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A New Approach for NOx Removal from Flue Gas Using a Biofilm Electrode Reactor Coupled with Chemical AbsorptionYINFENG XIA; YUN SHI; YA ZHOU et al.Energy & fuels. 2014, Vol 28, Num 5-6, pp 3332-3338, issn 0887-0624, 7 p.Article

Ambient conditions impact CO and NOx emissions: part IIBUSSMAN, Wesley R; BAUKAL, Charles E.Petroleum technology quarterly. 2009, Vol 14, Num 3, issn 1362-363X, 37-41 [4 p.]Article

Large-scale 100 % wood conversion with low NOx valuesHENRY, Xavier; MERCIER, Frédéric; CAVEZZALE, Paolo et al.VGB powertech. 2013, Num 12, issn 1435-3199, 6-7, 60-64 [7 p.]Article

A procedure for correcting readings in chemiluminescence nitrogen oxide analyzers due to the effect of sample pressureDOVAL, M; BARBERA, J; GONZALEZ, E et al.Transactions on ecology and the environment. 2008, Vol v. 116, pp 375-384, issn 1746-448X, isbn 978-1-84564-127-6, 1Vol, 10 p.Conference Paper

Advanced combustion system for cracking furnacesPOE, Roger; PATEL, Ashok; BAUKAL, Charles E et al.Petroleum technology quarterly. 2007, Vol 12, Num 3, issn 1362-363X, 113-117 [4 p.]Article

Successfully design fired heaters using ultra-low-NOx burners : PROCESS/PLANT OPTIMIZATIONAHAMAD, S; VALLAVANATT, R.Hydrocarbon processing (International ed.). 2013, Vol 92, Num 6, issn 0018-8190, 59-66 [7 p.]Article

The new low-NOx burnerSAITO, Masato; DOMOTO, Kazuhiro; TANAKA, Ryuichiro et al.VGB powertech. 2013, Num 10, issn 1435-3199, 6-7, 56-62 [9 p.]Article

Low-NOX Schwachgasverbrennung mit Flammloser Oxidation = Low-NOx lean-gas combustion with flameless oxidationBERGER, Roland; SCHMID, Martin; WÜNNING, Joachim G et al.Gas, Wärme international. 2005, Vol 54, Num 6, pp 382-385, issn 0020-9384, 4 p.Article

Control refinery NOx with SCRs : Plant safety and environmentDAMGAARD, L; WIDROTH, B; SCHRÖTER, I. M et al.Hydrocarbon processing (International ed.). 2004, Vol 83, Num 11, pp 39-42, issn 0018-8190, 4 p.Article

Recover valuable olefins from offgas streams: Catalytic technology aids in removal of acetylenes, NOx and oxygen : PROCESS/PLANT OPTIMIZATIONBLANKENSHIP, S; RAJESH, R; SUN, M et al.Hydrocarbon processing (International ed.). 2012, Vol 91, Num 6, pp 55-57, issn 0018-8190, 3 p.Article

Oxide of nitrogen production in diesel―alcohol blendsJONES, J. C.Fuel (Guildford). 2010, Vol 89, Num 10, issn 0016-2361, p. 3148Article

Chemical Mechanisms of Aging of Aerosol Formed from the Reaction of n-Pentadecane with OH Radicals in the Presence of NOxAIMANANT, Sukon; ZIEMANN, Paul J.Aerosol science and technology (Print). 2013, Vol 47, Num 7-9, pp 979-990, issn 0278-6826, 12 p.Article

Products of the quenching of NO A 2Σ+ (v = 0) by N2O and CO2BURGOS PACI, Maximiliano A; FEW, Julian; GOWRIE, Sarah et al.PCCP. Physical chemistry chemical physics (Print). 2013, Vol 15, Num 7, pp 2554-2564, issn 1463-9076, 11 p.Article

Diagnostics and Modeling of Stagnation Flames for the Validation of Thermochemical Combustion Models for NOx PredictionsWATSON, Graeme M. G; MUNZAR, Jeffrey D; BERGTHORSON, Jeffrey M et al.Energy & fuels. 2013, Vol 27, Num NOVDEC, pp 7031-7043, issn 0887-0624, 13 p.Conference Paper

KNOCKING THE NOx OUT OF BIODIESELHOULIHAN, Thomas.Mechanical engineering (New York, N.Y. 1919). 2012, Vol 134, Num 5, pp 38-41, issn 0025-6501, 4 p.Article

A NEW STANDARD OF NOX CONTROLREIMER JENSEN, Joakim; SALBILLA, Dennis; LINDENHOFF, Peter et al.Hydrocarbon engineering. 2009, Vol 14, Num 10, issn 1468-9340, 41-48 [5 p.]Article

Ultra-low NOxGREVER, John.Hydrocarbon engineering. 2003, Vol 8, Num 12, pp 29-31, issn 1468-9340, 2 p.Article

Dynamics of the low to high NOx transition in a simplified tropospheric photochemical modelSTEWART, R. W.Journal of geophysical research. 1995, Vol 100, Num D5, pp 8929-8943, issn 0148-0227Article

A general scaling rule for the collision energy dependence of a rotationally inelastic differential cross-section and its application to NO(X) + HeXIA ZHANG; EYLES, Chris J; TAATJES, Craig A et al.PCCP. Physical chemistry chemical physics (Print). 2013, Vol 15, Num 15, pp 5620-5635, issn 1463-9076, 16 p.Article

Reducing NO emissions from FCC regeneratorsCHEN, Ye-Mon; BROSTEN, David.Petroleum technology quarterly. 2009, Vol 14, Num 2, pp 23-25, issn 1362-363X, 3 p.Article

Oxyfuel-Technik : Anwendungen und Betriebserfahrungen der flammenlosen Verbrennung = Oxyfuel technology : Applications for and operational experience with flameless combustionVON SCHEELE, Joachim; VESTERBERG, Per; RITZEN, Ola et al.Gas, Wärme international. 2006, Vol 55, Num 3, pp 186-189, issn 0020-9384, 4 p.Article

Entwicklung des Hochgeschwindigkeitsbrenners ThermJet mit reduzierter NOx-Bildung = High velocity ThermJet burner development with low NOx formationSMIRNOV, Val; STROUP, Scott; COLLIER, David et al.Gas, Wärme international. 2004, Vol 53, Num 3, pp 139-143, issn 0020-9384, 5 p.Article

NOx removal with multiple pulsed electron beam free of catalysts or reagentsWOLFORD, Matthew F; MYERS, Matthew C; HEGELER, Frank et al.PCCP. Physical chemistry chemical physics (Print). 2013, Vol 15, Num 12, pp 4422-4427, issn 1463-9076, 6 p.Article

New Directions: Science and policy - Out of step on NOx and NO2?WILLIAMS, Martin L; CARSLAW, David C.Atmospheric environment (1994). 2011, Vol 45, Num 23, pp 3911-3912, issn 1352-2310, 2 p.Article

Reducing FCC unit NO emissions XRADCLIFFE, Charles.Petroleum technology quarterly. 2008, Vol 13, Num 2, issn 1362-363X, 59-65 [6 p.]Article

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