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51.
选取深圳8类典型工业行业开展VOCs样品采集,检测分析了100种VOCs组分,从PM2.5和O3协同控制的角度分析了不同污染源的成分谱特征和对环境的影响.结果表明:加油站源谱组成以烷烃(48.4%)占主导,OVOCs (27.6%)占比突出,乙酸乙酯(14.1%)、异戊烷(13.0%)、正戊烷(12.0%)为其优势排放物种;涂料制造、胶黏剂生产、油墨制造、化工制品、纺织印染、医药制造行业排放组成均以OVOCs (42.3%~97.1%)占主导,丙酮为大多数行业的优势物种,且乙腈在部分行业中占比突出.垃圾发电行业以OVOCs (33.9%)和卤代烃(28.3%)占主导,乙醛(13.4%)、丙酮(11.0%)、一氯甲烷(6.1%)为该行业排放的优势物种.以PM2.5和O3协同控制为导向,芳香烃和烯烃是储存运输源需要控制的重点;OVOCs和芳香烃都应成为工艺过程源和废弃物处理源控制的关键.涂料制造行业的源反应活性SRO3和SRSOA值分别为6.0g/g和1.2g/g,削减单位质量排放的VOCs所减少的PM2.5和O3生成潜势最多,应成为深圳市PM2.5和O3协同控制下的优先控制行业. 相似文献
52.
飞机的雷击附着点是飞机防雷设计研究的基础,是飞机设计中的重要过程。本文以伊尔-76飞机模型为例,依据SAE-ARP5416和国内相关标准规定的雷击附着点试验方法,采用基于传输线矩阵法的数值仿真技术对飞机的雷击附着特性展开研究,分析了机载雷达天线对飞机雷击附着点的影响,为机载雷达天线的雷电防护设计提供了理论基础。 相似文献
53.
The vertical distribution of aerosols was directly observed under various atmospheric conditions in the free troposphere using surface micro-pulse lidar (MPL4) at the Zhangye Station (39.08°N, 100.27°E) in western China in the spring of 2008. The study shows that the aerosol distribution over Zhangye can be vertically classified into upper, middle and lower layers with altitudes of 4.5 to 9 km, 2.5 to 4.5 km, and less than 2.5 km, respectively. The aerosol in the upper layer originated from the external sources at higher altitude regions, from far desert regions upwind of Zhangye or transported from higher atmospheric layers by free convection, and the altitude of this aerosol layer decreased with time; the aerosols in the middle and lower layers originated from both external and local sources. The aerosol extinction coefficients in the upper and lower layers decreased with altitude, whereas the coefficient in the middle layer changed only slightly, which suggests that aerosol mixing occurs in the middle layer. The distribution of aerosols with altitude has three features: a single peak that forms under stable atmospheric conditions, an exponential decrease with altitude that occurs under unstable atmospheric conditions, and slight change in the mixed layer. Due to the impact of the top of the atmospheric boundary layer, the diurnal variation in the aerosol extinction coefficient has a single peak, which is higher in the afternoon and lower in the morning. 相似文献
54.
北京地区一次大气环境持续严重污染过程中SO2的垂直分布分析 总被引:28,自引:8,他引:20
在2004-09-27~2004-10-12期间,以325m气象与环境观测塔为平台,使用43CTL型高精度脉冲荧光SO2分析仪,分别布置在观测塔8m、47m、120m和280m 4层观测平台,对大气中的SO2气体浓度、PM10和PM2.5粒子质量浓度及同步气象因素进行了垂直梯度、连续观测.结合气象数据分析了观测期间大气中SO2气体浓度的垂直梯度分布及变化形势,进行了SO2浓度与混合层高度变化、海平面气压变化,风速、风向变化等要素的相关分析,观测到在实验期间大气边界层中SO2浓度由上向下递减分布的现象.由于地形与污染源分布的影响,北风最有利于污染扩散等状况.观测期间捕捉到一次主要由气象因素造成的大气环境严重持续污染及污染清除的全过程. 相似文献
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A grazing experiment was started in 1984 and 1989 respectively, in two parts of a dune grassland in the nature reserve ‘Zwanenwater’,
North Holland; a third part with similar geology and topography was used as a control area and not grazed. An evaluation of
the effects of grazing on vegetation patterns, species composition, vegetation structure and humus form was made with the
help of vegetation maps from 1986 and 1992 as well as field surveys.
Dense tall-grass communities dominated byAmmophila arenaria increased over the period 1986–1992 in the grazed areas, and especially in the non-grazed area (increase in area to 20%,
22% and 50%, respectively). Open communities decreased in the grazed areas, but are still prevalent, while in the ungrazed
area they virtually disappeared, with the result that the present percentage areas are 53%, 38% and 17%.
Field survey data were classified by TWINSPAN producing four vegetation types. These occur more or less equally in grazed
and ungrazed areas, albeit with different percentage areas: (1) open vegetation dominated byCorynephorus canescens; (2) open vegetation characteized, byKoeleria macrantha; (3) heathland dominated byEmpetrum nigrum; and (4) tall-grass communities dominated byAmmophila arenaria. Within a vegetation type, species composition was only marginally affected by grazing regime.
Within the open communities the number of species, vegetation height, vegetation cover and soil organic horizons were not
affected by grazing. In the tall-grass communities the number of species was significantly larger and the height of the vegetation
significantly lower in the area grazed since 1984. In the heathland community the number of species and cover of the moss
layer were significantly higher in the 1984 area and ectorganic and endorganic horizons significantly thicker in the ungrazed
area.
It is suggested that these effects are the result of an increased availability of light, but possibly also of a decreased
stock of organic matter and nutrients, due to a decreased input of litter and accelerated rates of decomposition. 相似文献
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PM2.5 (particles with aerodynamic diameters less than 2.5 μm) chemical source profiles applicable to speciated emissions inventories and receptor model source apportionment are reported for geological material, motor vehicle exhaust, residential coal (RCC) and wood combustion (RWC), forest fires, geothermal hot springs; and coal-fired power generation units from northwestern Colorado during 1995. Fuels and combustion conditions are similar to those of other communities of the inland western US. Coal-fired power station profiles differed substantially between different units using similar coals, with the major difference being lack of selenium in emissions from the only unit that was equipped with a dry limestone sulfur dioxide (SO2) scrubber. SO2 abundances relative to fine particle mass emissions in power plant emissions were seven to nine times higher than hydrogen sulfide (H2S) abundances from geothermal springs, and one to two orders of magnitude higher than SO2 abundances in RCC emissions, implying that the SO2 abundance is an important marker for primary particle contributions of non-aged coal-fired power station contributions. The sum of organic and elemental carbon ranged from 1% to 10% of fine particle mass in coal-fired power plant emissions, from 5% to 10% in geological material, >50% in forest fire emissions, >60% in RWC emissions, and >95% in RCC and vehicle exhaust emissions. Water-soluble potassium (K+) was most abundant in vegetative burning profiles. K+/K ratios ranged from 0.1 in geological material profiles to 0.9 in vegetative burning emissions, confirming previous observations that soluble potassium is a good marker for vegetative burning. 相似文献
60.