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Investigation of petroleum-contaminated groundwater remediation using multi-stage pilot system: physical and biological approach

机译:使用多阶段试验系统研究石油污染的地下水:物理和生物方法

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In this paper, a pilot-scale system including various process steps was investigated in order to treat contaminated groundwater supplies which have been exposed to oil pollutants for a long time as they are located near the Tehran oil refinery company (TORC). For achieving this goal, a combination of dissolved air flotation unit that is followed by activated sludge bioreactors (ASBRs) and an activated carbon filter was chosen. The crude oil combined with tap water was applied to synthesize contaminated groundwater. Activated sludge taken from wastewater treatment plant at TORC was used to supply oil-degrading bacteria. Besides, the solution of mineral salts was added to the bioreactor as nutrients amendment. The optimum design parameters such as hydraulic retention time, return activated sludge rate of the ASBRs, and total residence time for all steps were 14h, 100%, and 21h, respectively. The operation of the pilot system which was implemented in different initial crude oil concentrations (206 +/- 1,412 +/- 3,1590 +/- 10mgl(-1)) finally led to total petroleum hydrocarbons removal of 97, 97.25, and 98.57%, respectively. The reduction efficiency of chemical oxygen demand during the experiment was more than 97%. Furthermore, the quality of the treated groundwater was clearly improved, as the turbidity reduction through the experiment exceeded 90%. According to the results of the study, this treatment system can be considered as a reliable and efficient approach that is recommended to be used in case of extremely contaminated groundwater.
机译:在本文中,研究了包括各种处理步骤的中试规模的系统,以处理受污染的地下水供应源,这些供应源位于德黑兰炼油厂(TORC)附近,长期暴露于石油污染物中。为了实现这一目标,选择了溶解空气浮选装置,然后是活性污泥生物反应器(ASBR)和活性炭过滤器的组合。原油与自来水结合后用于合成受污染的地下水。从TORC废水处理厂获得的活性污泥用于供应降解油的细菌。此外,将矿盐溶液作为营养改良剂添加到生物反应器中。最佳设计参数(如水力停留时间,ASBR的回流活性污泥率和所有步骤的总停留时间)分别为14h,100%和21h。在不同的初始原油浓度(206 +/- 1,412 +/- 3,1590 +/- 10mgl(-1))中实施的先导系统的操作最终导致总石油烃去除量为97、97.25和98.57 %, 分别。实验过程中化学需氧量的还原效率超过97%。此外,由于通过实验降低的浊度超过90%,处理后的地下水的质量明显得到改善。根据研究结果,该处理系统可被视为一种可靠而有效的方法,建议在严重污染地下水的情况下使用。

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