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Evaluation of humic substances during co-composting of sewage sludge and corn stalk under different aeration rates

机译:不同曝气率下污水污泥和玉米秸秆共同堆肥过程中腐殖质的评价

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摘要

Sewage sludge and corn stalk were co-composted under different aeration rates 0.12 (AR0.12), 0.24 (AR0.24), 0.36 (AR0.36) L.kg(-1) DM min(-1), respectively. Transformation of humic substance was evaluated by a series of chemical and spectroscopic methods to reveal compost humification. Results showed that aeration rate could significantly affect compost stability and humification process. Humic acid contents in AR0.24 were significantly higher than those in the other two treatments. The final humic acid/fulvic acid ratios in AR0.12, AR0.24 and AR0.36 treatment were 1.0, 1.9 and 0.8, respectively, corresponding to the final E4/E6 of 4.7, 3.2 and 5.5. Moreover, compost in AR0.24 treatment had a high stability degree due to the low C/N atom ratio and high C/H atom ratio. However, it is noteworthy that composting could not significantly affect the structure of HA in a 35-day period. These results indicate that composting with the aeration rate of 0.24 L.kg(-1) DM min(-1) could accelerated the humification process.
机译:在不同的曝气速率0.12(Ar 0.12),0.24(Ar 0.24),0.36(Ar 0.36),0.36(Ar 0.36),0.36(Ar 0.36)L.Kg(-1)DM min(-1)下共堆叠污水污泥和玉米秸秆。通过一系列化学和光谱方法评估腐殖质物质的转化,以揭示堆肥湿度。结果表明,曝气率可能会显着影响堆肥稳定性和腐殖过程。 AR0.24中的腐殖酸含量显着高于其他两种治疗方法。 AR0.12,AR0.24和AR0.36处理中的最终腐殖酸/富乙酸比分别为1.0,1.9和0.8,对应于4.7,3.2和5.5的最终E4 / E6。此外,由于C / N原子比和高C / H原子比,AR0.24治疗中的堆肥具有高稳定性程度。然而,值得注意的是,在35天的时间内,堆肥不会显着影响HA的结构。这些结果表明,堆肥率为0.24L.kg(-1)dm min(-1)可以加速湿度处理。

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