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951.
对悬浮颗粒物室外人体暴露的测定一直受到可用资源的限制,设计有效的网络就要求对测定方法的选择、采样点的数量、采样时间、采样频率等进行调整。采样位置要求能表征因周围污染源对附近地区和城市最小影响的空间数值。虽然大多数判定PM是否达标的测定方法是每第3天至第6天的24 h监测,但是室外人体暴露的评价要求连续监测一整天,最好有1h或更短时间的监测时段。更详细的粒径大小和化学性质数据也很有必要,因为较小的颗粒及其特殊的化学物质要比总的样品质量更有助于反映对健康的不良影响。 相似文献
952.
环境空气中多环芳烃(PAHs)不同岗位暴露情况研究 总被引:1,自引:0,他引:1
探讨不同岗位暴露多环芳烃(PAHs)情况,结果表明,环境空气中PAHs受岗位影响显著,随暴露程度的加重,PAHs暴露浓度呈明显上升趋势。2、3环的PAHs主要分布在气相中,而4环以上的PAHs则主要存在于PM10中。PAHs相当于BaP当量致癌强度也表明,相对于气相来说,致癌源为PM10,其贡献率为90%。 相似文献
953.
Sebastian U. Senger 《Umweltwissenschaften und Schadstoff-Forschung》2000,12(3):152-156
Zusammenfassung Im G?teborger Protokoll der UN ECE zur Bek?mpfung von Versauerung, Eutrophierung und bodennahem Ozon vom 1. Dezember 1999
werden Vorgaben zur Reduktion von Luftschadstoffkomponenten von 1990 bis 2010 festgelegt. In der vorliegenden Arbeit werden
Absch?tzungen, ob diese Werte für die Bundesl?nder NRW und Hessen erreichbar sind, gemacht. Um absch?tzen zu k?nnen, wie die
Konzentrationen einzelner Luftschadstoffe im Jahre 2010 sein werden, wurden aus den Daten der Jahre 1990-1999 die best-angepassten
Funktionen graphisch dargestellt und bis zum Jahr 2010 extrapoliert. Unter der Absch?tzung, dass die Luftschadstoffemission
sich weiterhin wie in den letzten 10 Jahren reduziert oder noch darüber hinaus verringert, wurden die bis zum Jahre 2010 zu
erwartenden prozentualen Reduktionen berechnet. Die im G?teborger Protokoll festgelegten Prozents?tze zur Reduzierung von
NOx, SO2 und NM-VOC sind nach den hier vorgelegten Absch?tzungen im Zeitraum von 1990-2010 erreichbar. Für CO, O3 und CO2 werden nur deutliche Abnahmen verlangt. Nach den vorliegenden Absch?tzungen werden CO um ca. 70% und O3 nur über verkehrsarmen, waldreichen Gebieten abnehmen. Für das globale Gas CO2 kann nur eine konstante Zunahme abgesch?tzt werden.
Online-First: 19. May 2000 相似文献
954.
