Synthesis and Hydrolysis of Atmospherically Relevant Monoterpene-Derived Organic Nitrates

被引:26
|
作者
Wang, Yuchen [1 ]
Piletic, Ivan R. [2 ]
Takeuchi, Masayuki [3 ]
Xu, Tianchang [1 ]
France, Stefan [4 ]
Ng, Nga Lee [3 ,5 ]
机构
[1] Georgia Inst Technol, Sch Chem & Bimol Engn, Atlanta, GA 30332 USA
[2] US EPA, Ctr Environm Measurement & Modeling, Res Triangle Pk, NC 27711 USA
[3] Georgia Inst Technol, Sch Civil & Environm Engn, Atlanta, GA 30332 USA
[4] Georgia Inst Technol, Sch Chem & Biochem, Atlanta, GA 30332 USA
[5] Georgia Inst Technol, Sch Chem & Bimol Engn, Sch Earth & Atmospher Sci, Atlanta, GA 30332 USA
基金
美国海洋和大气管理局; 美国国家科学基金会;
关键词
monoterpene nitrates; organic nitrates; secondary organic aerosols; AEROSOL FORMATION; ALPHA-PINENE; RADICAL OXIDATION; NITRIC-ACID; REACTION-MECHANISMS; NO3; OXIDATION; BETA; GAS; CHEMISTRY; ISOPRENE;
D O I
10.1021/acs.est.1c05310
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
The partition of gas-phase organic nitrates (ONs) to aerosols and subsequent hydrolysis are regarded as important loss mechanisms for ON species. However, the hydrolysis mechanisms and the major factors controlling the hydrolysis lifetime are not fully understood. In this work, we synthesized seven monoterpene-derived ONs and systematically investigated their hydrolysis in bulk solutions at different pH values. The hydrolysis lifetimes ranged from 12.9 min to 8.5 h for allylic primary ON and tertiary ONs, but secondary ONs were stable at neutral pH. The alkyl substitution numbers, functional groups, and carbon skeletons were three important factors controlling hydrolysis rates. Tertiary and secondary ONs were found to hydrolyze via the acid-catalyzed unimolecular (S(N)1) mechanism, while a competition of S(N)1 and bimolecular (S(N)2) mechanisms accounted for the hydrolysis of primary ONs. The consistency of experimental and theoretical hydrolysis rates calculated by density functional theory further supported the proposed mechanisms. Reversible reactions including hydrolysis and nitration were first reported to explain the hydrolysis of ONs, highlighting the possibility that particulate nitric acid can participate in nitration to generate new nitrogen-containing compounds. These findings demonstrate that ON hydrolysis is a complex reaction that proceeds via different mechanisms and is controlled by various parameters.
引用
收藏
页码:14595 / 14606
页数:12
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