Unexpected significance of a minor reaction pathway in daytime formation of biogenic highly oxygenated organic compounds
            
                编号:3540
                访问权限:私有
                                    更新:2023-04-16 15:27:18                浏览:732次
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                摘要
                Secondary organic aerosol (SOA), formed by oxidation of volatile organic compounds, significantly influences air quality and climate. Highly oxygenated organic molecules (HOM), particularly those formed from biogenic monoterpenes, play a key role in their formation and growth. HOM formation from monoterpenes by hydroxyl radicals (OH), the most important daytime oxidant, is believed to be mainly formed via the OH addition channel. However, for α-pinene, the most abundant atmospheric monoterpene, we found that the minor hydrogen abstraction channel is underappreciated in the HOM formation. We present our observations and theoretical calculations, showing the role of hydrogen-abstraction and alkoxy radicals for fast autoxidation leading to HOM. We also provide a mechanism and yield, suggesting the non-negligible contribution of the hydrogen abstraction channel to ambient SOA, particularly in OH rich areas.
             
            
                关键词
                SOA,HOM,BVOC,Photochemistry
             
            
            
                    稿件作者
                    
                        
                                    
                                                                                                                        
                                    沈鸿儒
                                    复旦大学
                                
                                    
                                                                                                                        
                                    VereeckenLuc
                                    德国于利希研究中心
                                
                                    
                                                                                                                        
                                    KangSungah
                                    德国于利希研究中心
                                
                                    
                                                                                                                        
                                    PullinenIida
                                    德国于利希研究中心
                                
                                    
                                                                                                                        
                                    FuchsHendrik
                                    德国于利希研究中心
                                
                                    
                                        
                                                                            
                                    赵德峰
                                    复旦大学
                                
                                    
                                                                                                                        
                                    MentelThomas
                                    德国于利希研究中心
                                
                                             
                          
    
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