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Extraction-oxidation-adsorption process for treatment of effluents from resin industries

机译:Extraction-oxidation-adsorption过程从树脂工业废水处理

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For phenol and formaldehyde wastewater (PFW) treatment, combined processes, such as extraction-oxidation-adsorption (EOA) and dilution-biological-disinfection (DBD), rather than a single technique (e.g., biological technique) are more efficient and effective. In this article, the EOA technique was introduced and experimental studies on PFW treatment were conducted. Two parallel experiments, adopting EOA and DBD processes, respectively, were carried out in a factory with a discharge capacity of 24 m(3) PFW/d, containing 6000 mg/L phenol. Experimental results indicates that the DBD process is featured by long hydraulic retention time (HRT) (72.5 h) and high treatment cost and investment, whereas EOA is characterized by short HRT (0.73 h), low treatment cost, and low investment. Only when the concentration of phenol is lower than 2700 mg/L was the operational cost of DBD lower than that of EOA.
机译:苯酚和甲醛废水(PFW)治疗,结合过程,例如extraction-oxidation-adsorption(地址结束)dilution-biological-disinfection (DBD)比一个单一的技术(例如,生物技术)更有效的和有效的。本文介绍了地址终端技术和实验研究PFW治疗进行的。和DBD过程分别进行了在工厂的放电容量24米(3)PFW / d,含有6000 mg / L苯酚。结果表明DBD过程,水力停留时间(HRT)(72.5小时)和高处理成本和投资,而地址终端的特点是短的荷尔蒙替代疗法(0.73h),治疗费用低,和较低的投资。当苯酚的浓度低于2700 mg / L是DBD的运营成本低于地址结束。

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