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首页> 外文期刊>Mine water and the environment >Downflow Limestone Beds for Treatment of Net-Acidic, Oxic, Iron-Laden Drainage from a Flooded Anthracite Mine, Pennsylvania, USA: 1. Field Evaluation
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Downflow Limestone Beds for Treatment of Net-Acidic, Oxic, Iron-Laden Drainage from a Flooded Anthracite Mine, Pennsylvania, USA: 1. Field Evaluation

机译:向下流灰岩床,用于处理美国宾夕法尼亚州淹没的无烟煤矿中的净酸性,含氧铁矿物质:1.现场评估

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Passive-treatment systems that route acidic mine drainage (AMD) through crushed limestone and/or organic-rich substrates have been used to remove the acidity and metals from various AMD sources, with a wide range of effects. This study evaluates treatment of net-acidic, oxic, iron-laden AMD with limestone alone, and with organic-rich compost layered with the limestone. In the fall of 2003, a treatment system consisting of two parallel, 500-m2 downflow cells followed by a 400-m2 aerobic settling pond and wetland was installed to neutralize the AMD from the Bell Mine, a large source of AMD and basefiow to the Schuylkill River in the Southern Anthracite Coalfield, in east-central Pennsylvania. Each downflow cell consisted of a lower substrate layer of 1,090 metric tons (t) of dolomitic limestone (60 wt% CaCo_3) and an upper layer of 300 t of calcitic limestone (95 wt% CaCo_3); one of the downflow cells also included a 0.3 m thick layer of mushroom compost over the limestone. AMD with pH of 3.5-4.3, dissolved oxygen of 6.6-9.9 mg/L, iron of 1.9-5.4 mg/L, and aluminum of 0.8-1.9 mg/L flooded each cell to a depth 0.65 m above the treatment substrates, percolated through the substrates to underlying, perforated outflow pipes, and then flowed through the aerobic pond and wetland before discharging to the Schuylkill River. Data on the flow rates and chemistry of the effluent for the treatment system indicated substantial neutralization by the calcitic limestone but only marginal effects from the dolomitic limestone or compost. Because of its higher transmissivity, the treatment cell containing only limestone neutralized greater quantities of acidity than the cell containing compost and limestone. Onrnaverage, the treatment system removed 62% of the influent acidity, 47% of the dissolved iron, 34% of the dissolved aluminum, and 8% of the dissolved manganese. Prior to treatment of the Bell Discharge, the Schuylkill River immediately below its confluence with the discharge had pH as low as 4.1 and supported few, if any, fish. However, within the first year of treatment, the pH was maintained at values of 5.0 or greater and native brook trout were documented immediately below the treatment system, though not above.
机译:可以通过破碎的石灰石和/或富含有机物的底物引导酸性矿井排水(AMD)的被动处理系统用于去除多种AMD来源的酸度和金属。这项研究评估了仅用石灰石和富含有机堆肥的石灰石处理酸性,含氧,铁含量高的AMD的方法。在2003年秋季,安装了一个处理系统,该系统由两个平行的500平方米的向下流动池,然后一个400平方米的好氧沉降池和湿地组成,以中和贝尔矿的AMD,该矿是AMD的主要来源,而基地流向宾夕法尼亚州中东部南部无烟煤煤田的Schuylkill河。每个下流池由一个下部基材层(1,090公吨)的白云质石灰石(60 wt%CaCo_3)和一个上层物质300 t的钙质石灰石(95 wt%CaCo_3)组成;其中一个向下流动的小室还包括一层石灰岩上方0.3 m厚的蘑菇堆肥。 pH值为3.5-4.3,溶解氧为6.6-9.9 mg / L,铁为1.9-5.4 mg / L,铝为0.8-1.9 mg / L的AMD渗入每个池中,渗透至处理底物上方0.65 m的深度,通过底物到下面的穿孔的出水管,然后流过好氧池和湿地,然后排入Schuylkill河。有关处理系统的流出物的流速和化学数据表明,钙质石灰石可进行中和,但白云质石灰石或堆肥仅产生少量影响。由于其较高的透射率,仅包含石灰石的处理池比包含堆肥和石灰石的池中和了更多的酸度。平均而言,处理系统去除了62%的进水酸度,47%的溶解铁,34%的溶解铝和8%的溶解锰。在处理贝尔泄洪之前,紧靠泄洪汇流处的斯库尔基尔河的pH值低至4.1,几乎没有养鱼。但是,在治疗的第一年内,pH值保持在5.0或更高,并且据记录,在处理系统的正下方(而非较高)记录了天然河鳟。

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