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371.
针对亚微米气溶胶颗粒进入大气中危害环境及人类的健康的问题,设计了一种移动式亚微米气溶胶高效过滤装置,采用最易穿透粒径法(MPPS)测试了装置的过滤效率,结果表明:该装置具有较高的过滤效率,在0.1~0.25μm粒径范围内,装置的过滤效率在99.999%以上,该设备可用于亚微米气溶胶颗粒的过滤净化。  相似文献   
372.
Bioaerosols from wastewater treatment processes are a significant subgroup of atmospheric aerosols. In the present study,airborne microorganisms generated from a wastewater treatment station(WWTS) that uses an oxidation ditch process were diminished by ventilation.Conventional sampling and detection methods combined with cloning/sequencing techniques were applied to determine the groups,concentrations,size distributions,and species diversity of airborne microorganisms before and after ventilation. There were 3021 ± 537 CFU/m3 of airborne bacteria and 926 ± 132 CFU/m3 of airborne fungi present in the WWTS bioaerosol.Results showed that the ventilation reduced airborne microorganisms significantly compared to the air in the WWTS. Over 60% of airborne bacteria and airborne fungi could be reduced after4 hr of air exchange. The highest removal(92.1% for airborne bacteria and 89.1% for fungi) was achieved for 0.65–1.1 μm sized particles. The bioaerosol particles over 4.7 μm were also reduced effectively. Large particles tended to be lost by gravitational settling and small particles were generally carried away,which led to the relatively easy reduction of bioaerosol particles0.65–1.1 μm and over 4.7 μm in size. An obvious variation occurred in the structure of the bacterial communities when ventilation was applied to control the airborne microorganisms in enclosed spaces.  相似文献   
373.
Atmospheric peroxyacetyl nitrate(PAN), peroxypropionyl nitrate(PPN), and carbon tetrachloride(CCl4) were measured from September 2010 to August 2011 in Beijing. PAN exhibited low values from mid-autumn to early spring(October to March) with monthly average concentrations ranging from 0.28 to 0.73 ppbV, and increased from early spring to summer(March to August), ranging from 1.37–3.79 ppbV. The monthly variation of PPN was similar to PAN, with low values(below detection limit to 0.18 ppbV) from mid-autumn to early spring, and a monthly maximum in September(1.14 ppbV). The monthly variation of CCl4was tightly related to the variation of temperature, exhibiting a minimum in winter(69.3 pptV) and a maximum of 180.6 pptV in summer. Due to weak solar intensity and short duration, PAN and O3showed no distinct diurnal patterns from morning to night during winter, whereas for other seasons, they both exhibited maximal values in the late afternoon(ca. 15:00 to 16:00 local time) and minimal values during early morning and midnight. Good linear correlations between PAN and PPN were found in autumn(R = 0.91), spring(R = 0.94), and summer(R = 0.81), with slopes of 0.130, 0.222, and 0.133, respectively, suggesting that anthropogenic hydrocarbons dominated the photochemical formation of PANs in Beijing. Positive correlation between PAN and O3 in summer with the low slopes( O3 / PAN) ranging from 9.92 to 18.0 indicated serious air pollution in Beijing, and strong negative correlation in winter reflected strong O3consumption by NO titration and less thermal decompositin of PAN.  相似文献   
374.
Organic acids as important constituents of organic aerosols not only influence the aerosols' hygroscopic property, but also enhance the formation of new particles and secondary organic aerosols. This study reported organic acids including C14–C32fatty acids, C4–C9dicarboxylic acids and aromatic acids in PM2.5collected during winter 2009 at six typical urban, suburban and rural sites in the Pearl River Delta region. Averaged concentrations of C14–C32fatty acids, aromatic acids and C4– C9 dicarboxylic acids were 157, 72.5 and 50.7 ng/m3, respectively. They totally accounted for 1.7% of measured organic carbon. C20–C32fatty acids mainly deriving from higher plant wax showed the highest concentration at the upwind rural site with more vegetation around, while C14–C18fatty acids were more abundant at urban and suburban sites, and dicarboxylic acids and aromatic acids except 1,4-phthalic acid peaked at the downwind rural site. Succinic and azelaic acid were the most abundant among C4–C9dicarboxylic acids, and 1,2-phthalic and 1,4-phthalic acid were dominant aromatic acids. Dicarboxylic acids and aromatic acids exhibited significant mutual correlations except for 1,4-phthalic acid, which was probably primarily emitted from combustion of solid wastes containing polyethylene terephthalate plastics. Spatial patterns and correlations with typical source tracers suggested that C14–C32fatty acids were mainly primary while dicarboxylic and aromatic acids were largely secondary. Principal component analysis resolved six sources including biomass burning, natural higher plant wax, two mixed anthropogenic and two secondary sources; further multiple linear regression revealed their contributions to individual organic acids. It turned out that more than 70% of C14–C18fatty acids were attributed to anthropogenic sources, about 50%–85% of the C20–C32fatty acids were attributed to natural sources, 80%–95% of dicarboxylic acids and 1,2-phthalic acid were secondary in contrast with that 81% of 1,4-phthalic acid was primary.  相似文献   
375.
