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 共查询到19条相似文献,搜索用时 93 毫秒
1.
通过对自动监测和手动监测兰州市大气中SO2、NO2(NOx)、PM10(TSP)的二组数据分析.在非采暖期二组数据有较大相关性,而在采暖期,SO2和NO2(NOx)具有相关性外,PM10(TSP)则没有相关性.  相似文献   

2.
以长春为例研究环境空气中TSP、PM_(10)和PM_(2.5)的相关性   总被引:2,自引:0,他引:2  
选取长春市解放大路与人民大街的交叉口为研究地点,分别进行TSP、PM10和PM2.5的采样和分析.然后利用相关系敷法和t检验对测定结果进行相关性分析,得到备元素的含量在三种污染物中的相关系敖:在TSP与PM10中为0.9349;在PM2.5与PM10中为0.8797;在TSP与PM2.5中为0.7824.得到各元素含量在三种污染物中的T检验统计值,在TSP与PM10中为0.90103;在PM2.5与PM10中为0.04745;在TSP与PM2.5中为0.047986.从分析结果可以看出,各元素含量在TSP与PM10中的相关性最好,在PM2.5与PM10中次之,研究结果为相关环境管理提供科学依据.  相似文献   

3.
2008年春季呼和浩特沙尘天气与TSP和PM_(10)污染的关系   总被引:3,自引:0,他引:3  
利用TSP和PM10逐时监测数据,对2008年春季呼和浩特市TSP和PM10浓度的变化及其在沙尘天气过程中的相关性进行了分析,结果表明:(1)2008年春季TSP和PM10浓度值多高于国家环境空气质量二级标准,沙尘天气是影响空气环境质量的主要诱因。(2)TSP和PM10浓度在沙尘暴发生当日及前后几天均会有不同程度的增加,且以沙尘天气发生当日浓度最大。TSP和PM10浓度3月份最低,4月份次之,5月份最高。(3)不同沙尘天气过程中,TSP和PM10浓度相差明显,且TSP与PM10/TSP值随沙尘天气强度的增加而增大,PM10在不同沙尘天气过程中均为主要组成成分。(4)沙尘天气过程中TSP与PM10呈线性相关。  相似文献   

4.
乌鲁木齐终端能源消费结构与采暖季PM10污染相关性分析   总被引:1,自引:1,他引:0  
通过定量分析近年环境空气质量变化,建立并验证采暖季PM10与能源消费结构的多元回归方程,得出了各个主要终端能源消费比例变化对采暖季PM10的影响效果,解释了提高清洁能源消费比例对改善空气质量所起到的作用,为进一步治理采暖季PM10的污染提出了相应措施.  相似文献   

5.
安阳市环境空气中TSP、PM10 污染水平及相关性   总被引:4,自引:1,他引:4       下载免费PDF全文
通过分析3个功能区2002年4月—12月环境空气中TSP、PM10的监测结果,了解了不同月份和不同功能区TSP、PM10的污染水平及相关性,TSP与PM10比值分析结果表明,TSP、PM10质量浓度差别不大,存在相关性。通过分析安阳市环境空气中TSP月变化趋势,得出PM10和TSP的污染状况相近,都是春季最重,冬、秋季次之,夏季最轻。  相似文献   

6.
分别在冬季及夏季选取具有典型气候特性的天气,采集空气中TSP和PM10.根据采样前、后滤膜重量之差及采样标况体积,计算TSP质量浓度,分析了TSP和PM10在大气中污染状况,研究了TSP和PM10的相关性及PM10占TSP的比例,并得出结论:在冬、夏二季TSP和PM10的浓度值变化趋势非常相似,在冬季时TSP和PM10...  相似文献   

