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1.
在用轻型汽油车排放随行驶里程劣化规律分析   总被引:1,自引:0,他引:1  
基于佛山市3.5万条简易稳态工况(ASM)下的尾气排放检测数据,通过分类统计和线性拟合方法分析在用轻型汽油车的污染物排放浓度随行驶里程的劣化规律。分析结果表明,该地区轻型汽油车污染物排放浓度主要分布于低值区间,超过85%的样本数据低于最低排放限值;车辆排放劣化特征随行驶里程呈规律性变化,行驶里程在0~5万km时污染物排放缓慢增长,5万~16万km时呈快速线性增长,16万km后震荡缓慢增长;行驶里程在16万km前,不同车型的排放特征存在一定差异,其中轻型货车和轻型客车的排放浓度高、劣化速度快;CO、HC、NO随行驶里程的劣化规律可用线性增长模型表示。本研究结论可为预测机动车污染变化趋势、完善在用车检查/维护制度、高排放车辆识别和淘汰等方面提供理论支持。  相似文献   

2.
利用天津市某交通居民混合区(以下简称混合区)和某废旧机电拆解加工工业区(以下简称工业区)的大气挥发性有机物(VOCs)在线监测数据,分析了天津市不同功能区大气VOCs的浓度水平、组成特征、季节变化和污染来源。结果表明,混合区监测的烷烃、不饱和脂肪烃和芳香烃3类VOCs的质量浓度分别为48.26、15.34、34.45μg/m3,总VOCs质量浓度为98.05μg/m3;工业区监测的烷烃、不饱和脂肪烃、芳香烃、卤代烷烃、卤代烯烃和卤代芳香烃6类VOCs的质量浓度分别为18.79、10.76、9.41、43.24、12.86、2.16μg/m3,总VOCs质量浓度为97.22μg/m3。混合区和工业区的大气VOCs浓度均为夏季最高,但混合区秋季次高,冬季最低,而工业区冬季次高,春季最低。混合区VOCs主要来源于机动车尾气排放和化石燃料的燃烧;工业区VOCs主要来源于有机溶剂和氟利昂等制冷剂、发泡剂的挥发。  相似文献   

3.
对天津市滨海新区夏季挥发性有机物(VOCs)进行在线观测,分析其夏季污染特征。结果表明:83种检出VOCs平均质量浓度为288.14μg/m3,各类化合物浓度贡献排序为烷烃(39.8%)卤代链烃(26.5%)芳香烃(13.9%)烯烃(13.1%)炔烃(4.4%)卤代芳香烃(2.3%),各组分中浓度最高的为正丁烷和正戊烷,占VOCs比例高达8.1%和7.0%;苯和甲苯也有相当含量,平均质量浓度均超过7μg/m3,分别占VOCs的2.5%和2.4%。天津市滨海新区VOCs日变化呈单谷型,与交通早晚高峰关系不大,苯/甲苯(体积比)为1.32,说明化石工业排放等对天津市滨海新区大气中VOCs影响较机动车尾气显著。聚类分析发现,天津市滨海新区VOCs来源分为3类,一类是汽油挥发和液化石油气、天然气泄漏,一类是化石工业和其他工业生产过程排放,一类是机动车尾气及植物排放,其中前两类为主要来源。  相似文献   

4.
于2020年秋季对台州不同功能区大气中挥发性有机物(VOCs)进行在线监测,分析了VOCs浓度水平和组成特征;利用O3生成潜势(OFP)评估了VOCs对O3污染的影响;运用正定矩阵因子分解模型(PMF)解析VOCs的主要来源。结果表明,台州5个监测站点总挥发性有机物(TVOC)体积分数日均值在30.0×10-9~52.9×10-9,均以烷烃和含氧挥发性有机物(OVOCs)为主;VOCs来源主要包括机动车尾气源、工业排放源、燃烧源、油品挥发源、溶剂使用源和植物源,其对VOCs的贡献率分别为27.42%、19.37%、17.36%、17.25%、11.18%、7.41%,其中城区和郊区机动车尾气源的贡献最大,而工业园区则是工业排放源贡献最大;对OFP贡献最大的源类是溶剂使用源(贡献率31.12%),其次是工业排放源、机动车尾气源、油品挥发源、燃烧源,贡献率分别为20.69%、16.37%、15.70%、10.99%,植物源对OFP贡献率最低,仅为5.13%。台州城区和郊区需重点关注溶剂使用源管控,工业园...  相似文献   

