56
Views
0
CrossRef citations to date
0
Altmetric
Research Article

Comparative study of chemical speciation and leaching feature of typical heavy metals in coarse and fine slags from the entrained-flow coal gasification

, , , , &
Pages 3918-3929 | Received 22 Sep 2023, Accepted 24 Feb 2024, Published online: 13 Mar 2024

References

  • Arı, A., P. E. Arı, and E. O. Gaga. 2020. Chemical characterization of size-segregated particulate matter (PM) by inductively coupled plasma-tandem mass spectrometry (ICP-MS/MS). Talanta 208:120350. doi:10.1016/j.talanta.2019.120350.
  • Bunt, J. R., and F. B. Waanders. 2008. Trace element behaviour in the sasol-lurgi MK IV FBDB gasifier. Part 1-the volatile elements: Hg, As, Se, Cd and Pb. Fuel 87 (12):2374–87. doi:10.1016/j.fuel.2008.01.017.
  • Chen, B. W., Z. Xiong, Y. C. Zhao, and J. Y. Zhang. 2023. Migration pattern and solidification treatment technology of heavy metals in coal gasification slag: A review. Clean Coal Technology 29 (7):173–88.
  • Chinese Standard GB 15618-2018. 2018. Soil environmental quality - risk control standard for soil contamination of agricultural land.
  • Chinese Standard GB 20426-2006. 2006. Emission standard for pollutants from coal industry.
  • Chinese Standard GB 3838-2002. 2002. Environmental quality standards for surface water.
  • Chinese Standard GB/T 14848-2017. 2017. Standards for groundwater quality.
  • Chinese Standard HJ 577-2009. 2009. Solid waste-extraction procedure for leaching toxicity-horizontal vibration method.
  • Dai, Z. J., L. L. Wang, H. Tang, Z. J. Sun, W. Liu, Y. Sun, S. Su, S. Hu, Y. Wang, K. Xu, et al. 2018. Speciation analysis and leaching behaviors of selected trace elements in spent SCR catalyst. Chemosphere 207:440–48. doi:10.1016/j.chemosphere.2018.05.119.
  • Du, M. J., H. Liu, D. H. Hu, J. J. Huang, Z. Y. Liu, and Y. T. Fang. 2020. The leaching mechanism of heavy metals (ni, cd, as) in a gasification slag during acidification. Waste Management 114:17–24. doi:10.1016/j.wasman.2020.06.029.
  • Finkelman, R. B., C. A. Palmer, and P. P. Wang. 2018. Quantification of the modes of occurrence of 42 elements in coal. International Journal of Coal Geology 185:138–160. doi:10.1016/j.coal.2017.09.005.
  • Fu, B., J. C. Hower, S. F. Dai, S. M. Mardon, and G. J. Liu. 2018. Determination of chemical speciation of arsenic and selenium in high-as coal combustion ash by X-ray photoelectron spectroscopy: Examples from a Kentucky stoker ash. American Chemical Society Omega 3 (12):17637–17645. doi:10.1021/acsomega.8b02929.
  • Guo, F. H., Y. Guo, L. Q. Chen, W. K. Jia, Y. K. Zhu, Y. Li, H. G. Wang, X. H. Yao, Y. X. Zhang, and J. J. Wu. 2023. Multitudinous components recovery, heavy metals evolution and environmental impact of coal gasification slag: A review. Chemosphere 338:139473. doi:10.1016/j.chemosphere.2023.139473.
  • Guo, Y., H. C. Li, G. F. Qiu, Y. Li, Y. J. Niu, J. Xu, W. K. Jia, Y. X. Zhang, J. J. Wu, and F. H. Guo. 2023. Processing of coal gasification fine slag by different physical separation methods: Fate of typical heavy metals and comparison analysis on products. Separation and Purification Technology 306:122675. doi:10.1016/j.seppur.2022.122675.
  • Guo, Y., C. F. Ma, Y. X. Zhang, L. Zhou, Z. K. Guo, Z. K. Miao, X. Zhao, J. J. Wu, and F. H. Guo. 2022. Comparative study on the structure characteristics, combustion reactivity, and potential environmental impacts of coal gasification fine slag with different particle size fractions. Fuel 311:122493. doi:10.1016/j.fuel.2021.122493.
  • Guo, Y., Y. X. Zhang, X. Zhao, J. Xu, G. F. Qiu, W. K. Jia, J. J. Wu, and F. H. Guo. 2022. Multifaceted evaluation of distribution, occurrence, and leaching features of typical heavy metals in different-sized coal gasification fine slag from Ningdong region, China: A case study. Science of the Total Environment 831:154726. doi:10.1016/j.scitotenv.2022.154726.
  • Han, D. M., L. W. Xu, Q. R. Wu, S. X. Wang, L. Duan, M. N. Wen, Z. J. Li, Y. Tang, G. L. Li, and K. Y. Liu. 2021. Potential environmental risk of trace elements in fly ash and gypsum from ultra–low emission coal–fired power plants in China. Science of the Total Environment 798:149116. doi:10.1016/j.scitotenv.2021.149116.
  • Hao, Y., Q. Li, Y. Pan, Z. X. Liu, S. M. Wu, Y. B. Xu, and G. R. Qian. 2017. Heavy metals distribution characteristics of FGD gypsum samples from Shanxi province 12 coal-fired power plants and its potential environmental impacts. Fuel 209:238–245. doi:10.1016/j.fuel.2017.07.094.
