Department of Water, Mining and Environment, Scientific and Technological Center of Huelva, University of Huelva, 21007 Huelva, Spain.
Sustainable Mining Engineering Research Group, Department of Mining, Mechanic, Energetic and Construction Engineering, Higher Technical School of Engineering, University of Huelva, 21007 Huelva, Spain.
Int J Environ Res Public Health. 2021 Apr 28;18(9):4693. doi: 10.3390/ijerph18094693.
The Odiel River Basin, located in the Iberian Pyrite Belt (IPB), is heavily affected by acid mine drainage (AMD), which occurs when pyritic minerals from sulfide mining areas are exposed to atmospheric, hydrological or biological weathering. This paper presents a hydrochemical characterization of parameters in the Odiel River Basin by means of Fuzzy Logic and data mining methodologies to determine the seasonal influence of AMD in polluted waters that have not been used before for a basin in this environmental area. This technique was proven to be effective, providing results that could not be achieved by using classic statistics, because it allows us to characterize the different parameters separately and also their relationships in waters affected by AMD in a qualitative manner based on the antecedents and according to the conditions (rules) imposed by the consequents (in this case, the Fe(II) and accumulated rainfall over 30 days). Thus, it was possible to confirm that hydrochemistry is greatly affected by seasonal changes, with a higher pH in the wet season (up to 8.59) compared to 2.12, the minimum pH value reached in the dry season. Accordingly, higher concentrations of most of the metals were observed in the dry season (e.g., up to 4000 mg/L of Fe (II)), with the exception of the values found after the first rains that occur in the early fall. With the use of the Fuzzy Logic technique, it was observed that, during the wet season, lixiviates with a higher Fe content have higher metal concentrations, and in the dry season, the behavior is the opposite.
奥德耶尔河流域位于伊比利亚黄铁矿带(IPB),深受酸性矿山排水(AMD)的影响,当硫化物矿区的黄铁矿矿物暴露于大气、水文或生物风化时,就会发生 AMD。本文通过模糊逻辑和数据挖掘方法对奥德耶尔河流域的参数进行了水化学特征描述,以确定 AMD 对受污染水体的季节性影响,这些水体以前从未在该环境区域的流域中使用过。该技术已被证明是有效的,提供了经典统计学无法实现的结果,因为它允许我们以定性的方式分别描述不同参数及其在受 AMD 影响的水中的关系,基于前因,并根据后果(在这种情况下,Fe(II)和 30 天内累计的降雨量)规定的条件(规则)。因此,我们可以确认水化学受到季节性变化的极大影响,雨季的 pH 值较高(高达 8.59),而旱季的最低 pH 值为 2.12。相应地,在旱季观察到大多数金属的浓度更高(例如,Fe(II)的浓度高达 4000 mg/L),除了在初秋发生的第一场雨后发现的浓度。使用模糊逻辑技术观察到,在雨季,含较高 Fe 含量的浸出液具有较高的金属浓度,而在旱季,情况则相反。