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Efficient removal of Cr (VI) by magnetic and recyclable calcined CoFe-LDH/g-C3N4 via the synergy of adsorption and photocatalysis under visible light

机译:通过可见光下的吸附和光催化的协同作用,通过磁性和可回收煅烧的COFE-LDH / G-C3N4高效除去Cr(VI)

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摘要

Magnetic and recyclable calcined CoFe-LDH/g-C3N4 catalyst was prepared by co-precipitation and calcination method, and used as a multifunctional material to remove hexavalent chromium (VI) via the synergistic effect of adsorption and photocatalysis. The calcined CoFe-LDH provide surface adsorption in the composite, which could lead to the adsorption of Cr (VI) with high adsorption capacity and fast speed. The g-C3N4 nanosheets have high photocatalytic activity in situ for the composite to reduce Cr (VI) into Cr (III). The results demonstrated that 60% Cr (VI) (50 mg L-1) can be adsorbed by the nanocomposite in 10 min and the removal efficiency of Cr (VI) reached 100% in 90 min under visible light irradiation by adsorption and photocatalysis. In addition, the calcined CoFe-LDH/g-C3N4 exhibits a mostly pore size about 2.58 nm, large specific surface area (101.61 m(2) g(-1)) with the high structural stability and saturation magnetization (23.06 emu g(-1)), hence, could be easily recycled for ten subsequent runs with little activity loss.
机译:通过共沉淀和煅烧方法制备磁性和可回收煅烧的CoFe-LDH / G-C3N4催化剂,并用作通过吸附和光催化的协同效应除去六价铬(VI)的多功能材料。煅烧的CoFe-LDH在复合材料中提供表面吸附,这可能导致Cr(VI)的吸附高吸附能力和快速。 G-C3N4纳米蛋白酶具有高光催化活性,原位用于将Cr(vi)降至Cr(III)。结果表明,60%Cr(50mg)(50mg)(50mg L-1)可以在10分钟内吸附,Cr(VI)的去除效率在通过吸附和光催化的可见光照射下90分钟内达到100%。此外,煅烧的COFE-LDH / G-C3N4具有大约2.58nm,具有高结构稳定性和饱和磁化强度的大约2.58nm,大的比表面积(101.61m(2)g(-1))(23.06 emu g( -1))因此,可以很容易地回收10个随后的延续运行很少。

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