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Landfill leachate treatment in assisted landfill bioreactor

机译:辅助垃圾生物反应器中垃圾渗滤液的处理

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Landfill is the major disposal route of municipal solid waste(MSW) in most Asian countries. Leachate from landfill presents a strong wastewater that needs intensive treatment before discharge. Direct recycling was proposed as an effective alternative for leachate treatment by taking the landfill as a bioreactor. This process was proved not only considerably reducing the pollution potential of leachate, but also enhancing organic degradation in the landfill. However, as this paper shows, although direct leachate recycling was effective in landfilled MSW with low food waste fraction (3.5 percent , w/w), it failed in MSW containing 54 percent food waste, as normally noted in Asian countries. The initial acid stuck would inhibit methanogenesis to build up, hence strong leachate was yielded from landfill to threaten the quality of receiving water body. We demonstrated the feasibility to use an assisted bioreactor landfill, with a well-decomposed refuse layer as ex-situ anaerobic digester to reducing COD loading in leachate. By doing so, the refuse in simulated landfill column (2.3 m high) could be stabilized in 30 weeks while the COD in leachate reduced by 95 percent (61000 mg/L to 3000 mg/L). Meanwhile, the biogas production was considerably enhanced, signaling by the much greater amount and much higher methane content in the biogas.
机译:在大多数亚洲国家,垃圾填埋场是城市生活垃圾的主要处置途径。垃圾填埋场产生的渗滤液产生了强烈的废水,在排放之前需要进行深入处理。通过将垃圾填埋场作为生物反应器,提出了直接回收利用作为渗滤液处理的有效替代方案。事实证明,这一过程不仅大大降低了渗滤液的污染潜力,而且还提高了垃圾填埋场的有机降解能力。但是,正如本文所示,尽管直接沥滤液回收对垃圾少的垃圾掩埋垃圾有效(3.5%,w / w),但如亚洲国家通常指出的那样,在垃圾含垃圾量为54%的垃圾中,垃圾渗滤液是无效的。最初的酸被卡住会抑制甲烷生成,因此,垃圾填埋场会产生大量渗滤液,从而威胁到接收水体的质量。我们证明了使用辅助生物反应器填埋场和分解良好的垃圾层作为异地厌氧消化池以减少渗滤液中COD含量的可行性。这样,可以在30周内稳定模拟垃圾填埋场中的垃圾(2.3 m高),而渗滤液中的COD降低了95%(从61000 mg / L降至3000 mg / L)。同时,沼气的产量大大提高,表明沼气中甲烷的含量更高,甲烷含量更高。

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