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首页> 外文期刊>Catalysis Letters >Degradation of Polystyrene Using Base Modified Mesoporous Molecular Sieves K2O/BaO-SBA-15 as Catalysts
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Degradation of Polystyrene Using Base Modified Mesoporous Molecular Sieves K2O/BaO-SBA-15 as Catalysts

机译:碱改性的介孔分子筛K2O / BaO-SBA-15作为催化剂降解聚苯乙烯

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Mesoporous BaO-SBA-15 was directly synthesized in hydrothermal system, and then K2O/BaO-SBA-15 materials were synthesized by impregnating BaO-SBA-15 in different concentration KNO3 aqueous solution. The obtained materials were characterized by XRD, FT-IR, N-2 adsorption/desorption and CO2-TPD. The results indicated that K2O/BaO-SBA-15 was of typical mesoporous structure and the long range order, and the introduction of K species improved the basicity of mesoporous material. The synthesized mesoporous materials were used as catalysts in the degradation of polystyrene (PS) and among them, 9 % K2O/BaO-SBA-15 exhibited the highest catalytic performance. Under the optimum conditions, the conversion of PS was 95.8 wt.% and the yield of styrene monomer could reach 85.0 wt.%. Furthermore, the stability of catalyst was investigated. The results showed that the catalyst was of excellent catalytic stability, there were less decreases in PS conversion and liquid product yield after six successive cycles of the catalyst.
机译:在水热体系中直接合成了介孔BaO-SBA-15,然后通过将BaO-SBA-15浸渍在不同浓度的KNO3水溶液中来合成K2O / BaO-SBA-15材料。通过XRD,FT-IR,N-2吸附/脱附和CO2-TPD对所得材料进行表征。结果表明,K2O / BaO-SBA-15具有典型的介孔结构,且具有长程有序性,引入K物种提高了介孔材料的碱性。合成的介孔材料被用作聚苯乙烯(PS)降解的催化剂,其中9%的K2O / BaO-SBA-15表现出最高的催化性能。在最佳条件下,PS的转化率为95.8 wt。%,苯乙烯单体的收率可达85.0 wt。%。此外,研究了催化剂的稳定性。结果表明,该催化剂具有优异的催化稳定性,在连续六个催化剂循环后,PS转化率和液体产物收率的降低较少。

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