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Submarine groundwater discharge of rare earth elements to a tidally-mixed estuary in Southern Rhode Island

机译:向南罗得岛州的潮汐混合河口排放稀土元素的海底地下水

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Rare earth element (REE) concentrations were analyzed in surface water and submarine groundwater within the Pettaquamscutt Estuary, located on the western edge of Narragansett Bay in Rhode Island. These water samples were collected along the salinity gradient of the estuary. Rare earth element concentrations in the majority of the groundwater samples are substantially higher than their concentrations in the surface waters. In particular, Nd concentrations in groundwater range from 0.43 nmol kg(-1) up to 198 nmol kg(-1) (mean +/- SD = 42.1 +/- 87.2 nmol kg(-1)), whereas Nd concentrations range between 259 pmol kg(-1) and 649 pmol kg(-1) (mean +/- SD = 421 +/- 149 pmol kg(-1)) in surface waters from the estuary, which is, on average, 100 fold lower than Nd in the groundwaters. Groundwater samples all exhibit broadly similar middle REE (MREE) enriched shale-normalized REE patterns, despite the wide variation in pH of these natural waters (4.87 <= pH <= 8.13). The similarity of the shale-normalized REE patterns across the observed pH range suggests that weathering of accessory minerals, such as apatite, and/or precipitation of LREE enriched secondary phosphate minerals controls groundwater REE concentrations and fractionation patterns. More specifically, geochemical mixing models suggest that the REE fractionation patterns of the surface waters may be controlled by REE phosphate mineral precipitation during the mixing of groundwater and stream water with incoming water from the Rhode Island Sound. The estimated SGD (Submarine Groundwater Discharge) of Nd to the Pettaquamscutt Estuary is 26 +/- 11 mmol Nd day(-1), which is in reasonable agreement with the Nd flux of the primary surface water source to the estuary, the Gilbert Stuart Stream (i.e., 36 mmol day(-1)), and of the same order of magnitude for a site in Florida. (C) 2015 Elsevier B.V. All rights reserved.
机译:在罗德岛纳拉甘西特湾西边缘的Pettaquamscutt河口内的地表水和海底地下水中分析了稀土元素(REE)的浓度。这些水样是沿河口盐度梯度收集的。大多数地下水样品中的稀土元素浓度大大高于地表水中的稀土元素浓度。特别是地下水中Nd的浓度范围从0.43 nmol kg(-1)到198 nmol kg(-1)(平均+/- SD = 42.1 +/- 87.2 nmol kg(-1)),而Nd的浓度范围在河口地表水中的259 pmol kg(-1)和649 pmol kg(-1)(平均+/- SD = 421 +/- 149 pmol kg(-1)),平均比河口低100倍比地下水中的钕尽管这些天然水的pH值变化很大(4.87 <= pH <= 8.13),但地下水样品均显示出与中REE(MREE)富集的页岩标准化REE模式大致相似。在观察到的pH范围内,页岩标准化REE模式的相似性表明,辅助矿物(如磷灰石)的风化和/或富含LREE的二次磷酸盐矿物的沉淀控制着地下水REE浓度和分馏模式。更具体地说,地球化学混合模型表明,在地下水和流水与罗德岛海峡的来水混合过程中,地表水的REE分馏模式可能受到REE磷酸盐矿物沉淀的控制。到Pettaquamscutt河口的Nd的SGD估算值是26 +/- 11 mmol Nd day(-1),这与主要地表水源到河口的Gild Stuart的Nd通量基本一致。流(即36 mmol·day(-1)),并且在佛罗里达州的某个站点具有相同的数量级。 (C)2015 Elsevier B.V.保留所有权利。

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