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云南阳宗海砷的分布与来源 被引量:45
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作者 张玉玺 向小平 +5 位作者 张英 陈玺 刘景涛 王金翠 张媛静 孙继朝 《环境科学》 EI CAS CSCD 北大核心 2012年第11期3768-3777,共10页
通过采集阳宗海水体、沉积物样品并测定砷的总量及形态组成,分析了水体、沉积物中砷的空间分布,评价了砷的污染现状,计算了人为贡献率与湖中砷的储存量,并调查了砷的来源.结果表明,2010年4月阳宗海水体中总砷含量介于71.96~101.2μg... 通过采集阳宗海水体、沉积物样品并测定砷的总量及形态组成,分析了水体、沉积物中砷的空间分布,评价了砷的污染现状,计算了人为贡献率与湖中砷的储存量,并调查了砷的来源.结果表明,2010年4月阳宗海水体中总砷含量介于71.96~101.2μg·L-1,且随着水深的增加而略有升高.溶解态砷在68.14~96.72μg·L-1之间,其中As(Ⅲ)占32%.水中砷的健康危害风险度在4.77×10-4~6.66×10-4a-1的范围内,对周围环境产生严重威胁.沉积物中砷含量介于6.05~396.49 mg·kg-1.0~2、2~4、4~6、6~8及8~10 cm沉积物中砷的平均含量依次为155.66、52.01、29.78、19.22、17.52 mg·kg-1.表层0~2 cm沉积物砷的累积程度最高,地累积指数最高达5级.随着深度增加,砷的累积程度显著降低.沉积物中砷的各种形态的平均含量由高到低依次为残渣态、腐殖酸结合态、铁锰氧化态、强有机结合态、离子交换态、水溶态、碳酸盐结合态.随着深度增加,砷的生物可利用态比重逐渐减小,残渣态的比重明显增大.表层0~2 cm沉积物砷的人为贡献率最大,平均为81.94%.随深度增加,人为贡献率显著降低.目前,阳宗海水体与沉积物中的砷储存总量为70.65 t,人为贡献量占砷总储存量的82.68%,这其中主要来自南岸的磷肥厂.同时,东岸的高尔夫球场及北岸的火电厂、温泉也对阳宗海砷的累积有所贡献. 展开更多
关键词 形态 分布特征 人为贡献 阳宗海
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Secondary organic aerosols in Jinan, an urban site in North China: Significant anthropogenic contributions to heavy pollution 被引量:6
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作者 Yusi Liu Xingru Li +4 位作者 Guiqian Tang Lili Wang Bo Lv Xueqing Guo Yuesi Wang 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2019年第6期107-115,共9页
Secondary organic aerosols(SOAs) are an important component of particulates, but whether biogenic SOAs(BSOAs) or anthropogenic SOAs(ASOAs) are the dominant contributors to haze pollution remains poorly characterized. ... Secondary organic aerosols(SOAs) are an important component of particulates, but whether biogenic SOAs(BSOAs) or anthropogenic SOAs(ASOAs) are the dominant contributors to haze pollution remains poorly characterized. In this study, particulate samples were collected from September 2014 to August 2015 at an urban site in Jinan, which is the capital of Shandong Province and a typical city in the North China Plain. The PM2.5 samples were analyzed for BSOA(isoprene(SOAI) and monoterpenes(SOAM)) and ASOA(aromatic(SOAA)) tracers. The concentrations of the SOAAtracer(1.1 ± 1.0 ng/m3) were lowest, and those of SOAItracers(41.8 ± 86.2 ng/m3) were highest, with the concentrations of SOAMtracers(19.4 ± 9.9 ng/m3) being intermediate. The SOAItracers were more abundant in the summer and less abundant in the winter. Both SOAIand SOAMincreased with increasing ozone level but decreased with increasing NOx level. Correlation analysis revealed a good correlation between 2,3-dihydroxy-4-oxopentanoic acid and levoglucosan levels in three seasons. These results suggested that biomass burning activities occurring in the NCP can enhance the emissions of aromatics and should be controlled, especially in the autumn and winter. SOA tracers were classified according to pollution degree, and the results showed that as pollution increases, the contributions of SOAAincrease. These results indicate that reducing anthropogenic emissions is necessary to prevent SOA pollution, especially during heavy pollution episodes. 展开更多
关键词 Seasonal variations BIOGENIC secondary organic AEROSOLS Biomass burning anthropogenic contributionS
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