首页> 外文期刊>Environment protection engineering >THE INFLUENCE OF LEACHATE RECIRCULATION ON BIOGAS PRODUCTION IN A LANDFILL BIOREACTOR
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THE INFLUENCE OF LEACHATE RECIRCULATION ON BIOGAS PRODUCTION IN A LANDFILL BIOREACTOR

机译:渗滤液再循环对垃圾填埋生物反应器中生物气生产的影响

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The technology of municipal solid waste treatment in a landfill bioreactor is based on a system of controlled, enhanced fermentation of organic waste, which occurs in a heap having status of bioreactor. The enhancement of biogas production is done by leachate recirculation. In a landfill bioreactor, located in Kosiny Bartosowe, Poland, with capacity of 70 000 Mg of municipal solid waste, the research aiming on the determination of the influence of leachate recirculation on biogas generation was done. Experiments were done in two periods: just one month after bioreactor sealing with hydraulic loading rate (HLR) of 2 mm/d, and one year after bioreactor sealing with HLR of 3 mm/d. Doubling of biogas production from about 100 to 200 m(3)/h and the increase of methane content from 60 to 65% has been determined when 2 mm/d of HLR of leachate recirculation was applied. The implementation of HLR on the level 3 mm/d increased biogas production from 148 to 270 m(3)/d, and methane content from 62 to 64%. Leachate recirculation improved thermal conditions in bioreactor to typical mesophilic values.
机译:垃圾掩埋生物反应器中的城市固体废物处理技术基于一种可控的,增强的有机废物发酵系统,该系统发生在具有生物反应器状态的堆中。通过渗滤液再循环提高沼气产量。在位于波兰科西尼·巴托索维(Kosiny Bartosowe)的垃圾掩埋式生物反应器中,该垃圾处理器具有70000 Mg的城市固体废物,旨在确定渗滤液再循环对沼气产生的影响。实验分两个阶段进行:以2 mm / d的液压负载率(HLR)密封生物反应器后仅一个月,以3 mm / d的HLR密封生物反应器后仅一年。当应用2 mm / d的HLR渗滤液再循环时,已确定沼气产量从约100增至200 m(3)/ h增倍,甲烷含量从60%增至65%。在3毫米/天的水平上实施HLR,将沼气产量从148个增加到270 m(3)/ d,并将甲烷含量从62%增加到64%。渗滤液再循环将生物反应器中的热条件提高到典型的嗜温值。

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  • 来源
    《Environment protection engineering》 |2017年第1期|113-120|共8页
  • 作者单位

    Wroclaw Univ Environm & Life Sci, Fac Life Sci & Technol, Inst Agr Engn, Ul Chelmonskiego 37-41, Wroclaw, Poland;

    Inst Energii Sp Zoo, Ul Turkowskiego 19-11, PL-10691 Olsztyn, Poland;

    Inst Energii Sp Zoo, Ul Turkowskiego 19-11, PL-10691 Olsztyn, Poland;

    Univ Warmia & Mazury, Fac Tech Sci, Ul Oczapowskiego 8, PL-10709 Olsztyn, Poland;

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