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Removal of sulfur compounds from petroleum refinery wastewater through adsorption on modified activated carbon

机译:通过改性活性炭吸附去除炼油废水中的硫化合物。

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The adsorption of sulfur compounds from petroleum refinery wastewater on a chemically modified activated carbon (MAC) was investigated. The modification technique (nitric acid, hydrogen peroxide and thermal modification) enhanced the removal capacity of carbon and therefore decreases cost-effective removal of sulfide from refinery wastewater. Adsorption equilibrium and kinetics data were determined for sulfur removal from real refinery wastewater. The data were evaluated according to several adsorption isotherm and kinetics models. The Freundlich isotherm fitted well with the equilibrium data of sulfur on different adsorbents, whereas the kinetics data were best fitted by the pseudo-second-order model. Insights of sulfide removal mechanisms indicated that the sorption was controlled through the intraparticle diffusion mechanism with a significant contribution of film diffusion. The MAC adsorbent was found to have an effective removal capacity of approximately 2.5 times that of non-modified carbon. Using different MAC, sulfides were eliminated with a removal capacity of 52 mg g~(-1). Therefore, MAC can be utilized as an effective and less expensive adsorbent for the reduction of sulfur in refinery wastewater.
机译:研究了石油改性炼厂废水中硫化合物在化学改性活性炭(MAC)上的吸附。改性技术(硝酸,过氧化氢和热改性)提高了碳的去除能力,因此降低了从炼油厂废水中经济高效地去除硫化物的能力。确定了从炼油厂实际废水中脱硫的吸附平衡和动力学数据。根据几种吸附等温线和动力学模型评估数据。 Freundlich等温线很好地拟合了不同吸附剂上硫的平衡数据,而动力学数据最好通过拟二阶模型拟合。硫化物去除机理的见解表明,吸附是通过颗粒内扩散机理来控制的,而膜扩散的贡献很大。发现MAC吸附剂的有效去除能力约为未改性碳的2.5倍。使用不同的MAC去除硫化物,去除能力为52 mg g〜(-1)。因此,MAC可以用作减少炼油厂废水中硫的有效且廉价的吸附剂。

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