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Investigating the removal of methyl tertiary butyl ether (MTBE) from water using raw and modified fly ash waste materials

机译:使用原料和改性粉煤灰废物材料研究从水中除去甲基叔丁基醚(MTBE)

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摘要

Classical techniques for remediation of methyl tertiary butyl ether (MTBE) from contaminated water sources are characterized by inherent limitations due to its unique physical and chemical characteristics, making further remediation researches promising. Fly ash (FA), which is a waste material derived from the combustion of coal or heavy liquid fuel has been reported to show favorable adsorption results with selected metals, dyes, and some organics in aqueous solution. In this study, raw FA, acid-treated FA, and metal oxide (silver, iron, and aluminum) impregnated FA were assessed on a bench scale, for MTBE adsorption in contaminated water system and benchmarked against activated carbon (AC). Results showed that only silver oxide (Ag2O) impregnated FA achieved similar to 24% removal of MTBE from aqueous solution, while the other tested adsorbent materials achieved10%. MTBE optimum adsorption was attained after 120min of contact, and 0.5g/L dosage of adsorbent. Conversely, silver oxide impregnation of AC brought about a drop in its MTBE removal efficiency from an optimum efficiency of 71 to 53%. Also, the Langmuir isotherm model best represented the MTBE adsorption behavior of both the Ag2O-impregnated FA and AC, having R-2 of 88.75-89.92%, respectively.
机译:由于其独特的物理和化学特征,因此具有局部局限性的固有局限性,以进一步的修复研究,以污染水源修复来自污染水源的甲基叔丁基醚(MTBE)的典型技术。据报道,粉煤灰(Fa),其是源自煤或重液体燃料燃烧的废物材料,以表现出具有所选金属,染料和水溶液中的一些有机物的有利吸附结果。在该研究中,对污染水系统中的MTBE吸附并反对活性炭(AC)的MTBE吸附,对浸渍的FA,酸处理的FA和金属氧化物(银,铁和铝)浸渍Fa进行了评估,并且对抗活性炭(AC)。结果表明,只有氧化银(Ag2O)浸渍的FA,达到与水溶液中的24%除去MTBE,而其他测试的吸附材料达到<10%。在接触120min后,达到了MTBE最佳吸附,并为0.5g / L的吸附剂剂量。相反,AC的氧化银浸渍其MTBE去除效率下降,从最佳效率为71-53%。此外,Langmuir等温模型最佳代表Ag2O浸渍的FA和AC的MTBE吸附行为,分别具有88.75-89.92%的R-2。

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