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首页> 外文期刊>Waste Management >Determination of the dewatered digestate amounts and methane yields from the co-digestion of biowaste as a basis for a cost-benefit analysis
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Determination of the dewatered digestate amounts and methane yields from the co-digestion of biowaste as a basis for a cost-benefit analysis

机译:从生物速度的共消化作为成本效益分析的基础,测定脱水消化量和甲烷产率

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摘要

Co-digestion is the simultaneous digestion of two or more substrates and a common practice at wastew-ater treatment plants (WWTPs). The amounts of methane and digested sludge produced are key parameters for evaluating the economic efficiency of co-digestion. However, the share of dewatered digestate produced from co-substrates is not known. Synergistic effects in co-digestion, i.e. a better biodegradabil-ity compared to the mono-digestion of each substrate, might reduce the amounts of digested sludge and increase methane yields. However, these effects might also influence the calculation of methane and digestate quantities from co-substrates. The main objective of this work was to provide a basis for the cost-benefit analysis of biowaste (BW) co-digestion at WWTPs for this data. Therefore, continuous and batch experiments with sewage sludge (SS) and BW co-digestion were conducted and evaluated for methane and digestate production, and possible synergistic effects. BW co-digestion led to an additional production of 0.35 t total solids (TS) of dewatered sludge per ton TS_(added) in continuous and 0.23 t TS of dewatered sludge per ton of T_(Sadded) in batch experiments. The methane yield from BW was 441 L/kg TS_(added) in continuous experiments and 482 L/kg TS_(adde)d batch test. No synergistic effects were observed in both batch and continuous co-digestion experiments. Batch tests were found to be suitable for a rough estimation of the co-digestion economic efficiency key parameters. Continuous experiments are recommended to obtain more robust data. A cost-benefit analysis found that electricity production from co-digestion can generate savings of 88-170 €/t TS_(added) compared to grid purchase.
机译:共消化是同时消化两种或更多种基材的消化,以及在废物 - ater治疗植物(WWTPS)的常见做法。所产生的甲烷和消化污泥的量是评估共消化的经济效率的关键参数。然而,从共衬底产生的脱水消化的份额是未知的。与每个衬底的单消解相比,共消化中的协同作用,即更好的生物生物脂肪型,这可能减少消化污泥的量并增加甲烷产率。然而,这些效果也可能影响来自共衬底的甲烷和消化量的计算。这项工作的主要目标是为Biowaste(BW)在WWTPS的成本效益分析提供依据,以便在WWTPS进行此数据。因此,对污水污泥(SS)和BW共消化进行连续和分批实验,并评估甲烷和消化生产,以及可能的协同作用。 BW Co-Digestion导致每吨TS_(添加)的0.35吨全固体(TS)的脱水污泥,连续,每吨脱水污泥,每吨T_(令人遗憾的)在批量实验中。来自BW的甲烷产量为441L / kg TS_(加入)连续实验,482L / kg TS_(ADDE)D批量试验。两批和连续共消化实验中没有观察到协同效应。发现批量试验适用于粗略估计共消化经济效益关键参数。建议连续实验获得更强大的数据。成本效益分析发现,与网格购买相比,共消化的电力生产可以节省88-170€/ t TS_(已添加)。

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  • 来源
    《Waste Management》 |2021年第5期|632-642|共11页
  • 作者单位

    Unit of Environmental Engineering Department of Infrastructure University of Innsbruck Technikerstrasse 13 6020 Innsbruck Austria;

    Unit of Environmental Engineering Department of Infrastructure University of Innsbruck Technikerstrasse 13 6020 Innsbruck Austria;

    Unit of Environmental Engineering Department of Infrastructure University of Innsbruck Technikerstrasse 13 6020 Innsbruck Austria;

    Unit of Environmental Engineering Department of Infrastructure University of Innsbruck Technikerstrasse 13 6020 Innsbruck Austria;

    Unit of Environmental Engineering Department of Infrastructure University of Innsbruck Technikerstrasse 13 6020 Innsbruck Austria;

    Unit of Environmental Engineering Department of Infrastructure University of Innsbruck Technikerstrasse 13 6020 Innsbruck Austria;

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

    Anaerobic co-digestion; Biomethane potential; Dewatered sludge; Sewage sludge; Synergistic effects; Wastewater treatment plant;

    机译:厌氧共消化;生物甲烷潜力;脱水污泥;污水污泥;协同效应;污水处理厂;

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