An experimental investigation of phenyl radical pyrolysis and the phenyl radical + acetylene reaction has been performed to clarify the role of different reaction mechanisms involved in the formation and growth of polycyclic aromatic hydrocarbons (PAHs) serving as precursors for soot formation. Experiments were conducted using GC/GC-MS diagnostics coupled to the high-pressure single-pulse shock tube present at the University of Illinois at Chicago. For the first time, comprehensive speciation of the major stable products, including small hydrocarbons and large PAH intermediates, was obtained over a wide range of pressures (25–60 atm) and temperatures (900–1800 K) which encompass the typical conditions in modern combustion devices. The exper...
We use a detailed chemical kinetic mechanism to explore the effects of C/O ratio, temperature and pr...
Despite their importance, the chemical mechanisms of polycyclic aromatic hydrocarbon (PAH) formation...
Polycyclic aromatic hydrocarbon (PAH) formation and growth from cyclopentadiene (CPD) moieties have ...
An experimental investigation of phenyl radical pyrolysis and the phenyl radical + acetylene reactio...
An experimental investigation of phenyl radical pyrolysis and the phenyl radical + acetylene reactio...
An experimental investigation of phenyl radical pyrolysis and the phenyl radical + acetylene reactio...
The aim of this kinetic work is a critical and detailed analysis of the acetylene pyrolysis in a wid...
The aim of this kinetic work is a critical and detailed analysis of the acetylene pyrolysis in a wid...
The aim of this kinetic work is a critical and detailed analysis of the acetylene pyrolysis in a wid...
The aim of this kinetic work is a critical and detailed analysis of the acetylene pyrolysis in a wid...
The aim of this kinetic work is a critical and detailed analysis of the acetylene pyrolysis in a wid...
Polycyclic Aromatic Hydrocarbons (PAHs) are harmful by-products formed during combustion of hydrocar...
We use a detailed chemical kinetic mechanism to explore the effects of C/O ratio, temperature and pr...
We use a detailed chemical kinetic mechanism to explore the effects of C/O ratio, temperature and pr...
We use a detailed chemical kinetic mechanism to explore the effects of C/O ratio, temperature and pr...
We use a detailed chemical kinetic mechanism to explore the effects of C/O ratio, temperature and pr...
Despite their importance, the chemical mechanisms of polycyclic aromatic hydrocarbon (PAH) formation...
Polycyclic aromatic hydrocarbon (PAH) formation and growth from cyclopentadiene (CPD) moieties have ...
An experimental investigation of phenyl radical pyrolysis and the phenyl radical + acetylene reactio...
An experimental investigation of phenyl radical pyrolysis and the phenyl radical + acetylene reactio...
An experimental investigation of phenyl radical pyrolysis and the phenyl radical + acetylene reactio...
The aim of this kinetic work is a critical and detailed analysis of the acetylene pyrolysis in a wid...
The aim of this kinetic work is a critical and detailed analysis of the acetylene pyrolysis in a wid...
The aim of this kinetic work is a critical and detailed analysis of the acetylene pyrolysis in a wid...
The aim of this kinetic work is a critical and detailed analysis of the acetylene pyrolysis in a wid...
The aim of this kinetic work is a critical and detailed analysis of the acetylene pyrolysis in a wid...
Polycyclic Aromatic Hydrocarbons (PAHs) are harmful by-products formed during combustion of hydrocar...
We use a detailed chemical kinetic mechanism to explore the effects of C/O ratio, temperature and pr...
We use a detailed chemical kinetic mechanism to explore the effects of C/O ratio, temperature and pr...
We use a detailed chemical kinetic mechanism to explore the effects of C/O ratio, temperature and pr...
We use a detailed chemical kinetic mechanism to explore the effects of C/O ratio, temperature and pr...
Despite their importance, the chemical mechanisms of polycyclic aromatic hydrocarbon (PAH) formation...
Polycyclic aromatic hydrocarbon (PAH) formation and growth from cyclopentadiene (CPD) moieties have ...