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- W4386002962 abstract "The solar low-temperature driven photo-thermal conversion/catalytic process can realize heating and purification functions, which has huge application potential with solar building passive technology. Here, building multifunctional applications integrated with a novel manganese oxide low-temperature thermal-catalyst that realized the functions of air purification and energy conservation was investigated. Firstly, as-synthesized α-MnO2 were characterized by XRD, BET, SEM and XPS. Based on single-pass ratio experiment data, L-H model was selected to predict the reaction kinetics of catalysts. Furthermore, based on the verified thermal and mass model, building applications such as ventilated window, ventilated wall, etc. were discussed in terms of the purification performance and thermal performance in Nanjing. Main results are: (1) Ultrafine MnO2 nanowires efficiently oxidized ppb-level formaldehyde at low temperatures. By comparison, MnO2 nanowires exhibited far greater purification performance than MnOx-CeO2, especially at low-temperature. (2) The kinetic fitting resulted aligned well with the experimental and characterization data, confirming M−3 as the most effective catalyst. (3) Applying catalysts on blinds in the air-cavity of ventilated window, the annual total generated clean air was 8740.83 m3/m2. The annual total reduced heating/cooling load were 275.52 and 193.1 MJ/m2 in Nanjing. (4) The low-temperature catalysis and high solar absorption were the main factors affecting purification performance in building application." @default.
- W4386002962 created "2023-08-20" @default.
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- W4386002962 date "2023-10-01" @default.
- W4386002962 modified "2023-10-07" @default.
- W4386002962 title "The performance analysis of a novel manganese oxide solar low-temperature thermal-catalyst in building multifunctional applications" @default.
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- W4386002962 doi "https://doi.org/10.1016/j.enbuild.2023.113477" @default.
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