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Effects of aeration rates on the structural changes in humic substance during co-composting of digestates and chicken manure

机译:消化率与鸡粪混合堆肥过程中曝气速率对腐殖质结构变化的影响

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High humidity and potential threat of pathogen of anaerobic digestates are unfavorable to the environment by direct utilization. To achieve the sustainable utilization of digestates, composting might be a good choice. Meanwhile, the aeration rate of composting has been optimized. Co-composting of digestates and chicken manure was performed under different aeration conditions (0.05, 0.1 and 0.15 L.min(-1). kg(-1).organic matter (OM)). During composting, internal transformation of humic substance (HS) has been studied for obtaining the potential application value of the co-composting products. Results suggested that the HS concentration was increased by 21.1%, 26.4% and 22.4% with the aeration rates were 0.05, 0.1 and 0.15 L.min(-1).kg(-1).OM, respectively. The aeration rate of 0.15 L.min(-1)kg(-1).OM was more conducive to germination. Parallel factor analysis and dimensional correlation spectra (2DCOS) have been combined to reveal he conversion relationships of HS components for understanding the compost application pattern. Hetero-2DCOS indicated that aeration of 0.05 min(-1).kg(-1).OM and 0.1 L.min(-1).kg(-1).OM contributed to the formation of complex compounds at long wavelength, and aeration of 0.15 L.min(-1).kg(-1).OM was beneficial for labile compounds formation at short wavelength. In views of the aeration of 0.1 L.min(-1).kg(-1).OM was more beneficial to improve HS concentration than 0.05 L.min(-1).kg(-1).OM, 0.1 L.min(-1).kg(-1).OM and 0.15 L.min(-1).kg(-1).OM were consider as the most important aeration rate to conduct digestates composting. Overall, the aeration affected the HS composition which, in turn, might affect the application ways of composting products. This study could provide a reference for industrial composting production and applications. (C) 2018 Elsevier B.V. All rights reserved.
机译:高湿度和厌氧消化物病原体的潜在威胁通过直接利用不利于环境。为了实现消化液的可持续利用,堆肥可能是一个不错的选择。同时,优化了堆肥的曝气​​率。在不同的曝气条件下(0.05、0.1和0.15 L.min(-1)。kg(-1)。有机物(OM))进行消化物和鸡粪的共同堆肥。在堆肥过程中,已经研究了腐殖质(HS)的内部转化,以期获得协同堆肥产品的潜在应用价值。结果表明,通气量分别为0.05、0.1和0.15 L.min(-1).kg(-1).OM时,HS浓度分别提高了21.1%,26.4%和22.4%。 0.15 L.min(-1)kg(-1).OM的曝气速率更有利于发芽。并行因素分析和尺寸相关光谱(2DCOS)结合起来揭示了HS组分的转化关系,以了解堆肥的应用模式。 Hetero-2DCOS表明,0.05 min(-1).kg(-1).OM和0.1 L.min(-1).kg(-1).OM的曝气有助于形成长波长的复杂化合物,并且0.15 L.min(-1).kg(-1).OM的曝气有利于短波长不稳定化合物的形成。从0.1 L.min(-1).kg(-1).OM的曝气角度来看,比0.05 L.min(-1).kg(-1).OM,0.1 L.OM更有利于提高HS浓度。 min(-1).kg(-1).OM和0.15 L.min(-1).kg(-1).OM被认为是进行消化堆肥最重要的曝气速率。总体而言,曝气影响了HS的组成,进而可能影响堆肥产品的施用方式。该研究可为工业堆肥的生产和应用提供参考。 (C)2018 Elsevier B.V.保留所有权利。

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