319
Views
11
CrossRef citations to date
0
Altmetric
Articles

Experimental and numerical investigations of desulfurization wastewater evaporation in a lab-scale flue gas duct: evaporation and HCl release characteristics

, , &
Pages 1411-1427 | Received 30 May 2019, Accepted 13 Sep 2019, Published online: 30 Sep 2019

References

  • Córdoba P. Status of Flue Gas Desulphurisation (FGD) systems from coal-fired power plants: overview of the physic-chemical control processes of wet limestone FGDs. Fuel. 2015;144:274–286. doi: 10.1016/j.fuel.2014.12.065
  • Sun Z, Wang S, Zhou Q, et al. Experimental study on desulfurization efficiency and gas–liquid mass transfer in a new liquid-screen desulfurization system. Appl Energ. 2010;87:1505–1512. doi: 10.1016/j.apenergy.2009.09.007
  • Li G, Wang B, Xu WQ, et al. Simultaneous removal of SO2 and NOx from flue gas by wet scrubbing using a urea solution. Environ Technol. 2019;40:2620–2632. doi: 10.1080/09593330.2018.1454513
  • Guo Y, Xu Z, Zheng C, et al. Modeling and optimization of wet flue gas desulfurization system based on a hybrid modeling method. J Air Waste Manage. 2019;69:565–575. doi: 10.1080/10962247.2018.1551252
  • Gutiérrez Ortiz FJ, Vidal F, Ollero P, et al. Pilot-plant technical assessment of wet flue Gas desulfurization using limestone. Ind Eng Chem Res. 2006;45:1466–1477. doi: 10.1021/ie051316o
  • Srivastava RK, Jozewicz W. Flue gas desulfurization: the state of the art. J Air Waste Manage. 2001;51:1676–1688. doi: 10.1080/10473289.2001.10464387
  • Shi W, Lin C, Chen W, et al. Environmental effect of current desulfurization technology on fly dust emission in China. Renewable Sustainable Energy Rev. 2017;72:1–9. doi: 10.1016/j.rser.2017.01.033
  • Yan L, Lu X, Wang Q, et al. Research on sulfur recovery from the byproducts of magnesia wet flue gas desulfurization. Appl Therm Eng. 2014;65:487–494. doi: 10.1016/j.applthermaleng.2014.01.032
  • Liu R, Wang C, Luo Z, et al. 210Po concentration in desulfurized waste water of coal-fired power plant. Journal of Radiation Research and Applied Sciences. 2019;12:240–244. doi: 10.1080/16878507.2019.1639918
  • Liang Z, Zhang L, Yang Z, et al. The effect of solid particles on the evaporation and crystallization processes of the desulfurization wastewater droplet. Appl Therm Eng. 2018;134:141–151. doi: 10.1016/j.applthermaleng.2017.12.119
  • Gude VG. Energy and water autarky of wastewater treatment and power generation systems. Renewable Sustainable Energy Rev. 2015;45:52–68. doi: 10.1016/j.rser.2015.01.055
  • Cui L, Li G, Li Y, et al. Electrolysis-electrodialysis process for removing chloride ion in wet flue gas desulfurization wastewater (DW): Influencing factors and energy consumption analysis. Chem Eng Res Des. 2017;123:240–247. doi: 10.1016/j.cherd.2017.05.016
  • Deng JJ, Pan LM, Chen DQ, et al. Numerical simulation and field test study of desulfurization wastewater evaporation treatment through flue gas. Water Sci Technol. 2014;70:1285–1291. doi: 10.2166/wst.2014.359
  • Yeboah NN, Ellison KM, Minkara R, et al. Treatment and disposal Alternatives for flue Gas desulfurization wastewater. World of coal Ash Conference; 2015; Nasvhille, USA.
  • Ma S, Chai J, Chen J, et al. Numerical simulation of bypass evaporation system treating FGD wastewater using high temperature flue gas. Environ Technol. 2018: 1–24. doi: 10.1080/09593330.2018.1474266
