• [口頭報告]On-site Rapid Analysis of Pollutants in Water Based on Separation-Surface enhanced Raman scattering Combined Technology
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    [口頭報告]On-site Rapid Analysis of Pollutants in Water Based on Separation-Surface enhanced Raman scattering Combined Technology

    On-site Rapid Analysis of Pollutants in Water Based on Separation-Surface enhanced Raman scattering Combined Technology
    編號:315 稿件編號:315 訪問權限:僅限參會人 更新:2024-05-19 15:27:48 瀏覽:164次 口頭報告

    報告開始:2024年05月31日 15:15 (Asia/Shanghai)

    報告時間:15min

    所在會議:[S9] Environmental Pollution Control and Ecological Restoration ? [S9-2] Afternoon of May 31st

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    摘要
    With the rapid growth of the global population, agricultural and industrial activities have led to a significant increase in the levels of various organic pollutants in water, which has serious impacts on the environment and human health. Therefore, the development of new materials and technologies for effective detection and removal of pollutants in water has always been the focus of research. Based on this, we explored highly sensitive and rapid analysis methods for pollutants in water based on separation-surface enhanced Raman scattering (SERS). Covalent organic frameworks have great potential as adsorbents due to their tailorable functionality, low density and high porosity. However, fabrications of macroscopic objects are challenging but of great significance to give full play to its chemical functionality and porosity. Therefore, we synthesized a sulfonated COF-based adsorbent, namely covalent organic frameworks/carbon nitride/graphene oxide/ gold nanoparticles aerogel, by hydrothermal method. Firstly, graphene was introduced as a template to form a g-C3N4/GO heterojunction. COFs grow in situ along the heterojunction surface, and then Au NPs are further modified by electrostatic interaction. After freeze-drying, an aerogel with ultrathin porous structure was obtained. The aerogel exhibits excellent adsorption performance and can be used to selectively remove positively charged organic pollutants in water. Au NPs can form a “hot spot” region to enable in situ SERS detection of organic pollutants. In addition, the aerogel was used as photocatalytic materials for decomposing organic pollutants to generate nontoxic inorganic small molecules under visible light irradiation, and maintained good adsorption performance and SERS stability in 5 cycles. This method enables rapid removal of organic pollutants in water and highly sensitive sensing, providing an efficient approach for water environmental treatment.
     
    關鍵字
    pollutants; efficient adsorption; degradation; SERS analysis
    報告人
    Lulu Qu
    professor Jiangsu Normal University

    稿件作者
    迎弟 張 江蘇師范大學
    國海 楊 江蘇師范大學
    陸陸 渠 江蘇師范大學
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