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首页> 外文期刊>International Journal of Agriculture, Environment and Biotechnology >Distribution and Seasonal variation of total metals in surface water of the Tennessee River Basin
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Distribution and Seasonal variation of total metals in surface water of the Tennessee River Basin

机译:田纳西河流域地表水中总金属的分布和季节变化

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摘要

Heavy metals in surface water were measured to determine their distribution and seasonal variation in the Flint Creek and Flint River watersheds. Bi-weekly stream water samples were collected from six selected sites within the watersheds. The sampleswere digested using EPA method SW 846-3015 in a microwave accelerated reaction system (MARS). The targeted elements (Al, Co, Ni, Cu, Fe, Mn, Cd, As, Se, Zn, Pb, and P) were analyzed using ICP-OES. Heavy metal concentrations ranged from undetectable to 123 mu g/l (Pb), 409 mu g/1 (Al), and 453 mu g/1 (Zn). Physical and chemical water quality parameters were also measured. The concentrations for the metals detected were mostly below the EPA guidelines for acceptable concentrations in drinking water; however, exceptions were observed for Al, Pb, Fe and the nutrient phosphorus (P). Results also indicated that the dissolved oxygen (DO) concentrations in three of the sites were very low (< 5 mg/1) and could possibly have an adverse effect on aquatic organisms. All metals were statistically significant (at P < 0.05) by watershed. Patterns observed revealed a steady increment in metal concentrations from upstream to downstream in both watersheds. The seasonal variation was also evident, in that the rivers hadhigher heavy metal content (> 45%) during winter and spring than in summer and fall. These findings suggest that agriculture and past and present land use practices may have had significant impacts on the study areas.
机译:测量了地表水中的重金属,以确定它们在弗林特河和弗林特河流域中的分布和季节变化。每两周从流域内的六个选定地点收集溪流水样。使用EPA方法SW 846-3015在微波加速反应系统(MARS)中消化样品。使用ICP-OES分析了目标元素(Al,Co,Ni,Cu,Fe,Mn,Cd,As,Se,Zn,Pb和P)。重金属的浓度范围从不可检测到123μg / l(Pb),409μg/ 1(Al)和453μg/ 1(Zn)。还测量了物理和化学水质参数。所检测到的金属浓度大多低于EPA准则中饮用水中可接受的浓度;但是,Al,Pb,Fe和营养性磷(P)除外。结果还表明,三个位置的溶解氧(DO)浓度非常低(<5 mg / 1),可能对水生生物产生不利影响。分水岭显示所有金属均具有统计学意义(P <0.05)。观察到的模式表明,在两个流域中,金属浓度从上游到下游稳定增加。季节变化也很明显,因为在冬季和春季,河流中的重金属含量高于夏季和秋季(> 45%)。这些发现表明,农业以及过去和现在的土地使用做法可能会对研究区域产生重大影响。

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