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1.
The pollution levels, composition characteristics and sources of atmospheric PM2.5 were investigated based on field measurement at a rural site in the North China Plain (NCP) from pre-heating period to heating period in winter of 2017. The hourly average concentrations of PM2.5 frequently exceeded 150 µg/m3 and even achieved 400 µg/m3, indicating that the PM2.5 pollution was still very serious despite the implementation of stricter control measures in the rural area. Compared with the pre-heating period, the mean concentrations of organic carbon (OC), element carbon (EC) and chlorine ion (Cl?) during the heating period increased by 20.8%, 36.6% and 38.8%, accompanying with increments of their proportions in PM2.5 from 37.5%, 9.8% and 5.5% to 42.9%, 12.7% and 7.2%, respectively. The significant increase of both their concentrations and proportions during the heating period was mainly ascribed to the residential coal combustion. The proportions of sulfate, nitrate and ammonium respectively increased from 9.9%, 10.9% and 9.0% in nighttime to 13.8%, 16.2% and 11.1% in daytime, implying that the daytime photochemical reactions made remarkable contributions to the secondary inorganic aerosols. The simulation results from WRF-Chem revealed that the emission of residential coal combustion in the rural area was underestimated by the current emission inventory. Six sources identified by positive matrix factorization (PMF) based on the measurement were residential coal combustion, secondary formation of inorganic aerosols, biomass burning, vehicle emission and raising dust, contributing to atmospheric PM2.5 of 40.5%, 21.2%, 16.4%, 10.8%, 8.6% and 2.5%, respectively.  相似文献   

2.
A comprehensive field measurement was set up in Guangzhou City of China and the key was placed on NOx and O3 pollution. The results indicated that the average driving speed of vehicle was only 14 km/h in downtown with high frequency of idle and acceleration. Upward fluxes of CO and NO were observed in Dongfeng street. NOx annual mean concentration in urban area increased year by year, and NOx was identified as the most important pollutant since 1995. Photochemical smog pollution was serious in general,spatial and seasonal distribution of O3 was observed. O3 concentration was kept in a high level in autumn, and its formation was restrained in summer due to frequent thunderstorm and high humidity. The numerical simulation showed the average concentration and maximum concentration of O3 would increase 60%—100% if vehicular emission increased 100% in Guangzhou.  相似文献   

3.
To investigate the secondary formation and pollution sources of atmospheric particles in urban Beijing, PM2.5 and its chemical components were collected and determined by URG-9000D ambient ion monitor (AIM) from March 2016 to January 2017. Among water-soluble ions (WSIs), NO3?, SO42- and NH4+ (SNA) had the largest proportion (77.8%) with the total concentration of 23.8 μg/m3. Moreover, as fine particle pollution worsened, the NO3?, SO42- and NH4+ concentrations increased basically, which revealed that secondary aerosols were the main cause of particle pollution in Beijing. Furthermore, the particle neutralization ratio (1.1), the ammonia to sulfate molar ratio (3.4) and the nitrate to sulfate molar ratio (2.2) showed that secondary aerosols are under ammonium-rich conditions with the main chemical forms of NH4NO3 and (NH4)2SO4, and vehicle emission could be the main anthropogenic source of secondary aerosols in Beijing. Source analysis further indicated that secondary aerosols, solid fuel combustion, dust and marine aerosol were the principal pollution sources of PM2.5, accounting for about 46.1%, 22.4% and 13.0%, respectively, and Inner Mongolia and Hebei Provinces could be considered as the main potential sources of PM2.5 in urban Beijing. In addition, secondary formation process was closely related with gaseous precursor emission amounts (SO2, NO2, NH3 and HONO), atmospheric ozone concentration (O3), meteorological conditions (temperature and relative humidity) and particle components. Sensitive analysis of the thermodynamic equilibrium model (ISORROPIA II) revealed that controlling total nitrate (TN) is the effective measure to mitigate fine particle pollution in Beijing.  相似文献   

