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New perspectives on the passive treatment of ferruginous circumneutral mine waters in the UK

机译:英国含铁矿山矿井水被动处理的新观点

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This paper examines major physico-chemical processes during the passive treatment of ferruginous circumneutral drainage from abandoned coal mines in the UK. Data collected over several years of studies on mine water treatment systems shed new light on the relative importance of hydraulics, settling velocity, Fe(II) oxidation rates and cascade aeration, which, in turn, informs the design of future systems. This paper demonstrates that (1) the complex settling behaviour of Fe(III) precipitates may be described by a first-order volumetric process and that settling rate is different for different mine waters; (2) the hydraulic efficiency (ratio of time to peak tracer concentration to nominal residence time) of the settling ponds studied was widely variable at low flow rates in comparison to constructed wetlands; (3) aeration cascades contribute dissolved oxygen and lead to a rise in pH due to CO_2 degassing, which are very important in reducing the required time for iron oxidation and removal; (4) for at least 10 of the 30 sites examined, modelling of the rates of Fe(II) oxidation and particulate settling reveals that removal of iron is primarily dependent on settling rate; and (5) that substantial increases in pH can be brought about by forced aeration of mine water over several hours. Findings of this study apply to the majority of coal mine water treatment sites in the UK and may have broader application to other ferruginous waters with circumneutral pH or after treatment to increase pH.
机译:本文研究了英国废弃煤矿中铁质环境中性排水的被动处理过程中的主要理化过程。几年来关于矿井水处理系统研究的数据为水力学,沉降速度,Fe(II)氧化速率和级联曝气的相对重要性提供了新的启示,从而为将来的系统设计提供了依据。本文证明:(1)Fe(III)沉淀物的复杂沉降行为可以通过一级体积过程来描述,并且不同矿井水的沉降速率不同; (2)与人工湿地相比,所研究的沉降池的水力效率(示踪剂浓度达到峰值的时间与标称停留时间的比率)在低流量下变化很大。 (3)曝气叶栅有助于溶解氧并由于CO_2脱气而导致pH升高,这对于减少铁的氧化和去除所需的时间非常重要; (4)在所检查的30个地点中,至少有10个地点对Fe(II)氧化和颗粒沉降速率的建模显示,铁的去除主要取决于沉降速率; (5)矿井水经过数小时的强制通气可以使pH值大量增加。这项研究的结果适用于英国的大多数煤矿水处理厂,并且可能更广泛地应用于其他具有周围pH值或经过增加pH值处理的含铁水。

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