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Research article

A multi-criteria assessment system for the influence of mining on the geological environment: a case study of the Huodong mining area in Shanxi Province, China

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Pages 1-15 | Received 03 Mar 2024, Accepted 10 Jul 2024, Published online: 21 Jul 2024

References

  • Bascetin, A. (2007). A decision support system using analytical hierarchy process (AHP) for the optimal environmental reclamation of an open-pit mine. Environmental Geology, 52(4), 663–672. https://doi.org/10.1007/s00254-006-0495-7
  • Castilla-Gómez, J., & Herrera-Herbert, J. (2015). Environmental analysis of mining operations: Dynamic tools for impact assessment. Minerals Engineering, 76, 87–96. https://doi.org/10.1016/j.mineng.2014.10.024
  • Gao, J., Yao, J., & Chen, L. (2021). The statistical methods of membership function in structural serviceability failure criterion. KSCE Journal of Civil Engineering, 25(11), 4314–4321. https://doi.org/10.1007/s12205-021-2089-z
  • Gebre, S. L., Cattrysse, D., Alemayehu, E., & Orshoven, J. V. (2021). Multi-criteria decision making methods to address rural land allocation problems: A systematic review. International Soil and Water Conservation, 9(4), 490–501. https://doi.org/10.1016/j.iswcr.2021.04.005
  • Gerassis, S., Giráldez, E., Pazo-Rodríguez, M., Saavedra, Á., & Taboada, J. (2021). AI approaches to environmental impact assessments (EIAs) in the mining and metals sector using AutoML and bayesian modeling. Applied Sciences, 11(17), 7914. https://doi.org/10.3390/app11177914
  • GHC. (2022). 14th five-year plan for geo-disaster prevention and control in Huozhou City. http://www.huozhou.gov.cn/zfxxgk/zcwj/bgswj/202212/t20221216_110641.html, accessed on 2024-2-17. (in Chinese.
  • Gorman, M. R., & Dzombak, D. A. (2018). A review of sustainable mining and resource management: Transitioning from the life cycle of the mine to the life cycle of the mineral. Resources, Conservation & Recycling, 137, 281–291. https://doi.org/10.1016/j.resconrec.2018.06.001
  • He, J., Liu, S., Li, W., Qiao, W., Yang, Z., Wang, Q., & Zhang, H. (2021). Operating environment assessment of the coalface in underground coal mining based on analytic hierarchy process (AHP) and matter-element theory (MET). Geofluids, 1–8. https://doi.org/10.1155/2021/9083547
  • Huang, S., Li, X., & Wang, Y. (2012). A new model of geo-environmental impact assessment of mining: a multiple-criteria assessment method integrating fuzzy-AHP with fuzzy synthetic ranking. Environmental Earth Sciences, 66(1), 275–284. https://doi.org/10.1007/s12665-011-1237-z
  • Jia, H., Liu, J., Yin, X., Wang, C., Geng, H., Chi, H., & Tang, S. (2021). Ecological evaluation of the Tongling pyrite mining district in Anhui Province. Earth Science Frontiers, 28(4), 131–141. (in Chinese.
  • Jiang, T., Zhang, R., Zhang, F., Shi, G., & Wang, C. (2023). Assessing provincial coal reliance for just low-carbon transition in China. EIA Review, 102, 107198–107207. https://doi.org/10.1016/j.eiar.2023.107198
  • Lin, S., Xie, J., Deng, J., Qi, M., & Chen, N. (2022). Landform classification based on landform geospatial structure- a case study on loess plateau of China. Int J Digit Earth, 15(1), 1125–1148. https://doi.org/10.1080/17538947.2022.2088874
  • Liu, X., Fu, J., Niu, H., Zhang, H., & Liu, W. (2016). Analysis on changes of land use structure and assessment of landscape comprehensive stability in Yangquan 1st mine. Journal of China Coal Society, 41(3), 719–726. (in Chinese.
  • MNR. (2022). Technical specification for ecological restoration of mines- part 2: Coal mine. http://gi.mnr.gov.cn/202207/t20220725_2742733.html, accessed on 2023-12-31. (in Chinese.
  • Prokopowicz, P., Czerniak, J., Mikołajewski, D., Apiecionek, L., Slezak, D. (2017). Theory and applications of ordered fuzzy number. In J. Kacprzyk Studies in fuzziness and soft computing (p. 322). Springer Charm.
  • Saaty, T. L. (1977). A scaling method for priorities in hierarchical structures. Journal of Mathematical Psychology, 15(3), 234–281. https://doi.org/10.1016/0022-2496(77)90033-5
