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Prognostic Assessment of the Viability of Hydrothermal Liquefaction as a Post-Resource Recovery Step after Enhanced Biomethane Generation Using Co-Digestion Technologies

机译:使用共消化技术增强生物甲烷生成后水热液化作为资源后恢复步骤的预后评估

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摘要

In line with global efforts at encouraging paradigm transitions from waste disposal to resource recovery, the anaerobic co-digestion of substrates of wet hydrolyzed meat processing dissolved air flotation sludge and meat processing stock yard waste was investigated in the present study. It was demonstrated that the co-digestion of these substrates leads to the introduction of co-digestion synergizing effects. This study assessed biomethane potentials of the co-digestion of different substrate mixtures, with the preferred substrate mixture composed of stockyard waste and wet hydrolyzed meat processing dissolved air flotation sludge, present in a 4:1 ratio on a volatile solid mass basis. This co-digestion substrate mix ratio presented an experimentally determined cumulative biomethane potential of 264.13 mL/gVSadded (volatile solid). The experimentally determined cumulative biomethane potential was greater than the predicted maximum cumulative biomethane potential of 148.4 mL/gVSadded, anticipated from a similar substrate mixture if synergizing effects were non-existent. The viability of integrating a downstream hydrothermal liquefaction processing of the digestate residue from the co-digestion process, for enhanced resource recovery, was also initially assessed. Assessments were undertaken via the theoretical based estimation of the yields of useful products of biocrude and biochar obtainable from the hydrothermal liquefaction processing of the digestate residue. The environmental sustainability of the proposed integrated system of anaerobic digestion and hydrothermal liquefaction technologies was also initially assessed. The opportunity for secondary resource recovery from the digestate, via the employment of the hydrothermal liquefaction process and the dependence of the environmental sustainability of the integrated system on the moisture content of the digestate, were established. It is anticipated that the results of this study will constitute an invaluable basis for the future large-scale implementation of the proposed integrated system for enhanced value extraction from organic waste streams.
机译:在与鼓励垃圾处理模式转变为资源回收的全球努力线路,湿水解肉底物的混合厌氧消化的处理溶气气浮污泥及肉类加工原料场废弃物在本研究中进行了调查。有人证实,这些基板引入引出的共同消化协同效应的共同消化。本研究评估不同的衬底的混合物的共消化的生物甲烷电位,与以4的堆料场废物和湿水解肉类加工溶气浮选污泥,本构成的优选的底物混合物:a挥发性的固体质量计1的比例。该共消化底物混合物比率呈现264.13毫升/ gVSadded的实验确定的累积生物甲烷电位(挥发性固体)。实验测定的累积生物甲烷电位大于148.4毫升/ gVSadded的预测最大累积生物甲烷电位,从相似的底物混合物预期如果协同效应不存在的大。集成来自共消化过程中的残余物消化产物的下游水热液化处理的生存能力,用于增强的资源回收,也初步评估。评估是通过的生物原油的有用产物的产率的理论基于估计和生物炭从消化物残余物的水热液化处理得到进行。厌氧消化和热液液化技术的拟议的综合系统的环境可持续性也初步评估。通过水热液化工艺的就业和消化液中的水分含量的集成系统的环境可持续性的依赖从消化二次资源回收的机会,建立了。预计这项研究的结果将构成今后大规模实施从有机废物流增加值提取所提出的集成系统的宝贵基础。

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