期刊文献+

电化学氧化与厌氧技术联用处理垃圾渗沥水 被引量:35

Landfill Leachate Treatment by Anaerobic Process and Electrochemical Oxidation
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摘要 采用电化学氧化与上流式厌氧污泥床 (UASB)结合技术 ,提出了处理香港垃圾渗沥水的二步法工艺 .对含COD和NH3 N分别为 4 750mg/L和 1 31 0mg/L的垃圾渗沥水 ,首先进行UASB预处理 (消化温度 37℃ ,COD负荷 0 78g/(L·d) ,HRT为 6 1d) ,获得了 66%的COD去除率 ;UASB的出水被引入电化学氧化反应器进行深度处理 .在外加Cl- 2 0 0 0mg/L ,电流密度为 32 3mA/cm2 的条件下 ,经 6h的电解间接氧化 ,COD和NH3 N的去除率分别达到 87%和 1 0 0 % ,出水的COD为 2 0 9mg/L ,并且不含NH3 N ,此过程的COD电能消耗 <55kW·h/kg .本文讨论了电化学氧化过程中电极反应原理 ,各实验参数对COD和NH3 N去除率的影响 。 This study was conducted to develop a two\|stage process of UASB and electrochemical oxidation for the treatment of Hong Kong leachate. The leachate, containing 4750 mg/L of chemical oxygen demand (COD) and 1310 mg/L of ammoniacal nitrogen (NH\-3\|N), was first treated in a UASB (upflow anaerobic sludge blanket) reactor at 37℃. The process removed on average 66% of COD with 6\^1 days of hydraulic retention time (HRT), corresponding to an organic loading rate COD of 0\^78 g/(L·d). The UASB effluent, which had an average pH of 8\^9, COD of 1610 mg/L and NH\-3\|N of 1480 mg/L, was then further treated by electrochemical oxidation in a batch reactor with recirculation. With the addition of 2000 mg/L of chloride (in the form of sodium chloride) and at a current density of 32\^3 mA/cm\+2, 87% of COD and 100% of NH\-3\|N were removed from the UASB effluent in six hours. The energy consumption was <55kW·h/kg COD. The final effluent contained no residual NH\-3\|N and only 209 mg/L of COD. In this paper, some basic problems in electrochemical oxidation, such as the effects of the operation parameters, the mechanism of the process, and assessment of the energy requirements were discussed in detail.
出处 《环境科学》 EI CAS CSCD 北大核心 2001年第5期70-73,共4页 Environmental Science
基金 香港政府研究基金资助项目 (70 98/ 99E)
关键词 电化学氧化 UASB COD 氯化物 垃圾渗沥水 厌氧技术 废水处理 联合处理 electrochemical oxidation UASB leachate ammoniacal\|nitrogen COD chloride
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参考文献5

  • 1王鹏,刘伟藻,方汉平.垃圾渗沥液中氨氮的电化学氧化[J].中国环境科学,2000,20(4):289-291. 被引量:51
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二级参考文献4

  • 1Lau I W C,Proceedings of the 7th IAWQ asian-pacific regional conference:asian waterqual’,1999年,239页
  • 2Chiang L C,Hazard Waste Hazard Mat,1995年,12卷,1期,71页
  • 3Chiang L C,Water Res,1995年,29卷,2期,671页
  • 4Fang H H P,J Environ Eng,1993年,119卷,1期,103页

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