  • Guo J, Shu S, Liu X, et al. Influence of Fe loadings on desulfurization performance of activated carbon treated by nitric acid. Environ Technol. 2017;38:266–276. doi: 10.1080/09593330.2016.1189973
  • Ma S, Chai J, Chen G, et al. Research on desulfurization wastewater evaporation: present and future perspectives. Renewable Sustainable Energy Rev. 2016;58:1143–1151. doi: 10.1016/j.rser.2015.12.234
  • Liang Z, Cheng X, Zhang L, et al. Study of main Solutes on evaporation and crystallization processes of the desulfurization wastewater droplet. Energ Fuel. 2018;32:6119–6129. doi: 10.1021/acs.energyfuels.8b00778
  • Bin H, Yang Y, Cai L, et al. Enhancing mercury removal across air pollution control devices for coal-fired power plants by desulfurization wastewater evaporation. Environ Technol. 2019;40:154–162. doi: 10.1080/09593330.2017.1380716
  • Enoch GD, Spiering W, Tigchelaar P, et al. Treatment of waste water from wet lime (Stone) flue Gas desulfurization plants with aid of crossflow microfiltration. Sep Sci Technol. 1990;25:1587–1605. doi: 10.1080/01496399008050411
  • Chunsong Y, Jianwei H, Tong L, et al. Technology progress and treatment methods of flue Gas desulfurization wastewater in coal-fired plants. Environ Eng. 2017;35:10–13.
  • Kagawa S, Kamiyama N, Ushiku T, et al. Development of wastewater spray dryer (WSD) for desulfurization plants. Mitsubishi Heavy Industries Technical Review. 2015;52:43–46.
  • Liu Z, Wey M, Lin C. Reaction characteristics of Ca(OH)2, HCl and SO2 at low temperature in a spray dryer integrated with a fabric filter. J Hazard Mater. 2002;95:291–304. doi: 10.1016/S0304-3894(02)00142-5
  • Ukai N, Nagayasu T, Kamiyama N, et al. Spray-drying device for dehydrated filtrate from desulfurization wastewater, air pollution control system and flue gas treatment method., 2017.
  • Shaw WA. Fundamentals of zero liquid discharge system design. Power. 2011;155:56.
  • Shaw WA. Benefits of evaporation FGD purge water. Power. 2008;152:60–63.
  • Ma S, Chai J, Wu K, et al. Experimental research on bypass evaporation tower technology for zero liquid discharge of desulfurization wastewater. Environ Technol. 2019;40(20):2715–2725. doi: 10.1080/09593330.2018.1449901
  • Mosti C, Cenci V. ZLD systens applied to ENEL coal-fired power plants. VGB. Power Tech. 2012;92:69–73.
  • Hu B, Yi Y, Yang C, et al. Improving the electrostatic precipitation removal efficiency by desulfurized wastewater evaporation. Rsc Adv. 2016;6:113703–113711. doi: 10.1039/C6RA15699A
  • Liang Z, Zhang L, Yang Z, et al. Evaporation and crystallization of a droplet of desulfurization wastewater from a coal-fired power plant. Appl Therm Eng. 2017;119:52–62. doi: 10.1016/j.applthermaleng.2017.02.113
  • Farid M. A new approach to modelling of single droplet drying. Chem Eng Sci. 2003;58:2985–2993. doi: 10.1016/S0009-2509(03)00161-1
  • Pan P, Chen H, Liang Z, et al. Experimental study on corrosion of steels for flue gas reheaters in a coal-fired power plant. Appl Therm Eng. 2017;115:267–279. doi: 10.1016/j.applthermaleng.2016.12.066
