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首页> 外文期刊>Environmental Geology >Diurnal variations in, and influences on, concentrations of participate and dissolved arsenic and metals in the mildly alkaline Wallkill River, New Jersey, USA
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Diurnal variations in, and influences on, concentrations of participate and dissolved arsenic and metals in the mildly alkaline Wallkill River, New Jersey, USA

机译:美国新泽西州温和碱性的沃基尔河中参与和溶解的砷和金属的浓度的日变化及其影响

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Diurnal variations in particulate and dissolved As and metal concentrations were observed in mildly alkaline water from a wetlands site on the Wallkill River in northwestern New Jersey. The site, underlain by glacial sediments over dolomite bedrock, is 10 km downstream from a mined area of the Franklin Marble, host to Zn ores, also As and Mn minerals. In mid-September 2005, maxima and minima in dissolved-oxygen-concentration and pH, typically caused by photosynthesis and respiration, occurred at 2000 and 0800 hours. Concentrations of dissolved As (1.52-1.95 μg/L) peaked at dusk (2000 hours), whereas dissolved Mn and Zn concentrations (76.5-96.9 and 8.55-12.8 μg/L, respectively) were lowest at dusk and peaked at 1000 hours. These opposing cycles probably reflect sorption and desorption of As (an anion), and Mn and Zn (cations) as pH varied throughout the 24-h period. Doubly-peaked cycles of B, Cl, SO_4, and nutrients also were observed; these may result from upstream discharges of septic-system effluent. Both recoverable amd particulate Al, Fe, Mn, and Zn concentrations peaked between 0200 and 0600 hours. The particulate metals cycle, with perturbations at 0400 hours, may be influenced by biological activity.
机译:在新泽西州西北部的沃尔基尔河湿地上的轻度碱性水中观察到颗粒,溶解态砷和金属浓度的日变化。该矿床位于白云岩基岩上的冰川沉积物之下,位于富兰克林大理石矿区的下游10公里处,该矿床是锌矿石,砷和锰矿物的寄主。 2005年9月中旬,通常由光合作用和呼吸作用引起的溶解氧浓度和pH的最大值和最小值分别在2000和0800小时出现。溶解态砷的浓度(1.52-1.95μg/ L)在黄昏时(2000小时)达到峰值,而溶解态锰和锌的浓度(分别为76.5-96.9和8.55-12.8μg/ L)在黄昏时最低,在1000小时时达到峰值。这些相反的循环可能反映了随着24小时内pH值的变化,As(一种阴离子)以及Mn和Zn(阳离子)的吸附和解吸。还观察到了B,Cl,SO_4和养分的双峰周期。这些可能是化粪池系统废水向上游排放的结果。可回收的微量颗粒Al,Fe,Mn和Zn浓度在0200至0600小时之间达到峰值。金属颗粒循环(在0400小时处有扰动)可能会受到生物活性的影响。

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