Fe-doped g-C3N4 photocatalyst as well as preparation method and application thereof
A photocatalyst, g-c3n4 technology, applied in the field of photocatalytic materials, can solve the problems of reducing the number of active species and reducing degradation efficiency, and achieve the effects of enhanced light absorption capacity, reduced recombination rate, and good economic benefits
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Embodiment 1
[0029] Example 1, Fe-doped g-C 3 N 4 Preparation of Photocatalyst FCN-0.1
[0030] Put 0.1 g of pig blood and 10 g of melamine in a beaker and mix them evenly at room temperature, then pour them into a crucible, put them in a muffle furnace, heat them up to 550°C at a heating rate of 5°C / min, and keep them warm for 2 h. After the muffle furnace was cooled to room temperature, the obtained sample was ground in an agate mortar and collected for later use. The sample was marked as FCN-0.1.
Embodiment 2
[0031] Embodiment 2, Fe-doped g-C 3 N 4 Preparation of photocatalyst FCN-0.3
[0032] Put 0.3 g of pig blood and 10 g of melamine into a beaker and mix them evenly at room temperature, then pour them into a crucible, put them in a muffle furnace, heat them to 550°C at a heating rate of 5°C / min, and keep them warm for 2 h. After the muffle furnace was cooled to room temperature, the obtained sample was ground in an agate mortar and collected for later use. The sample was marked as FCN-0.3.
Embodiment 3
[0033] Example 3, Fe-doped g-C 3 N4 Preparation of Photocatalyst FCN-0.5
[0034] Put 0.5 g of pig blood and 10 g of melamine into a beaker and mix them evenly at room temperature, then pour them into a crucible, put them in a muffle furnace, heat them up to 550°C at a heating rate of 5°C / min, and keep them warm for 2 h. After the muffle furnace was cooled to room temperature, the obtained sample was ground in an agate mortar and collected for later use. The sample was marked as FCN-0.5.
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