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Degradation of recalcitrant compounds from stabilized landfill leachate using a combination of ozone-GAC adsorption treatment

机译:臭氧-GAC吸附处理组合从稳定的垃圾填埋场渗滤液中降解难降解的化合物

摘要

Laboratory experiments were undertaken to investigate the treatment performances of ozonation alone and/or its combination with granular activated carbon (GAC) adsorption for raw leachate from the NENT landfill (in Hong Kong). To improve its removal of recalcitrant contaminants from the leachate, the surface of GAC was oxidized with ozone prior to treatment. With respect to ozone dose and pH, the removal of COD and/or NH3-N from ozonation alone and combined ozone-GAC adsorption were evaluated and compared to those of other physico-chemical treatments in some reported studies. The removal mechanism of recalcitrant compounds by ozone-GAC adsorption treatment was presented. Among the various treatments studied, the combination of ozone-GAC adsorption using ozone-modified GAC had the highest removal for COD (86%) and/or NH3-N (92%) compared to ozonation alone (COD: 35%; NH3-N: 50%) at the same initial COD and/or NH3-N concentrations of 8000 and 2620 mg/L, respectively. Although the integrated treatment was more effective than ozonation alone for treating stabilized leachate, the results suggested that it could not generate treated effluent that complied with the COD limit of lower than 200 mg/L and the NH3-N discharge standard of less than 5 mg/L. Therefore, further biological treatments to complement the degradation of the leachate are still required to meet the environmental legislation.
机译:进行了实验室实验,以研究单独臭氧化处理和/或将其与颗粒状活性炭(GAC)结合用于NENT垃圾填埋场(香港)的处理性能。为了改善从渗滤液中去除难处理的污染物,在处理之前,GAC的表面已用臭氧氧化。关于臭氧剂量和pH,评估了仅从臭氧化作用和结合的臭氧-GAC吸附中去除的COD和/或NH3-N,并将其与其他一些物理化学处理方法进行了比较。提出了臭氧-GAC吸附去除顽固性化合物的机理。在所研究的各种处理方法中,与单独的臭氧化相比,使用臭氧改性的GAC进行的臭氧-GAC吸附组合对COD(86%)和/或NH3-N(92%)的去除率最高(COD:35%; NH3- N:50%)分别在相同的初始COD和/或NH3-N浓度下分别为8000和2620 mg / L。尽管综合处理比单独臭氧处理更有效地处理稳定的渗滤液,但结果表明,该处理方法无法产生符合COD限值低于200 mg / L和NH3-N排放标准低于5 mg的处理废水。 /升因此,仍然需要进一步的生物处理来补充渗滤液的降解,以满足环境法规的要求。

著录项

  • 作者

    Kurniawan TA; Lo WH; Chan GYS;

  • 作者单位
  • 年度 2006
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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