脂肪酸改性废茶叶作为油脂吸附剂的潜力

Shu Ying Ang, Nur Farhana Najwa, Hairul Nazirah Abdul Halim, Siti Khalijah Mahmad Rozi, Zulfakar Mokhtar, Lian See Tan, Nurfatehah Wahyuny Che Jusoh
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引用次数: 1

摘要

由于城市化的发展,石油污染的治理仍然是一个挑战。因此,开发简单有效的水中除油方法的全球研究越来越多。本文以废食用油中的油酸(OA)和游离脂肪酸(fa - wco)为原料,对废茶叶进行了改性处理。目的是提高STL的疏水性,使其可以作为油吸附剂。利用傅里叶变换红外光谱(FTIR)分析鉴定了改性STL中脂肪酸的官能团,并用扫描电镜(SEM)对STL的表面形貌进行了表征。在间歇吸附实验中对合成的吸附剂的油吸附性能进行了测试。FTIR结果表明,游离脂肪酸已成功浸渍在STL表面。SEM分析表明,与未改性STL表面较粗糙相比,脂肪酸改性STL表面光滑。间歇式吸附试验中,当STL与WCO的比例为1:10,吸附时间为120 min,吸附剂用量为1 g,温度为45℃时,吸附量最高。STL@FFA-WCO在最佳条件下的吸附量为1.800±0.15 g/g。改性剂效果方面,油酸(STL@OA)改性的STL吸附量较大,为2.267±0.21 g/g。这些结果证明脂肪酸改性STL具有成为绿色脱油吸附剂的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Potential of fatty acid-modified spent tea leaves as adsorbent for oil adsorption
Treatment of oil pollution remains a challenge due to the growing urbanisation. Thus, there is an increasing number of global studies on exploiting simple and effective methods to remove oil from water. In the present work, spent tea leaves (STL) have been modified using oleic acid (OA) and free fatty acids from waste cooking oil (FFA-WCO). The aim was to enhance the hydrophobicity of the STL so that they can act as an oil adsorbent. The functional groups of the fatty acids within the modified STL were identified using the Fourier Transform Infrared (FTIR) Spectroscopy analysis, while the surface morphology of STL was characterised using a Scanning Electron Microscope (SEM). The performance of the synthesised adsorbents for oil adsorption was tested in batch adsorption experiments. The FTIR results revealed that free fatty acids have been successfully impregnated onto the surface of STL. SEM analyses showed that the surface of the fatty acid-modified STL has smoother surfaces compared to the rougher surface of unmodified STL. From the batch adsorption test, the highest adsorption capacity was observed using 1:10 ratio of STL to WCO, with 120 min of contact time, 1 g of adsorbent dosage, and under the temperature of 45 °C. The adsorption capacity of STL@FFA-WCO at the optimum condition was 1.800 ± 0.15 g/g. For the effect of modification agents, STL that were modified using oleic acid (STL@OA) showed greater adsorption capacity of 2.267 ± 0.21 g/g. These findings proved that the fatty acid-modified STL have the potential of becoming green adsorbents for oil removal.
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