| Literature DB >> 31337104 |
Meichen Wang1,2, Herong Gui3, Rongjie Hu4, Honghai Zhao5, Jun Li6, Hao Yu1,2, Hongxia Fang1,2.
Abstract
The Taiyuan formation limestone water in the Huaibei coalfield is not only the water source for coal mining, but also the water source for industry and agriculture in mining areas. Its hydrogeochemical characteristics and water quality are generally concerning. In this paper, conventional ion tests were carried out on the Taiyuan formation limestone water of 16 coal mines in the Sunan and Linhuan mining areas of the Huaibei coalfield. Piper trigram, Gibbs diagram and an ion scale coefficient map were used to analyze the hydrogeochemical characteristics of the Taiyuan formation limestone water. The water quality was evaluated in a fuzzy comprehensive manner. The results show that the main cation and anion contents in the Taiyuan formation limestone water were Na+ > Mg2+ > Ca2+ > K+, SO42- > HCO3- > Cl-. There were differences in the hydrogeochemical types of the Taiyuan formation limestone water in the two mining areas; HCO3-Na type water was dominant in the Sunan mining area and SO4·Cl-Na type water was dominant in the Linhuan mining area. The chemical composition of the Taiyuan formation limestone water is mainly affected by the weathering of the rock and is related to the dissolution of the evaporated salt and the weathering of the silicate. The fuzzy comprehensive evaluation results show that the V-type water accounts for a large proportion of the Taiyuan formation limestone water in the study area and the water quality is poor. This study provides a basis for the development and utilization of the Taiyuan formation limestone water and water environmental protection in the future.Entities:
Keywords: Huaibei coalfield; Taiyuan formation limestone water; fuzzy comprehensive evaluation; hydrochemical characteristics; water quality type
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Substances:
Year: 2019 PMID: 31337104 PMCID: PMC6678644 DOI: 10.3390/ijerph16142512
Source DB: PubMed Journal: Int J Environ Res Public Health ISSN: 1660-4601 Impact factor: 3.390
Figure 1Geographical location of the Sulin mining area.
Groundwater quality classification based on the Chinese national standard (GB/T 14848-2017). TDS: total dissolved solids.
| Grade | Classification | Parameters (Unit: mg/L) | |||
|---|---|---|---|---|---|
| TDS | Na+ | Cl− | SO42− | ||
| I | Excellent suitable for drinking water | ≤300 | ≤100 | ≤50 | ≤50 |
| II | Good suitable for drinking water | ≤500 | ≤150 | ≤150 | ≤150 |
| III | Moderate suitable for drinking water | ≤1000 | ≤200 | ≤250 | ≤250 |
| IV | Poor suitable for drinking water | ≤2000 | ≤400 | ≤350 | ≤350 |
| V | Unsuitable suitable for drinking water | >2000 | >400 | >350 | >350 |
Statistical characteristics of constant composition of the Taiyuan formation limestone water.C.V:Coefficient of variation.
| Paramaters | Units | Min | Max | Mean | C.V(%) | a | b |
|---|---|---|---|---|---|---|---|
| pH | – | 6.78 | 8.24 | 7.31 | 5.3 | 6.5–8.5 | 6.5–8.5 |
| TDS | mg/L | 327 | 686 | 567.63 | 20.04 | 500 | 1000 |
| Na+ | mg/L | 302.72 | 1872.59 | 667.20 | 47.55 | 200 | 200 |
| K+ | mg/L | 8.92 | 75.69 | 28.44 | 70.46 | 12 | − |
| Mg2+ | mg/L | 6.94 | 339.27 | 114.27 | 75.33 | 50 | − |
| Ca2+ | mg/L | 5.06 | 496.19 | 106.44 | 114.69 | 70 | − |
| Cl− | mg/L | 78.76 | 1285.72 | 326.64 | 93.02 | 250 | 250 |
| SO42− | mg/L | 4.40 | 3736.16 | 1416.64 | 89.06 | 250 | 250 |
| HCO3− | mg/L | 129.97 | 2297.29 | 534.85 | 94.92 | 500 | − |
Note: a: World Health Organization (WHO) guideline value (2011) [23]; b: national standard (GB5749-2006) [24].
Figure 2Variation characteristics of various indicators of the Taiyuan formation limestone water in the study area.
Figure 3SO42− contour map of the Taiyuan formation limestone water in the study area.
Figure 4Piper trigram diamond-shaped hydrogeochemical map.
Figure 5Piper trigram of the Taiyuan formation limestone water constant components in the study area.
Figure 6Gibbs diagram of the Taiyuan formation limestone water in the study area.
Figure 7Diagram of ion combination ratio of the Taiyuan formation limestone water in the study area.
Figure 8Molar ratio diagram of the Taiyuan formation limestone water ions in the study area. (Na+ and Cl− (a), Mg2+ + Ca2+ and HCO3− (b), Ca2+ and Mg2+ (c), Ca2+ and SO42− (d), Mg2+ + Ca2+ and SO42− (e), Mg2+ + Ca2+ and HCO3− + SO42− (f)).
Fuzzy comprehensive evaluation results of the Taiyuan formation limestone water quality in the study area.
| Sample | I | II | III | IV | V | Water Quality Level |
|---|---|---|---|---|---|---|
| S1 | 0 | 0.2422 | 0.1204 | 0 |
| V |
| S2 | 0 | 0.2411 | 0.2719 | 0 |
| V |
| S3 | 0 | 0.2277 | 0.2853 | 0 |
| V |
| S4 | 0 | 0.3276 | 0.1854 | 0 |
| V |
| S5 | 0 | 0.2306 | 0.1320 | 0 |
| V |
| S6 | 0 | 0.0376 |
| 0.2134 | 0.3149 | III |
| S7 | 0 | 0.0812 | 0.3701 | 0.0616 |
| V |
| S8 | 0 | 0.3032 | 0.2360 | 0.1532 |
| V |
| S9 | 0.1849 | 0.2529 |
| 0.1049 | 0.1721 | III |
| S10 | 0.1396 |
| 0.1005 | 0 | 0.1721 | II |
| S11 | 0.0120 | 0.4132 | 0.0877 | 0 |
| V |
| S12 |
| 0.2661 | 0.2274 | 0.0194 | 0.1721 | I |
| S13 | 0 |
| 0.2336 | 0.1229 | 0.3149 | II |
| S14 | 0.0120 | 0.2893 | 0.0847 | 0.3111 |
| V |
| S15 | 0 | 0.3154 | 0.1449 | 0.0527 |
| V |
| S16 |
| 0.0922 | 0.0996 | 0.3874 | 0.0000 | I |
Figure 9Radar chart of fuzzy comprehensive evaluation results.