5.
机动车尾气污染物已成为影响城市大气环境质量的主要因素之一,预测未来机动车尾气污染物排放状况可以为城市机动车尾气污染防治提供有力的依据.依据成都市的经济发展趋势,设定了不同阶段的轻型车尾气污染物排放标准,并利用建立的尾气污染物排放趋势预测模型分析了该市轻型车尾气中颗粒物、NOx、总碳氢化合物、CO的排放量和变化趋势,并提出了相应的尾气污染物减排对策.  相似文献   

6.
汽油蒸汽挥发性有机成分(VOCs)排放是二次有机气溶胶和O3的重要前体物。应用COPERT模式和北京市实际参数,计算了北京市典型汽油车辆蒸发VOCs排放因子和排放清单,并测算了不同物种的排放量。结果显示:北京市汽油车中以轻型载客汽车为主,约占90%,国Ⅳ排放标准车辆比例最大;随着排放标准等级的升高,排放因子逐渐降低,且与化油器技术相比,使用燃油喷射系统技术的车辆运行损失排放较低;环境温度、燃油饱和蒸汽压和炭罐尺寸是排放因子的主要因素,温度越高、饱和蒸汽压越高、炭罐体积越小排放因子越大;北京市汽油车蒸发VOCs年排放量为11 115 t,烷烃的质量占76.93%,烯烃质量占5.76%,炔烃质量烃占0.08%,芳香烃质量占17.24%。  相似文献   

7.
机动车排放遥感监测反映实际道路行驶中的排放状况,对全面分析排放水平有很强的统计意义。北京市机动车排放遥感监测的CO、HC和NOx的平均浓度分别为1.94%、388×10-6和700×10-6。北京市机动车排放的CO、HC和NOx中50%分别来自于15.90%、13.98%、11.13%的高排放车,但某车辆对于一种污染物出现高排放并不意味着它对其他污染物也是高排放。根据遥感监测得到北京市轻型汽油车基于油耗的CO、HC和NOx平均尾气管排放因子分别为200.1g/L、11.05 g/L和6.68 g/L。  相似文献   

8.
基于MOVES的轻型车颗粒物排放来源和特征分析   总被引:1,自引:0,他引:1  
利用实测数据对MOVES模型进行本地化修正,测算了轻型车颗粒物的排放来源以及粒径、组分构成特征。分析结果表明,全部颗粒物中,轻型汽油车的非尾气排放PM10所占比例为72.70%,PM2.5为42.64%;轻型柴油车非尾气排放PM10所占比例为40.78%,PM2.5为15.41%。2种燃油车辆的尾气排放颗粒物主要来源于尾气管排放,粒径集中在0~2.5μm;而非尾气排放颗粒物主要来源于刹车磨损,粒径集中在2.5~10μm。轻型汽油车的尾气排放颗粒物主要组分为有机碳,轻型柴油车则为元素碳和有机碳。进一步分析不同速度下颗粒物排放变化发现:轻型车非尾气排放颗粒物随行驶速度的增大而降低,而尾气排放颗粒物则随速度的增大先降低后升高;非尾气排放颗粒物占全部颗粒物比例随速度的增大先升高再降低;全部颗粒物中PM2.5的比例则随速度的增大先降低后升高。  相似文献   