  • Ma S, Chai J, Wu K, et al. Experimental and mechanism research on volatilization characteristics of HCl in desulfurization wastewater evaporation process using high temperature flue gas. J Ind Eng Chem. 2018;66:311–317. doi: 10.1016/j.jiec.2018.05.045
  • Zhang C, Zheng H, Yang Z, et al. Experimental study on the evaporation and chlorine migration of desulfurization wastewater in flue gas. Environ Sci Pollut R. 2019;26:4791–4800. doi: 10.1007/s11356-018-3816-y
  • Pakzadeh B, Wos J, Renew J. Flue gas desulfurization wastewater treatment for coal-Fired power Industry. Proceeding of the ASME 2014 power Conference; 2014; Baltimore, Maryland, USA, pp. V2T-V10T.
  • Zhou Z, Wu W, Xin Z, et al. Experimental research on spray characteristics of nozzle and numerical simulation of desulfurization wastewater evaporation. Chemical Industry and Engineering Progress. 2017;37:32–38.
  • Chango G, Palacio E, Cerdà V. Potentiometric chip-based multipumping flow system for the simultaneous determination of fluoride, chloride, pH, and redox potential in water samples. Talanta. 2018;186:554–560. doi: 10.1016/j.talanta.2018.04.087
  • Xu Y, Jin B, Zhao Y, et al. Numerical simulation of aqueous ammonia-based CO2 absorption in a sprayer tower: An integrated model combining gas-liquid hydrodynamics and chemistry. Appl Energ. 2018;211:318–333. doi: 10.1016/j.apenergy.2017.11.054
  • Shih T, Liou WW, Shabbir A, et al. A new k-ϵ eddy viscosity model for high reynolds number turbulent flows. Comput Fluids. 1995;24:227–238. doi: 10.1016/0045-7930(94)00032-T
  • Miller RS, Harstad K, Bellan J. Evaluation of equilibrium and non-equilibrium evaporation models for many-droplet gas-liquid flow simulations. Int J Multiphas Flow. 1998;24:1025–1055. doi: 10.1016/S0301-9322(98)00028-7
  • Ranz WE, Marshall WR. Evaporation from drops: part I. Chem Eng Prog. 1952;48:141–146.
  • Liu G, Ma L, Liu J. Handbook of chemical properties. Beijing: Chemical Industry Press; 2002.
  • Noble EG, Shanks DE, Bauer DJ. Solubilities of chloride salts of alkali and alkaline-earth metals when sparged with hydrogen chloride. Report of investigations. Pittsburgh (PA): Bureau of Mines; 1985.
  • Zhang Y, Zhou R. Vapor-Liquid Equilibria for water + hydrochloric Acid + magnesium chloride and water + hydrochloric Acid + calcium chloride systems at Atmospheric pressure. Chinese J Chem Eng. 2006;14:276–280. doi: 10.1016/S1004-9541(06)60071-2
  • Dry M. The Proceedings of the Alta Nickel/cobalt Conference. Aspects of modelling a complex chloride Leach Circuit: Starfield Resources’ Ferguson Lake Project; 2008; Perth, Australia.
  • Fraissler G, Jöller M, Brunner T, et al. Influence of dry and humid gaseous atmosphere on the thermal decomposition of calcium chloride and its impact on the remove of heavy metals by chlorination. Chem Eng Process. 2009;48:380–388. doi: 10.1016/j.cep.2008.05.003
  • Huang Q, Lu G, Wang J, et al. Thermal decomposition mechanisms of MgCl2·6H2O and MgCl2·H2O. J Anal Appl Pyrol. 2011;91:159–164. doi: 10.1016/j.jaap.2011.02.005
  • Saul A, Wagner W. International equations for the saturation properties of ordinary water substance. J Phys Chem Ref Data. 1987;16:893–901. doi: 10.1063/1.555787
  • Chase MWJr. NIST-JANAF thermochemical tables. 4th ed. Journal of Physical and Chemical Reference Data Monographs 9. American Institute of Physics; 1998.

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.