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Hollow porous carbon nitride immobilized on carbonized nanofibers for highly efficient visible light photocatalytic removal of NO

机译:中空多孔氮化碳固定碳纳米纤维高效可见光的光催化去除

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摘要

With the deterioration of air quality, great efforts were devoted to designing various photocatalysts for effective removal of NOx in air. However, the present photocatalysts have a fatal problem of low photocatalytic efficiency. In this work, a hollow porous carbon nitride nanosphere coupled with reduced graphene oxide (HCNS/rGO) was exploited as a visible-light photocatalyst to remove nitrogen monoxide in air at a low concentration (600 ppb level) under irradiation of an energy saving lamp. HCNS/rGO showed a NO removal ratio of 64%, which was superior to that of most other visible-light photocatalysts. The excellent photocatalytic ability of HCNS/rGO originates from the hollow porous morphology of HCNS and the grafted rGO on the surface. HCNS/rGO was immobilized on porous carbonized polymer nanofibers to obtain a photocatalytic membrane without affecting photocatalytic efficiency. Furthermore, the membrane showed excellent photochemical stability and recyclability.
机译:空气质量的恶化,很好努力都致力于各种设计有效去除氮氧化物的催化剂空气中。致命的光催化效率低的问题。在这项工作中,中空多孔碳氮化nanosphere加上降低石墨烯氧化物(hcn / rGO)是利用可见光光催化剂去除一氧化氮在空气中在低浓度(600磅)节能灯的照射。显示没有删除的比率为64%,优于其他可见光论文的。hcn / rGO源于空心的能力多孔形态hcn和嫁接rGO表面。获得碳聚合物纳米纤维光催化膜而不影响光催化效率。膜表现出优异的光化学稳定性和再循环能力。

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