First assessment of the PM<Subscript>10</Subscript> and PM<Subscript>2.5</Subscript> particulate level in the ambient air of belgrade city 总被引:1,自引:0,他引:1
Rajsić SF Tasić MD Novaković VT Tomasević MN 《Environmental science and pollution research international》2004,11(3):158-164
INTENTION, GOAL, SCOPE, BACKGROUND: As the strong negative health effect of exposure to the inhalable particulate matter PM10 in the urban environment has been confirmed, the study of the mass concentrations, physico-chemical characteristics, sources, as well as spatial and temporal variation of atmospheric aerosol particles becomes very important. OBJECTIVE: This work is a pilot study to assess the concentration level of ambient suspended particulate matter, with an aerodynamic diameter of less than 10 microm, in the Belgrade central urban area. Average daily concentrations of PM10 and PM2.5 have been measured at three representative points in the city between June 2002 and December 2002. The influence of meteorological parameters on PM10 and PM2.5 concentrations was analyzed, and possible pollution sources were identified. METHODS: Suspended particles were collected on Pure Teflon filters by using a Mini-Vol low-volume air sampler (Airmetrics Co., Inc.; 5 l min(-1) flow rate). Particle mass was determined gravimetrically after 48 h of conditioning in a desiccator, in a Class 100 clean room at the temperature T = 20 degrees C and at about 50% constant relative humidity (RH). RESULTS AND DISCUSSION: Analysis of the PM10 data indicated a marked difference between season without heating--(summer; mean value 56 microg m(-3)) and heating season--(winter; mean value 96 microg m3); 62% of samples exceeded the level of 50 microg m(-3). The impact of meteorological factors on PM concentrations was not immediately apparent, but there was a significant negative correlation with the wind speed. CONCLUSIONS: The PM10 and PM2.5 mass concentrations in the Belgrade urban area had high average values (77 microg m(-3) and 61 microg m(-3)) in comparison with other European cities. The main sources of particulate matter were traffic emission, road dust resuspension, and individual heating emissions. When the air masses are coming from the SW direction, the contribution from the Obrenovac power plants is evident. During days of exceptionally severe pollution, in both summer and winter periods, high production of secondary aerosols occurred, as can be seen from an increase in PM2.5 in respect to PM10 mass concentration. RECOMMENDATION AND OUTLOOK: The results obtained gave us the first impression of the concentration level of particulate matter, with an aerodynamic diameter of less than 10 microm, in the Belgrade ambient air. Due to measured high PM mass concentrations, it is obvious that it would be very difficult to meet the EU standards (EEC 1999) by 2010. It is necessary to continue with PM10 and PM2.5 sampling; and after comprehensive analysis which includes the results of chemical and physical characterization of particles, we will be able to recommend effective control measures in order to improve air quality in Belgrade. 相似文献
955.
V. Etyemezian M. Tesfaye A. Yimer J.C. Chow D. Mesfin T. Nega G. Nikolich J.G. Watson M. Wondmagegn 《Atmospheric environment (Oxford, England : 1994)》2005,39(40):7849-7860
Twenty-one samples were collected during the dry season (26 January–28 February 2004) at 12 sites in and around Addis Ababa, Ethiopia and analyzed for particulate matter with aerodynamic diameter <10 μm (PM10) mass and composition. Teflon-membrane filters were analyzed for PM10 mass and concentrations of 40 elements. Quartz-fiber filters were analyzed for chloride, sulfate, nitrate, and ammonium ions as well as elemental carbon (EC) and organic carbon (OC) content. Measured 24-h PM10 mass concentrations were <100 and 40 μg m−3 at urban and suburban sites, respectively. PM10 lead concentrations were <0.1 μg m−3 for all samples collected, an important finding because the government of Ethiopia had stopped the distribution of leaded gasoline a few months prior to this study. Mass concentrations reconstructed from chemical composition indicated that 34–66% of the PM10 mass was due to geologically derived material, probably owing to the widespread presence of unpaved roads and road shoulders. At urban sites, EC and OC compounds contributed between 31% and 60% of the measured PM10 while at suburban sites carbon compounds contributed between 24% and 26%. Secondary sulfate aerosols were responsible for <10% of the reconstructed mass in urban areas but as much as 15% in suburban sites, where PM10 mass concentrations were lower. Non-volatile particulate nitrate, a lower limit for atmospheric nitrate, constituted <5% and 7% of PM10 at the urban and suburban sites, respectively. At seven of the 12 sites, real-time PM10 mass, real-time carbon monoxide (CO), and instantaneous ozone (O3) concentrations were measured with portable nephelometers, electrochemical analyzers, and indicator test sticks, respectively. Both PM10 and CO concentrations exhibited daily maxima around 7:00 and secondary peaks in the late afternoon and evening, suggesting that those pollutants were emitted during periods associated with motor-vehicle traffic, food preparation, and heating of homes. The morning concentration maxima were likely accentuated by stable atmospheric conditions associated with overnight surface temperature inversions. Ozone concentrations were measured near mid-day on filter sample collection days and were in all cases <45 parts per billion. 相似文献
956.
