Page 336 - Air pollution and greenhouse gases from basic concepts to engineering applications for air emission control
P. 336
References and Further Readings 313
28. Tien C, Ramarao BV (2007) Granular filtration of aerosols and hydrosols, 2nd edn. Elsevier,
Oxford
29. Ruddy EN, Carroll LA (1993) Select the best VOC control strategy. Chem Eng Process 89
(7):28–35
30. Sakulpitakphon T, Hower JC, Trimble AS, Schram WH, Thomas GA (2000) Mercury capture
by fly ash: study of the combustion of a high-mercury coal at a utility boiler. Energy Fuels
14:727–733
31. US EPA (2005) Control of mercury emissions from coal fired electric utility boilers: an update.
http://www.epa.gov/ttn/atw/utility/ord_whtpaper_hgcontroltech_oar-2002-0056-6141.pdf.U.
S. Environmental Protection Agency, Research Triangle Park, NC, USA
32. US DOE (1997) Control of nitrogen oxide emissions: selective catalytic reduction (SCR).
Clean coal technology, topical report 9. U.S. Department of Energy, July 1997
33. Vidic RD, Liu W, Brown TD (1998) Application of sulphur impregnated activated carbons for
the control of mercury emissions. In: Proceedings of the 15th annual international Pittsburgh
coal conference, Pittsburgh, PA, Sept 1998
34. Wan Y, Ma J, Wang Z, Zhou W, Kaliaguine S (2004) Selective catalytic reduction of NO over
Cu-Al-MCM-41. J Catal 227:242–252
35. Wang A, Tan Z, Qi H, Xu X (2008) Steam reactivation of used sorbent for FGD. J Coal Oil
Gas Technol 1(3):330–344
36. Wang Y, Liu Z, Zhan L, Huang Z, Liu Q, Ma J (2004) Performance of an activated carbon
honeycomb supported V 2 O 5 catalyst in simultaneous SO 2 and NO removal. Chem Eng Sci
59:5283–5290
37. Yu H, Tan Z (2013) Determination of equilibrium constants for reactions between nitric oxide
and ammoniacal cobalt(ii) solutions at temperatures from 298.15 to 309.15 K and pH Values
between 9.06 and 9.37 under atmospheric pressure in a bubble column. Ind Eng Chem Res 52
(10):3663–3673
38. Yu H, Tan Z (2014) On the kinetics of the absorption of nitric oxide into ammoniacal cobalt(ii)
solutions. Environ Sci Technol 48:2453–2463
39. Yu H, Zhu Q, Tan Z (2012) Absorption of nitric oxide from simulated flue gas using different
absorbents at room temperature and atmospheric pressure. Appl Energy 93:53–58