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681.
Wang X  Sato T  Xing B 《Chemosphere》2006,65(11):2440-2448
Aerosol samples were collected from Kanazawa, Japan to examine the size distribution of 12 elements and to identify the major sources of anthropogenic elements. Key emission sources were identified and, concentrations contributed from individual sources were estimated as well. Concentrations of elements V, Ca, Cd, Fe, Ba, Mg, Mn, Pb, Sr, Zn, Co and Cu in aerosols were determined with ICP-MS. The results showed that Ca, Mg, Sr, Mn, Co and Fe were mainly associated with coarse particles (>2.1 μm), primarily from natural sources. In contrast, the elements Zn, Ba, Cd, V, Pb and Cu dominated in fine aerosol particles (<2.1 μm), implying that the anthropogenic origin is the dominant source. Results of the factor analysis on elements with high EFCrust values (>10) showed that emissions from waste combustion in incinerators, oil combustion (involving waste oil burning and oil combustion in both incinerators and electricity generation plants), as well as coal combustion in electricity generation plants were major contributors of anthropogenic metals in the ambient atmosphere in Kanazawa. Quantitatively estimated sum of mean concentrations of anthropogenic elements from the key sources were in good agreement with the observed values. Results of this study elucidate the need for making pollution control strategy in this area.  相似文献   
682.
Total suspended particle (TSP) concentrations were determined in the Eordea basin (western Macedonia, Greece), an area with intensive lignite burning for power generation. The study was conducted over a one-year period (November 2000–November 2001) at 10 sites located at variable distances from the power plants. Ambient TSP samples were analyzed for 27 major, minor and trace elements. Annual means of TSP concentrations ranged between 47 ± 33 μg m−3 and 110 ± 50 μg m−3 at 9 out of the 10 sites. Only the site closest to the power stations and the lignite conveyor belts exhibited annual TSP levels (210 ± 97 μg m−3) exceeding the European standard (150 μg m−3, 80/779/EEC). Concentrations of TSP and almost all elemental components exhibited significant spatial variations; however, the elemental profiles of TSP were quite similar among all sites suggesting that they are affected by similar source types. At all sites, statistical analysis indicated insignificant (P < 0.05) seasonal variation for TSP concentrations. Some elements (Cl, As, Pb, Br, Se, S, Cd) exhibited significantly higher concentrations at certain sites during the cold period suggesting more intense emissions from traffic, domestic heating and other combustion sources. On the contrary, concentrations significantly higher in the warm period were found at other sites mainly for crustal elements (Ti, Mn, K, P, Cr, etc.) suggesting stronger influence from soil resuspension and/or fly ash in the warm months. The most enriched elements against local soil or road dust were S, Cl, Cu, As, Se, Br, Cd and Pb, whereas negligible enrichment was found for Ti, Mn, Mg, Al, Si, P, Cr. At most sites, highest concentrations of TSP and elemental components were associated with low- to moderate-speed winds favoring accumulation of emissions from local sources. Influences from the power generation were likely at those sites located closest to the power plants and mining activities.  相似文献   
683.
对喷流除尘技术在收集硫酸铵和硝酸铵粉尘中的应用研究   总被引:3,自引:0,他引:3  
对喷流除尘技术利用粉尘颗粒在撞击区内来回振荡、相互碰撞并团聚的机理进行除尘.实验采用水平式对喷流除尘系统收集硫酸铵和硝酸铵的混合物粉尘,主要考察喷嘴气流速度、含尘浓度和喷雾化水润湿含尘气流对除尘效率的影响,并进行机理分析.实验表明,除尘效率随喷嘴风速的增大而升高,但喷嘴风速超过25~27 m/s后,反而下降;除尘效率随含尘浓度的增加而升高,但含尘浓度超过0 45~0.55 kg/m3后反而有所降低;喷雾化润湿含尘气流能显著提高除尘效率,最优耗水量为0.18~0.22 kg/kg粉尘,超过该值后无显著变化.实验确定的最优除尘条件为:喷嘴速度25~27 m/s、含尘浓度0.45~0.55 kg/m3、耗水量0.18~0 22 kg/kg粉尘,除尘效率最高可达96.8%.  相似文献   
684.
选取三辆满足国六排放标准的缸内直喷汽油车进行常温冷启动WLTC循环排放试验,研究不同车辆排放的粒径在23nm以上的固态颗粒物、6nm以上包含挥发性/半挥发性组分的颗粒物数量排放特性,并进行了比较研究.结果发现,在缸内直喷汽油车排放的6~30nm范围内包含挥发性/半挥发性物质的细颗粒物主要产生在WLTC循环减速段、高速段和超高速段;30~2500nm范围的挥发性/半挥发性的颗粒物主要在超高速段生成;其它工况下,23nm以上固态颗粒物在颗粒物数量排放中占主体.试验研究还发现GPF对6~30nm大小的细颗粒物捕集效果不佳,并且GPF再生时会产生高浓度6~30nm大小的细颗粒物排放.颗粒物碳质成分分析表明挥发性/半挥发性细颗粒物对法规测量的23~2500nm颗粒物的数量排放影响甚微,但对颗粒物质量排放影响明显.  相似文献   
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