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基于杏仁壳的磁性活性炭/膜混合工艺去除水中的十六烷基二甲基乙基溴化铵

Elimination of cetyldimethylethylammonium ammonium bromide from water by almond shell based magnetic activated carbon/membrane hybrid processes.

作者信息

Zahoor Muhammad, Alam Sultan, Ali Muhammad, Ullah Azmat, Khan Adnan, Moussa Sana Ben, Alzahrani Abdullah Yahya Abdullah

机构信息

Department of Biochemistry, University of Malakand, Chakdara, 18800, Pakistan.

Department of Chemistry, University of Malakand, Chakdara, 18800, Pakistan.

出版信息

Sci Rep. 2025 Jul 20;15(1):26303. doi: 10.1038/s41598-025-09370-8.

Abstract

A composite material; Magnetite Carbon Nanocomposite (AMCNC), was synthesized using almond shell waste biomass following a co-precipitation method. The prepared nanocomposite was characterized using instrumental techniques such as BET/BJH surface area measurement, scanning electron microscopy (SEM), Fourier-transform infrared (FTIR) spectroscopy, X-ray diffraction (XRD), thermal gravimetric analysis/differential thermal analysis (TG/DTA), determination of the point of zero charge and energy dispersive X-ray (EDX) analysis. The EDX, FTIR and XRD analysis revealed the presence of iron oxide on the surface of AMCNC, crystallinity and magnetic character. The BET surface area was 74.99 m g and the BJH pore size distribution was 61.08 m g, total pore volume of 0.073 cm g and a pore diameter of 15.55 Å. The FTIR analysis of AMCNC identified surface functional groups like carboxylic acid, phenols, and ethereal groups along with a band at 580 cm, corresponds to FeO linkage. The pH of the AMCNC was 7.7. The nanocomposite was used as sorbent for the remediation of cetyldimethylethylammonium bromide (CDEAB), a surfactant, from aquatic media. Effect of contact time, initial concentration of CDEAB, pH solution, AMCNC dosage, ionic strength, and temperature were evaluated. Regeneration study of the surfactant AMCNC was also performed. Fast adsorption occurred at initial few minutes and finally reached to equilibrium in 2 h with best fitting of the data recorded for Pseudo 2nd order kinetics model whereas the adsorption isotherm studies was well described by the Freundlich and Jovanovich models. The thermodynamic parameters revealed the process as exothermic and spontaneous. Improved permeate fluxes and the percentage retention of surfactant were observed for AMCNC/UF (magnetite carbon nanocomposite/ultrafiltration), AMCNC/NF (magnetite carbon nanocomposite/nanofiltration) and AMCNC/RO (magnetite carbon nanocomposite/reverse osmosis) hybrid processes. The fouling was minimized to considerable level for AMCNC/RO and AMCNC/NF operations which in turn could enhance the membranes efficacies in large scale commercial operations.

摘要

采用共沉淀法,以杏仁壳废弃生物质为原料合成了一种复合材料——磁铁矿碳纳米复合材料(AMCNC)。使用BET/BJH比表面积测量、扫描电子显微镜(SEM)、傅里叶变换红外(FTIR)光谱、X射线衍射(XRD)、热重分析/差热分析(TG/DTA)、零电荷点测定和能量色散X射线(EDX)分析等仪器技术对制备的纳米复合材料进行了表征。EDX、FTIR和XRD分析表明,AMCNC表面存在氧化铁,具有结晶性和磁性。BET比表面积为74.99 m²/g,BJH孔径分布为61.08 m²/g,总孔体积为0.073 cm³/g,孔径为15.55 Å。AMCNC的FTIR分析确定了表面官能团,如羧酸、酚类和醚基,以及在580 cm⁻¹处的一条谱带,对应于Fe - O键。AMCNC的pH值为7.7。该纳米复合材料用作吸附剂,用于从水介质中去除表面活性剂十六烷基二甲基乙基溴化铵(CDEAB)。评估了接触时间、CDEAB初始浓度、溶液pH值、AMCNC用量、离子强度和温度的影响。还进行了表面活性剂AMCNC的再生研究。在最初几分钟内快速吸附,最终在2小时内达到平衡,伪二级动力学模型对记录的数据拟合最佳,而吸附等温线研究则由Freundlich模型和Jovanovich模型很好地描述。热力学参数表明该过程是放热且自发的。对于AMCNC/UF(磁铁矿碳纳米复合材料/超滤)、AMCNC/NF(磁铁矿碳纳米复合材料/纳滤)和AMCNC/RO(磁铁矿碳纳米复合材料/反渗透)混合过程,观察到渗透通量提高,表面活性剂截留率增加。对于AMCNC/RO和AMCNC/NF操作,污垢降至相当低的水平,这反过来可以提高大规模商业操作中膜的效率。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4bfc/12277435/bbbacb6e5cd2/41598_2025_9370_Fig1_HTML.jpg

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