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Enhancement of sonocatalytic degradation of organic dye by using titanium dioxide (TiO2)/activated carbon (AC) derived from oil palm empty fruit bunch

机译:使用含油钛(TiO2)/活性炭(AC)衍生自油棕榈空粉刺的同源染料的儿童催化降解

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摘要

A novel titanium dioxide/activated carbon (TiO2/AC) composite where AC derived from oil palm empty fruit bunch (EFB) was synthesised by using sol-gel method. All the samples were characterised by using X-ray diffraction (XRD), scanning electron microscopy-energy dispersive X-ray (SEM-EDX), Fourier transformed infrared (FTIR), thermogravimetric analysis (TGA) and surface analyser. SEM analysis showed that TiO(2)particles were successfully embedded and well distributed on the AC surface. The elemental composition analysis found that the TiO2/AC composite contained titanium (Ti), oxygen (O) and carbon (C) atoms. Meanwhile, the appearance of new band at about 960 cm(-1)which assigned to the Ti-O stretching was observed in the FTIR spectra when the AC was incorporated into TiO2. TGA analysis showed that the weight loss of 32 wt.% from 150 to 550 degrees C was due to the decomposition of amorphous carbon layers and loss of hydroxyl groups on TiO2. It was found that the TiO2/AC composite had better performance in the sonocatalytic degradation of malachite green as compared to the individual AC and TiO(2)because the TiO2/AC composite had dual functionality and huge number of active sites which could promote the mass transfer of dye molecules towards catalyst surface. By using 1.5 g/L of TiO2/AC composite which calcined at 700 degrees C on 100 mL of 200 mg/L of malachite green at solution pH of 7, a degradation efficiency of 87.11% had been achieved after 30 min of ultrasonic irradiation. A lower chemical oxygen demand (COD) removal (81.75%) was observed because the structured dye molecules underwent mineralisation process during the sonocatalytic degradation to generate intermediate compounds. The TiO2/AC composite was able to be recycled and still achieved a high degradation efficiency of 76.78% after second catalytic cycle as compared to the fresh TiO2/AC composite with degradation efficiency of 87.11%. In conclusion, the TiO2/AC composite had high reusability and promising for practical applications in textile industry.
机译:通过使用溶胶 - 凝胶法合成了一种新的二氧化钛/活性炭(TiO2 / AC)复合材料,其中来自来自油棕空果实束(EFB)的AC。通过使用X射线衍射(XRD),扫描电子显微镜 - 能量分散X射线(SEM-EDX),傅里叶变换红外(FTIR),热重分析(TGA)和表面分析仪来表征所有样品。 SEM分析表明,TiO(2)颗粒成功嵌入并分布在AC表面上。元素组成分析发现,TiO2 / AC复合物含有钛(Ti),氧(O)和碳(C)原子。同时,当AC掺入TiO 2中时,在FTIR光谱中观察到在FTIR光谱中分配到Ti-O拉伸的约960cm(-1)的新带的外观。 TGA分析表明,32重量%的重量损失为32重量%。%从150-550℃下C是由于非晶碳层的分解和TiO 2上的羟基损失。结果发现,与个体AC和TiO(2)相比,TiO2 / AC复合材料在孔雀石绿色的同源催化降解中具有更好的性能,因为TiO2 / AC复合材料具有双重功能和可能促进质量的大量活跃点将染料分子转移朝向催化剂表面。通过使用1.5g / l的TiO 2 / AC复合材料,在700℃下在溶液pH的100ml 200ml 200mg / L的孔雀沸石上煅烧,在30分钟后,在超声波照射30分钟后实现了87.11%的降解效率。观察到较低的化学需氧量(COD)去除(81.75%),因为结构化染料分子在儿童催化降解期间接受了矿化过程以产生中间体化合物。与新鲜TiO 2 / AC复合材料相比,TiO2 / AC复合材料能够再循环,仍然在第二催化循环后的高降解效率为76.78%,其降解效率为87.11%。总之,TiO2 / AC复合材料具有高可重用性和对纺织工业实际应用的承诺。

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