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Intermediate and semi-volatility organic compounds(I/SVOCs)emission from Chinese vehicles:volatility distribution,influencing factors,and implication for SOA formation
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作者 Yajun Wu Peiji Liu +8 位作者 Yajie Wang Xiaoguo Wang Jing Zhang Yan Liu Jinsheng Zhang Lin Wu Ting Wang Hongjun Mao Jianfei Peng 《Frontiers of Environmental Science & Engineering》 2025年第5期189-204,共16页
Intermediate and semi-volatility organic compounds(I/SVOCs)are crucial precursors for secondary organic aerosols(SOA).Vehicles are major sources of I/SVOCs,yet their emission profiles remain insufficiently characteriz... Intermediate and semi-volatility organic compounds(I/SVOCs)are crucial precursors for secondary organic aerosols(SOA).Vehicles are major sources of I/SVOCs,yet their emission profiles remain insufficiently characterized.We conducted dynamometer tests on eight in-use gasoline and diesel vehicles(DVs),employing non-targeted analysis with comprehensive two-dimensional gas chromatography coupled with high-resolution mass spectrometry(GC×GC-TOFMS)to investigate vehicular I/SVOC emissions at the molecular level.A total of 438 and 424 compounds were identified and(semi)-quantified in the gas and particle phases,respectively.DVs exhibited higher emission factors(376.7±74.9 mg/(kg·fuel))compared to gasoline vehicles(GVs)(114.4±42.1 mg/(kg·fuel))across both phases.Alkanes(29.7%-41.9%),single-ring aromatics(2.6%-29.8%),and cycloalkanes(1.0%-13.1%)were dominant I/SVOCs groups.Oxygenated I/SVOCs were more abundant in particulate phases(40.3%-56.8%)than in gas phases(14.4%-15.3%).Upgrading emission standards reduced organic emissions by 89.2%from China IV to China VI for DVs,particularly in the particle phase.Coldstart conditions resulted in higher I/SVOC emissions(528.4 mg/(kg·fuel))than hot-starts(224.8 mg/(kg·fuel))due to reduced combustion efficiency and suboptimal after-treatment performance at low temperatures.Our composition-based SOA estimation method improved SOA predictions by 1.5 and 1.2 times for diesel and GVs,respectively,compared to the traditional bin approach.These findings provide valuable insights into the molecular composition of vehicular I/SVOCs and their environmental impacts. 展开更多
关键词 Vehicle emissions Non-targeted analysis i/svocs Chemical fingerprinting SOA formation potential
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城市大气中中等及半挥发性有机物分子层面的精细组分解析及对二次有机气溶胶的生成贡献研究
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作者 李致 郭淑雯 +4 位作者 张众 林宏宇 曾乐薇 何潇 郑轩 《环境科学学报》 北大核心 2025年第8期32-45,共14页
中等及半挥发性有机物(I/SVOCs)是形成二次有机气溶胶(SOA)的关键前体物之一,但因其组分极其复杂,导致目前对SOA的生成贡献模拟仍存在较大的不确定性.本研究选取了中国南部城市深圳市作为研究对象,解析了大气中气态I/SVOCs在污染较为严... 中等及半挥发性有机物(I/SVOCs)是形成二次有机气溶胶(SOA)的关键前体物之一,但因其组分极其复杂,导致目前对SOA的生成贡献模拟仍存在较大的不确定性.本研究选取了中国南部城市深圳市作为研究对象,解析了大气中气态I/SVOCs在污染较为严重的冬季期间的分布特征.观测期间深圳大气中细颗粒物(PM_(2.5))和可吸入颗粒物(PM10)的平均浓度分别为(26.3±16.3)μg·m^(-3)和(60.6±29.4)μg·m^(-3),I/SVOCs的总体平均浓度为(9.87±5.92)μg·m^(-3).其中,酸(Acid)浓度最高(占比41.6%),酮(Ketone)次之(占比13.6%),含氧多环芳烃(Oxygenated-Polycyclic Aromatic Hydrocarbons,Oxy-PAHs)与烷烃(Alkane)的占比分别为8.3%和7.6%.基于产率法估算可知,冬季I/SVOCs生成的SOA平均浓度为(0.26±0.18)μg·m^(-3),其中,贡献最大的是Oxy-PAHs,占比达到19%,Acid浓度最大但由于其SOA产率较低,对SOA的贡献不显著.研究进一步使用特征比值法判断了深圳大气I/SVOCs的来源.结果表明,正构烷烃碳优势指数(CPI)平均值为1.3,说明深圳市大气中的I/SVOCs受到人为源和自然源综合影响. 展开更多
关键词 中等及半挥发性有机物(i/svocs) 精细组分解析 全二维气相色谱-质谱联用(TD-GC×GC-MS) 二次有机气溶胶生成贡献
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Progress in the study of the emission characteristics of intermediate and semivolatile organic compounds from motor vehicles
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作者 Xianbao Shen Hongwei Ni +7 位作者 TianTian Lv Zhiliang Yao Hongqian Che Xuewei Hao Bobo Wu Xinyue Cao Xin Li Qi Zhou 《Journal of Environmental Sciences》 2025年第12期776-789,共14页
Previous studies have demonstrated that intermediate-volatility and semivolatile organic compounds(I/SVOCs) are important precursors of secondary organic aerosols. Motor vehicles are important sources of atmospheric I... Previous studies have demonstrated that intermediate-volatility and semivolatile organic compounds(I/SVOCs) are important precursors of secondary organic aerosols. Motor vehicles are important sources of atmospheric I/SVOC emissions. In this paper, existing test methods for motor vehicle I/SVOCs are summarized, the advantages and disadvantages of various sampling methods and analytical techniques are compared, and the main factors influencing motor vehicle I/SVOC emissions are analyzed. The results show that the onboard test method compensates for the shortcomings of the bench test method, reflects the emission characteristics of I/SVOCs on actual roads, and has great application potential. The identification capability of traditional gas chromatography-mass spectrometry for I/SVOCs is very limited, whereas the high sensitivity and species identification capability of comprehensive two-dimensional gas chromatography provide obvious advantages in the study of I/SVOC samples. Motor vehicle I/SVOC emissions are influenced by many factors. The individual and combined effects of different factors remain uncertain, so the importance of control variables must be more notably emphasized in future studies of influencing factors. In this paper, a systematic review is offered that could serve as a valuable reference for future research on motor vehicle I/SVOC emissions and contribute to mitigating fine particulate matter pollution. 展开更多
关键词 i/svocs Motor vehicles Test methods Analytical techniques Influencing factors
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