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Results 1 to 25 of 159908

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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

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

Reactions of dinitrogen pentoxide and nitrogen dioxide with 1-palmitoyl-2-oleoyl-sn-glycero-3-phosphocholineLAI, C. C; FINLAYSON-PITTS, B. J.Lipids. 1991, Vol 26, Num 4, pp 306-314, issn 0024-4201Article

Evidence for new sources of NOx in the lower atmosphereZIPF, E. C; PRASAD, S. S.Science (Washington, D.C.). 1998, Vol 279, Num 5348, pp 211-213, issn 0036-8075Article

Rate constants for reactions of NI- with N2O, 14N15NO, and 15NO2MORRIS, R. A; VIGGIANO, A. A; PAULSON, J. F et al.The Journal of chemical physics. 1990, Vol 92, Num 4, pp 2342-2343, issn 0021-9606Article

Estimation of N2 and N2O ebullition from eutrophic water using an improved bubble trap deviceYAN GAO; XINHONG LIU; NENG YI et al.Ecological engineering. 2013, Vol 57, pp 403-412, issn 0925-8574, 10 p.Article

Process modeling of controls on nitrogen trace gas emissions from soils worldwidePOTTER, C. S; MATSON, P. A; VITOUSEK, P. M et al.Journal of geophysical research. 1996, Vol 101, Num D1, pp 1361-1377, issn 0148-0227Article

Rate coefficient for the reaction NO + NO3 → 2NO2 between 223 and 400 KTYNDALL, G. S; ORLANDO, J. J; CANTRELL, C. A et al.Journal of physical chemistry (1952). 1991, Vol 95, Num 11, pp 4381-4386, issn 0022-3654, 6 p.Article

The effects of pressure, oxygen partial pressure, and temperature on the formation of N2O, NO, and NO2 from pulverized coalAHO, M. J; PAAKKINEN, K. M; PIRKONEN, P. M et al.Combustion and flame. 1995, Vol 102, Num 3, pp 387-400, issn 0010-2180Article

Effects of pressure, gas temperature and CO2 and O2 partial pressures on the conversion of coal-nitrogen to NO, N2O and NO2AHO, M. J; PIRKONEN, P. M.Fuel (Guildford). 1995, Vol 74, Num 11, pp 1677-1681, issn 0016-2361Article

Nitric oxide and active oxygen species in severe sepsis and surgically stressed patientsTANJOH, K; SHIMA, A; AIDA, M et al.Surgery today (Print). 1995, Vol 25, Num 9, pp 774-777, issn 0941-1291Conference Paper

Comparative species concentrations in CH4/O2/Ar flames doped with N2O, NO, and NO2WILLIAMS, B. A; FLEMING, J. W.Combustion and flame. 1994, Vol 98, Num 1-2, pp 93-106, issn 0010-2180Article

The tropospheric gas-phase degradation of NH3 and its impact on the formation of N2O and NOxKOHLMANN, J.-P; POPPE, D.Journal of atmospheric chemistry. 1999, Vol 32, Num 3, pp 397-415, issn 0167-7764Article

Embedded infrared fiber optic absorption studies of nitramine propellant strand burningWORMHOUDT, J; KEBABIAN, P. L; KOLB, C. E et al.Combustion and flame. 1997, Vol 111, Num 1-2, pp 73-86, issn 0010-2180Article

Comparison of two administration techniques of inhaled nitric oxide on nitrogen dioxide productionDUBE, L; FRANCOEUR, M; TRONCY, E et al.Canadian journal of anaesthesia. 1995, Vol 42, Num 10, pp 922-927, issn 0832-610XArticle

Kinetic modeling of nitrogen oxides decomposition at flame temperaturesKONNOV, A. A; DE RUYCK, J.Combustion science and technology. 1999, Vol 149, Num 1-6, pp 53-78, issn 0010-2202Conference Paper

The potential energy surfaces of N2O2 species : implications for selective catalytic reductionVINCENT, M. A; HILLIER, I. H; SALSI, L et al.PCCP. Physical chemistry chemical physics (Print). 2000, Vol 2, Num 4, pp 707-714, issn 1463-9076Article

Formation et méthodes de réduction des NOx = NOx formation mechanismsFOURNIGUET, M.J; QUINQUENEAU, A.Ciments, bétons, plâtres, chaux. 1996, Num 820, pp 168-171, issn 0397-006XArticle

Influence of electrolytes on the absorption of nitrogen oxide components N2O4 and N2O3 in aqueous absorbentsWEISWEILER, W; DEISS, K.-H.Chemical engineering & technology. 1987, Vol 10, Num 2, pp 131-142, issn 0930-7516Article

A study of the formation of N2O in the reaction of NO3 (A2E') with N2MARIC, D; BURROWS, J. P; MOORTGAT, G. K et al.Journal of atmospheric chemistry. 1992, Vol 15, Num 2, pp 157-169, issn 0167-7764Article

Nord Stream dry air purge improves nitrogen-slug useTERENZI, Alessandro; PAGLIALUNGA, Matteo; ZENOBI, Daniela et al.Oil & gas journal. 2013, Vol 111, Num 10, issn 0030-1388, 102-108 [6 p.]Article

The effects of fire on biogenic solid emissions of nitric oxide and nitrous oxideLEVINE, J. S; COFER, W. R. III; SEBACHER, D. I et al.Global biogeochemical cycles. 1988, Vol 2, Num 4, pp 445-449, issn 0886-6236Article

The effect of temperature on shuttle glowSWENSON, G. R; MENDE, S. B; LLEWELLYN, E. J et al.Nature (London). 1986, Vol 323, Num 6088, pp 519-522, issn 0028-0836Article

Hydraulic Response and Nitrogen Retention in Bioretention Mesocosms with Regulated Outlets: Part II-Nitrogen RetentionLUCAS, William C; GREENWAY, Margaret.Water environment research. 2011, Vol 83, Num 8, pp 703-713, issn 1061-4303, 11 p.Article

Reactive nitrogen in agroecosystems: Integration with greenhouse gas interactionsREIS, Stefan; BUTTERBACH-BAHL, Klaus; SUTTON, Mark et al.Agriculture, ecosystems & environment. 2009, Vol 133, Num 3-4, issn 0167-8809, 156 p.Conference Proceedings

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