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首页> 外文期刊>Journal of Environmental Management >Assessment of a fast method to predict the biochemical methane potential based on biodegradable COD obtained by fractionation respirometric tests
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Assessment of a fast method to predict the biochemical methane potential based on biodegradable COD obtained by fractionation respirometric tests

机译:基于分馏呼吸检验获得的生物降解鳕鱼预测生物化学甲烷电位的快速方法评估

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摘要

The biochemical methane potential test (BMP) is the most common analytical technique to predict the performance of anaerobic digesters. However, this assay is time-consuming (from 20 to over than 100 days) and consequently impractical when it is necessary to obtain a quick result. Several methods are available for faster BMP prediction but, unfortunately, there is still a lack of a clear alternative. Current aerobic tests underestimate the BMP of substrates since they only detect the easily biodegradable COD. In this context, the potential of COD fractionation respirometric assays, which allow the determination of the particulate slowly biodegradable fraction, was evaluated here as an alternative to early predict the BMP of substrates. Seven different origin waste streams were tested and the anaerobically biodegraded organic matter (COD_(met)) was compared with the different COD fractions. When considering adapted microorganisms, the appropriate operational conditions and the required biodegradation time, the differences between the COD_(met), determined through BMP tests, and the biodegradable COD (CODb) obtained by respirometry, were not significant (COD_(met) (57.8026 ± 21.2875) and COD_b (55.6491 ± 21.3417), t (5) = 0.189, p = 0.853). Therefore, results suggest that the BMP of a substrate might be early predicted from its COD_b in only few hours. This methodology was validated by the performance of an inter-laboratory studyconsidering four additional substrates.
机译:生物化学甲烷潜在试验(BMP)是预测厌氧消化器性能的最常见的分析技术。然而,该测定是耗时(从20到超过100天),因此当有必要获得快速的结果时因此是不切实际的。几种方法可用于更快的BMP预测,但不幸的是,仍然缺乏明确的替代方案。目前的有氧测试低估了基板的BMP,因为它们仅检测易于生物降解的鳕鱼。在这种情况下,在此评估允许测定颗粒的COD分馏呼吸测定测定的可能性,以便在此评估替代预测基质BMP的替代方案。测试七种不同的废物流,并将厌氧生物降解的有机物(Cod_(Met))与不同的COD级分进行比较。当考虑适应的微生物时,通过BMP测试确定的COD_(MOT)与通过呼吸测定法获得的可生物降解的COD(CODB)之间的差异不显着(COD_(MET)(57.8026 ±21.2875)和Cod_B(55.6491±21.3417),T(5)= 0.189,P = 0.853)。因此,结果表明,仅在几个小时内从其Cod_B预测基板的BMP。该方法通过实验室学习的性能进行了验证了四个附加基材的验证。

著录项

  • 来源
    《Journal of Environmental Management》 |2020年第1期|110695.1-110695.9|共9页
  • 作者单位

    CRETUS Institute Universidade de Santiago de Compostela 15782 Santiago de Compostela Galicia Spain;

    Laboratorio de Biotecnologia Medio Ambiente e Ingenieria (LABMAI) Facultad de Ingenieria Universidad de Playa Ancha Avda. Leopoldo Carvallo 270 2340000 Valparaiso Chile;

    Laboratorio de Biotecnologia Medio Ambiente e Ingenieria (LABMAI) Facultad de Ingenieria Universidad de Playa Ancha Avda. Leopoldo Carvallo 270 2340000 Valparaiso Chile;

    Facultad de Ingenieria y Ciencias Universidad Adolfo Ibahez Avda. Padre Hurtado 750 Vina del Mar Chile;

    Dipartimento di Ingegneria Civile e Ambientale (DICEA) Universita degli Studi Firenze Via di Santa Marta 3 50139 Firenze Italy;

    CRETUS Institute Universidade de Santiago de Compostela 15782 Santiago de Compostela Galicia Spain;

    CRETUS Institute Universidade de Santiago de Compostela 15782 Santiago de Compostela Galicia Spain;

    CRETUS Institute Universidade de Santiago de Compostela 15782 Santiago de Compostela Galicia Spain;

    Facultad de Ingenieria y Ciencias Universidad Adolfo Ibahez Avda. Padre Hurtado 750 Vina del Mar Chile;

  • 收录信息 美国《科学引文索引》(SCI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Anaerobic digestion; Biodegradability; BMP; COD fractionation; Respirometric test;

    机译:厌氧消化;生物降解性;BMP;COD分级;呼吸仪测试;

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