4.
Regional ozone (O3) pollution has drawn increasing attention in China over the recent decade, but the contributions from urban pollution and biogenic emissions have not been clearly elucidated. To better understand the formation of the regional O3 problem in the North China Plain (NCP), intensive field measurements of O3 and related parameters were conducted at a rural site downwind of Ji'nan, the capital city of Shandong province, in the summer of 2013. Markedly severe O3 pollution was recorded, with the O3 mixing ratios exceeding the Chinese national ambient air quality standard on 28?days (a frequency of 78%) and with a maximum hourly value of 198 ppbv. Extensive regional transport of well-processed urban plumes to the site was identified. An observation-constrained chemical box model was deployed to evaluate in situ photochemical O3 production on two episodes. The results show that the in situ formation accounted for approximately 46% of the observed O3 accumulation, while the remainder (~ 54%) was contributed by regional transport of the O3-laden urban plumes. The in situ ozone production was in a mixed controlled regime that reducing either NOx or VOCs would lead to a reduction of ozone formation. Biogenic VOCs played an important role in the local ozone formation. This study demonstrates the significant mixed effects of both anthropogenic pollution from urban zones and biogenic emission in rural areas on the regional O3 pollution in the NCP region, and may have general applicability in facilitating the understanding of the formation of secondary pollution over China.  相似文献   

5.
The impact of reducing industrial emissions of volatile organic compounds (VOCs) on ozone (O3) pollution is of wide concern particularly in highly industrialized megacities. In this study, O3, nitrogen oxides (NOx) and VOCs were measured at an urban site in the Pearl River Delta region during the 2018 Chinese National Day Holidays and two after-holiday periods (one with ozone pollution and another without). O3 pollution occurred throughout the 7-day holidays even industrial emissions of VOCs were passively reduced due to temporary factory shutdowns, and the toluene to benzene ratios dropped from ∼10 during non-holidays to ∼5 during the holidays. Box model (AtChem2-MCM) simulations with the input of observation data revealed that O3 formation was all VOC-limited, and alkenes had the highest relative incremental reactivity (RIR) during the holiday and non-holiday O3 episodes while aromatics had the highest RIR during the non-pollution period. Box model also demonstrated that even aromatics decreased proportionally to levels with near-zero contributions of industrial aromatic solvents, O3 concentrations would only decrease by less than 20% during the holiday and non-holiday O3 episodes and ozone pollution in the periods could not be eliminated. The results imply that controlling emissions of industrial aromatic solvents might be not enough to eliminate O3 pollution in the region, and more attention should be paid to anthropogenic reactive alkenes. Isoprene and formaldehyde were among the top 3 species by RIRs in all the three pollution and non-pollution periods, suggesting substantial contribution to O3 formation from biogenic VOCs.  相似文献   

6.
Haze phenomena were found to have an increasing tendency in recent years in Yong'an, a mountainous industrial city located in the center part of Fujian Province, China. Atmospheric fine particles (PM2.5) in the urban area during haze periods in three seasons (spring, autumn and winter) from 2007 to 2008 were collected, and the mass concentrations and chemical compositions (seventeen elements, water soluble inorganic ions (WSIIs) and carbonaceous species) of PM2.5 were determined. PM2.5 mass concentrations did not show a distinct difference among the three seasons. The carbonaceous species organic carbon (OC) and elemental carbon (EC) constituted up to 19.2%-30.4% of the PM2.5 mass during sampling periods, while WSIIs made up 25.3%-52.5% of the PM2.5 mass. The major ions in PM2.5 were SO42-, NO3- and NH4+, while the major elements were Si, K, Pb, Zn, Ca and Al. The experimental results (from data based on three haze periods with a 10-day sampling length for each period) showed that the crustal element species was the most abundant component of PM2.5 in spring, and the secondary ions species (SO42-, NO3-, NH4+, etc.) was the most abundant component in PM2.5 in autumn and winter. This indicated that dust was the primary pollution source for PM2.5 in spring and combustion and traffic emissions could be the main pollution sources for PM2.5 in autumn and winter. Generally, coal combustion and traffic emissions were considered to be the most prominent pollution sources for this city on haze days.  相似文献   

