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Preparation of Titania Doped Argentum Photocatalyst and its Photoactivity Towards Palm Oil Mill Effluent Degradation

机译:掺杂二氧化钛的阿根廷光催化剂的制备及其对棕榈油厂废水降解的光活性

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摘要

This paper reports on the photocatalytic degradation of pre-treated palm oil mill effluent (POME) over titania loaded with photocatalyst. The argentum loading on the titania was varied from 0.25 to 1.0 wt% via wet-impregnation technique. X-ray diffraction characterization of all the photocatalysts showed that the photo-active rutile phase was still intact after the photocatalyst synthesis. In addition, the UV–Vis diffuse reflectance measurements indicate an improved visible light energy absorption and that the band gap energy was significantly reduced (averaging 2.50 eV) when titania was loaded with argentum, compared to the pristine titania that recorded a reading of 3.20 eV. The 0.50 wt% argentum/titania photocatalyst offered the most effective degradation of pre-treated POME under the irradiation of 100 W of UV light (25.0%) and also visible light (16.0%), respectively, over a loading of 0.2 g/L. Significantly, the maximum photocatalyst loading determined from the current work was 1.0 g/L.
机译:本文报道了负载有光催化剂的二氧化钛对预处理的棕榈油厂废液(POME)的光催化降解。通过湿浸渍技术,二氧化钛上的阿根廷负载量为0.25-1.0重量%。所有光催化剂的X射线衍射表征表明,在光催化剂合成后,光活性金红石相仍然完整。此外,与记录读数为3.20 eV的原始二氧化钛相比,当二氧化钛负载有阿根廷银时,UV-Vis漫反射测量结果表明可见光能量吸收得到改善,并且带隙能量显着降低(平均2.50 eV)。 。 0.50 wt%的阿根廷/二氧化钛光催化剂在0.2 g / L的负载量下分别在100 W的紫外线(25.0%)和可见光(16.0%)的照射下提供了最有效的预处理POME降解。 。值得注意的是,根据当前工作确定的最大光催化剂负载量为1.0 g / L。

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