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941.
浙东沿海城市大气颗粒物污染特征及来源解析研究 总被引:5,自引:0,他引:5
对2009年夏季浙东沿海地区环境空气质量进行监测,监测大气颗粒物(TSP、PM10、PM2.5、PM1.0)浓度,分析颗粒物污染特征、水溶性离子及无机元素组成,运用化学质量平衡受体模型(CMB模型)对浙东沿海地区大气TSP来源进行解析.结果表明,浙东沿海地区的大气颗粒物主要以细颗粒物为主,颗粒物中主要的水溶性离子为SO2-4、NH+4、Ca2+,土壤尘是该地区大气TSP的主要来源,北仑、乐清和奉化TSP中土壤尘的分担率分别达到55.49%、42.52%、40.70%,各监测点TSP来源具有一定的地域特征. 相似文献
942.
Ping Gong Xiaoping Wang Jiujiang Sheng Tandong Yao 《Atmospheric environment (Oxford, England : 1994)》2010,44(21-22):2518-2523
Monsoon transport is an important process that influences the global transport of persistent organic pollutants. Only a few studies focused on the influence of monsoon on organochlorine pesticides (OCPs) and polychlorinated biphenyls (PCBs) levels in the Tibetan Plateau. In this study, 19 samples were collected in Lhasa, the capital of Tibet Autonomous Region, using a high-volume air sampler. The average concentrations of α-HCH, γ-HCH, p-p′-DDT, p-p′-DDE, o-p′-DDT, α-endosulfan, β-endosulfan and PCBs (including PCB-28, 101, and 118) were 2.3, 10.3, 3.2, 2.9, 5.8, 6.3, 2.2, and 10.6 pg m?3, respectively. The weak correlation coefficients between lnp (natural logarithm of partial pressure) and 1/T (reciprocal temperature) were obtained for DDTs and β-endosulfan (r2 values ranged from 0.13 to 0.41). However, no significant correlations were obtained for HCHs and PCBs. These results suggested that both local emission and long-range atmospheric transport (monsoon) may influence the distribution of OCPs at Lhasa. In this study, peak concentrations of DDTs, endosulfans and PCBs were found in August, when Eastern Monsoon system occurred. However, the maximum concentrations of HCHs appeared in June (Indian Monsoon is the dominant air circulation pattern). Monthly variation of OCP/PCB levels was likely associated with the different air sources of monsoon system. 相似文献
943.
借鉴国内外 I/ M制度的经验 ,运用系统论、控制论的观点 ,创造性地提出有效治理城市汽车尾气污染应建立的六大体系 ,强调城市汽车尾气污染的控制应以尾气污染预前控制和过程控制为主 ,并以此构筑城市汽车尾气污染治理的新模式 相似文献
944.
Carruthers DJ Seaton MD McHugh CA Sheng X Solazzo E Vanvyve E 《Journal of the Air & Waste Management Association (1995)》2011,61(11):1227-1235
ADMS and AERMOD are the two most widely used dispersion models for regulatory purposes. It is, therefore, important to understand the differences in the predictions of the models and the causes of these differences. The treatment by the models of flat terrain has been discussed previously; in this paper the focus is on their treatment of complex terrain. The paper includes a discussion of the impacts of complex terrain on airflow and dispersion and how these are treated in ADMS and AERMOD, followed by calculations for two distinct cases: (i) sources above a deep valley within a relatively flat plateau area (Clifty Creek power station, USA); (ii) sources in a valley in hilly terrain where the terrain rises well above the stack tops (Ribblesdale cement works, England). In both cases the model predictions are markedly different. At Clifty Creek, ADMS suggests that the terrain markedly increases maximum surface concentrations, whereas the AERMOD complex terrain module has little impact. At Ribblesdale, AERMOD predicts very large increases (a factor of 18) in the maximum hourly average surface concentrations due to plume impaction onto the neighboring hill; although plume impaction is predicted by ADMS, the increases in concentration are much less marked as the airflow model in ADMS predicts some lateral deviation of the streamlines around the hill. 相似文献
945.