  • Sadiq, R., & Solomon, T. (2009). Environmental decision-making under uncertainty using intuitionistic fuzzy analytic hierarchy process (IF-AHP). Stochastic Environmental Research and Risk Assessment, 23(1), 75–91. https://doi.org/10.1007/s00477-007-0197-z
  • Shen, L., Jing, G., Zeng, Q., & Cavallaro, F. (2021). Online evaluation method of coal mine comprehensive level based on FCE. PLoS One, 16(8), e0256026. https://doi.org/10.1371/journal.pone.0256026
  • Sun, B., Shao, Y., Gao, Z., Li, J., Sun, B., Yang, M., Zhou, J., Yao, H., Sun, F., & Shao, L. (2022). Coalbed methane enrichment characteristics and exploration target selection in the zhuozishan coalfield of the western ordos basin, China. American Chemical Society Omega, 7(48), 43531–43547. https://doi.org/10.1021/acsomega.2c04141
  • Sun, J., Mou, Z. G., & Zhang, X. (2006). Analysis of the fuzzy reliability in geotechnical engineering based on choosing the membership functions. Geotechnical Engineering Technique, 20(4), 200–207. (in Chinese.
  • Sun, J., Zhang, X., & Mou, Z. G. (2008). Analysis of effect of different membership function on calculation of fuzzy reliability in underground continuous wall. Rock and Soil Mechanics, 29(3), 838–840. (in Chinese.
  • Tavana, M., Soltanifar, M., & Santos-Arteaga, F. J. (2023). Analytical hierarchy process: revolution and evolution. Annals of Operations Research, 326(2), 879–907. https://doi.org/10.1007/s10479-021-04432-2
  • Wan, Y., & Zhao, Q. (2021). Research on ecological environment protection of mining area based on Yangquan No. 3 mine. IOP Conference Series: Earth and Environmental Science, 781(3), 032001. https://doi.org/10.1088/1755-1315/781/3/032001
  • Wang, B. (2019). Geo-environmental quality evaluation based on GIS in Shiyan-Wudang mountain area. International Journal of Environmental Protection and Policy, 7(2), 72–79. https://doi.org/10.11648/j.ijepp.20190702.14
  • Wang, W., Dai, Y., Li, K., Tang, X., & Liu, T. (2018). Development and application of mining methods optimization assistant system based on fuzzy-AHP. Gold Science and Technology, 26(3), 312–317. (in Chinese.
  • Wang, X., Jiao, S., & Wang, A. (2020). Effect of coal resources mining on soil quality evaluation in huodong mining area. Geology of Chemical Minerals, 42(2), 150–154. (in Chinese.
  • Wang, Y., Wu, X., He, S., & Niu, R. (2021). Eco‑environmental assessment model of the mining area in Gongyi, China. Scientific Reports, 11(1), 17549. https://doi.org/10.1038/s41598-021-96625-9
  • Wu, C., Zhang, Y., Zhang, J., Chen, Y., Duan, C., Qi, J., Cheng, Z., & Pan, Z. (2022). Comprehensive evaluation of the Eco-geological environment in the concentrated mining area of mineral resources. Sustainability, 14(11), 6808. https://doi.org/10.3390/su14116808
  • Xi, X., Wang, S., Yao, L., Zhang, Y., Niu, R., & Zhou, Y. (2021). Evaluation on geological environment carrying capacity of mining city – a case study in Huangshi city, Hubei Province, China. International Journal of Applied Earth Observation and Geoinformation, 102, 102410. https://doi.org/10.1016/j.jag.2021.102410
  • Yu, J., Du, S., Xin, Z., Huang, L., & Zhao, J. (2021). Application of a convolutional neural network to land use classification based on GF-2 remote sensing imagery. Arabian Journal of Geosciences, 14(21), 2914. https://doi.org/10.1007/s12517-021-08555-5
  • Zadeh, L. A. (1978). Fuzzy sets as a basis for a theory of possibility. Fuzzy Sets and Systems, 1(1), 3–28. https://doi.org/10.1016/S0165-0114(99)80004-9
  • Zhang, C., Wang, P., Wang, E., Chen, D., & Li, C. (2023). Characteristics of coal resources in China and statistical analysis and preventive measures for coal mine accidents. The International Journal of Coal Science & Technology, 10(1), 22. https://doi.org/10.1007/s40789-023-00582-9
  • Zhang, R., Tian, D., Wang, H., Kang, X., Wang, G., & Xu, L. (2023). Risk assessment of compound dynamic disaster based on AHP-EWM. Applied Sciences, 13(18), 10137. https://doi.org/10.3390/app131810137
  • Zhou, R., & Chan, A. H. S. (2017). Using a fuzzy comprehensive evaluation method to determine product usability: A proposed theoretical framework. WORK-A Journal of Prevention Assessment & Rehabilitation, 56(1), 9–19. https://doi.org/10.3233/WOR-162474