Converting Iraqi Hazardous Crude Oily Sludge into Value-Added Activated Carbon using KOH Activation Technique

Saba A. Gheni, Awad E. Mohammed, Wadood T. Mohammed, Mahmod A. Abdulqader, O. A. Habeeb
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Abstract

Annually, a high amount of hazardous oily sludge (OS) is produced by North Refineries Company (NRC) Baiji. This work aims to study the specifications of oily sludge in crude oil storage tanks and to convert it into activated carbon (AC) by pyrolysis using KOH activated agent. The physical properties of OS have been measured and analyzed. The AC is produced by carbonizing oily sludge to char under N2 flow using KOH at an impregnation ratio of 2:1 KOH/char. The pore structure, morphology of the surface, and surface chemistry of the AC produced were characterized using Brunauer-Emmet-Teller (BET), Fourier Electron Scanning Electron Microscopy (FESEM), and Fourier-Transform Infrared Spectroscopy (FTIR). The result shows the surface area of the produced AC was 350 m2/g with a mesoporous structure. Based on the findings, the obtained surface area of the AC indicates the oily sludge was a light precursor, which is helpful in producing gas and liquid fuels rather than solid fuel.
利用 KOH 活性技术将伊拉克有害原油污泥转化为增值活性炭
北方炼油公司(NRC)贝吉炼油厂(Baiji)每年都会产生大量有害的含油污泥(OS)。这项工作旨在研究原油储罐中含油污泥的规格,并使用 KOH 活性剂通过热解将其转化为活性炭(AC)。对含油污泥的物理性质进行了测量和分析。在氮气流下,使用 KOH 以 2:1 KOH/char 的浸渍比例将含油污泥碳化成炭,从而生产出活性炭。使用布鲁纳-艾美特-泰勒(BET)、傅立叶电子扫描电子显微镜(FESEM)和傅立叶变换红外光谱(FTIR)对所制得的 AC 的孔隙结构、表面形态和表面化学性质进行了表征。结果表明,制得的交流电的表面积为 350 m2/g,具有介孔结构。根据研究结果,AC 的表面积表明油性污泥是一种轻质前驱体,有助于生产气体和液体燃料,而不是固体燃料。
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