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Removal of refractory compounds from stabilized landfill leachate using an integrated H2O2 oxidation and granular activated carbon (GAC) adsorption treatment

机译:使用集成的H2O2氧化和颗粒活性炭(GAC)吸附处理去除稳定的垃圾填埋场渗滤液中的难处理化合物

摘要

This study investigated the treatment performances of H2O2 oxidation alone and its combination with granular activated carbon (GAC) adsorption for raw leachate from the NENT landfill (Hong Kong) with a very low biodegradability ratio (BOD5/COD) of 0.08. The COD removal of refractory compounds (as indicated by COD values) by the integrated H2O2 and GAC treatment was evaluated, optimized and compared to that by H2O2 treatment alone with respect to dose, contact time, pH, and biodegradability ratio. At an initial COD concentration of 8000 mg/L and NH3-N of 2595 mg/L, the integrated treatment has substantially achieved a higher removal (COD: 82%; NH3-N: 59%) than the H2O2 oxidation alone (COD: 33%; NH3-N: 4.9%) and GAC adsorption alone (COD: 58%) at optimized experimental conditions (p ≤ 0.05; t-test). The addition of an Fe(II) dose at 1.8 g/L further improved the removal of refractory compounds by the integrated treatment from 82% to 89%. Although the integrated H2O2 oxidation and GAC adsorption could treat leachate of varying strengths, treated effluents were unable to meet the local COD limit of less than 200 mg/L and the NH3-N of lower than 5 mg/L. However, the integrated treatment significantly improved the biodegradability ratio of the treated leachate by 350% from 0.08 to 0.36, enabling the application of subsequent biological treatments for complementing the degradation of target compounds in the leachate prior to their discharge.
机译:这项研究研究了H2O2氧化的单独处理及其与颗粒状活性炭(GAC)的结合对NENT垃圾填埋场(香港)的原渗滤液的吸附性能,其生物降解率(BOD5 / COD)非常低,仅为0.08。对H2O2和GAC的综合处理方法对难处理化合物的COD去除率(以COD值表示)进行了评估,优化,并就剂量,接触时间,pH和生物降解率与单独使用H2O2处理进行了比较。在初始COD浓度为8000 mg / L和NH3-N为2595 mg / L时,与单独的H2O2氧化(COD:)相比,综合处理的去除率(COD:82%; NH3-N:59%)大大提高。 33%; NH3-N:4.9%)和单独的GAC吸附(COD:58%),处于最佳实验条件下(p≤0.05; t检验)。以1.8 g / L的剂量添加Fe(II)进一步提高了综合处理对难处理化合物的去除率,从82%提高到89%。尽管集成的H2O2氧化和GAC吸附可以处理强度不同的渗滤液,但处理后的废水无法满足当地COD限值小于200 mg / L和NH3-N小于5 mg / L的要求。但是,综合处理将处理后的渗滤液的生物降解率从0.08显着提高了350%至0.36,从而可以应用后续的生物处理方法来补充目标化合物在渗滤液排放之前的降解。

著录项

  • 作者

    Kurniawan TA; Lo WH;

  • 作者单位
  • 年度 2009
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
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