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Accelerated landfill waste decomposition by external leachate recirculation from an old landfill cell

机译:从旧的垃圾填埋场通过外部渗滤液再循环,加速垃圾填埋场的分解

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This research is focused on the management of moisture regime for a young landfill site in terms of leachate recirculation which entails the containment, collection and reinjection of leachate back into the landfill to promote in situ anaerobic biological treatment. Moreover, an innovative leachate management strategy was developed by using leachate recirculation from a mature landfill site into a young landfill site to provide accelerated waste stabilization. For this purpose, two reactors simulating young and old landfills were used in the laboratory. These reactors were loaded with shredded and compacted municipal solid waste with a typical composition determined for Istanbul Region. Both reactors were operated in a constant temperature room at 32degreesC to enhance the growth of anaerobic microorganisms. Moreover, water was added to the reactors in order to simulate the annual rainfall. The reactor having the properties of old landfills was used as a control reactor. The reactor which represented the characteristics of young landfill was operated under four operational stages to enhance the activity of methanogenic population and accelerate waste stabilization. Results of this study indicated that the utilization of leachate recirculation enhanced waste stabilization in the young landfill by increasing the uniformity, and providing additional substrate and nutrients. Additions of buffer solutions of KOH and Na2CO3 together with leachate recirculation enhanced further waste stabilization and prevented possible acid inhibition. The utilization of external leachate recycled from the old landfill having desired acclimated anaerobic microorganisms, low organic content and higher buffer capacity into a young landfill could be a promising leachate management strategy for faster and controlled waste stabilization. [References: 19]
机译:这项研究的重点是从渗滤液再循环方面对年轻垃圾掩埋场的水分状况进行管理,这需要对渗滤液进行遏制,收集和回注,以促进原位厌氧生物处理。此外,通过从成熟的垃圾填埋场到年轻的垃圾填埋场的渗滤液再循环,开发了一种创新的渗滤液管理策略,以加速废物的稳定。为此,在实验室中使用了两个模拟新老垃圾场的反应堆。这些反应堆装载有切碎和压实的城市固体废物,具有确定的伊斯坦布尔地区典型组成。两个反应器均在32℃的恒温室中操作以增强厌氧微生物的生长。此外,将水添加到反应堆中以模拟年降雨量。具有旧垃圾填埋场性质的反应器用作对照反应器。代表年轻垃圾填埋场特征的反应堆在四个运行阶段进行运行,以提高产甲烷种群的活动能力并加速废物稳定。这项研究的结果表明,利用渗滤液再循环提高了均匀度,并提供了更多的基质和养分,从而增强了年轻垃圾填埋场的废物稳定性。 KOH和Na2CO3缓冲溶液的添加以及渗滤液的再循环增强了废物的进一步稳定,并防止了可能的酸抑制作用。从具有期望的适应性厌氧微生物,低有机物含量和较高缓冲能力的旧垃圾填埋场回收的外部渗滤液可用于年轻垃圾填埋场,这可能是一种有前途的渗滤液管理策略,可实现更快且可控制的废物稳定化。 [参考:19]

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