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王琰

领域:节能环保产业 学校:大连理工大学职称:副教授

新型有机污染物环境监测 持久性有机污染物环境归趋...

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教育背景

2008.9 -- 2011.7 中国科学院广州地球化学研究所 环境科学 博士 2006.9 -- 2008.6 中国农业大学 环境工程 硕士 2002.9 -- 2006.7 中国农业大学 环境工程 学士 1999.9 -- 2002.7 山东文登第二中学 无

工作经历

2015.12 -- 至今 大连理工大学 副教授 2013.12 -- 2015.12 大连理工大学 讲师 2011.7 -- 2013.11 中国科学院广州地球化学研究所 博士后

项目课题经历

论文、成果、著作等

代表性 第一作者/通讯作者论文 [1] Hou Minmin, Wang Yan*, Zhao Hongxia, Zhang Qiaonan, Xie Qing, Zhang Xiaojing, Chen Ruize, Chen Jingwen. Halogenated flame retardants in building and decoration materials in China: Implications for human exposure via inhalation and dust ingestion. Chemosphere 2018, 203, 291-299. [2] Wang Yan*, Hou Minmin, Zhao Hongxia, Zhang Qiaonan, WuXiaowei. Factors influencing the diurnal atmospheric concentrations and soil-air exchange of PBDEs at an e-waste recycling site in China. Atmospheric Pollution Research, 2018, 9(1), 166-171. [3] Wang Yan*, Hou Minmin, Zhang Qiaonan, Wu Xiaowei, Zhao Hongxia, Xie Qing, Chen Jingwen. Organophosphorus flame retardants and plasticizers in building and decoration materials and their potential burdens in newly decorated houses in China. Environmental Science & Technology, 2017, 51(19), 10991-10999. [4] Wang Yan*, Wu Xiaowei, Zhang Qiaonan, Hou Minmin, Zhao Hongxia, Xie Qing, Chen Jingwen. Organophosphate esters in sediment cores from coastal Laizhou Bay of the Bohai Sea, China. Science of the Total Environment, 2017, 607, 103-108. [5] Wang Yan*, Wu Xiaowei, Zhao Hongxia, Xie Qing, Hou Minmin, Zhang Qiaonan, Du Juan, Chen Jingwen. Characterization of PBDEs and novel brominated flame retardants in seawater near a coastal mariculture area of the Bohai Sea, China. Science of the Total Environment, 2017, 580, 1446-1452. [6] Wang Yan*, Wu Xiaowei, Hou Minmin, Zhao Hongxia, Chen Ruize, Luo Chunling, Zhang Gan. Factors influencing the atmospheric concentrations of PCBs at an abandoned e-waste recycling site in South China. Science of the Total Environment, 2017, 578, 34-39. [7] Wu Xiaowei, Wang Yan*, Hou Minmin, Luo Chunling, Zhao Hongxia, Zhang Gan. Atmospheric deposition of PBDEs and DPs in Dongjiang River Basin, South China. Environmental Science and Pollution Research, 2017, 24(4), 3882-3889. [8] Wang Yan, Luo Chunling*, Wang Shaorui, Cheng Zhineng, Li Jun, Zhang Gan. The abandoned e-waste recycling site continued to act as a significant source of polychlorinated biphenyls: an in situ assessment using fugacity samplers. Environmental Science & Technology, 2016, 50(16), 8623-8630. [9] Wang Yan, Xu Yue, Chen Yingjun*, Tian Chongguo, Feng Yanli, Chen Tian, Li Jun, Zhang Gan. Influence of different types of coals and stoves on the emissions of parent and oxygenated PAHs from residential coal combustion in China. Environmental Pollution, 2016, 212, 1-8. [10] Wang, Yan, Wang Shaorui, Xu Yue, Luo Chunling*, Li Jun, Zhang Gan. Characterization of the exchange of PBDEs in a subtropical paddy field of China: A significant inputs of PBDEs via air–foliage exchange. Environmental Pollution, 2015, 205, 1-7. [11] Wang Yan, Li Qilu, Wang Shaorui, Wang Yujie, Luo Chunling*, Li