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Addition of zeolite and superphosphate to windrow composting of chicken manure improves fertilizer efficiency and reduces greenhouse gas emission

机译:添加沸石和过磷酸盐以养鸡堆肥的堆肥提高了肥料效率并减少了温室气体排放

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This study investigated the impact of adding zeolite (F), superphosphate (G), and ferrous sulfate (L) in various combinations on reducing greenhouse gas (GHG) emission and improving nitrogen conservation during factory-scale chicken manure composting, aimed to identify the combination that optimizes the performance of the process. Chicken manure was mixed with F, G, FL, or FGL and subjected to windrow composting for 46 days. Results showed that global warming potential (GWP) was reduced by 21.9% (F), 22.8% (FL), 36.1% (G), and 39.3% (FGL). Further, the nitrogen content in the final composting product increased by 27.25%, 9.45%, and 21.86% in G, FL, and FGL amendments, respectively. The fertilizer efficiency of the compost product was assessed by measuring the biomass of plants grown in it, and it was consistent with the nitrogen content. N2O emission was negligible during composting, and 98% of the released GHGs comprised CO2 and CH4. Reduction in GHG emission was mainly achieved by reducing CH4 emission. The addition of FL, G, and FGL caused a clear shift in the abundance of dominant methanogens; particularly, the abundance of Methanobrevibacter decreased and that of Methanobacterium and Methanocella increased, which was correlated with CH4 emissions. Meanwhile, the changes in moisture content, NH4+-N content, and pH level also played an important role in the reduction of GHG emission. Based on the effects of nitrogen conservation, fertilizer efficiency improvement, and GHG emission reduction, we conclude that G and FGL are more beneficial than F or FL and suggest these additives for efficient chicken manure composting.
机译:本研究研究了添加沸石(F),超磷酸盐(G)和硫酸亚铁(L)的影响,以各种组合减少温室气体(GHG)排放和改善工厂规模鸡粪堆肥期间的氮气保护,旨在识别组合优化过程性能。鸡粪与F,G,Fl或FGL混合,并经受Windrow堆肥46天。结果表明,全球变暖电位(GWP)减少了21.9%(F),22.8%(FL),36.1%(G)和39.3%(FGL)。此外,最终堆肥产品中的氮含量分别增加了27.25%,9.45%,9.45%和21.86%,FL和FGL修正案。通过测量其生长的植物生物量来评估堆肥产品的肥料效率,并与氮含量一致。在堆肥期间,N2O排放可忽略不计,98%的释放温室气体包含CO 2和CH4。通过减少CH4排放来实现GHG排放的减少。添加FL,G和FGL导致大量甲烷的丰富均匀;特别地,甲烷的富型杆菌的丰度降低,甲基杆菌和甲酸甲基菌的含量增加,与CH4排放相关。同时,水分含量,NH4 + -N含量和pH水平的变化也在减少温室气体排放方面发挥了重要作用。基于氮气保护,肥料效率提高和温室气体排放减少的影响,我们得出结论,G和FGL比F或FL更有益,并表明这些添加剂用于有效的鸡粪堆肥。

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