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Synthesis of Porous Boron-Doped Carbon Nitride: Adsorption Capacity and Photo-Regeneration Properties

机译:多孔掺硼氮化碳的合成:吸附容量和光再生特性

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摘要

Carbon nitride (CN) with improved adsorption–degradation capacity was synthesized using B2O3 and CN via calcination. The pollutant removal capacity of this B2O3/CN (B-CN) was studied by a powder suspension experiment and added into concrete to evaluate the adsorption and degradation of methylene blue (MB). The characterizations of all samples indicate that B2O3 significantly affects CN, e.g., by increasing the CN specific surface area to 3.6 times the original value, extending visible light adsorption, and narrowing the band gap from 2.56 eV to 2.42 eV. Furthermore, the results show that B-CN composite materials have a higher MB-removal efficiency, with the adsorption capacity reaching 43.11 mg/g, which is about 3.3 times that of pristine CN. The MB adsorption process on B2-CN is mainly via electrostatic attraction and π–π interactions. In addition, B-CN added into concrete also has good performance. After five adsorption–degradation cycles, B-CN and photocatalytic concrete still exhibit a good regenerate ability and excellent stability, which are very important for practical applications.
机译:使用B2O3和CN通过煅烧合成具有改善的吸附降解能力的氮化碳(CN)。通过粉末悬浮实验研究了该B2O3 / CN(B-CN)的污染物去除能力,并将其添加到混凝土中以评估亚甲基蓝(MB)的吸附和降解。所有样品的特征表明,B 2 O 3显着影响CN,例如,通过将CN比表面积增加至原始值的3.6倍,扩展可见光吸附,并将带隙从2.56 eV缩窄至2.42 eV。结果表明,B-CN复合材料具有较高的MB去除效率,吸附量达到43.11 mg / g,约为原始CN的3.3倍。 B2-CN上的MB吸附过程主要是通过静电吸引和π-π相互作用。另外,在混凝土中添加B-CN也具有良好的性能。经过五个吸附-降解循环后,B-CN和光催化混凝土仍具有良好的再生能力和出色的稳定性,这对于实际应用非常重要。

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