首页> 外文期刊>Chemical geology >Diel cycles in dissolved barium, lead, iron, vanadium, and nitrite in a stream draining a former zinc smelter site near Hegeler, Illinois
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Diel cycles in dissolved barium, lead, iron, vanadium, and nitrite in a stream draining a former zinc smelter site near Hegeler, Illinois

机译:Diel在溶解的钡,铅,铁,钒和亚硝酸盐中的Diel循环中排出了伊利诺伊州黑格尔附近的一个以前的锌冶炼厂站点

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Diel variations in the concentrations of a number of constituents have the potential to substantially affect the appropriate sampling regimen in acidic streams. Samples taken once during the course of the day cannot adequately reflect diel variations in water quality and may result in an inaccurate understanding of biogeochemical processes, ecological conditions, and of the threat posed by the water to human health and the associated wildlife. Surface water and groundwater affected by acid drainage were sampled every 60 to 90. min over a 48-hour period at a former zinc smelter known as the Hegeler Zinc Superfund Site, near Hegeler, Illinois. Diel variations related to water quality in the aquifer were not observed in groundwater. Diel variations were observed in the temperature, pH, and concentration of dissolved oxygen, nitrite, barium, iron, lead, vanadium, and possibly uranium in surface water. Temperature, dissolved oxygen, nitrite, barium, lead, and uranium generally attained maximum values during the afternoon and minimum values during the night. Iron, vanadium, and pH generally attained minimum values during the afternoon and maximum values during the night. Concentrations of dissolved oxygen were affected by the intensity of photosynthetic activity and respiration, which are dependent upon insolation. Nitrite, an intermediary in many nitrogen reactions, may have been formed by the oxidation of ammonium by dissolved oxygen and converted to other nitrogen species as part of the decomposition of organic matter. The timing of the pH cycles was distinctly different from the cycles found in Midwestern alkaline streams and likely was the result of the photoreduction of Fe~(3+) to Fe ~(2+) and variations in the intensity of precipitation of hydrous ferric oxide minerals. Diel cycles of iron and vanadium also were primarily the result of variations in the intensity of precipitation of hydrous ferric oxide minerals. The diel variation in the concentrations of lead, uranium, and barium may have been affected by competition with Fe~(+2) for sorption sites on hydrous ferric oxide minerals.
机译:多种成分浓度的Diel变化可能会实质性影响酸性流中的适当采样方案。在一天中的一次采样中,不能充分反映出水质的变化,并可能导致对生物地球化学过程,生态条件以及水对人类健康和相关野生生物构成的威胁的不正确理解。在48小时内,每60到90分钟对地表水和受酸排泄影响的地下水在伊利诺伊州黑格尔附近的一个以前的锌冶炼厂(称为黑格尔锌超级基金站点)进行采样。在地下水中未观察到与含水层水质相关的狄尔变化。在温度,pH值以及地表水中溶解氧,亚硝酸盐,钡,铁,铅,钒以及可能的铀浓度中观察到狄尔变化。温度,溶解氧,亚硝酸盐,钡,铅和铀通常在下午达到最大值,在晚上达到最小值。铁,钒和pH通常在下午达到最小值,在晚上达到最大值。溶解氧的浓度受光合活性和呼吸强度的影响,而光合活性和呼吸强度取决于日照。亚硝酸盐是许多氮反应中的一种中间体,它可能是由于铵被溶解的氧氧化而形成的,并作为有机物分解的一部分转化为其他氮。 pH循环的时机与中西部碱性流中的循环明显不同,可能是Fe〜(3+)还原为Fe〜(2+)以及水合三氧化二铁沉淀强度变化的结果。矿物质。铁和钒的迪尔循环也主要是含水三氧化二铁矿物沉淀强度变化的结果。铅,铀和钡浓度的diel变化可能受与Fe〜(+2)竞争在含水三氧化二铁矿物上吸附位点的影响。

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