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Investigation of fluorine-promoted Pt-Re/Al2O3 catalysts in reforming of n-heptane Belopukhov EA, Kir'yanov DI, Smolikov MD, Shkurenok VA, Belyi AS, Lavrenov AV, Kleimenov AV, Kondrashev DO Catalysis Today, 378, 113, 2021 |
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Effects of ozone on n-heptane low temperature chemistry and premixed cool flames Brown MQ, Belmont EL Combustion and Flame, 225, 20, 2021 |
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Experimental characterization of n-heptane low-temperature oxidation products including keto-hydroperoxides and highly oxygenated organic molecules (HOMs) Belhadj N, Benoit R, Dagaut P, Lailliau M Combustion and Flame, 224, 83, 2021 |
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On the flame structure and stabilization characteristics of autoignited laminar lifted n-heptane jet flames in heated coflow air Jung KS, Kim SO, Chung SH, Yoo CS Combustion and Flame, 223, 307, 2021 |
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Experimental investigation of n-Heptane ring fires with varying shape characteristics under sub-atmospheric pressures Li C, Yang R, Li CW, Zhang H Experimental Heat Transfer, 34(2), 105, 2021 |
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Catalytic Conversions of Hydrocarbons over Zeolites at 170-260 degrees C Gorokhova EO, Kulchakovskaya EV, Asalieva EY, Gryaznov KO, Mitberg EB, Sineva LV, Mordkovich VZ Petroleum Chemistry, 61(3), 357, 2021 |
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Explosion effect of vapor-liquid two-phase n-heptane at various initial temperatures Song YF, Zhang Q Process Safety and Environmental Protection, 145, 303, 2021 |
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Laminar premixed and non-premixed flame investigation on the influence of dimethyl ether addition on n-heptane combustion Wullenkord J, Graf I, Baroncelli M, Felsmann D, Cai LM, Pitsch H, Kohse-Hoinghaus K Combustion and Flame, 212, 323, 2020 |
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The effect of ammonia addition on the low-temperature autoignition of n-heptane: An experimental and modeling study Yu L, Zhou W, Feng Y, Wang WY, Zhu JZ, Qian Y, Lu XC Combustion and Flame, 217, 4, 2020 |
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Decreased mixture reactivity and hot flame speed in the products of diffusion-affected autoignitive cool flames in the NTC regime Savard B, Wehrfritz A, Lam K, Margerte Q, Ferney L, Farjam S Combustion and Flame, 222, 434, 2020 |