To understand the pollution characteristics of atmospheric particles and heavy metals in winter in Chang-Zhu-Tan city clusters, China, total suspended particulate(TSP) and PM10samples were collected in cities of Changsha, Zhuzhou and Xiangtan from December 2011 to January 2012, and heavy metals of Cd, Pb, Cr, and As were analyzed. It shows that the average TSP concentration in Changsha, Zhuzhou and Xiangtan were(183 ± 73),(201 ± 84) and(190 ± 66) μg/m3respectively, and the average PM10 were(171 ± 82),(178 ± 65) and(179 ± 55) μg/m3respectively. The lowest TSP and PM10concentrations occurred at the background Shaping site of Changsha. The average ratio of ρ(PM10)/ρ(TSP) was 91.9%, ranging from 81.3% to 98.9%. Concerning heavy metals, in TSP samples, the concentration of Cr, As, Cd and Pb were 28.8–56.5, 18.1–76.3, 3.9–26.1 and 148.0–460.9 ng/m3, respectively, while in PM10samples, were 16.4–42.1, 15.5–67.9, 3.3–22.2 and 127.9–389.3 ng/m3, respectively. The enrichment factor of Cd was the highest, followed by Pb and As, while that of Cr was the lowest.  相似文献   
376.
为了考察珠江三角洲地区大气和土壤中多氯联苯(PCBs)残留现状,于2012年在珠江三角洲地区采集了空气和土壤样品,并利用GC-MS进行PCBs分析测定。结果表明,大气中Σ24PCBs的总浓度为240~2 258 pg/m3,平均为1 243 pg/m3,且PCBs主要存在于气相中,占24种PCBs总浓度的90%以上,单体分布主要以三氯~五氯联苯为主。自2001年以来珠江三角洲地区大气中PCBs浓度有小幅波动,说明部分地区有PCBs源释放的可能。土壤中24种PCBs的总浓度为ND~20.68 ng/g,平均为3.77 ng/g。三氯联苯是土壤中PCBs的主要同类物,平均占土壤中24种PCBs总浓度的45%,其次是四氯联苯,平均占19%。部分地点低氯代PCBs比例下降,高氯代比例升高。  相似文献   
377.
经济增长带来的能源消耗使得火电厂排放了越来越多的氮氧化物,国家对环保的重视出台了更为严格的大气污染物排放标准GB 13223-2011。文章首先介绍了云南全省氮氧化物排放情况和趋势,概述了云南各火电厂氮氧化物排放现状及采取措施,然后根据不同的锅炉类型分别对常规煤粉炉、W形火焰炉及CFB炉机组进行脱硝改造分析,这对找出合理的达标脱硝技术路线、控制烟气污染物具有一定的参考价值。  相似文献   
378.
发展了一个能够考虑昼夜大气稳定度差异的城市应急重气扩散模型——SLAB_URBAN模型,利用该模型对美国Oklahoma City Joint Urban 2003(JU2003)城市扩散试验进行了模拟,主要关注下风方向不同观测距离的Cmaxu/Q值,并将模型模拟出的Cmaxu/Q值与JU2003试验观测的Cmaxu/Q值进行了对比验证。结果表明:SLAB_URBAN模型能够模拟出昼夜不同稳定度条件下城市重气扩散在下风方向浓度的分布状况;SLAB_URBAN模型的统计误差分析显示其模拟结果与观测值较一致;此外,从应急反应和安全角度考虑,SLAB_URBAN模型也符合实际工作的需求。  相似文献   
379.
春节期间南京市大气气溶胶粒径分布特征   总被引:15,自引:4,他引:11  
为研究春节期间燃放烟花爆竹对城市大气气溶胶数浓度粒径谱分布的影响,对2012年1月19~31日南京大气气溶胶数浓度、污染气体浓度和质量浓度进行了观测分析.结果表明,烟花爆竹的燃放期间10~20 nm气溶胶浓度远低于非燃放期,50~100、100~200和200~500 nm数浓度有较大增加,20~50 nm和0.5~10μm气溶胶数浓度变化不大.烟花爆竹的燃放对气溶胶数浓度谱影响较大,非燃放期数浓度谱为双峰型分布;在燃放期数浓度谱为单峰性分布,且峰值向大粒径段偏移.烟花爆竹燃放期间质量浓度谱为双峰型分布,对细粒子的质量浓度影响较大,燃放期间PM2.5/PM10和PM1.0/PM10的值可升高10%.烟花爆竹的大量燃放对1.0~2.1μm粒径段气溶胶密度影响最大,对其他粒径段密度影响较小.  相似文献   
380.
北京地区冬夏季持续性雾-霾发生的环境气象条件对比分析   总被引:29,自引:14,他引:15  
在北京地区,除冬季供暖期外盛夏也是雾-霾天气的高发季节,与我国南方不同.使用微波辐射仪、风廓线和常规气象探测资料、NCEP再分析资料以及大气成分观测结果,通过对比分析揭示了冬、夏季持续6 d的2个雾-霾过程形成和维持机制的异同.冬季雾-霾过程出现在高空西北气流、低层多短波活动的背景下,其形成和维持的主要机制是边界层内始终有逆温层、地面弱风场、底层湿度逐渐增大.逆温层昼高夜低、湿度昼小夜大是影响PM2.5质量浓度和能见度日变化的重要环境因子.在雾-霾天气持续期间地面弱风场能够维持主要源于冷空气势力弱、常不能影响到地面.此外,入夜后地面迅速辐射降温、边界层上层有暖平流以及空气过山后下沉增温在逆温层的形成中起了关键作用.然而,对于夏季持续性雾-霾天气,气溶胶区域输送、环境大气保持对流性稳定、空气的高饱和度是其发生的重要条件.在副热带高压长时间控制下对流层低层盛行偏南风,北京的PM2.5质量浓度随着偏南风风速增大升高.对流层底层系统性偏南风与北京附近的山谷风共同构成了从北京以南气溶胶累积地向北输送的机制.夏季雾-霾过程低层没有逆温,但是北京上空一直维持超过200 J·kG-1的对流抑制能量,它同样限制了污染物的垂直扩散.夏季自由对流高度也存在昼夜变化,其对PM2.5浓度和能见度的作用与逆温层高度升降相同.因此,冬、夏个例分别代表了2种不同类型的持续性雾-霾过程,导致差异的根本原因在于大气环流型.  相似文献   
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