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Assessment of Young Dong tributary and Imgok Creek impacted by Young Dong coal mine, South Korea

机译:韩国Young Dong煤矿对Young Dong支流和Imgok Creek的影响评估

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摘要

An initial reclamation of the Young Dong coal mine site, located in northeastern South Korea, was completed in 1995. Despite the filling of the adit with limestone, acid rock drainage (ARD) enters Young Dong tributary and is then discharged to Imgok Creek. This ARD carries an average of 500 mg CaCO_3/1 of mineral acidity, primarily as Fe(II) and Al. Before spring runoff, the flow of Imgok Creek is 3.3-4 times greater than that of the tributary and has an alkalinity of 100 mg CaCO_3/1, which is sufficient to eliminate the mineral acidity and raise the pH to about 6.5. From April through September 2008, there were at least two periods of high surface flow that affects the flow of ARD from the adit. Flow of ARD reaches 2.8 m~3/min during spring runoff. This raised the concentrations of Fe and Al in the confluence with Imgok Creek. However, by 2 km downstream the pH of the Imgok Creek is 6.5 and only dissolved Fe is above the Korean drinking water criteria (0.30 mg/1). This suggests only a minor impact of Young Dong Creek water on Imgok Creek. Acid digestion of the sediments in Imgok Creek and Young Dong Tributary reveals considerable abundances of heavy metals, which could have a long-term impact on water quality. However, several water-based leaching tests, which better simulate the bioavailable metals pool, released only Al, Fe, Mn, and Zn at concentrations exceeding the criteria for drinking water or aquatic life.
机译:1995年,位于韩国东北部的Young Dong煤矿场进行了初步的填海。尽管平底土填有石灰石,但酸性岩石排泄物(ARD)进入Young Dong支流,然后排入Imgok Creek。该ARD的平均矿物酸度为500 mg CaCO_3 / 1,主要为Fe(II)和Al。在春季径流之前,Imgok Creek的流量是支流的3.3-4倍,并且具有100 mg CaCO_3 / 1的碱度,这足以消除矿物酸度并将pH值提高到6.5。从2008年4月到2008年9月,至少有两个时期的地表高流量影响了从平it到ARD的流量。在春季径流过程中,ARD流量达到2.8 m〜3 / min。这提高了与Imgok Creek汇合处的Fe和Al的浓度。但是,在下游2公里处,伊木克溪(Imgok Creek)的pH值为6.5,只有溶解的铁高于韩国饮用水标准(0.30 mg / 1)。这表明Young Dong Creek水对Imgok Creek的影响很小。对Imgok Creek和Young Dong支流中的沉积物进行酸解后,发现了大量的重金属,这可能对水质产生长期影响。但是,一些更好地模拟生物利用金属池的水基浸出试验仅以超过饮用水或水生生物标准的浓度释放了Al,Fe,Mn和Zn。

著录项

  • 来源
    《Environmental Geochemistry and Health》 |2012年第1期|p.95-103|共9页
  • 作者单位

    Department of Chemistry and Geochemistry,Colorado School of Mines, Golden, CO 80401, USA;

    Department of Chemistry and Geochemistry,Colorado School of Mines, Golden, CO 80401, USA;

    Department of Chemistry and Geochemistry,Colorado School of Mines, Golden, CO 80401, USA;

    Technology Research Center, MIRECO, 30 Chungjin-dong Street, Jongnu-gu, Seoul 110-727, Korea;

    Technology Research Center, MIRECO, 30 Chungjin-dong Street, Jongnu-gu, Seoul 110-727, Korea;

    Technology Research Center, MIRECO, 30 Chungjin-dong Street, Jongnu-gu, Seoul 110-727, Korea;

    Technology Research Center, MIRECO, 30 Chungjin-dong Street, Jongnu-gu, Seoul 110-727, Korea;

    Technology Research Center, MIRECO, 30 Chungjin-dong Street, Jongnu-gu, Seoul 110-727, Korea;

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

    acid rock drainage; water and sediment contamination; sediment extraction; metal bioavailablity assessment;

    机译:酸性岩排水水和沉积物污染;沉淀物提取;金属生物利用度评估;
  • 入库时间 2022-08-17 13:27:52

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