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首页> 外文期刊>Waste Management >Evaluation of total greenhouse gas emissions during sewage sludge composting by the different dicyandiamide added forms: Mixing, surface broadcasting, and their combination
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Evaluation of total greenhouse gas emissions during sewage sludge composting by the different dicyandiamide added forms: Mixing, surface broadcasting, and their combination

机译:通过不同的双氰胺添加方式评估污泥堆肥过程中的总温室气体排放量:混合,地面广播及其组合

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摘要

The aim of this work was to compare the impact of different adding forms of dicyandiamide (DCD) on NH3and greenhouse gas (GHG) emissions during sewage sludge (SS) composting. Four treatments were set up using SS mixed with sawdust, to which DCD was then added by mixing (M), surface broadcasting (B), and a combination of the two (M+B). The treatment without DCD applied was used as the control. The results indicate that the addition of DCD slightly inhibited the organic matter (OM) degradation, but that it had no significant effect on CO2emission. The surface mulching of DCD has no significant effect on NH3, N2O, and CH4emissions. The mixing addition of DCD significantly increased the NH3emission by 32.5% compared to that of the control. The N2O emission for the M and M+B treatments significantly decreased by 35.1% and 51.8%, respectively. The CH4emission for the M and M+B treatments decreased by 33.9% and 31.8%, respectively. In addition, the total GHG emissions for the M and M+B treatments were significantly reduced by 16.7–25.7% (P  0.05) compared to those of the control. Therefore, to reduce the total GHG emissions of the SS composting process, the addition of DCD by a combination of mixing and surface mulching is strongly recommended as a highly efficient solution.
机译:这项工作的目的是比较污水污泥(SS)堆肥过程中不同添加形式的双氰胺(DCD)对NH3和温室气体(GHG)排放的影响。使用SS和锯末混合进行四种处理,然后通过混合(M),表面广播(B)和两者的组合(M + B)添加DCD。没有施加DCD的处理用作对照。结果表明,DCD的添加略微抑制了有机物(OM)的降解,但对CO2排放没有显着影响。 DCD的地表覆盖对NH3,N2O和CH4的排放没有显着影响。与对照相比,DCD的混合添加显着增加了32.5%的NH3排放。 M和M + B处理的N2O排放分别显着降低了35.1%和51.8%。 M和M + B处理的CH4排放分别减少了33.9%和31.8%。此外,与对照组相比,M和M + B处理的总温室气体排放量显着降低了16.7–25.7%(P <0.05)。因此,为减少SS堆肥过程的总温室气体排放,强烈建议通过混合和表面覆盖相结合的方式添加DCD作为高效解决方案。

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