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Titania nano-coated quartz wool for the photocatalytic mineralisation of emerging organic contaminants

机译:Titania纳米涂层石英羊毛,用于光催化矿化的新兴有机污染物

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摘要

Many emerging contaminants pass through conventional wastewater treatment plants, contaminating surface and drinking water. The implementation of advanced oxidation processes in existing plants for emerging contaminant remediation is one of the challenges for the enhancement of water quality in the industrialised countries. This paper reports on the production of a TiO2 nano-layer on quartz wool in a relevant amount, its characterisation by X-ray diffraction and scanning electron microscopy, and its use as a photocatalyst under ultraviolet radiation for the simultaneous mineralisation of five emerging organic contaminants (benzophenone-3, benzophenone-4, carbamazepine, diclofenac, and triton X-100) dissolved in deionised water and tap water. This treatment was compared with direct ultraviolet photolysis and with photocatalytic degradation on commercial TiO2 micropearls. The disappearance of every pollutant was measured by high performance liquid chromatography and mineralisation was assessed by the determination of total organic carbon. After 4 hours of treatment with the TiO2 nano-coated quartz wool, the mineralisation exceeds 90% in deionised water and is about 70% in tap water. This catalyst was reused for seven cycles without significant efficiency loss.
机译:许多新兴污染物通过常规废水处理厂,污染表面和饮用水。用于新兴污染治疗的现有植物中的先进氧化过程是改善工业化国家水质的挑战之一。本文报道了在X射线衍射和扫描电子显微镜下的相关量的石英羊毛上的TiO2纳米层的制备,其用作紫外线辐射下的光催化剂,用于同时矿化的五种新兴有机污染物(二苯甲酮-3,苯并苯酮-4,卡巴马啶,双氯芬酸和Triton X-100)溶解在去离子水中并自来水。将该处理与直接紫外线光解和具有光催化降解进行比较的商业TiO2微蛋白。通过高效液相色谱法测量每种污染物的消失,通过测定总有机碳来评估矿化。在用TiO2纳米涂层石英羊毛处理4小时后,矿化在去离子水中超过90%,自来水中约70%。该催化剂重复使用7个循环,而无明显效率损失。

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