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11.
保定市是京津冀地区重要城市之一.为了解保定市大气污染物质量浓度特征和潜在输送源,对保定市国控点2017年1月1日-12月31日PM10、PM2.5、SO2、NO2、O3、CO等常规大气污染物数据进行分析,并利用TrajStat后向轨迹模型进行区域传输研究.结果表明:①ρ(PM10)、ρ(PM2.5)、ρ(SO2)、ρ(NO2)分别为(138±96)(84±66)(29±23)和(50±24)μg/m3,与2016年相比分别下降5.9%、9.1%、25.5%和13.1%;ρ(CO)较2016年下降了14.0%;ρ(O3)较2016年增长了25.2%.ρ(PM10)、ρ(PM2.5)、ρ(NO2)和ρ(O3)分别超过GB 3095-2012《环境空气质量标准》二级标准限值的0.97、1.40、0.25和0.34倍,ρ(SO2)和ρ(CO)未超标.②除ρ(O3)外,其他污染物质量浓度均呈冬季最高、夏季最低的季节性特征,其中,冬季PM2.5污染最为严重,春季PM2.5~10(粗颗粒物)污染严重.③空气质量模型源解析结果显示,保定市ρ(PM2.5)约60.0%~70.0%来自本地污染源排放.后向轨迹结果表明,在外来区域传输影响中,保定市主要受到西北方向气团(占比为21.7%~60.0%)远距离传输和正南方向气团(占比为34.8%~50.5%)近距离传输的影响.④PSCF(潜在源贡献因子分析法)和CWT(浓度权重轨迹分析法)分析表明,除保定市及周边区县本地污染贡献外,位于太行山东麓沿线西南传输通道的邯郸市、邢台市、石家庄市是影响保定市PM2.5的主要潜在源区.研究显示,PM2.5为保定市大气中的主要污染物,并呈冬季高、夏季低的变化特征,其主要来自西北远距离输送和南部近距离传输. 相似文献
12.
黑河中下游是我国重要的防风固沙生态功能区,分析该区域的防风固沙功能时空变化,明确其主要的影响因子贡献,对于指导荒漠化防治、维护流域生态安全十分重要.该研究基于修正风蚀方程(revised wind erosion equation,RWEQ)、一元线性回归斜率分析、灰色关联分析和GIS技术,分析了2000—2017年黑河中下游防风固沙功能动态变化及其影响因子.结果表明:①2000—2017年,黑河中下游年均防风固沙量为3.2×109 t,年均防风固沙功能约为2.44×104 t/km2;防风固沙量总体呈增强趋势,年均增加6.67×107 t,年均变化率为1.85%.②区域防风固沙功能呈现中游较强,向下游递减的空间分布特征,防风固沙功能较高区约占研究区面积的31.54%,一般区占20.77%,较低区(北部荒漠区)占47.69%;甘肃省张掖市和嘉峪关市防风固沙功能呈增加趋势,回归方程系数(slope)为0~26.29%,占总面积的12.51%;额济纳旗东北部和甘肃省高台县中部防风固沙功能呈下降趋势,回归方程系数为-17.17%~0,占总面积的23.30%.③防风固沙功能主要影响因子中,风力因子最主要,贡献率为30.04%,其次为积雪覆盖、土壤湿度、植被覆盖,贡献率分别为24.57%、24.26%和21.13%.研究显示,防风固沙工程应综合考虑气候变化、植被覆盖、土壤特性及人类活动的复合影响,实行具有空间差异化的方案. 相似文献
13.