7.
为全面了解"十一五"时期(2006—2010年)乌鲁木齐市大气污染状况,评估污染源治理及气象条件对空气质量变化的影响,利用2001年1月—2010年12月主要大气污染物浓度数据和同期地面气象资料,总结"十一五"时期乌鲁木齐市大气污染变化特征,重点分析其变化原因。结果表明:"十一五"时期PM10和SO2年均浓度分别比"十五"下降1.7%和10.3%,采暖季降幅最明显,分别达到2.2%和21.9%;而NO2年均浓度比"十五"升高8.9%,非采暖季增幅最大,为11.7%。2006—2010年PM10、SO2年均浓度整体呈下降趋势,NO2浓度有升高趋势。5年中非采暖季各污染物浓度均达标,采暖季PM10和SO2超标倍数逐年减小,煤烟型污染特征仍然典型。污染源管控(特别是减排工程实施)是"十一五"时期SO2和PM10浓度下降的重要原因,气象条件作用相对有限。NO2浓度升高主要与机动车保有量逐年增加和氮氧化物治理启动滞后有关。  相似文献   

8.
本研究以乌鲁木齐工业区、交通区、生活区、风景对照区4个典型区域为研究对象,采集了采暖期大气颗粒物TSP、PM10、PM5、PM2.5,并对其进行质量浓度分析。结果表明:在采暖期大气中TSP的浓度范围为87.94~325.61ug/m3;PM10的浓度范围为76.69~299.21ug/m3;PM5的浓度范围为79.68~294.95ug/m3;在PM2.5的浓度范围为71.80~213.30ug/m3。总体来看,乌鲁木齐采暖期TSP、PM10、PM5、PM2.5的浓度存在一定的差异性,各组分浓度分布为工业区交通区生活区风景对照区,这与采样区受污染程度有关。  相似文献   

9.
研制了一套经济实用的简易无动力采尘装置,其所采集到的尘,与TSP(PM10)之间有相关关系,可反映出空气中TSP(PM10)浓度分布变化趋势,已应用于山东省15个城市环境空气监测优化布点的网格实测.  相似文献   

10.
乌鲁木齐市采暖季空气质量变化趋势分析   总被引:7,自引:0,他引:7  
为了定量评价乌鲁木齐市采暖季空气污染近五年的治理成效,给环境治理决策提供科学依据,运用回归分析方法,对乌鲁木齐市采暖季空气质量的浓度、级别和变化规律进行回归分析。分析结果表明,PM10、SO2、NO2三项污染物的浓度都有所下降,空气质量级别的污染天数呈现明显的月变化规律。乌鲁木齐市采暖季空气的重污染状况有所遏制,但SO2污染凸现,在下一步的治理工作中,加强尘污染治理的同时要加大对SO2的治理力度。  相似文献   

11.
The concentrations of total suspended particulate matter (TSP) and particulate matter less than 10 microns (PM10) were measured at various locations in a Jawaharlal Nehru port and surrounding harbour region. Meteorological data was also collected to establish the correlation with air pollutant concentration. The results are analysed from the standpoint of monthly and seasonal variations, annual trends as well as meteorological effects. The monthly mean concentration of TSP was in the range of 88.2 to 199.3 microg m(-3). The maximum and minimum-recorded value of PM10 was 135.8 and 20.3 microg m(-3), respectively. The annual average concentration of PM10 was 66.1 microg m(-3). There are clear associations between TSP and PM10 data set at all the measured three sites with a correlation coefficient of 0.89, 0.69 and 0.81, respectively. PM10 data appears to be a constant fraction of the TSP data throughout the year, indicating common influences of meteorology and sources. Particle size analysis showed PM10 to be 47% of the total TSP concentration, which is lower than reported for industrial area and traffic junctions in Mumbai. Anthropogenic sources contribute significantly to the PM10 fraction in an industrial region, while contributions from natural sources are more in a port and harbour area. Statistical analysis of air quality data shows that TSP is strongly correlated with wind speed but weakly correlated with temperature. There appears to be a simple inverse relationship between TSP and wind speed data, indicating the dilution and transport by winds.  相似文献   

