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351.
352.
嘉兴市不同天气条件下大气污染物和气溶胶化学组分的分布特征 总被引:1,自引:0,他引:1
为研究不同天气条件下大气污染物(PM_(2.5)、PM_(1.0)、SO_2、NO_2、O_3和CO)和气溶胶化学组分的污染特征,分别使用SHARP-5030监测仪、热电EMS系统、气溶胶化学成分在线监测仪(ACSM)和宽范围颗粒粒径谱仪(WPS)对嘉兴市2015年5月1~31日PM、污染气体、PM_(1.0)中化学组分和10 nm~10μm气溶胶数浓度进行了观测分析.结果表明,观测期间嘉兴市PM_(2.5)、PM_(1.0)、SO_2、NO_2、O_3和CO的平均浓度分别为52.8和37.2μg·m~(-3)、10.3μg·m~(-3)、38.1μg·m~(-3)、92.1μg·m~(-3)和1.2 mg·m~(-3).PM_(1.0)中OA、SO_2-4、NO-3、NH_4~+和Cl-的平均浓度为2.18、1.24、0.87、0.63和0.08μg·m~(-3).数浓度主要集中在爱根核模态(20~100 nm),浓度为12 411.2 cm~(-3),其次是核模态(10~20 nm),浓度为4 946.6 cm~(-3).不同天气过程中PM和污染气体的浓度分布和日变化特征不同.不同天气条件下PM_(1.0)中化学组分分布不同.雨天和晴天PM_(1.0)中化学组分浓度从大到小顺序均为OASO_2-4NO-3NH_4~+Cl-,新粒子天PM_(1.0)中化学组分浓度的顺序为OANO-3SO_2-4NH_4~+Cl-.新粒子天OA和NO-3分别是晴天的1.61和1.42倍,说明OA和NO-3是影响新粒子生成事件的主要化学成分.不同天气条件下不同模态气溶胶的日变化特征不同. 相似文献
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Katase T Okuda K Kim YS Eun H Takada H Uchiyama T Saito H Makino M Fujimoto Y 《Chemosphere》2008,70(11):1961-1972
Thirteen isomers of branched para-nonylphenols (para-NP) in three technical mixtures were isomer-specifically determined using their synthesized standards by SIM of structurally specific ions, m/z 135, 149 or 163 with GC–MS. Of the 13 isomers, four isomers, 4-(2,4-dimethylheptan-4-yl)phenol, 4-(4-methyloctan-4-yl)phenol, 4-(3-ethyl-2-methylhexan-2-yl)phenol (3E22NP) and 4-(2,3-dimethylheptan-2-yl)phenol synthesized for their determinations were first used as standard substances. The 13 isomers in the technical mixtures individually occurred at mass percent portion of more than 2%. The total mass percent portions in the mixtures from Tokyo Chemical Industry (TCI), Aldrich, and Fluka covered with 89 ± 2%, 75 ± 4% and 77 ± 2%, respectively. The abundance of 4-(3,6-dimethylheptan-3-yl)phenol in the three mixtures was the largest with 11.1 ± 2% to 9.9 ± 0.3%, while that of 4-(2-methyloctan-2-yl)phenol was the smallest with 2.9 ± 0.3% to 3.0 ± 0.2%. Additionally, structures of four new isomers of more than 1% portion present in a technical mixture were elucidated as two pairs of diastereomeric isomers: two types of 4-(3,4-dimethylheptan-4-yl)phenol (344NP) and those of 4-(3,4-dimethylheptan-3-yl)phenol (343NP). By estrogenic assay of 13 isomers with yeast estrogen screen system, the activity of 3E22NP was the highest, while that of 4-(3-methyloctan-3-yl)phenol was the least. Their relative activities to that of 3E22NP were individually calculated. Estrogenic equivalent concentrations of the three technical mixtures were predictively evaluated. The ratio of the EEC to the conventional concentration, total mass percent portions of the 13 isomers in technical mixtures were 0.208 for TCI, 0.206 for Aldrich and 0.205 for Fluka. The predicted estrogenic activity of measured concentration of para-NP in technical mixtures was approximately 5-fold greater than the measured estrogen agonist activity. 相似文献
355.
