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首页> 外文期刊>Journal of Environmental Management >Food waste and sewage sludge co-digestion amended with different biochars: VFA kinetics, methane yield and digestate quality assessment
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Food waste and sewage sludge co-digestion amended with different biochars: VFA kinetics, methane yield and digestate quality assessment

机译:食品垃圾和污水污泥通过不同的Biochars修正了:VFA动力学,甲烷产量和消化质量评估

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摘要

This work investigated the impact of the addition of different biochar types on mitigation of volatile fatty acid (VFA) accumulation, methane recovery and digestate quality in mesophilic food waste-sludge co-digestion. Four biochars derived from agricultural and sludge residues under different pyrolysis temperatures were compared. Specific biochar properties such as pH, surface area, chemical properties and presence of surface functional groups likely influenced biochar reactions during digestion, thereby resulting in a varying performance of different biochars. Miscanthus straw biochar addition led to the highest specific methane yield of 307 ± 0.3 mL CH_4/g VS_(added) versus 241.87 ± 5.9 mL CH_4/g VS_(added) from control with no biochar addition over 30 days of the co-digestion period. Biochar supplementation led to enhanced process stability which likely resulted from improved syntrophic VFA oxidation facilitated by specific biochar properties. Overall, a 21.4% increase in the overall methane production was obtained with biochar addition as compared to control. The resulting digestate quality was also investigated. Biochar-amended digester generated a digestate rich in macro- and micro-nutrients including K, Mg, Ca, Fe making biochar-amended digestate a potential replacement of agricultural lime fertilizer. This work demonstrated that the addition of specific biochars with desirable properties alleviated VFA accumulation and facilitated enhanced methane recovery, thereby providing a means to achieve process stability even under high organic loading conditions in co-digestions. Moreover, the availability of biochar-enriched digestate with superior characteristics than biochar-free digestate adds further merit to this process.
机译:这项工作调查了在缓解脂肪食品废物污泥共消化中挥发性脂肪酸(VFA)积累,甲烷恢复和消化质量的缓解时对不同生物炭类型的影响。比较了在不同热解温度下源自农业和污泥残留物的四个生物脉。特异性生物耐药性,如pH,表面积,化学性质和表面官能团的存在可能在消化期间影响生物炭反应,从而导致不同的生物脉内的不同性能。 MISCanthus秸秆生物炭加入导致307±0.3ml CH_4 / g VS_(添加)的最高特异性甲烷产率与无生物炭加入的401.87±5.9ml CH_4 / g Vs_(已添加)在共消化期的30天内添加。生物炭补充导致增强的工艺稳定性,该过程稳定性可能由改进的Syntrophic VFA氧化促进通过特异性生物耐油性能。总体而言,与对照相比,通过生物炭加入获得21.4%的总甲烷产量。也调查了产生的消化质量。生物炭修订的Digester产生了富含宏观和微营养成分的消化,包括K,Mg,CA,FE制作生物炭修正的消化潜在的农业石灰肥料。该工作证明,具有所需性能的特异性生物脉冲减轻了VFA积累和促进增强的甲烷回收,从而提供了即使在共消化中的高有机负载条件下实现工艺稳定性的方法。此外,富含生物炭的消化的可用性与生物炭消化的优异特性增加了此过程的进一步优异。

著录项

  • 来源
    《Journal of Environmental Management》 |2021年第15期|112457.1-112457.11|共11页
  • 作者单位

    Department of Biology Hong Kong Baptist University Kowloon Tong Hong Kong;

    Department of Biology Hong Kong Baptist University Kowloon Tong Hong Kong Sino-Forest Applied Research Centre for Pearl River Delta Environment Hong Kong Baptist University Kowloon Tong Hong Kong Institute of Bioresowce and Agriculture Hong Kong Baptist University Kowloon Tong Hong Kong;

    Department of Biology Hong Kong Baptist University Kowloon Tong Hong Kong;

    Department of Chemistry Hong Kong Baptist University Kowloon Tong Hong Kong;

    Department of Biology Hong Kong Baptist University Kowloon Tong Hong Kong Department of Civil Engineering Lassonde School of Engineering York University Toronto Ontario M3J 1P3 Canada;

  • 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 co-digestion; Biochar properties; Syntrophic oxidation; VFA mitigation; Biochar-enriched digestate; Food waste;

    机译:厌氧共消化;生物炭属性;氧化氧化;VFA缓解;生物炭富含消化;食物浪费;

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