  • Huggins, F. E., L. B. A. Seidu, N. Shah, G. P. Huffman, R. Q. Honaker, J. R. Kyger, B. L. Higgins, J. D. Robertson, S. Pal, and M. S. Seehra. 2009. Elemental modes of occurrence in an Illinois #6 coal and fractions prepared by physical separation techniques at a coal preparation plant. International Journal of Coal Geology 78 (1):65–76. doi:10.1016/j.coal.2008.10.002.
  • Izquierdo, M., and X. Querol. 2012. Leaching behaviour of elements from coal combustion fly ash: An overview. International Journal of Coal Geology 94:54–66. doi:10.1016/j.coal.2011.10.006.
  • Jiang, P., C. R. Xie, C. L. Luo, W. Meng, G. Yang, G. S. Yu, Y. Gong, M. H. Xu, and T. Wu. 2021. Distribution and modes of occurrence of heavy metals in opposed multi-burner coal-water-slurry gasification plants. Fuel 303:121163. doi:10.1016/j.fuel.2021.121163.
  • Liu, J. L., H. B. He, Y. M. Chen, X. T. Sun, J. X. Zheng, S. S. Yang, and J. L. Jia. 2017. Leaching behavior of heavy metals in coal gasification residuals. Polish Journal of Environmental Studies 26 (5):2067–2073. doi:10.15244/pjoes/69438.
  • Lyu, F. Y., M. Chu, Y. F. Yuan, X. B. Sun, Y. Y. Liu, and H. Y. Wang. 2022. Comparative study on removal of Pb2+ from simulated wastewater by high calcium coal gasification slag and coal combustion slag. Coal Conversion 45:46–53.
  • Niu, M. F., Y. G. Fu, and S. Q. Liu. 2021. Distribution and leachability of hazardous trace elements in Lurgi gasification ash from a coal - to - SNG plant. Journal of the Energy Institute 98:223–233. doi:10.1016/j.joei.2021.06.016.
  • Pan, C. C., Q. F. Liang, X. L. Guo, Z. H. Dai, H. F. Liu, and X. Gong. 2016. Characteristics of different sized slag particles from entrained-flow coal gasification. Energy & Fuels 30 (2):1487–1495. doi:10.1021/acs.energyfuels.5b01326.
  • Qu, J. S., J. B. Zhang, H. Q. Li, S. P. Li, D. Shi, R. Q. Chang, W. F. Wu, G. Y. Zhu, C. N. Yang, and C. Y. Wang. 2023. Occurrence, leaching behavior, and detoxification of heavy metal Cr in coal gasification slag. Chinese Journal of Chemical Engineering 58:11–19. doi:10.1016/j.cjche.2022.10.013.
  • Tang, Y. G., Y. F. Wang, B. Huan, X. Guo, and R. B. Finkelman. 2017. Leachability of hazardous trace elements from entrained-flow coal gasification residues in Ningdong, China. Energy & Fuels 31 (9):9703–9716. doi:10.1021/acs.energyfuels.7b01338.
  • Wang, J., T. Nakazato, K. Sakanishi, O. Yamada, H. Tao, and I. Saito. 2004. Microwave digestion with HNO3/H2O2 mixture at high temperatures for determination of trace elements in coal by ICP-OES and ICP-MS. Analytica Chimica Acta 514 (1):115–124. doi:10.1016/j.aca.2004.03.040.
  • Wang, T., Y. B. Lou, S. C. Jiang, J. W. Wang, Y. S. Zhang, and W. P. Pan. 2022. Distribution characteristics and environmental risk assessment of trace elements in desulfurization sludge from coal-fired power plants. Fuel 314:122771. doi:10.1016/j.fuel.2021.122771.
  • Wang, Y. F., Y. G. Tang, X. Guo, Q. Xie, R. B. Finkelman, P. Y. Li, and P. X. Chen. 2019. Fate of potentially hazardous trace elements during the entrained-flow coal gasification processes in China. Science of the Total Environment 668:854–866. doi:10.1016/j.scitotenv.2019.03.076.
  • Wang, Y. F., Y. G. Tang, B. B. Huan, X. Guo, and R. B. Finkelman. 2021. Chemical composition changes during the commercial entrained-flow General Electric and Gaskombinat Schwarze Pumpe coal gasification processes. Energy & Fuels 35 (1):883–893. doi:10.1021/acs.energyfuels.0c03507.
  • Wu, S. Y., S. Huang, Y. Q. Wu, and J. S. Gao. 2015. Characteristics and catalytic actions of inorganic constituents from entrained-flow coal gasification slag. Journal of the Energy Institute 88 (1):93–103. doi:10.1016/j.joei.2014.04.001.
  • Zhao, S. L., Y. F. Duan, J. C. Lu, R. Gupta, D. Pudasainee, S. Liu, M. Liu, and J. H. Lu. 2018. Chemical speciation and leaching characteristics of hazardous trace elements in coal and fly ash from coal-fired power plants. Fuel 232:463–69. doi:10.1016/j.fuel.2018.05.135.
  • Zhou, C. C., G. J. Liu, Z. Y. Xu, H. Sun, and P. K. S. Lam. 2017. The retention mechanism, transformation behavior and environmental implication of trace element during co-combustion coal gangue with soybean stalk. Fuel 189:32–38. doi:10.1016/j.fuel.2016.10.093.
  • Zhou, C. C., G. J. Liu, Z. Y. Xu, H. Sun, and P. K. S. Lam. 2018. Retention mechanisms of ash compositions on toxic elements (sb, se and pb) during fluidized bed combustion. Fuel 213:98–105. doi:10.1016/j.fuel.2017.10.111.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.