Direct observation of realistic-temperature fuel combustion mechanisms in atomistic simulations

被引:73
作者
Bal, Kristof M. [1 ]
Neyts, Erik C. [1 ]
机构
[1] Univ Antwerp, Dept Chem, Univ Pl 1, B-2610 Antwerp, Belgium
关键词
MOLECULAR-DYNAMICS SIMULATIONS; PARALLEL REPLICA DYNAMICS; REACTIVE FORCE-FIELD; INFREQUENT EVENTS; N-HEXADECANE; REAXFF; PYROLYSIS; HYDROCARBONS; ALGORITHMS; CHEMISTRY;
D O I
10.1039/c6sc00498a
中图分类号
O6 [化学];
学科分类号
070301 [无机化学];
摘要
Atomistic simulations can in principle provide an unbiased description of all mechanisms, intermediates, and products of complex chemical processes. However, due to the severe time scale limitation of conventional simulation techniques, unrealistically high simulation temperatures are usually applied, which are a poor approximation of most practically relevant low-temperature applications. In this work, we demonstrate the direct observation at the atomic scale of the pyrolysis and oxidation of n-dodecane at temperatures as low as 700 K through the use of a novel simulation technique, collective variable-driven hyperdynamics (CVHD). A simulated timescale of up to 39 seconds is reached. Product compositions and dominant mechanisms are found to be strongly temperature-dependent, and are consistent with experiments and kinetic models. These simulations provide a first atomic-level look at the full dynamics of the complicated fuel combustion process at industrially relevant temperatures and time scales, unattainable by conventional molecular dynamics simulations.
引用
收藏
页码:5280 / 5286
页数:7
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