12.
宁波和温州地区夏季大气中不同粒径颗粒物特征分析   总被引:1,自引:0,他引:1  
对宁波地区北仑和奉化站、温州地区乐清站3个监测点夏季TSP、PM10、PM2.5和PM1.0进行监测,测试分析各种粒径颗粒物浓度水平和粒径分布特征,并通过化学质量平衡(CMB)受体模型对颗粒物进行源解析。监测结果显示,夏季宁波、温州地区TSP和PM10日均浓度为0.049~0.134mg/m3和0.025~0.084mg/m3,均未超过我国环境空气质量二级标准;PM2.5日均浓度为0.007~0.069mg/m3,按美国2006年EPA最新标准限值0.035mg/m3衡量,奉化、乐清、北仑站的超标天数占总监测天数的比例分别为75%、40%和37.5%。粒径分布统计结果显示,3个监测站点PM10占TSP的比例为48.78%~86.96%;PM2.5占TSP的比例为33.33%~72.46%;奉化和乐清监测点PM10中PM2.5和PM1.0的比例平均值在50%以上。源解析结果显示,夏季TSP主要来源于土壤尘,其次是建筑尘和煤烟尘,其贡献率分别为40.70%~55.49%、9.62%~13.64%和5.85%~17.28%。  相似文献   

13.
TSP-PM10-PM2.5-2型中流量大气颗粒物采集系统的开发和应用   总被引:13,自引:0,他引:13  
自行开发并研制了TSP-PM10-PM2.5-2型中流量TSP、PM10、PM2.5大气颗粒物采集系统,是目前中国唯一可以采集TSP、PM10、PM2.5样品并提供足够的样品量进行大气颗粒物化学成分分析的中流量大气颗粒物采集器.该系统精心设计和加工的限流孔可以保持完全固定的流量,保证切割粒径的稳定,减小采样的误差并方便操作.该系统已经成功地应用于20多个城市和地区大气颗粒物的监测和研究中,为研究大气颗粒物的污染状况和来源提供了有效的技术手段和支持.  相似文献   

14.
选用博乐市2010年大气PM10与TSP监测数据月均值,分析了PM10与TSP在大气中的浓度变化相关性趋势、沙尘暴天气对其相关性的影响以及PM10占TSP中的浓度比,并得出PM10与TSP的浓度变化趋势除沙尘暴天气干扰外非常相似,具有很好的相关性。  相似文献   

15.
Because of the recent frequent observations of major dust storms in southwestern cities in Iran such as Ahvaz, and the importance of the ionic composition of particulate matters regarding their health effects, source apportionment, etc., the present work was conducted aiming at characterizing the ionic composition of total suspended particles (TSP) and particles on the order of ~10?μm or less (PM(10)) during dust storms in Ahvaz in April-September 2010. TSP and PM(10) samples were collected and their ionic compositions were determined using an ion chromatography. Mean concentrations of TSP and PM(10) were 1,481.5 and 1,072.9?μg/m(3), respectively. Particle concentrations during the Middle Eastern Dust (MED) days were up to four times higher than those in normal days. Ionic components contributed to only 9.5% and 11.3% of the total mass of TSP and PM(10), respectively. Crustal ions were most abundant during dust days, while secondary ions were dominant during non-dust days. Ca(2+)/Na(+) and Cl(-)/Na(+) ratios can be considered as the indicators for identification of the MED occurrence. It was found that possible chemical forms of NaCl, (NH(4))(2)SO(4), KCl, K(2)SO(4), CaCl(2), Ca(NO(3))(2), and CaSO(4) may exist in TSP. Correlation between the anionic and cationic components suggests slight anion and cation deficiencies in TSP and PM(10) samples, though the deficiencies were negligible.  相似文献   

