Synthesis of Oil Palm Frond (OPF) Based Silica Nanomaterial via Sol-gel Method with Enhanced Phenol Removal

N. Osman, M. Ismail, Norzahir Sapawe
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Abstract

This research investigates the potential of the oil palm frond (OPF), a well-known biomass from the oil palm industry, as a feasible silica precursor that can be utilised in the removal of phenol from an aqueous solution. Dried OPF was combusted to obtain OPF ash that was treated with citric acid before being synthesised as silica nanomaterial via the sol-gel method. The FTIR results of synthesised silica exhibit a similar peak with commercially available silica. Silica material was then used for phenol removal under different parameters including pH, contact time, dosage, concentration, and temperature, then analysed using UV-Vis Spectrophotometer. The optimum condition was obtained at pH 7 within 45 mins of contact time using 0.2 g/L silica dosage under 10 ppm of phenol concentration at 303 K that aid in enhancing phenol removal by the OPF-based silica. At this condition, silica nanomaterial successfully removed up to 68% of phenol in an aqueous solution with adsorption capacity of the adsorbent is within the range of 34 mg/g. These results demonstrate the potential application of silica nanomaterial from OPF as an adsorbent in phenol removal from wastewater.
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溶胶-凝胶法合成油棕榈叶(OPF)基二氧化硅纳米材料的研究
本研究调查了油棕叶(OPF)的潜力,这是一种众所周知的来自油棕工业的生物质,作为一种可行的硅前驱体,可用于从水溶液中去除苯酚。干燥后的OPF燃烧得到OPF灰,用柠檬酸处理后,通过溶胶-凝胶法合成二氧化硅纳米材料。合成二氧化硅的FTIR结果与市售二氧化硅表现出相似的峰值。在不同的pH、接触时间、投加量、浓度和温度条件下,利用二氧化硅材料对苯酚进行脱除,并用紫外可见分光光度计进行分析。在pH为7、苯酚浓度为10 ppm、温度为303 K、二氧化硅投加量为0.2 g/L、接触时间为45 min的条件下,获得了有利于opf基二氧化硅去除苯酚的最佳条件。在此条件下,二氧化硅纳米材料成功脱除了水溶液中高达68%的苯酚,吸附剂的吸附容量在34 mg/g范围内。这些结果表明,OPF纳米二氧化硅材料作为吸附剂在废水中苯酚的去除中具有潜在的应用前景。
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