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首页> 外文期刊>Journal of Environmental Management >Insight into the photocatalytic properties of diatomite@Ni/NiO composite for effective photo-degradation of malachite green dye and photo-reduction of Cr (Ⅵ) under visible light
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Insight into the photocatalytic properties of diatomite@Ni/NiO composite for effective photo-degradation of malachite green dye and photo-reduction of Cr (Ⅵ) under visible light

机译:硅藻土@ Ni / NiO复合材料在可见光下有效光降解孔雀石绿染料和光还原铬(Ⅵ)的光催化性能

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Diatomite frustules decorated by nano Ni/NiO nanoparticles (Diatomite@Ni/NiO) were synthesized as a novel photocatalyst for effective degradation of malachite green cationic dye (M.G) and photocatalytic-reduction of Cr (VI) ions. The composite was characterized by different analytical techniques and revealed enhancing in the surface area (400 m(2)/g), 5.8 nm as average pore diameter and showed lower band gap energy (1.71 eV) than NiO as single phase. The photocatalytic activity of the composite in the removal of M.G and reduction of Cr (VI) was evaluated under visible light considering the pH, illumination time, catalyst mass, and the pollutants concentrations. The results revealed complete removal of 25 mg/L M.G can be achieved using 20 mg, 30 mg, 40 mg and 50 mg of the after 150 min, 90 min, 60 min, and 30 min, respectively. The complete degradation of 50 mg/L can be obtained after 240 min, 90 min, and 60 min using 20 mg, 40 mg, and 50 mg of the catalyst, respectively. This also was reported for the photocatlytic-reduction of 25 mg/L of Cr(VI) ions as the complete reduction was estimated after 180 min, 60 min and 30 min using 20 mg, 40 mg, and 50 mg, respectively. Also, 50 mg/L of Cr (VI) can be completely reduced after 240 min, 90 min, and 60 min using 20 mg, 40 mg, and 50 mg as catalyst dosage, respectively. The photocatalytic degradation of M.G controlled mainly by the generated electron-hole pairs and the superoxide species while the photocatalytic-reduction of Cr (VI) controlled mainly by the directly excited electrons of Ni/NiO and partially by the formed superoxide radicals. Hence, the synthetic diatomite@Ni/NiO composite can be considered as potential photocatalyst in the degradation of M.G dye and photoreduction of Cr (VI) ions.
机译:合成了由纳米Ni / NiO纳米粒子(Diatomite @ Ni / NiO)装饰的硅藻土壳层,作为一种新型的光催化剂,可有效降解孔雀石绿阳离子染料(M.G)并光催化还原Cr(VI)离子。该复合材料的特征在于采用了不同的分析技术,并显示出表面积(400 m(2)/ g)增强,平均孔径为5.8 nm,并且比单相NiO的带隙能低(1.71 eV)。考虑到pH,照射时间,催化剂质量和污染物浓度,在可见光下评估了复合材料在去除M.G和还原Cr(VI)中的光催化活性。结果表明,分别在150分钟,90分钟,60分钟和30分钟后分别使用20 mg,30 mg,40 mg和50 mg可以完全去除25 mg / LM.G。分别使用20 mg,40 mg和50 mg的催化剂在240分钟,90分钟和60分钟后可以得到50 mg / L的完全降解。据报道这是对光催化还原Cr(VI)离子25 mg / L的估计,因为在180分钟,60分钟和30分钟后分别使用20 mg,40 mg和50 mg估计完全还原。同样,分别使用20 mg,40 mg和50 mg作为催化剂剂量,在240分钟,90分钟和60分钟后可以完全还原50 mg / L的Cr(VI)。 M.G的光催化降解主要由产生的电子-空穴对和超氧化物种控制,而Cr(VI)的光催化还原主要由Ni / NiO的直接激发电子控制,部分由形成的超氧化物自由基控制。因此,合成的硅藻土@ Ni / NiO复合材料可以被认为是M.G染料降解和Cr(VI)离子光还原的潜在光催化剂。

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