PMID-sentid Pub_year Sent_text comp_official_name comp_offsetprotein_name organism prot_offset 19882733-0 2010 Barrier heights for H-atom abstraction by H*O2 from n-butanol--a simple yet exacting test for model chemistries? 1-Butanol 52-61 heme oxygenase 2 Homo sapiens 42-46 25560388-10 2015 Since then, significant theoretical and experimental efforts have focused on determining the rate coefficients of primary n-butanol consumption pathways in combustion environments, including H atom abstraction reactions from n-butanol by key radicals such as HO2 and OH, as well as the decomposition of the radicals formed by these H atom abstractions. 1-Butanol 122-131 heme oxygenase 2 Homo sapiens 259-269 30620599-4 2019 However, the kinetic parameters of the reactions are basically extrapolated by analogy to the n-butanol + HO2 system calculated by Zhou et al. 1-Butanol 94-103 heme oxygenase 2 Homo sapiens 106-109 30620599-15 2019 Similar to the n-butanol + HO2 system, the title system is dominated by alpha-site H-atom abstraction, but the rate coefficients of the three channels are slightly slower than that of the n-butanol + HO2 system. 1-Butanol 15-24 heme oxygenase 2 Homo sapiens 27-30 30620599-15 2019 Similar to the n-butanol + HO2 system, the title system is dominated by alpha-site H-atom abstraction, but the rate coefficients of the three channels are slightly slower than that of the n-butanol + HO2 system. 1-Butanol 15-24 heme oxygenase 2 Homo sapiens 200-203 30620599-15 2019 Similar to the n-butanol + HO2 system, the title system is dominated by alpha-site H-atom abstraction, but the rate coefficients of the three channels are slightly slower than that of the n-butanol + HO2 system. 1-Butanol 188-197 heme oxygenase 2 Homo sapiens 27-30 30620599-15 2019 Similar to the n-butanol + HO2 system, the title system is dominated by alpha-site H-atom abstraction, but the rate coefficients of the three channels are slightly slower than that of the n-butanol + HO2 system. 1-Butanol 188-197 heme oxygenase 2 Homo sapiens 200-203