NPAN/Ag/Ag3PO4光催化降解RhB的活性及稳定性研究
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张才松(1995—),硕士研究生,研究方向为化学工程。E-mail:2630311549@qq.com。

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O69

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国家自然科学基金(21865009)


Visible Photoactivity and Stability Performance of Degradation of RhB with NPAN/Ag/Ag3PO4 Photocatalyst
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    摘要:

    以含羧基的 NAN 为基体,用质子酸掺杂的方法合成纤维状的 NPAN,再利用原位聚合法在 NPAN 表面上接枝 Ag3PO4,制备了一系列 NPAN 含量不同的 NPAN/Ag/Ag3PO4 复合材料。 通过 FT-IR、XPS、Raman、TEM、TG、PL 等检测手段对材料的结构、 形貌等进行分析,并利用光催化降解 RhB 染料实验对其光催化性能进行了研究。 结果表明:10wt% NPAN/Ag/Ag3PO4 复合材料对 RhB 染料的降解效率最高,达到 97.6%,并经过 5 次循环后其光催化降解 RhB 染料效率仍能达到 93.6%,而单纯 Ag3PO4 的降解效率却由 83.2%下降至 54.12%。 最后,通过活性物质捕获实验探究了其催化机理,证明了其催化活性主要来源光生空穴与·O2-的强氧化性。

    Abstract:

    Fibrous NPAN was synthesized by the method of protic acid doping with NAN containing carboxyl. A series of NPAN/Ag/Ag3PO4 composites with different NPAN content were prepared by in situ polymerization of silver phosphate on the surface of NPAN. By means of FT-IR, XPS, Raman, TEM, TG and PL, the structure and morphology of the material were analyzed, and the photocatalytic performance of the material was studied. The results showed that the degradation efficiency of 10wt% NPAN/Ag/Ag3PO4 composite for RhB dye was the highest, reaching 97.635%. After five cycles, the photocatalytic degradation efficiency of RhB dye could still reach 93.6%, while the degradation efficiency of silver phosphate decreased from 83.2% to 54.12%. The introduction of NPAN could accelerate the separation of photogenerated electron holes, enhance the structural stability of the composite material, and improve the photocatalytic effect and cyclic stability of the composite material. Finally, the catalytic mechanism was explored through the capture experiment of active substance, and it was proved that the main sources of catalytic activity were photogenerated holes and strong oxidation of·O2-.

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张才松,欧柯汝,项海飞,汪瑞宇,章家立. NPAN/Ag/Ag3PO4光催化降解RhB的活性及稳定性研究[J].华东交通大学学报,2021,38(2):127-135.

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  • 在线发布日期: 2021-06-18
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