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首页> 外文期刊>Marine Chemistry >Analytical and thermodynamical approach to understand the mobility/retention of arsenic species from the river to the estuary. The Bilbao case study
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Analytical and thermodynamical approach to understand the mobility/retention of arsenic species from the river to the estuary. The Bilbao case study

机译:运用分析和热力学方法来了解砷物种从河流到河口的迁移/保留。毕尔巴鄂案例研究

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摘要

Thermodynamical speciation and mobilization experiments were used, for the first time, to understand arsenic behavior in estuarine conditions (Bilbao estuary, north of Spain). Natural waters were used as the chemical extractant in the mobilization/ retention studies. Variables that define each sampling point were measured: pH, ionic strength, conductivity, pE or As, Ca, Mg and Fe total concentrations in both natural waters and sediments (ICP-OES, HG-AAS or ET-AAS). Modeling inorganic arsenic distribution was performed for the given natural conditions of each sampling point. For that, a theoretical thermodynamic model of inorganic arsenic, defining the acid-base, complexation, precipitation and redox equilibria, together with the Modified Bromley's Methodology (MBM) for activity coefficients estimation, was used. The predictions were also confirmed by Raman spectroscopy measurements of the estuarine sediments. The influence of the tides was considered in the estuary. During low tides, the medium conditions led to significant retention of inorganic arsenic but mobilization was found as the main process in high tidal conditions, being salinity, Mg~(2+) and Ca~(2+) concentrations as the key factors that control the arsenate distribution in estuary conditions.
机译:第一次使用热力学形态学和动员实验来了解河口条件下的砷行为(西班牙北部的毕尔巴鄂河口)。在动员/保留研究中,天然水被用作化学提取剂。测量了定义每个采样点的变量:pH,离子强度,电导率,pE或As,天然水和沉积物中的Ca,Mg和Fe的总浓度(ICP-OES,HG-AAS或ET-AAS)。对于每个采样点的给定自然条件,对无机砷分布进行了建模。为此,使用了无机砷的理论热力学模型,该模型定义了酸碱,络合,沉淀和氧化还原平衡,并使用修正的布罗姆利方法(MBM)进行活性系数估算。这些预测还通过河口沉积物的拉曼光谱测量得到了证实。在河口考虑了潮汐的影响。在退潮期间,中等条件导致无机砷大量滞留,但在高潮条件下动员是主要的过程,盐分,Mg〜(2+)和Ca〜(2+)浓度是控制潮汐的主要因素。河口条件下的砷分布。

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