Abstract

Nitrogen oxide (NO) formation from Isooctane-air combustion is modeled in a perfectly stirred reactor by using CHEMKIN and a detailed gas-phase reaction mechanism proposed by Maurice and coworkers. The present work (1) studies the effect of pressure on NO formation in combustion products for a wide range of equivalence ratios; (2) determines the dominant reactions leading to NO formation and destruction processes by using the Rateof-Production (ROP) analysis; and (3) compares NO formation level predicted by two x NO submechanisms

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