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Development of a novel method to prepare Fe- and Al-doped TiO2 from wastewater

机译:用废水制备铁和铝掺杂的二氧化钛的新方法的开发

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A simple and novel method to synthesize iron and aluminium-doped titanium dioxide (TiO2) was investigated. Titanium tetrachloride (TiCl4) was used as a coagulant to remove organic matter from wastewater. The settled floc (sludge) was dewatered and incinerated at 600 °C after TiCl4 flocculation. The resultant by-product from the waste sludge was valuable TiO2. TiCl4 coagulant was added with FeCl3 and A12(SO4)3 coagulants to dope iron and aluminium on TiO2 in a flocculation process. The effect of iron and aluminium on TiO2 was investigated in terms of scanning electron microscopy/energy dispersive X-ray (SEM/EDX), X-ray diffraction (XRD), optical absorbance and photocatalytic activity. The majority of Fe/TiO2 and Al/TiO2 particles were found to be less than 1 μm size formed by 0.1 μm agglomerates using SEM analysis. Fe/TiO2 included Ti, O, C, P and Fe elements and Al/TiO2 consisted of Ti, O, C, P and Al elements as confirmed by EDX results. Remaining organic carbon from the settled organic matter was the source of C atom in TiO2 whereas the P atom in TiO2 came from phosphorus nutrient present in wastewater. The majority of acetaldehyde with Fe/TiO2 and Al/TiO2 was significantly removed under UV irradiation within 60 min. However, at higher iron concentration, acetaldehyde removal decreased by almost 50%. Under visible light irradiation, the photo-decomposition of acetaldehyde using the Fe/TiO2 and Al/TiO2 was marginal.
机译:研究了一种简单而新颖的合成铁和铝掺杂的二氧化钛(TiO2)的方法。四氯化钛(TiCl4)被用作凝结剂以去除废水中的有机物。 TiCl4絮凝后,将沉淀的絮凝物(污泥)脱水并在600°C下焚烧。废物污泥产生的副产物是有价值的TiO2。在絮凝过程中,将TiCl4凝结剂与FeCl3和Al2(SO4)3凝结剂一起掺入铁和铝。通过扫描电子显微镜/能量色散X射线(SEM / EDX),X射线衍射(XRD),光吸收和光催化活性研究了铁和铝对TiO2的影响。使用SEM分析发现,大多数Fe / TiO2和Al / TiO2颗粒的尺寸小于0.1μm团聚物形成的1μm尺寸。 EDX结果证实,Fe / TiO2包含Ti,O,C,P和Fe元素,Al / TiO2由Ti,O,C,P和Al元素组成。沉淀的有机物中剩余的有机碳是TiO2中C原子的来源,而TiO2中的P原子来自废水中存在的磷营养物。在60分钟的紫外线照射下,大部分具有Fe / TiO2和Al / TiO2的乙醛被去除。然而,在较高的铁浓度下,乙醛去除率降低了近50%。在可见光照射下,使用Fe / TiO2和Al / TiO2对乙醛的光分解作用很小。

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