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Old landfill leachate treatment through multistage process: membrane adsorption bioreactor and nanofitration

机译:通过多阶段工艺处理旧垃圾渗滤液:膜吸附生物反应器和纳米装置

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A bench-scale integrated process based on submerged aerobic powdered activated carbon-membrane bioreactor (PAC-MBR) has been utilized and established for the treatment of landfill leachate. The results showed that the submerged PAC-MBR system effectively removed biodegradable trace organic compounds by the average removal rate about 71 % at optimum food to microorganism (F/M) ratio of 0.4 gCOD/g day under a HRT of 24 h. Adding nanofiltration (NF) process increased the treatment efficiency up to 99 %. Further, adding powdered activated carbon to activated sludge (AS) resulted in a higher adsorption capacity in comparison with AS. Adsorption isotherms were investigated and fitted by the Langmuir and Freundlich isotherm models in which the Langmuir model performed better. The specific oxygen uptake rate (SOUR) showed that adding PAC reduces the effects of COD on microorganism activities. NH3-N, TKN and Heavy metals removal efficiency amounted to 97 +/- 2, 96 +/- 2, and 99 +/- 2 %, respectively.
机译:基于沉浸式好氧粉末状活性炭膜生物反应器(PAC-MBR)的台式综合工艺已被利用并建立了用于处理垃圾渗滤液的方法。结果表明,在24 h的HRT下,最佳的食物与微生物(F / M)比为0.4 gCOD / g天时,浸没的PAC-MBR系统可有效去除生物降解的痕量有机化合物,平均去除率约为71%。添加纳滤(NF)工艺可将处理效率提高到99%。另外,与活性污泥(AS)相比,将粉末状活性炭添加到活性污泥(AS)中导致更高的吸附能力。用Langmuir和Freundlich等温线模型研究并拟合了吸附等温线,其中Langmuir模型表现更好。特定的氧气吸收率(SOUR)表明,添加PAC可以降低COD对微生物活性的影响。 NH3-N,TKN和重金属的去除效率分别为97 +/- 2、96 +/- 2和99 +/- 2%。

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