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Ironmaking & Steelmaking
Processes, Products and Applications
Volume 47, 2020 - Issue 10
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Research Articles

Function mechanism of porous bed absorbing hazardous ultra-fined particles during iron ore sintering process

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Pages 1168-1175 | Received 28 Sep 2019, Accepted 22 Oct 2019, Published online: 05 Nov 2019

References

  • Abdullahi KL, Delgado-Saborit JM, Harrison RM. Emissions and indoor concentrations of particulate matter and its specific chemical components from cooking: a review. Atmos Environ. 2013;71:260–294. doi: 10.1016/j.atmosenv.2013.01.061
  • Just B, Rogak S, Kandlikar M. Characterization of ultrafine particulate matter from traditional and improved biomass cookstoves. Environ Sci Technol. 2013;47:3506–3512. doi: 10.1021/es304351p
  • Alexander S, Leníček J, Beneš I. Air quality in the German–Czech border region: a focus on harmful fractions of PM and ultrafine particles. Atmos Environ. 2015;122:236–249. doi: 10.1016/j.atmosenv.2015.09.044
  • Lau LL, de Castro LFA, de Castro Dutra F, et al. Characterization and mass balance of trace elements in an iron ore sinter plant. J Mater Res Technol. 2016;5(2):144–151. doi: 10.1016/j.jmrt.2015.10.007
  • Copeland CR, Kawatra SK. Design of a dust tower for suppression of airborne particulates for iron making. Miner Eng. 2011;24:1459–1466. doi: 10.1016/j.mineng.2011.07.008
  • Apte JS, Marshall JD, Cohen AJ, et al. Addressing global mortality from ambient PM2.5. Environ Sci Technol. 2015;49:8057–8066. doi: 10.1021/acs.est.5b01236
  • Kamal JM, Mohit A, Anil KD. Premature mortality attributable to PM2.5 exposure and future policy roadmap for ‘airpocalypse’ affected Asian megacities. Process Safe Environ Protect. 2018;118:371–383. doi: 10.1016/j.psep.2018.07.009
  • Yusef OK, Riccardo P, Rozalina ZC, et al. Human health risk assessment due to ambient PM10 and SO2 by an air quality modeling technique. Process Safe Environ Protect. 2017;111:346–354. doi: 10.1016/j.psep.2017.07.018
  • World Steel Association. World steel committee on economic studies. World Metal Bulletin; 2001–2015.
  • Gao ZF, Long HM, Dai B, et al. Investigation of reducing particulate matter (PM) and heavy metals pollutions by adding a novel additive from metallurgical dust (MD) during coal combustion. J Hazard Mater. 2019;373:335–346. doi: 10.1016/j.jhazmat.2019.03.057
  • Yan FW, Zhu FF, Wang QT, et al. Preliminary study of PM2.5 formation during municipal solid waste incineration. Procedia Environ Sci. 2016;31:475–481. doi: 10.1016/j.proenv.2016.02.054
  • Wang XL, Lei Y, Yan Y, et al. A unit-based emission inventory of SO2, NOx and PM for the Chinese iron and steel industry from 2010 to 2015. Sci Total Environ. 2019;676:18–30. doi: 10.1016/j.scitotenv.2019.04.241
  • Menad N, Tayibi H, Carcedo FG, et al. Minimization methods for emissions generated from sinter strands: a review. J Clean Prod. 2006;14:740–747. doi: 10.1016/j.jclepro.2004.03.005
  • Ministry of Environmental Protection. 2017. Amendment of GB 28662-2012. http://huanbao.bjx.com.cn/news/20170615/831422.shtml.
  • Ministry of Environmental Protection. 2018. Exposure draft of ultra-low pollutant emissions of iron & steel industry. http://huanbao.bjx.com.cn/news/20180515/897857.shtml.
  • GB 28662-2012. Emission standard of air pollutants for sintering and pelletizing of iron and steel industry. Beijing: China Environmental Science Press; 2012.
  • Remus R, Monsonet MAA, Roudier S, et al. Best available techniques (BAT), Reference Document for Iron and Steel Production. Publ Off Eur Union Spain. 2012: 89–117.
  • Lanzerstorfer C, Fleischanderl A, Plattner T. Efficient reduction of PM10/2.5 emissions at iron ore sinter plants. Dustconf; 2007.
  • Sammut ML, Noack Y, Rose J, et al. Speciation of Cd and Pb in dust emitted from sinter plant. Chemosphere. 2010;78:445–450. DOI: 10.1016/j.chemosphere.2009.10.039.
  • Fan XH, Ji ZY, Gan M, et al. Participating patterns of trace elements in PM2.5 formation during iron ore sintering process. Ironmaking Steelmaking. 2018;45(3):288–294. DOI: 10.1080/03019233.2016.1262575.
  • Ji ZY, Fan XH, Gan M, et al. Influence of SO2-related interactions on PM2.5 formation in iron ore sintering. J Air Waste Manage. 2017;67(4):488–497. DOI: 10.1080/10962247.2016.1259692.
  • Gan M, Ji ZY, Fan XH, et al. Clean recycle and utilization of hazardous iron-bearing waste in iron ore sintering process. J Hazard. Mater. 2018;353:381–392. Doi: 10.1016/j.jhazmat.2018.04.032.
  • Ji ZY, Fan XH, Gan M, et al. Influence factors on PM2.5 and PM10 emissions in iron ore sintering process. ISIJ Int. 2016;56(9):1580–1587. DOI: 10.2355/isijinternational.ISIJINT-2016-169.
  • Gan M, Ji ZY, Fan XH, et al. Emission behavior and physicochemical properties of aerosol particulate matter (PM10/2.5) from iron ore sintering process. ISIJ Int. 2015;55(12):2582–2588. DOI: 10.2355/isijinternational.ISIJINT-2015-412.
  • Nakano M, Okazaki J. Influence of operational conditions on dust emission from sintering bed. ISIJ Int. 2007;47:240–244. DOI: 10.2355/isijinternational.47.240.
  • Khosa J, Manuel J, Trudu A. Results from preliminary investigation of particulate emission during sintering of iron ore. Miner Process Extr Metall. 2003;112:25–32. doi: 10.1179/037195503225011367
  • Tien C, Ramarao BV. Granular filtration of aerosols and hydrosols. Vol. 20. Oxford: Elsevier Science & Technology Books; 2007.
  • Slinn WGN. Precipitation scavenging. Washington (DC): Division of Biomedical Environmental Research, US Department of Energy; 1984.
  • Si J. Influence of sodium on char formation and fine particulates control during coal combustion [doctoral thesis]. Huazhong University; 2014.
  • Zhang X, Yang L, Sun L. Experimental study on removal of PM2.5 from combustion by vapor heterogeneous condensation. J Southeast Univ Sci (Natl Sci Ed). 2008;38(1):81–85.
  • Yang J, Yang L, Zhang X. Experimental study on separation of inhalable particles from coal combustion by heterogeneous condensation enlargement. Proc CSEE. 2007;27(35):12–16.
  • Xiang XD. Modern dust removal theory and technology. Beijing: Metallurgical Industry Press; 2010:110.

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