9.
利用本地化修正的MOVES模型结合实地调研数据,测算了西安市机动车排放清单,并对各种污染物的排放分担率进行了分析。结果表明:2012年西安市机动车的PM_(2.5)、PM_(10)、NO_x、总碳氢化合物(THC)、CO、挥发性有机物(VOCs)、NH_3和SO_2排放总量分别为1 890.48、2 668.89、40 847.75、19 413.30、217 103.04、15 244.86、539.76、2 087.50 t;中型货车和重型货车是PM_(2.5)、PM_(10)和NOx的主要贡献者,小型客车和摩托车是THC、CO和VOCs的主要贡献者,小型客车是NH_3的主要贡献者,小型客车与重型货车对SO_2的排放分担率均较高;柴油车对PM_(2.5)、PM_(10)、NO_x和SO_2的排放分担率高于汽油车,而汽油车对THC、CO、VOCs和NH_3的分担率则高于柴油车;CO在冬季排放最多,其余污染物的排放均在夏季最多,但污染物的季节变化总体上不明显。  相似文献   

10.
为研究广东省“十四五”时期机动车污染减排潜力,设置3种方案进行减排分析。结果表明,淘汰老旧机动车能较好地削减机动车NOx排放量,而对挥发性有机物(VOCs)的净减排效果不佳。淘汰国Ⅱ及以下排放标准汽油车、国Ⅲ及以下排放标准柴油货车情况下,广东省各市NOx削减比例均超过10%。汕尾市、湛江市、茂名市、云浮市、揭阳市、阳江市、潮州市、清远市、河源市和梅州市淘汰国Ⅱ及以下排放标准机动车、50%国Ⅲ排放标准柴油货车能达到NOx减排10%以上的效果,而珠三角地区城市需全面淘汰国Ⅲ及以下排放标准柴油货车才能达到该减排效果。为遏制广东省O3浓度上升势头并推动其进入下降通道,要加强“油、路、车”协同管控,珠三角地区应采取比粤东、粤西和粤北地区更有力的协同控制措施。  相似文献   

11.
Chemical composition of major VOC emission sources in the Seoul atmosphere   总被引:6,自引:0,他引:6  
Na K  Kim YP  Moon I  Moon KC 《Chemosphere》2004,55(4):585-594
This paper describes a chemical analysis of volatile organic compounds (VOCs) for five emission sources in Seoul. The source categories included motor vehicle exhaust, gasoline evaporation, paint solvents, natural gas and liquefied petroleum gas (LPG). These sources were selected because they have been known to emit significant quantities of VOCs in the Seoul area (more than 5% of the total emission inventory). Chemical compositions of the five emission sources are presented for a group of 45 C2-C9 VOCs. Motor vehicle exhaust profiles were developed by conducting an urban tunnel study. These emissions profiles were distinguished from the other emission profiles by a high weight percentage of butanes over seasons and propane in the wintertime. It was found that this is due to the wide use of butane-fueled vehicles. To obtain gasoline vapor profiles, gasoline samples from five major brands for each season were selected. The brands were blended on the basis of the marketshare of these brands in Seoul area. Raoult's law was used to calculate gasoline evaporative compositions based on the liquid gasoline compositions. The measured and estimated gasoline vapor compositions were found to be in good agreement. Vehicle and gasoline evaporation profiles were made over seasons because of the seasonal change in their compositions. Paint solvent emissions profiles were produced based on a product-use survey and sales figures. These profiles are a composite of four major oil-based paints and thinning solvent. The source profile of natural gas was made on a methane-free basis. It was found that Ethane and propane were the most abundant compounds accounting for 95% of the natural gas composition. LPG was largely composed of propane and ethane and the remaining components were minor contributors.  相似文献   

12.
Exhaust and evaporative emissions tests were conducted on several methanol- and gasoline-fueled vehicles. Separate samples for chromatographlc analysis of formaldehyde, methanol, and Individual hydrocarbons were collected in each of the three phases of the driving cycle and in each of the two portions of the evaporative emissions test. One vehicle, equipped with an experimental variable-fuel engine, was tested using methanol/gasoline fuel mixtures of 100, 85, 50,15, and 0 percent methanol. Combustion-generated hydrocarbons were lowest using methanol fuel, and increased several-fold as the gasoline fraction was increased. Gasoline components In the exhaust Increased from zero as the gasoline fraction of the fuel was Increased. On the other hand, formaldehyde emissions were several times higher using methanol fuel than they were using gasoline. A dedicated methanol car and the variable-fuel car gave similar emissions patterns when they both were tested using methanol fuel. The organic-carbon composition of the exhaust was 85-90 percent methanol, 5-7 percent formaldehyde, and 3-9 percent hydrocarbons. Several cars that were tested using gasoline emitted similar distributions of hydrocarbons, even through the vehicles represented a broad range of current and developmental engine families and emissions control systems. These vehicles continue the trend of the past twenty years toward less photochemically reactive exhaust, with higher percentages of methane and total alkanes, and correspondingly lower percentages of oleflns and aromatlcs.  相似文献   

