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Evaluation of the impacts of mine drainage from a coal waste pile on the surrounding environment at Smolnica, southern Poland

机译:评估波兰南部斯莫尔尼察的煤a石排雷对周围环境的影响

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摘要

Mine drainage impacts from a coal waste pile at Smolnica, Poland have been monitored. Groundwater in an unconfined aquifer downgradient from the pile has near-neutral pH, but high concentrations of sulfate (up to 3,827 mg/l), chloride (up to 903 mg/l), and sodium (up to 2,606 mg/l). Concentrations of iron and manganese are elevated only locally, and concentrations of other metals are low. The behavior of sulfate seems to be conservative in the downgradient aquifer, and gypsum may only be precipitating locally. Concentrations of iron and manganese seem to be controlled by the precipitation of ferric oxide and hydroxides and rhodochrosite, respectively. Complete neutralization of mine drainage by carbonates is consistent with high concentrations of calcium (up to 470 mg/l) and magne-rnsium (up to 563 mg/l) and also with high strontium concentrations of up to 3.08 mg/l, observed in groundwater downgradient from the pile. Hydraulic head profiles at two sites within the river bottom sediments indicate upward flow toward the river with large local differences in ground-water recharge. Water chemistry profiles in the river bottom sediments and geochemical modeling suggest conservative behavior of Na, Cl, and SO_4 and precipitation of Fe and Mn at the groundwater/river water interface. Mine drainage enters the Bierawka River and causes increasing sulfate concentrations. In contrast, concentrations of sodium and chloride in the Bierawka River decrease downgradient from the pile because water in the river upgradient from the pile is already highly contaminated by these species from the discharge of mining waters. Concentrations of Fe and Mn in the river water are low, as a consequence of the precipitation of Fe and Mn oxide and hydroxides. Direct geochemical modeling was able to reproduce measured concentrations of conservative species (e.g., Na, Cl, and SO_4), but errors for metals and Ba were relatively large. In addition, calculated P_(CO2) values in the river water are very high, suggesting that equilibrium with atmospheric P_(CO2) and P_(O2) has not been reached, and at least some reactions should be modeled as kinetic processes. High concentrations of Na, Cl, and SO_4 contribute to the contamination of the Odra River, which is joined by the Bierawka River farther downgradient, thus limiting the use of river water for recreation and other purposes.
机译:波兰Smolnica的一个煤waste石堆对矿井排水的影响已得到监测。不受限制的地下含水层中的地下水的pH值接近中性,但高浓度的硫酸盐(最高3,827 mg / l),氯化物(最高903 mg / l)和钠(最高2,606 mg / l)。铁和锰的浓度仅在局部升高,而其他金属的浓度低。在梯度下降的含水层中,硫酸盐的行为似乎是保守的,而石膏可能仅在局部沉淀。铁和锰的浓度似乎分别受三氧化二铁,氢氧化物和菱锰矿的沉淀控制。碳酸盐对矿井排水的完全中和与高浓度钙(最高470 mg / l)和镁镁(最高563 mg / l)以及高锶浓度最高3.08 mg / l一致。地下水从桩上下降。在河底沉积物的两个位置的水力压头剖面表明向上流向河,地下水补给存在较大的局部差异。河底沉积物中的水化学特征和地球化学模型表明Na,Cl和SO_4的保守行为以及在地下水/河流水界面处的Fe和Mn沉淀。矿山的排水进入比拉瓦卡河,并导致硫酸盐浓度增加。相反,比耶拉卡河中钠和氯化物的浓度从桩上下降而下降,因为从桩上河上上升的河中的水已经被排泄的矿物质高度污染。由于铁和锰的氧化物和氢氧化物的沉淀,河水中的铁和锰的浓度很低。直接地球化学建模能够重现所测量的保守物种浓度(例如,Na,Cl和SO_4),但金属和Ba的误差相对较大。此外,计算得出的河水中P_(CO2)值非常高,表明尚未达到与大气P_(CO2)和P_(O2)的平衡,并且至少应将某些反应建模为动力学过程。高浓度的Na,Cl和SO_4导致了Odra河的污染,而Bierawka河则进一步降低了其污染程度,从而限制了河水用于娱乐和其他用途。

著录项

  • 来源
    《Environmental Monitoring and Assessment》 |2010年第4期|233-254|共22页
  • 作者单位

    OPV s.r.o. (Protection of Groundwater Ltd), Belohorska 31,169 00 Prague, Czech Republic Institute of Geological Sciences, Faculty of Science, Masaryk University, Kotlarska 2, 611 37 Brno, Czech Republic;

    rnCentral Mining Institute (GIG), Plac Gwarkow, 40-166 Katowice, Poland;

    rnCentral Mining Institute (GIG), Plac Gwarkow, 40-166 Katowice, Poland;

    rnCentral Mining Institute (GIG), Plac Gwarkow, 40-166 Katowice, Poland;

    rnCentral Mining Institute (GIG), Plac Gwarkow, 40-166 Katowice, Poland;

    rnCentral Mining Institute (GIG), Plac Gwarkow, 40-166 Katowice, Poland;

    rnCentral Mining Institute (GIG), Plac Gwarkow, 40-166 Katowice, Poland;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    coal waste pile; mine drainage; river sediments; river contamination; equilibration with atmosphere;

    机译:煤waste石矿井排水河流沉积物河流污染;与大气平衡;

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