Wang Q Wang L Chen X Rao KM Lu SY Ma ST Jiang P Zheng D Xu SQ Zheng HY Wang JS Yu ZQ Zhang R Tao Y Yuan J 《Environmental science and pollution research international》2011,18(6):987-996
Background
Di-(2-ethylhexyl) phthalate (DEHP) is a common plasticizer used in industrial and diverse consumer products. Animal studies indicate DEHP caused developmental, reproductive, and hepatic toxicities. However, human studies of the potential effects of DEHP are limited.Methods
The exposed site with a history of over 20 years of waste plastic recycling was located in Hunan Province, China. The reference site without known DEHP pollution source was about 50 km far away from the exposed site. In this study, 181 workers working in plastic waste recycling and 160 gender?Cage matched farmers were recruited. DEHP concentrations in water and cultivated soil samples, serum thyroid-stimulating hormone, malondialdehyde (MDA), superoxide dismutase (SOD), urinary 8-hydroxy-2??-deoxyguanosine (8-OHdG), and micronuclei frequency in human capillary blood lymphocytes were analyzed.Results
Mean levels of DEHP were greater in environment at the recycling site than at reference site (industry wastewater for the exposed: 42.43 ??g/l; well water: 14.20 vs. 0.79 ??g/l, pond water: 135.68 vs. 0.37 ??g/l, cultivated soil: 13.07 vs. 0.81 mg/kg, p?0.05 for all). The workers had higher median levels of MDA (3.80 vs. 3.14 nmol/ml) and urinary 8-OHdG (340.37 vs. 268.18 ??mol/mol creatinine) and decreased SOD activities (112.15 vs. 123.82 U/ml) than the reference group (p?0.01 for all). Multivariate analysis revealed that the history of working in waste plastic recycling was an independent risk factor for the increased urinary 8-OHdG levels in the male workers (p?0.01).Conclusions
The occupational DEHP exposure might contribute to oxidative deoxyribonucleic acid damage in the male workers. 相似文献946.
947.
乌梁素海表层沉积物重金属与营养元素含量的统计分析 总被引:7,自引:0,他引:7
对乌梁素海表层沉积物营养盐与重金属的分布情况进行研究,应用SPSS统计分析软件对乌梁素海表层沉积物重金属与营养元素进行相关分析和因子分析,并对重金属元素进行聚类分析。营养元素与重金属间的相关分析表明:重金属元素Cu、Cr、Pb和Cd相互间具有极显著的正相关性;有机质与As和Hg呈极显著的正相关;总氮与Hg呈极显著相关,与As呈显著相关,而与Pb呈极显著负相关,与Cd呈显著负相关;总磷与As呈显著负相关。重金属元素间的R-型聚类分析结果将本论文研究的9种金属元素分为3类。采用主成分分析法对乌梁素海表层沉积物重金属与营养元素进行因子分析,得到4个因子,并进一步分析讨论了各主成分的科学内涵。 相似文献
948.
949.
综述了缺氧嗜甲烷古菌的分布、生态位、形态与代谢特征的新发现,并讨论了其与产甲烷菌的关系.在无氧条件下,缺氧嗜甲烷古菌与硫酸盐还原菌互养,氧化甲烷气体以阻止其进入大气.缺氧嗜甲烷古菌主要分布于深海甲烷渗漏区和冷泉区域,在其他多种缺氧环境中也能发现,由于还未获得纯培养,对这类微生物的生态位知之甚少.其细胞呈球状、杆状,有时聚集成球状集合体或连接形成丝状体.缺氧甲烷氧化可能经过"反甲烷合成"、"甲基合成"等路径.嗜甲烷古菌与产甲烷菌有着较近的亲缘关系,并且存在许多相似点.图1表1参37 相似文献
950.
为评价二氯喹啉酸在水稻及其土壤中的安全性,建立其在水稻上的使用规范,于2008、2009年在杭州、济南和铁力三地进行田间试验,研究了二氯喹啉酸在水稻、土壤和田水中消解动态及最终残留量。建立了二氯喹啉酸在水稻、土壤和田水中残留量的超高效液相色谱串联质谱测定方法。在添加水平5~100μg.kg-1范围内,二氯喹啉酸的平均回收率在81.6%~105.7%之间,相对标准偏差均低于17.9%。残留试验结果表明,二氯喹啉酸在植株、土壤和田水中消解均符合一级动力学方程,消解半衰期分别为16.4~18.6、16.6~21.9和15.4~16.9 d;二氯喹啉酸在植株、土壤、糙米和稻壳中最终残留量均未检出(<5μg.kg-1)。若二氯喹啉酸在水稻中的最高残留限量推荐值为0.5 mg.kg-1,建议每年以有效成分25 g.mu-1的剂量,于水稻移栽后10 d喷施1次,用于防治水稻田中稗草。 相似文献