Hi'/> Anaerobic digestion/co-digestion kinetic potentials of different agro- industrial wastes: A comparative batch study for C/N optimisation
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Anaerobic digestion/co-digestion kinetic potentials of different agro- industrial wastes: A comparative batch study for C/N optimisation

机译:不同农业工业废料的厌氧消化/共同消化动力学潜力:C / N优化的对比批研究

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HighlightsCharacterisation of different agro-industrial wastes.Anaerobic digestion potential of agro-industrial wastes at different solid loading.Four statistical model analysis based on methane yield.Co-digestion of agro-industrial wastes at different C/N ratios.Proposal of optimum conditions based on surface optimization model.AbstractAnaerobic digestion (AD) of different agro-industrial wastes and their co-digestion potential has been exhaustively studied in this research. It explores variation of feedstock characteristics such as biodegradability and methane potential during AD and anaerobic co-digestion (ACoD) of chicken litter (CL) with yoghurt whey (YW), organic fraction of municipal solid waste (OFMSW), hay grass (HG) and wheat straw (WS) under mesophilic conditions. Comparative performance was made at different loading concentrations (2%, 3% and 4% VS) with 1:2g/g VS of substrate to inoculum and carrying C/N ratio. Among different kinetic models, the AD of single substrates showed better fit to the modified Gompertz model (R2: 0.93–0.997) indicating variation in lag phase and methane production rate depend on the substrate characteristics. During ACoD, the methane yield improved by 9–85% through the addition of two, three or four substrates due to the synergistic effect asa result of increased biodegradability and optimum conditions (such asC/N ratio). A surface (optimisation) model indicated that maximum methane production can be achieved by blending chicken litter (30–35%) and a (65–70%) mixture of yoghurt whey, hay and wheat straw with aC/N ratio of (26–27.5).
机译: 突出显示 表征各种农业工业废物。 在不同固体含量下农业工业废料的厌氧消化潜力。 四种基于甲烷产量的统计模型分析。 以不同的C / N比例共同消化农业工业废物。 基于表面优化模型的最佳条件的建议。 摘要 2 :0.93-0.997),表明滞后相和甲烷生成量存在差异速率取决于基材特性。在ACoD期间,由于增加的生物降解能力和最佳条件(例如C / N比)而产生的协同效应,通过添加两种,三种或四种底物,甲烷产率提高了9–85%。表面(优化)模型表明,将鸡粪(30–35%)与酸奶乳清,干草和麦草的混合物(C / N比为(26– 27.5)。

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