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Advanced treatment of landfill leachate from a sequencing batch reactor (SBR) by electrochemical oxidation process

机译:顺序分批反应器(SBR)中的垃圾渗滤液通过电化学氧化工艺进行深度处理

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Biologically stabilized landfill leachate usually requires further removal of organic substances and ammonia nitrogen (NH_3-N) before final discharge. In this paper, the advanced treatment of landfill leachate pretreated by sequencing batch reactor (SBR) via electrochemical oxidation was carried out in an electrochemical compartment reactor with oxide-coated titanium anode (Ti/TiO_2-IrO_2). The effect of voltage, chlorine content, initial pH value, and ferrous sulfate (FeSCO_4) on the removal efficiency of contaminants was investigated systematically. The removal efficiency of organic pollutants and ammonia nitrogen (NH3-N) increased with the increase of voltage, chlorine content and the addition of ferrous iron. The initial pH value has a different effect on the removal of COD and NH3-N. Compared with the traditional electrochemical oxidation, the process with Fe(II/III) is more efficient with low power consumption, and the removal efficiency of organic pollutant is slightly lower when Fe(II) is used. A lower power consumption of 16.6 kWh·(kg COD)~(-1) indicated the electrochemical oxidation with Fe(II) was a promising alternative for the advanced treatment of leachate.
机译:生物稳定的垃圾渗滤液通常需要在最终排放之前进一步去除有机物质和氨氮(NH_3-N)。本文在带有氧化皮的钛阳极(Ti / TiO_2-IrO_2)的电化学隔室反应器中,对通过电化学氧化顺序反应器(SBR)预处理的垃圾渗滤液进行了深度处理。系统研究了电压,氯含量,初始pH值和硫酸亚铁(FeSCO_4)对污染物去除效率的影响。随着电压,氯含量和亚铁含量的增加,有机污染物和氨氮(NH3-N)的去除效率提高。初始pH值对COD和NH3-N的去除具有不同的影响。与传统的电化学氧化相比,用Fe(II / III)进行处理的效率更高,且功耗较低,而使用Fe(II)去除有机污染物的效率略低。较低的功耗16.6 kWh·(kg COD)〜(-1)表明,用Fe(II)进行电化学氧化是渗滤液深度处理的有前途的替代方法。

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