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1.
大气中挥发性有机物(VOCs)是臭氧和二次有机气溶胶形成的关键前体物之一,研究表明烷烃、烯烃、芳香烃是我国大气VOCs的重要组分。在不同区域,城市地区烷烃含量最高,而偏远地区芳香烃为含量最丰富的VOCs。VOCs浓度日间变化多呈双峰分布趋势,峰值多出现在早晨与傍晚的上下班高峰期。目前对我国臭氧污染事件的研究均表明芳香烃和烯烃是对臭氧生成贡献最大的化合物。VOCs源解析中广泛运用的模型包括CMB、PMF和PCA/APCS,各模型均存在优点和局限性。比较各地VOCs源解析结果,发现交通排放源和工业排放源为我国VOCs的主要人为来源。VOCs的跨区域传输决定与周边地区的合作将是未来空气治理中的发展方向。  相似文献   
2.
陕南农村冬季PM_(2.5)主要化学组分特征   总被引:1,自引:0,他引:1       下载免费PDF全文
通过对陕南农村冬季PM_(2.5)采样分析,获得PM_(2.5)质量浓度及主要化学组分特征。PM_(2.5)平均质量浓度为89.5±42.0μg·m~(-3),超过国家二级标准。观测期间PM_(2.5)中OC、EC浓度平均值分别为16.0±6.9μg·m~(-3)和5.7±3.2μg·m~(-3),OC/EC平均比值为3.0±0.4。主要水溶性离子组分为NO_3~-、SO_4~(2-)和NH_4~+。粒子数浓度与表面积浓度峰值主要集中在0.5μm以下粒径段。PAHs、BeP和BaP平均质量浓度分别为48.9±10.9 ng·m~(-3)、3.0±0.9 ng·m~(-3)和1.2±0.7 ng·m~(-3),PAHs污染较严重,强致癌物BaP浓度超过国家环境空气质量标准年平均浓度限值。当地农村以石煤为主的能源结构及采用的燃烧方式是导致污染的重要因素。  相似文献   
3.
城市污水中的生物毒性及其臭氧削减效果研究   总被引:3,自引:1,他引:2  
分别利用酵母双杂交和umu试验对5个城市9个污水处理厂进出水中生物遗传毒性和视黄酸受体(BAR)结合活性进行了调查.并考察了臭氧氧化对这两种生物效应的去除效果.结果表明,城市污水中存在不同程度的生物遗传毒性和视黄酸受体(RAR)结合活性,通过生物处理可以大幅削减污水中的RAR结合活性和生物遗传毒性,但污水厂出水中仍然普遍具有遗传毒性,部分残留RAR结合活性.5~10mg·L-1的臭氧可以有效削减二级出水中残留的BAR结合活性和遗传毒性,是一种有效的提高水质安全性的污水深度处理技术.  相似文献   
4.
大气气溶胶含碳物质基本特征综述   总被引:7,自引:0,他引:7  
准确界定了气溶胶含碳物质,特别是有机碳和元素碳的基本概念,指出了元素碳与黑碳的异同,总结了有机碳和元素碳的排放源,以及二次有机碳的经验公式.阐述了有机碳、元素碳对全球气候、大气化学过程及人体健康带来的危害及机理.归纳了气溶胶中有机碳、元素碳组分的空间分布特征、时间变化特征.概述了国内气溶胶有机碳、元素碳的研究状况,指出国内相关研究重点和趋势.  相似文献   
5.
成都城区PM2.5季节污染特征及来源解析   总被引:16,自引:0,他引:16  
于2009—2010年各季节典型月在成都城区采集了大气PM2.5样品,对PM2.5的质量浓度及其主要化学成分(含碳组分、水溶性无机离子和元素)进行了测定. 结果显示:成都城区PM2.5平均质量浓度高达(165.1±85.1)μg·m-3,是国家环境空气质量标准年均PM2.5限值的4.7倍. OC、EC和水溶性二次离子(SO42-,NO3-和NH4+)的平均浓度分别为(22.6±10.2)μg·m-3,(9.0±5.4)μg·m-3和(62.8±44.3)μg·m-3,分别占PM2.5浓度的13.7%、5.5%和38.0%. PM2.5及其主要化学成分浓度季节特征明显,即秋冬季高于春夏季. 利用正交矩阵因子分析(PMF)对成都城区PM2.5的来源进行解析,结果表明,土壤尘及扬尘、生物质燃烧、机动车源和二次硝酸盐/硫酸盐的贡献率分别为14.3%、28.0%、24.0%和31.3%. 就季节变化而言,生物质燃烧源贡献率在四个季节均维持在较高水平;土壤尘及扬尘的贡献率在春季显著提高;机动车源的贡献率在夏季中表现突出;而二次硝酸盐/硫酸盐的贡献率在秋冬季中则最为显著.  相似文献   
6.