利用静态箱-气相色谱法对夏季(7月、8月和9月)长江河口湿地芦苇植被CO_2、CH_4和N_2O的叶面通量、茎秆扩散速率以及沉积物通量的日变化进行研究。结果显示,通过芦苇叶片排放的N_2O与CH_4的量分别为2.99μg/(m~2·h)和15.36μg/(m~2·h),CO_2则呈现白天吸收(-120.86 mg/(m~2·h))、夜间排放(69.39 mg/(m~2·h))的特点。芦苇茎秆N_2O、CH_4和CO_2平均扩散速率分别为1.96μg/h、142.45μg/h和10.69 mg/h,沉积物平均排放通量为N_2O 8.18μg/(m~2·h)、CH_41.58 mg/(m~2·h)、CO_2169.66 mg/(m~2·h)。芦苇茎秆和沉积物界面CH_4和CO_2的排放均呈现出明显的"单峰型"昼夜变化规律,其排放峰值集中在日照及温度最高的9:00至15:00。芦苇植株是影响温室气体排放变化的因素之一。芦苇植株在光合作用下吸收CO_2并促进CH_4的排放,而芦苇发达的根系及茎秆是温室气体排放的主要途径。同时,Pearson相关性分析表明温度对芦苇群落CH_4和NO2的排放影响显著,但与CO_2通量的相关性不明显。土壤氧化还原电位对3种气体的排放均有显著影响。 相似文献
14.
Review on the annual PM10 concentrations over a 10-year period shows that Macau is subjected to severe fine particulate pollution. Investigations of its variation in monthly and daily time scales with the local meteorological records reveal further details. It is found that a distinct feature of the Asian monsoon climates, the changes of wind direction, mainly controls the general trend of PM10 concentration in a year. The monsoon driven winter north-easterly winds bring upon Macau dry and particle enriched air masses leading to a higher concentration in that period while the summer south-westerly winds transport humid and cleaner air to the region leading to a lower PM10 value. This distinct seasonal feature is further enhanced by the lower rainfall volume and frequency as well as mixing height in winter and their higher counterparts in summer. It is also found that the development of tropical cyclones near Macau could also impose episode like PM10 concentration spikes due to the pre-typhoon induced stagnant air motion followed by the swing of wind direction to the northerly. 相似文献
15.
Continuous visibility monitoring has been carried out inKwangju, Korea since May 1999. The total light extinctioncoefficient b
ext measured by a transmissometer andreveals seasonal trends in urban visual air quality,especially under hazy conditions with a visual range of lessthan 15 km. Seasonal atmospheric visibility under lowrelative humidity during the winter was observed to be betterthan during any other seasons. Summertime visibility wasseverely degraded due to highly increased light scattering byhygroscopic particles under high humidity atmosphericconditions. Visibility during spring and fall was alsomoderate. However, yellow sand in spring caused the lowestvisibility conditions over the measurement area for a fewdays. With continuous monitoring using the transmissometer,the daily average seasonal visual range was measured to be13.1, 9.2, 11.0, and 13.9 km in spring, summer, falland winter, respectively. Under the atmospheric humiditycondition less than 60%, visual range was observed tobe 16.1, 13.9, 15.1, and 16.6 km in spring, summer,fall, and winter, respectively. The mean light extinctionbudget by sulfate and nitrate aerosols was determined to bethe highest value of 63.71% during the summer and thelowest value of 27.08% during spring. During the `yellow sand dust' period, a mean light extinction budget by soil particles was estimated to be at an unusually high value of 44.22%. 相似文献
16.
MARTIN A. STAPANIAN STEVEN P. CLINE DAVID L. CASSELL 《Environmental monitoring and assessment》1997,45(3):237-257
We evaluate a field method for determining species richness andcanopy cover of vascular plants for the Forest Health MonitoringProgram (FHM), an ecological survey of U.S. forests. Measurementsare taken within 12 1-m2 quadrats on 1/15 ha plots in FHM.Species richness and cover are determined for four height classes(strata) within each quadrat and aggregated by stratum over the entireplot. We estimated (1) the agreement between experienced trainers andinexperienced technicians who collected the data on this survey(accuracy) and (2) the agreement among the technicians (precision) forresults on species richness and cover from 3 test plots at 3 timeintervals. The methods appear to be highly precise, although somediscrepancies with the values obtained by the trainers were found.Trainers found significantly more species in the ground stratum (0–0.6 m) and measured significantly more cover in the uppermost stratum(>4.9 m). The proportion of variation due to measurement error andtemporal variability was less than 13% for species richness (all strata)and cover (all but one stratum). This indicates that the method issuitable for monitoring changes in species richness and canopy coverfor a large-scale synoptic monitoring project such as FHM. 相似文献
17.