16.
An experimental system was developed for the rapid measurement of the aspiration/transfer efficiency of aerosol samplers in a wind tunnel. We attempted to measure the aspiration and particle transfer characteristics of two inlets commonly used for sampling airborne Particulate Matter (PM): the 'Total Suspended Particulate' or TSP inlet, and the louvered 'dichotomous sampler inlet' typically used in sampling PM10 or PM2.5. We were able to determine the fraction of the external aerosol that enters the inlet and is transferred through it, and hence is available for collection by a filter, or further size fractionation into PM10 or PM2.5. This 'sampling efficiency' was analysed as a function of dimensionless aerodynamic parameters in order to understand the factors governing inlet performance. We found that for the louvered inlet the sampling efficiency increases as the external wind increases. Under all conditions expected in practical use the louvered inlet aspirates sufficient PM to allow either PM10 or PM2.5 to be selected downstream. The TSP inlet's sampling efficiency decreases with increasing external wind, and the TSP inlet is likely to under-sample the coarse end of the PM10 fraction at moderate and high external winds. As this inlet is generally not used with a downstream size fractionator, changes in sampling efficiency directly affect the measured aerosol concentration. We also investigated whether it is possible to dimensionally scale the PM inlets to operate at either higher or lower flow rates, while preserving the same sampling characteristics as the current full-scale, 16.67 L min(-1) versions. In the case of the louvered inlet, our results indicate that scaling to lower flow rates is possible; scaling to higher flow rates was not tested. For the TSP sampler, the sampling efficiency changes if the sampler is scaled to operate at smaller or larger flow rates, leading to unreliable performance.  相似文献   

17.
The effect of fireworks on air quality was assessed from the ambient concentrations of various air pollutants (SO2, NO2, PM10 and TSP) during Diwali festival in Hisar city (India), in November 1999. The extensive use of fireworks was found to be related to short-term variation in air quality. During the festival the concentration of SO2 was observed to be increased approximately 10-fold at few sites, whereas the concentrations of NO2, PM10 and TSP increased 2-3 times, compared to the data collected on a typical winter day in December 1999. The maximum NO2 concentration was observed a day after the festival. The diurnal pattern of the above pollutants showed a slight increase in the night. The levels of these pollutants observed during Diwali were found to be moderately high, which can be associated with serious health impacts.  相似文献   

18.
一次特大沙尘暴对乌鲁木齐市环境空气质量的影响分析   总被引:7,自引:0,他引:7  
徐鸣  王建国 《干旱环境监测》2002,16(3):139-141,144
通过对2001年5月11日乌鲁木齐市发生的特大沙尘暴及同期有关监测数据进行分析比较,指出乌鲁木齐市沙尘暴中的主要污染物为空气中的可吸入颗粒物,其成因除自然环境因素处,还与城市扬尘有关。  相似文献   

19.
Surface coal mining creates more air pollution problems with respect to dust than underground mining . An investigation was conducted to evaluate the characteristics of the airborne dust created by surface coal mining in the Jharia Coalfield. Work zone air quality monitoring was conducted at six locations, and ambient air quality monitoring was conducted at five locations, for a period of 1 year. Total suspended particulate matter (TSP) concentration was found to be as high as 3,723 μg/m3, respirable particulate matter (PM10) 780 μg/m3, and benzene soluble matter was up to 32% in TSP in work zone air. In ambient air, the average maximum level of TSP was 837 μg/m3, PM10 170 μg/m3 and benzene soluble matter was up to 30%. Particle size analysis of TSP revealed that they were more respirable in nature and the median diameter was around 20 μm. Work zone air was found to have higher levels of TSP, PM10 and benzene soluble materials than ambient air. Variations in weight percentages for different size particles are discussed on the basis of mining activities. Anionic concentration in TSP was also determined. This paper concludes that more stringent air quality standards should be adopted for coal mining areas and due consideration should be given on particle size distribution of the air-borne dust while designing control equipment.  相似文献   

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