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纳米磁性磺化浸渍Ni/Mn/NaSiO作为棕榈脂肪酸馏出物酯化催化剂的合成

Synthesis of nanomagnetic sulphonated impregnated Ni/Mn/NaSiO as catalyst for esterification of palm fatty acid distillate.

作者信息

Ibrahim Naeemah A, Rashid Umer, Choong Thomas Shean Yaw, Nehdi Imededdine Arbi

机构信息

Institute of Advanced Technology, Universiti Putra Malaysia 43400 UPM Serdang Selangor Malaysia

Department of Chemical and Environmental Engineering, Universiti Putra Malaysia 43400 UPM Serdang Selangor Malaysia.

出版信息

RSC Adv. 2020 Feb 10;10(10):6098-6108. doi: 10.1039/c9ra08115a. eCollection 2020 Feb 4.

Abstract

The deterioration of the environment due to anthropogenic disturbances has become a major concern to scientists and engineers. This study responds to the concern by developing a novel nanomagnetic carbonaceous solid acid catalyst using empty fruit bunches (EFBs) as a precursor. The EFB was sulphonated to obtain acidic EFBs (AEFBs). The impregnation method was performed to incorporate metal oxides, namely, NiO, MnO and NaSiO, on the AEFBs. This process resulted in three nanomagnetic catalysts, namely, NaSiO-NiO-MnO/AC, NiO-MnO/AC and NiO/AC. According to X-ray diffraction analysis, the crystal size of the NiO/AC, NiO-MnO/AC and NaSiO-NiO-MnO/AC catalysts were 13.87, 28.38 and 39.64 nm, respectively, whereas their Brunauer-Emmett-Teller surface areas were 23.78, 12.69 and 16.8 m g, respectively. To confirm the incorporation of active metallic species (Ni, Mn, Na and SiO) into the carbon surface, we performed X-ray photoelectron spectroscopy. TPD-NH absorption showed that the NaSiO-Ni-MnO/AC catalysts substantially increased in the active sites and exhibited higher acidity. FESEM images showed the morphology of the surface, pore sizes and agglomeration of the catalysts. Moreover, the vibrating sample magnetometer depicted that the NaSiO-Ni-MnO/AC catalyst was ferrimagnetic with magnetisation and magnetic saturation values of 40.27 and 86.04 emu g, respectively. The optimal reaction conditions were as follows: PFAD/methanol ratio of 16 : 1, 2 wt% mass of the catalyst, temperature of 120 °C and time of 4 h. Using the synthesised nanomagnetic catalyst exhibited 96% conversion of PFAD to methyl esters. Furthermore, the NaSiO-Ni-MnO/AC catalyst was easily separated from the reaction mixture using an external magnet and was recycled six times. The modified nanomagnetic catalyst could be an efficient catalyst for discarded feedstocks for biodiesel production.

摘要

人为干扰导致的环境恶化已成为科学家和工程师主要关注的问题。本研究针对这一问题,以空果串(EFBs)为前驱体开发了一种新型纳米磁性碳质固体酸催化剂。对EFB进行磺化以获得酸性EFB(AEFBs)。采用浸渍法将金属氧化物,即NiO、MnO和NaSiO负载到AEFBs上。这一过程产生了三种纳米磁性催化剂,即NaSiO-NiO-MnO/AC、NiO-MnO/AC和NiO/AC。根据X射线衍射分析,NiO/AC、NiO-MnO/AC和NaSiO-NiO-MnO/AC催化剂的晶体尺寸分别为13.87、28.38和39.64 nm,而它们的Brunauer-Emmett-Teller表面积分别为23.78、12.69和16.8 m²/g。为了确认活性金属物种(Ni、Mn、Na和SiO)是否负载到碳表面,我们进行了X射线光电子能谱分析。TPD-NH吸附表明,NaSiO-Ni-MnO/AC催化剂的活性位点大幅增加,且酸度更高。场发射扫描电子显微镜(FESEM)图像显示了催化剂的表面形态、孔径和团聚情况。此外,振动样品磁强计表明,NaSiO-Ni-MnO/AC催化剂具有亚铁磁性,其磁化强度和磁饱和值分别为40.27和86.04 emu/g。最佳反应条件如下:棕榈脂肪酸蒸馏物(PFAD)与甲醇的比例为16∶1、催化剂质量为2 wt%、温度为120℃、时间为4 h。使用合成的纳米磁性催化剂时,PFAD转化为甲酯的转化率为96%。此外,NaSiO-Ni-MnO/AC催化剂可通过外部磁铁轻松从反应混合物中分离出来,并可循环使用六次。这种改性纳米磁性催化剂可能是用于废弃原料生产生物柴油的高效催化剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/eccd/9049226/2946e9d2f34b/c9ra08115a-f6.jpg

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