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Evaluating salinity sources of groundwater and implications for sustainable reverse osmosis desalination in coastal North Carolina, USA

机译:评估美国北卡罗来纳州沿海地下水的盐度来源及其对可持续反渗透海水淡化的影响

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摘要

The natural and pumping-induced controls on groundwater salinization in the coastal aquifers of North Carolina, USA, and the implications for the performance of a reverse osmosis (RO) desalination plant have been investigated. Since installation of the well field in the Yorktown aquifer in Kill Devil Hills of Dare County during the late 1980s, the groundwater level has declined and salinity of groundwater has increased from ∼1,000 to ∼2,500 mg/L. Geochemical and boron isotope analyses suggest that the salinity increase is derived from an upflow of underlying saline groundwater and not from modern seawater intrusion. In the groundwater of four wells supplying the plant, elevated boron and arsenic concentrations were observed (1.3–1.4 mg/L and 8–53 μg/L, respectively). Major ions are effectively rejected by the RO membrane (96–99% removal), while boron and arsenic are not removed as effectively (16–42% and 54–75%, respectively). In coming decades, the expected rise of salinity will be associated with higher boron content in the groundwater and consequently also in the RO-produced water. In contrast, there is no expectation of an increase in the arsenic content of the salinized groundwater due to the lack of increase of arsenic with depth and salinity in Yorktown aquifer groundwater.
机译:研究了美国北卡罗来纳州沿海含水层中地下水盐渍化的自然控制和抽水诱导控制,以及其对反渗透(RO)海水淡化厂性能的影响。自从1980年代后期在Dare县Kill Devil Hills的Yorktown含水层中安装井场以来,地下水水位下降,地下水盐度从约1,000 mg / L增加到约2500 mg / L。地球化学和硼同位素分析表明,盐度的增加是由于下层盐碱地下水的上升,而不是由于现代海水的入侵。在供应植物的四口井的地下水中,观察到硼和砷浓度升高(分别为1.3–1.4 mg / L和8–53μg/ L)。主要离子被反渗透膜有效地去除(去除率达96–99%),而硼和砷的去除效果却差强人意(分别去除了16–42%和54–75%)。在未来几十年中,盐度的预期上升将与地下水中以及因此在反渗透生产的水中含硼量更高有关。相反,由于在约克镇含水层地下水中缺乏随深度和盐度增加的砷,因此没有期望盐化地下水的砷含量增加。

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