7.
PM2.5 concentrations have dramatically reduced in key regions of China during the period 2013–2017, while O3 has increased. Hence there is an urgent demand to develop a synergetic regional PM2.5 and O3 control strategy. This study develops an emission-to-concentration response surface model and proposes a synergetic pathway for PM2.5 and O3 control in the Yangtze River Delta (YRD) based on the framework of the Air Benefit and Cost and Attainment Assessment System (ABaCAS). Results suggest that the regional emissions of NOx, SO2, NH3, VOCs (volatile organic compounds) and primary PM2.5 should be reduced by 18%, 23%, 14%, 17% and 33% compared with 2017 to achieve 25% and 5% decreases of PM2.5 and O3 in 2025, and that the emission reduction ratios will need to be 50%, 26%, 28%, 28% and 55% to attain the National Ambient Air Quality Standard. To effectively reduce the O3 pollution in the central and eastern YRD, VOCs controls need to be strengthened to reduce O3 by 5%, and then NOx reduction should be accelerated for air quality attainment. Meanwhile, control of primary PM2.5 emissions shall be prioritized to address the severe PM2.5 pollution in the northern YRD. For most cities in the YRD, the VOCs emission reduction ratio should be higher than that for NOx in Spring and Autumn. NOx control should be increased in summer rather than winter when a strong VOC-limited regime occurs. Besides, regarding the emission control of industrial processes, on-road vehicle and residential sources shall be prioritized and the joint control area should be enlarged to include Shandong, Jiangxi and Hubei Province for effective O3 control.  相似文献   

8.
Luoyang is a typical heavy industrial city in China, with a coal-dominated energy structure and serious air pollution. Following the implementation of the clean air actions, the physicochemical characteristics and sources of PM2.5 have changed. A comprehensive study of PM2.5 was conducted from October 16, 2019 to January 23, 2020 to evaluate the effectiveness of previous control measures and further to provide theory basis for more effective policies in the future. Results showed that the aerosol pollution in Luoyang in autumn and winter is still serious with the average concentration of 91.1 μg/m3, although a large reduction (46.9%) since 2014. With the contribution of nitrate increased from 12.5% to 25.1% and sulfate decreased from 16.7% to 11.2%, aerosol pollution has changed from sulfate-dominate to nitrate-dominate. High NO3/SO42− ratio and the increasing of NO3/SO42− ratio with the aggravation of pollution indicating vehicle exhaust playing an increasingly important role in PM2.5 pollution in Luoyang, especially in the haze processes. Secondary inorganic ions contributed significantly to the enhancement of PM2.5 during the pollution period. The high value of Cl/Na+ and EC concentration indicate coal combustion in Luoyang is still serious. The top three contributor sources were secondary inorganic aerosols (33.3%), coal combustion (13.6%), and industrial emissions (13.4%). Close-range transport from the western and northeastern directions were more important factors in air pollution in Luoyang during the sampling period. It is necessary to strengthen the control of coal combustion and reduce vehicle emissions in future policies.  相似文献   

9.
Based on the online and membrane sampling data of Yuncheng from January 1st to February 12th, 2020, the formation mechanism of haze under the dual influence of Spring Festival and COVID-19 (Corona Virus Disease) was analyzed. Atmospheric capacity, chemical composition, secondary transformation, source apportionment, backward trajectory, pollution space and enterprise distribution were studied. Low wind speed, high humidity and small atmospheric capacity inhibited the diffusion of air pollutants. Four severe pollution processes occurred during the period, and the pollution degree was the highest around the Spring Festival. In light, medium and heavy pollution periods, the proportion of SNA (SO42−, NO3 and NH4+) was 59.6%, 56.0% and 54.9%, respectively, which was the largest components of PM2.5; the [NO3]/[SO42−] ratio was 2.1, 1.5 and 1.7, respectively, indicating that coal source had a great influence; the changes of NOR (nitrogen oxidation ratio, 0.44, 0.45, 0.61) and SOR (sulphur oxidation ratio, 0.40, 0.49, 0.65) indicated the accumulation of secondary aerosols with increasing pollution. The coal combustion, motor vehicle, secondary inorganic sources and industrial sources contributed 36.8%, 26.59%, 11.84% and 8.02% to PM2.5 masses, respectively. Backward trajectory showed that the influence from the east was greater during the Spring Festival, and the pollutants from the eastern air mass were higher, which would aggravate the pollution. Meteorological and Spring Festival had a great impact on heavy pollution weather. Although some work could not operate due to the impact of the COVID-19 epidemic, the emission of pollutants did not reduce much.  相似文献   

