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Hydrochemical characterization of a mine water geothermal energy resource in NW Spain

机译:西班牙西北部矿井水地热能源的水化学特征

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摘要

Abandoned and flooded mine networks provide underground reservoirs of mine water that can be used as a renewable geothermal energy source. A complete hydrochemical characterization of mine water is required to optimally design the geothermal installatioa understand the hydraulic behavior of the water in the reservoir and prevent undesired effects such as pipe clogging via mineral precipitation. Water pumped from the Barredo-Figaredo mining reservoir (Asturias, NW Spain), which is currently exploited for geothermal use, has been studied and compared to water from a separate, nearby mountain mine and a river that receives mine water discharge and partially infiltrates into the mine workings. Although the hydrochemistry was altered during the flooding process, the deep mine waters are currently near neutral, net alkaline, high metal waters of Na-HCO_3 type. Isotopic values suggest that mine waters are closely related to modern meteoric water, and likely correspond to rapid infiltration. Suspended and dissolved solids, and particularly iron content, of mine water results in some scaling and partial clogging of heat exchangers, but water temperature is stable (22 ℃) and increases with depth, so, considering the available flow (>100 L s~(-1)), the Barredo-Figaredo mining reservoir represents a sustainable, long-term resource for geothermal use.
机译:废弃的和充斥的矿山网络提供了地下矿井水库,可用作可再生地热能源。需要对矿井水进行完整的水化学表征,以优化地热设施的设计,以了解储层中水的水力行为,并防止不良影响,例如由于矿物沉淀而造成的管道堵塞。目前已研究了从Barredo-Figaredo矿藏(西班牙西北部阿斯图里亚斯)开采的地热中抽出的水,并将其与附近一个单独的山区矿山和接受矿井水排放并部分渗入的河流的水进行了比较。矿山的运作。尽管在注水过程中水化学发生了变化,但深部矿井水目前接近Na-HCO_3型中性,净碱性,高金属水。同位素值表明矿井水与现代大气水密切相关,并且可能与快速渗透有关。矿井水中悬浮和溶解的固体,特别是铁含量会导致热交换器结垢和部分堵塞,但水温稳定(22℃)并随深度增加,因此,考虑可用流量(> 100 L s〜 (-1)),Barredo-Figaredo矿藏代表了一种可持续的长期地热资源。

著录项

  • 来源
    《The Science of the Total Environment》 |2017年第15期|59-69|共11页
  • 作者单位

    Dep. Explotacion y Prospeccion de Minas, University of Oviedo, Independencia, 13, 33004 Oviedo, Asturias, Spain;

    Dep. Explotacion y Prospeccion de Minas, University of Oviedo, Independencia, 13, 33004 Oviedo, Asturias, Spain;

    Dep. Explotacion y Prospeccion de Minas, University of Oviedo, Independencia, 13, 33004 Oviedo, Asturias, Spain;

    Dep. Explotacion y Prospeccion de Minas, University of Oviedo, Independencia, 13, 33004 Oviedo, Asturias, Spain;

    Dep. Explotacion y Prospeccion de Minas, University of Oviedo, Independencia, 13, 33004 Oviedo, Asturias, Spain;

    Dep. Explotacion y Prospeccion de Minas, University of Oviedo, Independencia, 13, 33004 Oviedo, Asturias, Spain;

    Hulleras del Norte, S. A. (HUNOSA), Avenida de Galicia 44, ES-33005 Oviedo, Spain;

    School of Engineering, University of Glasgow, G12 8QQ, UK;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Geothermal energy; Mine water; Hydrochemistry; Isotopic study; Clogging;

    机译:地热能;矿井水;水化学同位素研究;堵塞;

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