Gustavo Ratto Fabián Videla J. Reyna Almandos Ricardo Maronna Daniel Schinca 《Environmental monitoring and assessment》2006,121(1-3):325-340
This article presents and discusses SO2 (ppbv) concentration measurements combined with meteorological data (mainly wind speed and direction) for a five-year campaign (1996 to 2000), in a site near an oil refinery plant close to the city of La Plata and surroundings (aprox. 740.000 inh.), considered one of the six most affected cities by air pollution in the country. Since there is no monitoring network in the area, the obtained results should be considered as medium term accumulated data that enables to determine trends by analyzing together gas concentrations and meteorological parameters. Preliminary characterization of the behaviour of the predominant winds of the region in relation with potential atmospheric gas pollutants from seasonal wind roses is possible to carry out from the data. These results are complemented with monthly averaged SO2 measurements. In particular, for year 2000, pollutant roses were determined which enable predictions about contamination emission sources. As a general result we can state that there is a clear increase in annual SO2 concentration and that the selected site should be considered as a key site for future survey monitoring network deployment. Annual SO2 average concentration and prevailing seasonal winds determined in this work, together with the potential health impact of SO2 reveals the need for a comprehensive and systematic study involving particulate matter an other basic pollutant gases. 相似文献
18.
依托北京市、廊坊市和保定市高密度的地面空气质量监测、气象要素监测以及PM2.5化学组分监测和后向轨迹分析等手段,对2017年上半年三地的空气质量进行分析。研究发现:三地中北京市空气质量较好,保定市较差。分污染物来看,保定市SO2浓度水平明显高于廊坊市和北京市,颗粒物PM10和PM2.5也呈现保定市最高、北京市最低的规律。从污染物日变化来看,CO、SO2、NO2、PM10和PM2.5呈双峰型分布,O3呈单峰型分布。从区域整体分布规律来看,PM2.5和SO2呈现明显的"南高北低"特征。PM2.5化学组分分析结果表明:1—4月燃煤对该区域空气质量的影响较大,5—6月机动车排放的影响更为凸显。后向轨迹分析结果表明:在2017年上半年到达北京市的气流中有24%来自于北京市南部,且这些气流多为低空传输,表明区域传输对于北京市空气质量具有一定的影响。 相似文献
19.
地理变异系数法和Fisher最优分割法在环境空气监测优化布点中的应用 总被引:2,自引:0,他引:2
在环境空气监测点位优化中,为反映优化后点位的整体代表性,需要在允许的测定误差内以最少的测点反映区域内较长时期的整体污染水平、污染分布状况和污染趋势.本文以博山城区为例,利用地理变异系数法和Fisher最优分割法对所布设点位进行数理统计.该方法使用简便,分级自然,避免了诸多人为因素的影响,同时,优选结果具有较强的整体代表性. 相似文献
20.
用结构分析法确定闪石中阳离子的占位已为人们所熟知,本文采用44个碱性闪石的化学分析数据,通过逐步回归分析,从统计学的角度来分析碱性闪石各晶位中阳离子占位率之间的相关性,从而进一步探讨其类质同象的规律,分析表明:碱性问石中作为独立变量的阳离子并非如通常认为的多而杂,如果把碱性闪石类质同象看成一个随机线性向量,则其空间的维数很可能小于10,上述理论计算同时还表明:1.有可能直接用化学分析结果按概率方法对闪石进行定名;2.有可能选择X射线粉末图大于10条特征峰的强度作统计分析来估算闪石中阳离子的占位率。 相似文献