13.
China's national government and Beijing city authorities have adopted additional control measures to reduce the negative impact of vehicle emissions on Beijing's air quality. An evaluation of the effectiveness of these measures may provide guidance for future vehicle emission control strategy development. In-use emissions from light-duty gasoline vehicles (LDGVs) were investigated at five sites in Beijing with remote sensing instrumentation. Distance-based mass emission factors were derived with fuel consumption modeled on real world data. The results show that the recently implemented aggressive control strategies are significantly reducing the emissions of on-road vehicles. Older vehicles are contributing substantially to the total fleet emissions. An earlier program to retrofit pre-Euro cars with three-way catalysts produced little emission reduction. The impact of model year and driving conditions on the average mass emission factors indicates that the durability of vehicles emission controls may be inadequate in Beijing.  相似文献   

14.
Abstract

China’s national government and Beijing city authorities have adopted additional control measures to reduce the negative impact of vehicle emissions on Beijing’s air quality. An evaluation of the effectiveness of these measures may provide guidance for future vehicle emission control strategy development. In-use emissions from light-duty gasoline vehicles (LDGVs) were investigated at five sites in Beijing with remote sensing instrumentation. Distance-based mass emission factors were derived with fuel consumption modeled on real world data. The results show that the recently implemented aggressive control strategies are significantly reducing the emissions of on-road vehicles. Older vehicles are contributing substantially to the total fleet emissions. An earlier program to retrofit pre-Euro cars with three-way catalysts produced little emission reduction. The impact of model year and driving conditions on the average mass emission factors indicates that the durability of vehicles emission controls may be inadequate in Beijing.  相似文献   

15.
Nitrous oxide (N2O) emissions measurements were made on light duty gasoline and light duty diesel vehicles during chassis dynamometer testing conducted at the Environment Canada and California Air Resources Board vehicle emissions laboratories between 2001 and 2007. Per phase and composite FTP emission rates were measured. A subset of vehicles was also tested using other driving cycles to characterize emissions as a function of different driving conditions. Vehicles were both new (<6500 km) and in-use (6500–160,000 km) and were tested on low sulfur gasoline (<30 ppm) or low sulfur diesel (<300 ppm). Measurements from selected published studies were combined with these new measurements to give a test fleet of 467 vehicles meeting both US EPA and California criteria pollutant emissions standards between Tier 0 and Tier 2 Bin 3 or SULEV. Aggregate distance-based and fuel-based emission factors for N2O are reported for each emission standard and for each of the different test cycles. Results show that the distinction between light duty automobile and light duty truck is not significant for any of the emission standards represented by the test fleet and the distinction between new and aged catalyst is significant for vehicles meeting all emission standards but Tier 2. This is likely due to the relatively low mileage accumulated by the Tier 2 vehicles in this study as compared to the durability requirement of the standard. The FTP composite N2O emission factors for gasoline vehicles meeting emission standards more stringent than Tier 1 are substantially lower than those currently used by both Canada and the US for the 2005 inventories. N2O emission factors from test cycles other than the FTP illustrate the variability of emission factors as a function of driving conditions. N2O emission factors are shown to strongly correlate with NMHC/NMOG emission standards and less strongly with NOX and CO emission standards. A review of several published reports on the effect of gasoline sulfur content on N2O emissions suggests that additional research is needed to adequately quantify the increase in N2O emissions as a function of fuel sulfur.  相似文献   