Kopittke PM Asher CJ Menzies NW 《Environmental pollution (Barking, Essex : 1987)》2008,153(3):548-554
Despite the presence of numerous studies in the literature examining the phytotoxicity of Pb, there is a lack of precise quantitative data on limiting concentrations of Pb for plant growth. Using the PhreeqcI chemical equilibrium model, simulations were conducted to examine the speciation of Pb in concentrated and dilute nutrient solutions. Due to the higher P concentration of Hoagland's solution (1000microM), precipitation of chloropyromorphite (Pb5(PO4)3Cl) was predicted to occur at lower pH values, and at lower Pb concentrations, than for a dilute nutrient solution (2microM P). Although nutrient solutions prepared in the glasshouse were supersaturated (and Pb concentrations were substantially higher than predicted by modeling), they confirmed the importance of the P concentration in influencing the precipitation of Pb. Given the low solubility of Pb-phosphates, nutrient solutions with low P concentrations should be utilized, and plant growth should be related to measured Pb concentrations rather than to the quantity of Pb initially added. 相似文献
356.
Since 1972, at the University of Hohenheim in Stuttgart, Germany, airborne particulate matter (PM12 and then PM10) was continuously collected on filters and analyzed for environmentally relevant elements by X-ray fluorescence analysis. The resulting long-term time series are suitable for the investigation of trends and of seasonal variation. For the period 1972-2005, monthly and annual concentration mean values of 13 elements (Br, Ca, Cr, Cu, Fe, K, Mn, Ni, Pb, S, Ti, V, and Zn) in the air are presented. Trend curves were fitted and the mean yearly variation of the concentration for these elements was calculated and represented graphically. All trend curves show a diminution of the air pollution during this period, but to different extents. Mean trends in percent per year were calculated for each element both for the entire investigation period and for three data subsets of 10-11 years. Possible explanations are discussed in detail. 相似文献
357.
Park JS Oh S Shin MY Kim MK Yi SM Zoh KD 《Environmental pollution (Barking, Essex : 1987)》2008,154(1):12-20
Dissolved gaseous mercury (DGM) and total mercury (TM) concentrations were measured in Juam Reservoir, Korea. DGM concentrations were higher in spring (64+/-13pgL(-1)) and summer (109+/-15pgL(-1)), and lower in fall (20+/-2pgL(-1)) and winter (23+/-6pgL(-1)). In contrast, TM concentrations were higher in fall (3.2+/-0.1ngL(-1)) and winter (3.3+/-0.1ngL(-1)) than in spring (2.3+/-0.1ngL(-1)) and summer (2.2+/-0.4ngL(-1)). DGM concentrations were correlated with water temperature (p<0.0001), ORP (p<0.0001), UV intensity (UV-A: p=0.008; UV-B: p=0.003), and DOC concentration (p=0.0107). DGM concentrations varied diurnally with UV intensity. The average summer DGM (109+/-15pgL(-1)) and TM (2.2+/-0.4ngL(-1)) concentrations in Juam Reservoir were higher than the averages for North American lakes (DGM=38+/-16pgL(-1); TM=1.0+/-1.2ngL(-1)), but lower than levels reported for Baihua Reservoir in China. 相似文献
358.
了解不同气象条件下城市人行道细颗粒物(PM2.5)时空分布特征对于指导城市环境评价及街道空间规划布局具有重要意义。选取长沙市车流量及人流量较大的4条道路旁0、5、10 m处的人行道,在冬季晴天、阴天和大风天开展PM2.5质量浓度、风速、温度及相对湿度监测,探讨PM2.5分布特征与气象因子的关系。结果表明:冬季晴天、阴天及大风天的人行道PM2.5质量浓度变化呈现双峰双谷特征,峰值均出现在06:00—08:00,其次为18:00—20:00,谷值出现在14:00—16:00及22:00—24:00;距离机动车道10m处的人行道PM2.5含量低于机动车道旁(即距离机动车道0 m)的人行道PM2.5含量,这种差异在大风天气下更为显著;人行道PM2.5质量浓度与温度、风速呈显著负相关关系,与空气湿度呈显著正相关关系,低温不利于PM2.5扩散,但在大风天温度对PM2.5的影响极小,风对PM2.5含量的变化影响极大,在远离机动车道的人行道更为显著,而高湿度天气有利于PM2.5的凝结。低温、高湿天气下06:00—08:00、18:00—20:00人行道PM2.5质量浓度较高,大风对PM2.5质量浓度具有一定削减作用,早晚高峰减少人行道洒水以降低空气湿度,有利于PM2.5质量浓度的降低,减少PM2.5积累。 相似文献
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