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Anaerobic co-digestion of the organic fraction of municipal solid waste with FOG waste from a sewage treatment plant : recovering a wasted methane potential and enhancing the biogas yield

机译:污水处理厂产生的城市固体废弃物和FOG废弃物的有机厌氧消化:回收浪费的甲烷潜力并提高沼气产量

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摘要

Anaerobic digestion is applied widely to treat the source collected organic fraction of municipal solid wastes (SC-OFMSW). Lipid-rich wastes are a valuable substrate for anaerobic digestion due to their high theoretical methane potential. Nevertheless, although fat, oil and grease waste from sewage treatment plants (STP-FOGW) are commonly disposed of in landfill, European legislation is aimed at encouraging more effective forms of treatment. Co-digestion of the above wastes may enhance valorisation of STP-FOGW and lead to a higher biogas yield throughout the anaerobic digestion process. In the present study, STP-FOGW was evaluated as a co-substrate in wet anaerobic digestion of SC-OFMSW under mesophilic conditions (37 °C). Batch experiments carried out at different co-digestion ratios showed an improvement in methane production related to STP-FOGW addition. A 1:7 (VS/VS) STP-FOGW:SC-OFMSW feed ratio was selected for use in performing further lab-scale studies in a 5 L continuous reactor. Biogas yield increased from 0.38 ± 0.02 L g VSfeed⁻¹ to 0.55 ± 0.05 L g VSfeed⁻¹ as a result of adding STP-FOGW to reactor feed. Both VS reduction values and biogas methane content were maintained and inhibition produced by long chain fatty acid (LCFA) accumulation was not observed. Recovery of a currently wasted methane potential from STP-FOGW was achieved in a co-digestion process with SC-OFMSW.
机译:厌氧消化被广泛用于处理城市固体废物源收集的有机部分(SC-OFMSW)。富含脂质的废物由于具有很高的理论甲烷潜力,因此是厌氧消化的重要底物。然而,尽管通常将污水处理厂(STP-FOGW)产生的油脂废料丢弃在垃圾填埋场中,但欧洲立法旨在鼓励更有效的处理方式。对以上废物进行共消化可增强STP-FOGW的价值,并在整个厌氧消化过程中导致更高的沼气产量。在本研究中,STP-FOGW被评估为在常温条件下(37°C)湿法厌氧消化SC-OFMSW的共同底物。在不同的共消化比例下进行的分批实验表明,与添加STP-FOGW有关的甲烷产量有所提高。选择1:7(VS / VS)STP-FOGW:SC-OFMSW进料比,用于在5 L连续反应器中进行进一步的实验室规模研究。由于向反应器进料中添加了STP-FOGW,沼气产量从0.38±0.02 L g VSfeed -1增加到0.55±0.05 L g VSfeed -1。 VS降低值和沼气中的甲烷含量均保持不变,未观察到长链脂肪酸(LCFA)积累产生的抑制作用。通过与SC-OFMSW共同消化,从STP-FOGW中回收了目前浪费的甲烷潜力。

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  • 作者

    Martín González Lucia;

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  • 年度 2010
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  • 原文格式 PDF
  • 正文语种 eng
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