PAH (sigma PAHs) concentrations were calculated equal to 2.1 and 2.6 ng g(-1) for sea and rock salts, respectively. Environmental interactions of salt production with trace elements and PAHs are also discussed.
机译:未精制的海盐源自海水,通常是天然蒸发。微量加工,它含有海水的天然矿物和杂质。尽管盐适用于烹饪和食品保存目的,但可用的组成数据特别有限。由于海水通常在痕量或超痕量水平下含有各种有害物质,因此在质量控制和食品安全方面,未精制的盐中的测定是显着的。在希腊零售于希腊零售的二十四(24)个未精制的海洋和岩石盐样品,其痕量金属和多环芳烃(PAH)含量研究,该含量构成海水中审查的通常污染物。此外,记录了样品的颜色和矿物学,并获得了它们的衰减总反射率傅里叶变换红外(ATR FT-IR)光谱。在痕量金属(CD,CO,Cr,Cu,Fe,Mn,Ni,Pb,Zn)含量(不包括V)和检查的15个PAHs之间,没有发现统计学上显着的差异。 ATR FT-IR成功地歧视了海,岩石,花和地下咸水盐。与海水中典型的痕量金属浓度相比,在海和岩石中测定了相当高的Pb值,而剩下的痕量元素中的异常值仍然是稀缺的。 PAH(SIGMA PAHS)浓度和分别计算出海和岩盐的2.1和2.6ng(-1)的中值值。还讨论了盐生产与微量元素和PAHS的环境相互作用。

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