首页> 外文期刊>ACS Sustainable Chemistry & Engineering >Facile Construction of Bi2MoO6/Bi/g-C3N4 toward Efficient Photocatalytic Oxidation of Indoor Gaseous Formaldehyde with a Wide Concentration Range under Visible Light Irradiation
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Facile Construction of Bi2MoO6/Bi/g-C3N4 toward Efficient Photocatalytic Oxidation of Indoor Gaseous Formaldehyde with a Wide Concentration Range under Visible Light Irradiation

机译:BI2MOO6 / BI / G-C3N4对室内气态甲醛高效光催化氧化的体积施工,可见光照射下的宽浓度范围

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The removal of formaldehyde ( HCHO) has attracted tremendous attention, because the toxicity and volatility of HCHO seriously affect human health. It is urgent to develop a catalyst that can efficiently remove HCHO in indoor conditions. Here, the Bi2MoO6/Bi/g-C3N4 heterojunction is prepared by a simple hydrothermal approach and subsequently an in situ reduction. The prepared material is used to photocatalytic degrade HCHO from 50 to 1600 ppm under simulated indoor conditions, presenting 96.15% conversion for 200 ppm and 98.80% for 1600 ppm under 10 h of visible light irradiation. Its long-term utility was confirmed with an unchanged activity after six recycling tests at a long 60 h of visible light illumination. An environmental factor estimation indicates its superior CO2 selectivity (99.79%) and excellent humidity resistance. The good performances are assigned to the Bi nanoparticles produced in situ, linking Bi2MoO6 and g-C3N4 together, which contribute to the excellent visible light harvesting, quick separation of electron-hole pairs, strong adsorption toward HCHO, and less shedding and aggregation. The materials could also be utilized to effectively removal general gaseous pollutants (C6H6 and CH3COOCH2CH3). This work is expected to develop a novel material that could be potentially integrated into the instrument for remedying of indoor gas.
机译:去除甲醛(HCHO)引起了巨大的关注,因为HCHO的毒性和挥发性严重影响人类健康。迫切需要开发一种可以有效地在室内条件下去除HCHO的催化剂。这里,通过简单的水热方法制备Bi2Moo6 / Bi / G-C3N4异质结,随后是原位还原。在模拟室内条件下,制备的材料用于光催化降解Hcho,从50至1600ppm下,在10小时内为200ppm的96.15%转化率为900ppm,在可见光照射的10小时内为900ppm。在长60小时的可见光照射的六次回收试验后,通过不变的活性确认其长期效用。环境因素估计表明其优异的CO2选择性(99.79%)和优异的耐湿性。将良好的性能分配给原位生产的Bi纳米粒子,将Bi2Moo6和G-C3N4连接在一起,这有助于优异的可见光收获,电子 - 空穴对的快速分离,对HCho的强烈吸附,较小的脱落和聚集。这些材料也可用于有效去除一般气态污染物(C6H6和CH3COOCH2CH3)。预计这项工作会开发一种新的材料,可以将可能集成在仪器中以进行储存室内气体。

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