首页> 外文期刊>Journal of Environmental Science and Health. A, Toxic/Hazardous Substances & Environmental Engineering >Total Hg, methyl Hg and other toxic heavy metals in a northern Gulf of Mexico estuary: Louisiana Pontchartrain basin
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Total Hg, methyl Hg and other toxic heavy metals in a northern Gulf of Mexico estuary: Louisiana Pontchartrain basin

机译:墨西哥湾北部河口的总汞,甲基汞和其他有毒重金属:路易斯安那州庞恰特雷恩盆地

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Concentration of total Hg, methyl Hg, and other heavy metals were determined in sediment collected along a salinity gradient in a Louisiana Gulf Coast estuary. Surface sediment was collected at established coordinates (n = 292) along a salinity gradient covering Lake Maurepas, Lake Pontchartrain, Lake Borgne and the Chandeleur Sound located in the 12,170 km~2 Pontchartrain basin estuary southeastern coastal Louisiana. Lake Maurepas sediment with lower salinity contained higher levels of methyl Hg (0.80 μg/kg) than Lake Pontchartrain (0.55 μg/kg). Lake Maurepas sediment also had higher levels of total Hg (98.0 μg/kg) as compared to Lake Pontchartrain (67.0 μg/kg). Average total Hg content of Lake Borgne and the Chandeleur Sound sediment was 24.0 μg/kg dry sediment and methyl Hg content averaged 0.21 μg/kg dry sediment. Methyl Hg content of sediment was positively correlated with total Hg, organic matter and clay content of sediment. Methyl Hg was inversely correlated with salinity, sediment Eh and sand content. Total Hg and methyl Hg decreased with increase in salinity in the order of Lake Maurepas >Lake Pontchartrain>Lake Borgne/ the Chandeleur Sound. Lake Maurepas containing several times higher amount of methyl Hg in sediment as compared to Lake Pontchartrain and Lake Borgne and the Chandeleur Sound is an area that could serve as potential source of mercury to the aquatic food chain. Methyl Hg content of sediment in the estuary could be predicted by the equation: Methyl Hg = 0.11670-0.0625 × Salinity + 0.05349 × O.M. + 0.00513 × Total Hg - 0.00250 × Clay. Concentrations of other toxic heavy metals (Pb, Cd, Ni, Cu and Zn) in sediment were not elevated and was statistically correlated with sediment texture and iron and aluminum content of sediment.
机译:在路易斯安那州墨西哥湾沿岸河口沿盐度梯度收集的沉积物中测定了总汞,甲基汞和其他重金属的浓度。沿盐度梯度沿已建立的坐标(n = 292)收集地表沉积物,该盐度梯度覆盖了位于路易斯安那州东南沿海12170 km〜2 Pontchartrain盆地河口的Maurepas湖,Pontchartrain湖,Borgne湖和Chandeleur Sound。盐度较低的莫雷帕斯湖沉积物中的甲基汞含量(0.80μg/ kg)比庞恰特雷恩湖(0.55μg/ kg)高。与蓬查特雷恩湖(67.0μg/ kg)相比,莫里帕斯湖沉积物的总汞(98.0μg/ kg)也较高。博恩湖和钱德勒峡湾沉积物的平均总Hg含量为24.0μg/ kg干沉积物,甲基Hg含量平均为0.21μg/ kg干沉积物。沉积物中甲基汞含量与沉积物中总汞,有机质和粘土含量呈正相关。甲基汞与盐度,沉积物Eh和含沙量成反比。随着盐度的增加,总汞和甲基汞的含量依次下降,依次为毛里帕斯湖>庞恰特雷恩湖>博恩湖/钱德勒峡湾。毛雷帕斯湖的沉积物中甲基汞的含量是庞恰特雷恩湖和博格纳湖的几倍,而钱德勒海峡则可能成为水生食物链中汞的潜在来源。河口沉积物的甲基汞含量可通过以下公式预测:甲基汞= 0.11670-0.0625×盐度+ 0.05349×O.M。 + 0.00513×总汞-0.00250×粘土沉积物中其他有毒重金属(Pb,Cd,Ni,Cu和Zn)的浓度并未升高,并且与沉积物质地和沉积物中的铁和铝含量在统计上相关。

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