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Electro persulphate oxidation for polishing of biologically treated palm oil mill effluent (POME)

机译:电过硫酸盐氧化法用于生物处理过的棕榈油厂废水(POME)的抛光

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摘要

Malaysia alone produces more than 49 million m~3 palm oil mill effluent per year. Biological treated palm oil mill effluent via ponding system often fails to fulfill the regulatory discharge standards. This is due to remaining of non-biodegradable organics in the treated effluent Thus, the aim of this study was to resolve such issue by using electro persulphate oxidation process, for the first time, as a post treatment of palm oil mill effluent. Central composite design in response surface methodology was used to analyze and optimize the interaction of operational variables (i.e., current density, contact time, initial pH and persulphate dosage) targeted on maximum treatment efficiency. The significance of quadratic model of each response was determined by analysis of variance, where all models indicated sufficient significance with p-value < 0.0001. Optimum operational conditions with 45 mA/cm~2 of current density, 45 min of contact time, pH 4 and 0.892 g of S_2O_8~(2-) proved that 77.70% of Chemical Oxygen Demand, 97.96% of colour as well as 99.72% of Suspended Solids removal were achieved. The final pH of 5.88 of the effluent was obtained that fulfilled the limit and suitable for direct discharge to the natural environment.
机译:仅马来西亚一年就生产超过4900万立方米〜3的棕榈油厂废水。经池塘处理系统处理过的经过生物处理的棕榈油厂废水常常不能满足规定的排放标准。这是由于处理后的废水中残留有不可生物降解的有机物。因此,本研究的目的是首次通过使用过硫酸盐氧化工艺来解决该问题,作为棕榈油厂废水的后处理。以响应表面方法为基础的中央复合材料设计用于分析和优化以最大治疗效率为目标的操作变量(即电流密度,接触时间,初始pH和过硫酸盐剂量)的相互作用。通过方差分析确定每个响应的二次模型的显着性,其中所有模型均显示出足够的显着性,p值<0.0001。在电流密度为45 mA / cm〜2,接触时间为45分钟,pH为4和0.892 g S_2O_8〜(2-)的最佳操作条件下,证明化学需氧量为77.70%,颜色为97.96%和99.72%去除了悬浮固体。获得的废水的最终pH值为5.88,该pH值已达到限值并适合直接排放到自然环境中。

著录项

  • 来源
    《Journal of Environmental Management》 |2017年第may15期|458-469|共12页
  • 作者单位

    Department of Environmental Engineering, Faculty of Engineering and Green Technology (FEGT), University Tunku Abdul Rahman, 31900 Kampar, Perak, Malaysia;

    Department of Environmental Engineering, Faculty of Engineering and Green Technology (FEGT), University Tunku Abdul Rahman, 31900 Kampar, Perak, Malaysia;

    Department of Environmental Engineering, Faculty of Engineering and Green Technology (FEGT), University Tunku Abdul Rahman, 31900 Kampar, Perak, Malaysia;

    Malaysian Institute of Chemical & Bioengineering Technology, Universiti Kuala Lumpur, (UniKL, MICET), Melaka 78000, Malaysia;

  • 收录信息 美国《科学引文索引》(SCI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Central composite design; Electro persulphate oxidation; Optimization; Palm oil mill effluent; Post treatment;

    机译:中央复合设计;电过硫酸盐氧化;优化;棕榈油厂废水;后期处理;

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