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Co-digestion performance of organic fraction of municipal solid waste with leachate: Preliminary studies

机译:城市生活垃圾有机部分与渗滤液的共消化性能:初步研究

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摘要

HighlightsCo-digestion of OFMSW and leachate could be a solution in leachate management.Some leachate can be added to OFMSW digesters to adjust TS content in the reactor.Replacing of some leachate with water can increase the methane yield.The ratio of leachate and water should be optimized to maximize the methane yield.AbstractThe main aim of the study was to evaluate the co-digestion performance of OFMSW with different wastes. Leachate, reverse osmosis (RO) concentrate collected from a leachate treatment facility and dewatered sewage sludge taken from a wastewater treatment plant (WWTP) were used for co-digestion in this paper. An extra effort was made to observe the effect of leachate inclusion in the co-digestion. In the study, the mono-digestion of OFMSW, leachate, RO concentrate and sewage sludge as well as digestion of 7 different waste mixtures were carried out for this objective. The experiments were carried out for approximately 50days under mesophilic conditions. The highest methane yield was 785L CH4/kg VSaddedin the reactor, which had only OFMSW. While the methane yield derived from OFMSW was found higher than previous studies, methane yield of leachate was found to be 110L CH4/kg VSadded, which was lower than findings in the literature. The mono-substrate of OFMSW was followed by the reactor of having waste mixture of leachate+sewage sludge+OFMSW+water (C7) with 391L CH4/kg VSadded, which was the only combination included water. In order to understand the effect of leachate and water inclusions on co-digestion, two separate waste combinations; leachate+sewage sludge+OFMSW+water (C7) and leachate+sewage sludge+OFMSW (C1) were prepared that had different amounts of leachate but same amounts of other wastes. The methane yield of leachate+sewage sludge+OFMSW+water (C7) indicated that addition of some water instead of leachate could stimulate biogas production. Methane yield of this reactor was found to be 71% higher than the waste combination of leachate+sewage sludge+OFMSW (C1). It could be thought that the high amount of non-biodegradable matters in leachate could be responsible for lower methane yield in leachate+sewage sludge+OFMSW (C1) reactor. Methane yields of the reactors showed that co-digestion of OFMSW and leachate could be a solution not only for treatment of leachate and but also increasing the biogas potential of leachate. Leachate addition could also adjust optimum total solids (TS) content in anaerobic digestion. It was also understood that RO concentrate did not affect the methane yield in a negative way. The similar characterization of leachate and RO concentrate in this study could offer the utilization of RO concentrate instead of leachate. The findings showed that volatile solids (VS) removals were changed from 32% to 61% in the reactors. While the reactor of leachate+RO concentrate+OFMSW (C6) had the highest VS removal, the reactor of the sole substrate leachate had the lowest VS removal.
机译: 突出显示 一起消化OFMSW和渗滤液可能是渗滤液管理的一种解决方案。 可以将某些渗滤液添加到OFMSW消化池中调整反应堆中的TS含量。 用水代替一些渗滤液可以提高甲烷的产率。 应优化沥滤液与水的比例,使其达到最大值 摘要 研究的主要目的是评估OFMSW与不同废物的共同消化性能。本文使用从渗滤液处理设施收集的渗滤液,反渗透浓缩液和从废水处理厂(WWTP)提取的脱水污泥进行共消化。付出了额外的努力来观察渗滤液在共消化过程中的影响。在这项研究中,为了实现这一目标,对OFMSW,渗滤液,RO浓缩物和污水污泥进行了单消化,并消化了7种不同的废物混合物。实验在中温条件下进行了约50天。最高甲烷产量为在反应器中添加785L CH 4 / kg V​​S / 只有OFMSW。虽然发现来自OFMSW的甲烷产率高于以前的研究,但发现渗滤液的甲烷产率为110L CH 4 / kg V​​S ,该值低于文献中的发现。 OFMSW的单底物之后是反应器,该反应器是将沥出液+污水污泥+ OFMSW +水(C7)与391L CH 4 / kg V​​S混合在一起添加了,这是唯一包含水的组合。为了了解渗滤液和水的夹杂物对共同消化的影响,有两种单独的废物组合;制备的渗滤液+污水污泥+ OFMSW +水(C7)和渗滤液+污水污泥+ OFMSW(C1)的渗滤液量不同,其他废物量相同。渗滤液+污水污泥+ OFMSW +水(C7)的甲烷产率表明,添加一些水代替渗滤液可以刺激沼气的产生。发现该反应器的甲烷产率比渗滤液+污水污泥+ OFMSW(C1)的废物组合高71%。可以认为渗滤液中大量不可生物降解的物质可能是渗滤液+污水污泥+ OFMSW(C1)反应器中甲烷产量降低的原因。反应器的甲烷产率表明,OFMSW和渗滤液的共同消化不仅可以解决渗滤液的问题,而且可以增加渗滤液的沼气潜力。渗滤液的添加还可以调节厌氧消化中的最佳总固体含量。还应理解,RO精矿不会以负面方式影响甲烷的产率。本研究中渗滤液和反渗透浓缩物的相似表征可以提供反渗透浓缩物而不是渗滤液的利用。研究结果表明,反应器中挥发性固体(VS)的去除率从32%变为61%。渗滤液+ RO精矿+ OFMSW(C6)的反应器中VS去除率最高,而单一底物渗滤液的反应器中VS去除率最低。

著录项

  • 来源
    《Waste Management》 |2018年第1期|775-784|共10页
  • 作者单位

    Istanbul Technical University, Civil Engineering Faculty, Environmental Engineering Department;

    Istanbul Technical University, Civil Engineering Faculty, Environmental Engineering Department;

    Samsun Avdan Energy Production and Trade Inc., Süleyman Seba Caddesi;

    Samsun Avdan Energy Production and Trade Inc., Süleyman Seba Caddesi;

    Istanbul Technical University, Civil Engineering Faculty, Environmental Engineering Department;

    Istanbul Technical University, Civil Engineering Faculty, Environmental Engineering Department;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Biodegradability; Co-digestion; Leachate; Methane yield; OFMSW;

    机译:生物降解性;共消化;渗滤液;甲烷产率;OFMSW;

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