16.
Total OH reactivity for the exhaust gas of gasoline vehicles was measured for the first time under nine different driving conditions with a chassis dynamometer at the National Institute for Environmental Studies (NIES). Along with the total OH reactivity measurements, analysis of trace species such as CH4, CO, NO, NO2, and 56 kinds of volatile organic compounds (VOCs), including two aldehydes, was carried out. The ratio of alkanes to alkenes in the exhaust gas turned out to depend on the condition of the driving cycles. There were a considerable number of unidentified peaks obtained during GC analysis. About 15–30% of the total carbon was unidentified species. The chemical compositions of vehicular exhaust were found to depend on the temperature of the engine or catalysts. The contribution of OH reactivity to the species obtained depended on the temperature condition for the engine. The calculated total OH reactivity for VOCs was compared with ozone formation potential (OFP) and it turned out that there are in good correlation, while the correlation for “Cold” start deviates from that for “Hot” start. The measured and calculated OH reactivities were compared with each other. For all driving cycles, the calculated OH reactivity was confirmed to be an underestimation, implying the existence of unknown species in the exhaust gas. The percentage contribution of OH reactivity to the unknown species during “Cold” start was about 17.5%, which was almost the same as that for “Hot” start at 17.0%. However, the absolute value of OH reactivity for “Cold” start was about ten times higher than that for “Hot” start.  相似文献   

17.
Characteristics of real-world vehicular emissions in Chinese cities   总被引:2,自引:0,他引:2  
On-board emission measurements were performed on 49 light-duty gasoline vehicles in seven cities of China. Vehicle-specific power mode distribution and emission characteristics were analyzed based on the data collected. The results of our study show that there were significant differences in different types of roads. The emission factors and fuel consumption rates on arterial roads and residential roads were approximately 1.4-2 times those on freeways. The carbon monoxide, hydrocarbon, and nitrogen oxides emission factors of Euro II vehicles were on average 86.2, 88.2, and 64.5% lower than those of carburetor vehicles, respectively. The new vehicle emission standards implemented in China had played an important role in reducing individual vehicle emissions. More comprehensive measures need to be considered to reduce the total amount of emissions from vehicles.  相似文献   

18.
Compositions of volatile organic compound (VOC) emissions from painting applications and printing processes were sampled and measured by gas chromatography–mass spectrometry/flame ionization detection (GC–MS/FID) in Beijing. Toluene and C8 aromatics were the most abundant species, accounting for 76% of the total VOCs emitted from paint applications. The major species in printing emissions included heavier alkanes and aromatics, such as n-nonane, n-decane, n-undecane, toluene, and m/p-xylene. Measurements of VOCs obtained from furniture paint emissions in 2003 and 2007 suggest a quick decline in benzene levels associated with formulation changes in furniture paints during these years. A comparison of VOC source profiles for painting and printing between Beijing and other parts of the world showed significant region-specific discrepancies, probably because of different market demands and environmental standards. We conducted the evaluation of the source reactivities for various VOC emission sources. The ozone formation potential (OFP) for unit mass of VOCs source emissions is the highest for paint applications. Substituting solvent-based paints by water-based in Beijing will lead to an OFP reduction of 152,000 tons per year, which is more than 1/4 of the OFPs for VOCs emissions from vehicle exhaust in the city.  相似文献   

19.
Abstract

On-board emission measurements were performed on 49 light-duty gasoline vehicles in seven cities of China. Vehicle-specific power mode distribution and emission characteristics were analyzed based on the data collected. The results of our study show that there were significant differences in different types of roads. The emission factors and fuel consumption rates on arterial roads and residential roads were approximately 1.4–2 times those on freeways. The carbon monoxide, hydrocarbon, and nitrogen oxides emission factors of Euro II vehicles were on average 86.2, 88.2, and 64.5% lower than those of carburetor vehicles, respectively. The new vehicle emission standards implemented in China had played an important role in reducing individual vehicle emissions. More comprehensive measures need to be considered to reduce the total amount of emissions from vehicles.  相似文献   

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