TSP and PM2.5 samples were collected at Xi'an, China during dust storms (DSs) and several types of pollution events, including haze, biomass burning, and firework displays. Aerosol mass concentrations were up to 2 times higher during the particulate matter (PM) events than on normal days (NDs), and all types of PM led to decreased visibility. Water-soluble ions (Na+, NH4+, K+, Mg2+, Ca2+, F?, Cl?, NO3?, and SO42?). were major aerosol components during the pollution episodes, but their concentrations were lower during DSs. NH4+, K+, F?, Cl?, NO3?, and SO42? were more abundant in PM2.5 than TSP but the opposite was true for Mg2+ and Ca2+. PM collected on hazy days was enriched with secondary species (NH4+, NO3?, and SO42) while PM from straw combustion showed high K+ and Cl?. Firework displays caused increases in K+ and also enrichments of NO3? relative to SO42?. During DSs, the concentrations of secondary aerosol components were low, but Ca2+ was abundant. Ion balance calculations indicate that PM from haze and straw combustion was acidic while the DSs samples were alkaline and the fireworks' PM was close to neutral. Ion ratios (SO42?/K+, NO3?/SO42?, and Cl?/K+) proved effective as indicators for different pollution episodes.  相似文献   
7.
In April 1998, two intense dust storms were generated in CentralAsia and transported eastward across East Asia (15 and 19 April). This article presents the chemical characterization ofHong Kong (HK) aerosols during the dust storms. During the 15 Aprildust storm, hourly respiratory suspended particles (RSP)(particle diameter smaller than 10 m) concentrationsmonitored at 7 sites in Hong Kong reached the peak valuessynchronously between 9 and 11 a.m. on 17 April, in which thehighest concentration was 267 g m-3. Analysis ofthe RSP samples showed that concentrations of crustalelements (Ba, Ca, Cd, Cr, Fe, Mg, K+) and anthropogenicspecies (As, Ni, Pb, Zn, NH4 +, NO3 -,SO4 2- and total carbon) were substantiallyenhanced. Enhancement of these species was more than afactor of 2 to 14 relative to the non dust period. The totalcarbon content was high, at 59 g m-3 (notincluding carbonate), and the enrichment factors of Asand Pb on 17 April were 122 and 117, respectively. Thisimplied that anthropogenic materials together with mineraldust were transported to HK from Mainland China. Based onmaterial balance calculations, mineral dust contributed41% to the observed RSP mass on 17 April, which was 2 times thatof the nondust sample (22%). From the 5-day backwardtrajectory analysis, this storm was transported directlyfrom Northwest China to HK. However, there was nocorresponding observation for the 19 April dust stormaerosol. Consequently, 15 April storm had stronger impact onHK's atmosphere than 19 April storm. Compared to the HK AirQuality Objective, 15 April dust storm did not cause seriousair pollution in HK.  相似文献   
8.
ABSTRACT

Adsorption using activated carbon is one of the most reliable techniques for preventing odor by substances such as H2S. Concurrent substances in effluent gas often reduce the removal capacity of activated carbon for H2S. As a means of restoring capacity under such conditions, ozone injection into an activated carbon column was examined. When activated carbon was saturated with substances such as toluene, ethanol, n-butanol, or iso-butanol, its capacity to remove H2S decreased in proportion to the amount of the saturating substance. Under such conditions, ozone injection greatly increased capacity. Toluene, which is not easily decomposed by ozone, was displaced by ozone and by oxidized products of H2S. Ethanol, which is adsorbed in small amounts by activated carbon and easily decomposed by ozone, was removed by ozone injection. Butanols, which are also decomposed by ozone and adsorbed in large quantities by activated carbon, showed intermediate behavior between that of toluene and ethanol.  相似文献   
9.
炭化温度对废旧布袋制备活性炭性能的影响及其表征   总被引:2,自引:0,他引:2  
以水泥厂废旧除尘布袋为原料,KOH为活化剂制备了活性炭.利用热重分析法(TG-DTG)对废旧布袋热解过程进行分析;重点考察了不同炭化温度(400、450、500、550和600℃)对废旧布袋制备活性炭的产率及活性炭的碘吸附值和亚甲基蓝吸附值的影响;同时采用N2吸附等温线对最佳工艺条件制备的活性炭孔隙结构进行了表征.研究结果表明,500℃为最佳炭化温度.最佳炭化温度下制备的活性炭,碘吸附值、亚甲基蓝吸附值和产率分别为1350.72 mg·g-1、97.5 mg·g-1和20.16%.活性炭比表面积高达1228.51 m2·g-1,总孔容达0.7134 cm3·g-1,孔径分布以微孔居多,N2吸附等温线为I型.  相似文献   
10.
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