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Research

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    • The Institute of Urban Environment gained progress in preparation of core-shell-structure activated carbon composites

      Contacts:WANG Yin E-mail:ywang@iue.ac.cn link 1:https://link.springer.com/article/10.1007/s11356-020-08095-7 link 2:https://doi.org/10.1016/j.jhazmat.2019.01.093 link 3:doi.org/10.1016/j.scitotenv.2019.06.235With the development of urbanization and industrialization, the problem of water pollution has attracted more and more attentions. Among them, newly emerging contaminants in the environment, such as pharmaceuticals and personal care products (PPCPs) and endocrine disruptors (EDCs), have attracted many attentions due to their high biological activity and toxicity. Among lots ...

      See More03.26 / 2020
    • How the artificial control and synoptic situations affect the characteristics of atmospheric particulate matters

      Contacts:CHEN Jinsheng E-mail:jschen@iue.ac.cn link:https://doi.org/10.19316/j.issn.1002-6002.2020.02.05Recently, the team of Atmospheric Environment led by Professor CHEN Jinsheng in the Institute of Urban Environment, Chinese Academy of Sciences (IUE, CAS) had found that PM2.5 showed different pollution characteristics and mechanisms under the artificial control and synoptic situations.Due to the impact of the East Asian monsoon, subtropical high pressures, typhoons, and str...

      See More03.16 / 2020
    • The Institute of Urban Environment gained progress in enhancing the elastico-mechanoluminescent intensity of CaZnOS: Mn2+

      Contacts:ZHANG Hongwu E-mail:hwzhang@iue.ac.cn link:https://doi.org/10.1016/j.jlumin.2019.116777As a category of mechanoluminescent materials, the elastico-mechanoluminescent (EML) material has great potential applications in stress sensors, stress distribution visualization, and self-diagnostic systems since it has numerous advantages, such as non-destruction, recoverability, real-time, in addition to the mechano-optical conversion. CaZnOS: Mn2+ can emit strong red li...

      See More03.10 / 2020
    • Quasi-stationary front can cause local air pollution episode and influences the aerosol acidity

      Contacts:CHEN Jinsheng E-mail:jschen@iue.ac.cn link:https://doi.org/10.1016/j.scitotenv.2019.136194A team led by Professor CHEN Jinsheng in the Institute of Urban Environment, Chinese Academy of Sciences (IUE-CAS), found that aerosol acidity played a key role in heterogeneous/aqueous reactions, which both occurred during an air pollution episode inducing by quasi-stationary front.Climate in South China belongs to the monsoon of subtropical moist marine climate zone. In Ma...

      See More03.09 / 2020
    • Institute of Urban Environment makes progress in source and transport mechanism of atmospheric PM2.5 on islands

      Contacts:CHEN Jinsheng E-mail:jschen@iue.ac.cn link:https://doi.org/10.1016/j.atmosres.2019.104786Recently, the Research Group of Atmospheric Pollution Control Chemistry (Research Team led by Professor CHEN Jinsheng), Institute of Urban Environment, Chinese Academy of Sciences, discovered important results – the East Asian monsoon and ocean emissions jointly affected the source and transport mechanism of atmospheric PM2.5 on islands. Strong oxidation conditions and sea ...

      See More03.09 / 2020
    • Institute of Urban Environment (IUE) achieved new progress in the impacts of control measures and typhoon weather on characteristics and formation of fine particles (PM2.5) in atmosphere

      Contacts:CHEN Jinsheng E-mail:jschen@iue.ac.cn link:https://doi.org/10.1016/j.atmosenv.2020.117312Recently, the team of Atmospheric Environment led by Professor CHEN Jinsheng in the Institute of Urban Environment, Chinese Academy of Sciences (IUE, CAS) had found the different impacts of artificial control and natural intervention on the formation mechanism of fine particles (PM2.5) in atmosphere. Under the emission control of the major events and the typhoon weather, PM2...

      See More03.06 / 2020
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