Jun, Zhang Gan. Seasonal and diurnal variations of atmospheric PAHs and OCPs in a suburban paddy field, South China: Impacts of meteorological parameters and sources. Atmospheric Environment, 2015, 112, 208-215. [12] Wang Yan, Wang Shaorui, Luo Chunling*, Li Jun, Ming Lili, Zhang Gan, Li Xiangdong. The effects of rice canopy on the air-soil exchange of polycyclic aromatic hydrocarbons and organochlorine pesticides using paired passive air samplers. Environmental Pollution, 2015, 200, 35-41. [13] Wang Yan, Wang Shaorui, Luo Chunling*, Xu Yue, Pan Suhong, Li Jun, Ming Lili, Zhang Gan, Li Xiangdong. Influence of rice growth on the fate of polycyclic aromatic hydrocarbons in a subtropical paddy field: A life cycle study. Chemosphere, 2015, 119, 1233-1239. [14] Wang Yan, Luo Chunling*, Wang Shaorui, Liu Junwen, Pan Suhong, Li Jun, Ming Lili, Zhang Gan, Li Xiangdong. Assessment of the air-soil partitioning of polycyclic aromatic hydrocarbons in a paddy field using a modified fugacity sampler. Environmental Science & Technology, 2015, 49(1), 284-291. [15] Wang Yan, Luo Chunling*, Li Jun, Yin Hua, Zhang Gan. Influence of plants on the distribution and composition of PBDEs in soils of an e-waste dismantling area: Evidence of the effect of the rhizosphere and selective bioaccumulation, Environmental Pollution, 2014, 186, 104-109. [16] Wang Yan, Li Jun*, Cheng Zhineng, Li Qilu, Pan Xiaohui, Zhang Ruijie, Liu Di, Luo Chunling, Liu Xiang, Katsoyiannis Athanasios, Zhang Gan. Short- and medium-chain chlorinated paraffins in air and soil of subtropical terrestrial environment in the Pearl River Delta, South China: Distribution, composition, atmospheric deposition fluxes, and environmental fate, Environmental Science & Technology, 2013, 47(6), 2679-2687. [17] Wang Yan, Tian Zhongjing, Zhu Haolin, Cheng Zhineng, Kang Meiling, Luo Chunling*, Li Jun, Zhang Gan. Polycyclic aromatic hydrocarbons (PAHs) in soils and vegetation near an e-waste recycling site in South China: Concentration, distribution, source, and risk assessment, Science of the Total Environment, 2012, 439,187-193. [18] Wang Yan, Cheng Zhineng, Li Jun*, Luo Chunling, Xu Yue, Li Qilu, Liu Xiang, Zhang Gan. Polychlorinated naphthalenes (PCNs) in the surface soils of the Pearl River Delta, South China: Distribution, sources, and air-soil exchange, Environmental Pollution, 2012, 170, 1-7. [19] Wang Yan, Li Qilu, Xu Yue, Luo Chunling, Liu Xiang, Li Jun*, Zhang Gan. Improved correction method for using passive air samplers to assess the distribution of PCNs in the Dongjiang River basin of the Pearl River Delta, South China, Atmospheric Environment, 2012, 54, 700-705. [20] Wang Yan, Luo Chunling*, Li Jun, Yin Hua, Li Xiangdong, Zhang Gan. Characterization of PBDEs in soils and vegetations near an electronic waste recycling site, South China, Environmental Pollution, 2011,159, 2443-2448. [21] Wang Yan, Luo Chunling, Li Jun, Yin Hua, Li Xiangdong, Zhang Gan*. Characterization and risk assessment of polychlorinated biphenyls in soils and vegetations near an electronic waste recycling site, South China, Chemosphere, 2011, 85, 344-350.

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