Shaodong Xie Yuanhang Zhang Li Qi Xiaoyan Tang 《Water, Air, & Soil Pollution: Focus》2005,5(3-6):217-229
In the Beijing area, March and April have the highest frequency of sand-dust weather. Floating dust, blowing sand, and dust
storms, primarily from Mongolia, account for 71%, 20%, and 9% of sand-dust weather, respectively. Ambient air monitoring and
analysis of recent meteorological data from Beijing sand-dust storm periods revealed that PM10 mass concentrations during dust storm events remained at 1500 μg m−3, which is five to ten times higher than during non-dust storm periods, for fourteen hours on both April 6 and 25, 2000. During
the same period, the concentrations in urban areas were comparable to those in suburban areas, while the concentrations of
gaseous pollutants, such as SO2, NO
x
, NO2, and O3, remained at low levels, owing to strong winds. Furthermore, during sand-dust storm periods, aerosols were created that consisted
not only of many coarse particles, but also of a large quantity of fine particles. The PM2.5 concentration was approximately 230 μg m−3, accounting for 28% of the total PM10 mass concentration. Crustal elements accounted for 60–70% of the chemical composition of PM2.5, and sulfate and nitrate for much less, unlike the chemical composition of PM2.5 on pollution days, which was primarily composed of sulfates, nitrates, and organic material. Although the very large particle
specific surface area provided by dust storms would normally be conducive to heterogeneous reactions, the conversion rate
from SO2 to SO4
2− was very low, because the relative humidity, less than 30%, was not high enough. 相似文献
957.
Ji Shulan Liu Zhipei Liu Zhipeng Ren Haiyan 《Frontiers of Environmental Science & Engineering in China》2007,1(3):325-328
A bacterial strain, ZY3, growing on sex steroid hormones as the sole source of carbon and energy was isolated from the sewage
treatment plant of a prophylactic steroids factory. ZY3 degrades the 3-methoxy-17β-hydroxy-1,3,5(10),8(9)-δ-4-estren (MHE).
This strain was preliminarily identified as Raoultella sp. ZY3 according to its morphology and its 16S rRNA gene sequence. During the experimental period (72 h), the optimum temperature,
pH and 3-MHE concentration for the degradation of hydride by the strain ZY3 were 35°C, 10 and 10 mg/L, respectively. The degradation
rate of the sex steroid hormones increased to 87% and 85% after the addition of maltose and peptone, respectively.
Translated from China Environmental Science, 2005, 25(5): 585–588 [译自: 中国环境科学] 相似文献
958.
岩石的磁化率各向异性参数(A.M.S.),在地质科学研究中的应用已受到越来越多的重视。目前测量A.M.S.的仪器主要有旋转磁力仪和卡帕桥。结合笔者的实践,本文比较详细地介绍这两类仪器用于进行各向异性测量的原理以及数据处理方法。 相似文献
959.
通过对昆明市机动车尾气治理诸多问题的思考,提出应建立I/M制度和排污收费制度来完善机动车污染控制管理体系,并进一步提出建立I/M制度和排污收费制度的具体想法。 相似文献
960.
香港住宅室内环境及污染暴露量研究 总被引:3,自引:0,他引:3
对选定的14间香港住宅的PM10、CO、NO2等主要室内污染物浓度进行监测,通过建立多元线性回归模型,分析了室内.外PM10浓度与居民室内各种活动等其它有关因素之间的相关关系.结合香港居民日常时间安排调查的结果,计算出各种室内污染物的暴露量,对住宅室内环境污染对居民健康的影响进行了初步评估,提出了改善住宅室内环境的一些建议。 相似文献