10.
A field campaign was conducted to study the PM2.5 and atmospheric gases and aerosol's components to evaluate the efficacy of radical measures implemented by the Chinese government to improve air quality during the 2016 G20 Summit in Hangzhou China. The lower level of PM2.5 (32.48 ± 11.03 µg/m3) observed during the control period compared to pre-control and post-control periods showed that PM2.5 was alleviated by control policies. Based on the mass concentrations of particulate components, the emissions of PM2.5 from local sources including fossil fuel, coal combustion, industry and construction were effectively reduced, but non-exhaust emission was not reduced as effectively as expected. The accumulation of SNA (SO42?, NO3?, NH4+) was observed during the control period, due to the favourable synoptic weather conditions for photochemical reactions and heterogeneous hydrolysis. Because of transboundary transport during the control period, air masses from remote areas contributed significantly to local PM2.5. Although, secondary organic carbon (OCsec) exhibited more sensitivity than primary organic carbon (OCpri) to control measures, and the increased nitrogen oxidation ratio (NOR) implied the regional transport of aged secondary aerosols to the study area. Overall, the results from various approaches revealed that local pollution sources were kept under control, indicating that the implementation of mitigation measures were helpful in improving the air quality of Hangzhou during G20 summit. To reduce ambient levels of PM2.5 further in Hangzhou, regional control policies may have to be taken so as to reduce the impact of long-range transport of air masses from inland China.  相似文献   

11.
中国典型城市机动车排放演变趋势   总被引:15,自引:0,他引:15       下载免费PDF全文
选择中国12个典型城市建立1990~2009年机动车排放清单,分析各城市机动车排放历史演变趋势.结果显示,1990~2009年,研究各城市CO、VOCs、NOx和PM排放因子分别降低57%~81%、53%~78%、22%~74%和31%~76%.20年间,各城市CO和VOCs排放量总体在2000年后陆续达到增长峰值后开始下降,总量分别增长1.0倍和1.4倍;NOx和PM排放量总体保持持续增长,分别增长3.2倍和3.3倍.各城市汽油车是CO和VOCs排放主要贡献源,LDA-G、MDTB-G和HDTB-G对各城市机动车CO和VOCs排放的贡献和分别为约70%~90%和约50%~85%,其中LDA-G的排放贡献明显提高.LDA-G、MDTB-G、MDTB-D和HDTB-D贡献了80%~90%的NOx排放,其中MDTB-D和HDTB-D的排放贡献率从平均57.8%上升为72.7%.对于PM,MDTB-D和HDTB-D占排放的70%~90%.此外,部分城市摩托车排放的贡献不容忽视.  相似文献   

12.
国外保护矿业环境的矿业立法择优   总被引:2,自引:0,他引:2  
勘探尤其是开采对环境的污染和破坏是比较典型的,为此,世界绝大多数国家制订了独立于矿产资源法的《矿业法》,从立法资源上保证保护矿业环境的法律构建.国外《矿业法》以源头控制、全过程控制、无过错和合力等立法原则,贯通于行政特许权授予为主并综合运用矿业主体激励、市场力量、公众参与等其他管理方式之中,构建成立体性保护矿业环境的法律制度.国外矿业法择优显得我国取代《矿业法》的《矿产资源法》关于矿业环境保护的规定过分“吝啬“.  相似文献   

13.
小兴安岭泥炭藓沼泽生态系统中的汞   总被引:13,自引:2,他引:11  
研究了小兴安岭汤旺河流域中的泥炭、土壤和植物样品的汞,泥炭地总汞的平均含量为65.8~186.6ng/g;高于黑龙江土壤A层汞平均含量,也高于美国佛罗里达大沼泽国家公园和瑞典Birkeness湿地的含量.甲基汞平均含量为0.16~1.86ng/g;约占总汞的0.2%~1.4%,泥炭地总汞最高浓度出现在5~10cm深处,为186.6ng/g,甲基汞最高浓度出现在10~15cm处,为1.86ng/g,均随深度增加而减少.甲基汞含量与总汞没有很强的相关性(P=0.05,r=0.28)  相似文献   

