船舶通道和河口底部沉积物中的汞:维斯瓦泻湖

IF 0.4 Q4 GEOSCIENCES, MULTIDISCIPLINARY
N. Bogdanov, O. V. Bass, A. Paranina, R. Paranin
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引用次数: 0

摘要

研究了维斯瓦泻湖开放水域沿岸河口和与之隔离的加里宁格勒海运河(KSC)底部沉积物中汞的分布。汞的测定方法:逆伏安法和高灵敏度无焰原子吸收光谱法。已经确定:从春季到秋季,泻湖风暴和浪涌事件的激活,河道冲水制度的加强确保河口的汞显著减少,但在动态减弱的KSC条件下,汞增加(从0.05到0.85 mg / kg)。2000-2015年KSC海湾汞安全水平(0.3 mg / kg)未超过安全水平(0.008 ~ 0.216 mg / kg),生态和流行病学状况良好。采用低灵敏度方法测定汞只能用于任何危险毒物浓度变化的定性评估。要在河口中找到可靠的汞含量,需要使用高度敏感的分析方法。http://www.transnav.eu《国际海上航行和海上运输安全杂志》第14卷
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Mercury in the bottom sediments of the ship channel and river mouths: the Vistula lagoon
It is studied the distribution of Hg in bottom sediments of estuaries on the banks of the open water area of the Vistula Lagoon and in the Kaliningrad Sea Canal (KSC) isolated from it. Methods for the determination of Hg: inversive voltammetry and highly sensitive flameless atomic absorption spectrometry. It has been established: from spring to autumn the activation of storms and surge events in the lagoon, intensification of the water flushing regime of the channels ensure a significant Hg decrease in river mouths, but in dynamically weakened KSC conditions an increase in Hg (from 0.05 to 0.85 mg / kg). In KSC bays, the safe level of Hg (0.3 mg / kg) for the period 2000-2015 was not exceeded (0.008 to 0.216 mg / kg), which indicates a favorable ecological and epidemiological situation. Hg determinations by low-sensitivity methods can be used only in qualitative assessments of the variability in concentrations of any dangerous toxicant. Finding a reliable amount of Hg in river mouths requires the use of highly sensitive methods of analysis. http://www.transnav.eu the International Journal on Marine Navigation and Safety of Sea Transportation Volume 14
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来源期刊
Geosfernye Issledovaniya-Geosphere Research
Geosfernye Issledovaniya-Geosphere Research GEOSCIENCES, MULTIDISCIPLINARY-
CiteScore
0.40
自引率
25.00%
发文量
11
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