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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Effects of struvite formation and nitratation promotion on nitrogenous emissions such as NH3, N2O and NO during swine manure composting
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Effects of struvite formation and nitratation promotion on nitrogenous emissions such as NH3, N2O and NO during swine manure composting

机译:猪粪堆肥过程中鸟粪石形成和硝化促进对NH3,N2O和NO等氮排放的影响

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摘要

To reduce nitrogenous emissions from composting, two different countermeasures were applied simultaneously in swine manure composting. One was forming struvite by adding Mg and P at the start of composting, and the other was to promote nitratation (nitrite being oxidized nitrate) by adding nitrite-oxidizing bacteria after the thermophilic phase of composting. In the laboratory- and mid-scale composting experiments, 25-43% of NH3, 52-80% of N_2O and 96-99% of NO emissions were reduced. From the nitrogen balance, it was revealed that the struvite formation reduced not only NH3, but also other nitrogenous emissions except N_2O. The amount of total nitrogen losses was reduced by 60% by the two combined countermeasures, against 51% by the struvite formation alone. However, the nitratation promotion dissolved struvite crystals due to the pH decline, diminishing the effect of struvite as a slow-release fertilizer.
机译:为了减少堆肥中的氮排放,在猪粪堆肥中同时应用了两种不同的对策。一种是在堆肥开始时通过添加Mg和P来形成鸟粪石,另一种是通过在堆肥的嗜热阶段后添加亚硝酸盐氧化细菌来促进硝化作用(亚硝酸盐被硝酸盐氧化)。在实验室和中等规模的堆肥实验中,减少了25-43%的NH3、52-80%的N_2O和96-99%的NO排放。从氮平衡中可以看出,鸟粪石的形成不仅减少了NH3,而且还减少了除N_2O以外的其他氮排放。两种综合对策使总氮损失量减少了60%,而仅鸟粪石形成减少了51%。但是,硝化促进由于pH下降而溶解了鸟粪石晶体,从而削弱了鸟粪石作为缓释肥料的作用。

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