14.
鸭绿江口潮滩沉积物间隙水中的营养盐   总被引:13,自引:0,他引:13  
通过对鸭绿江口潮滩区2个采样点采集的柱状样分析、培养实验,测定了沉积物间隙水中的营养盐和沉积物中的S2-结果表明,鸭绿江口潮滩区沉积物间隙水中的NO3-含量平均值为3.0μmol/L,垂直分布变化不大.PO43-和SiO32-的含量范围分别为0.8~70.4μmol/L,111.6~1054.3μmol/L,且两者垂直变化类似,随沉积物深度的增加先增加后下降.沉积物中硫化物的分布是随深度增加,含量升高.鸭绿江口潮滩区沉积物Eh、pH的测定结果显示,在13cm以下,Eh降为负值,沉积物还原性逐渐增强.而pH自上而下变化不大.由分子扩散公式计算结果表明,鸭绿江口潮滩区营养盐均由沉积物向上覆水扩散.  相似文献   

15.
文中叙述了1988 ̄1990年间,我国4个港湾-大连湾、天津港、深圳湾及珠江河段各疏浚区疏浚物中油类污染调查及分布状况。文中介绍了站位布设原则,样品采集、样品处理、分析测试方法。进行了沾污疏浚物油类出溶出实验,认为油类溶出实验是估价疏浚物油类污染的程度的重要手段。讨论了4港湾疏浚物油类污染水平。大连湾海域疏浚物石油污染明显,珠江河段,深圳湾及天津港疏浚物稍受影响,基本上是清洁的。  相似文献   

16.
瑞丽城区一氧化碳污染的现状   总被引:2,自引:0,他引:2  
经监测,瑞丽市城区街道空气中一氧化碳的日平均浓度己超过国家二级标准,其主要来源是汽车尾气排放,而且其浓度与汽车流量呈线性正相关。主导风与街道斜交,在街道峡谷内形成旋涡流场,使CO向背风面扩散并沿街道输送,导致局部测点浓度过高。目前控制CO浓度宜限制尾气超标汽车入城并合理分流入城汽车。  相似文献   

17.
金丹 《环境科学》2022,43(1):132-139
为研究上海市夏季臭氧高发季节大气VOCs在臭氧生成中作用,选取2018年5~8月大气臭氧较高的时段,在淀山湖科学观测研究站对103种挥发性有机物、臭氧和氮氧化物等环境污染物进行观测.结果表明,上海臭氧高发季节大气平均φ(VOCs)为32.7×10-9,羰基化合物是VOCs的主要组分,所占质量分数达35.0%.羰基化合物...  相似文献   

18.
深圳市夏季臭氧污染研究   总被引:9,自引:5,他引:4  
以2009年8月为例分析了深圳市夏季臭氧污染情况及污染气象特征,基于二维空气质量模式对臭氧污染控制进行数值模拟. 结果表明:深圳市8月各监测点均存在臭氧超标现象,污染形势严峻;副热带高压控制和热带气旋外围下沉气流是造成夏季出现高浓度臭氧的主要天气过程,此时大气边界层混合层高度在500~800 m,且近地面风速约在5 ms以内,不利于污染物扩散;臭氧的生成受前体物挥发性有机物(VOC)和氮氧化物(NOx)排放的共同影响,其中VOC排放的影响较大,深圳市臭氧控制应以降低VOC排放量为重点,模拟得出对VOC和NOx按25∶1~40∶1的比例协同减排可有效降低臭氧污染.   相似文献   

19.
微囊藻毒素将成为衡量水质好坏的指标之一。水体中微囊藻毒素的检测是了解水体污染和毒素控制的基础,因此微囊藻毒素的检测变得尤其重要。文章综述了目前微囊藻毒素的来源、化学结构和性质的研究成果,重点评述国内外微囊藻毒素检测方法进展。  相似文献   

20.
我国企业信息化建设中存在三类角色分别是企业、管理咨询公司和信息化产品开发商,他们各有优势和不足.只有三方面互相影响、互相促进、改变三者之间的"挤压关系",建立新的服务、协作、监督关系,企业信息化才能顺利进行.本文通过对这三类角色各自特点的分析和比较,深刻的思考了在我国企业信息化建设中这些角色之间的关系.  相似文献   

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