College of Life Science, Northeast Agricultural University, Harbin 150030, China.
College of Life Science, Tianjin Normal University, Tianjin 300387, China.
Bioresour Technol. 2022 Apr;349:126839. doi: 10.1016/j.biortech.2022.126839. Epub 2022 Feb 10.
This study compared effects of clay minerals before and after firing in immobilization of organic nitrogen and reducing of nitrogen loss during chicken manure composting. The clay minerals and fired clay minerals treatments increased organic nitrogen contents and significantly reduced nitrogen loss, the loss was in order CK (52.61%) > M (47.15%) > I (45.90%) > M- (42.58%) > I- (40.59%). Meanwhile, network analysis indicated that core bacterial community associated with nitrogen transformation were more abundant, and conversion effect of single core bacteria on nitrogen components was enhanced in fired clay minerals treatments. In addition, fired clay minerals strengthened correlation between environmental factors, bacterial community and organic nitrogen, and enhanced interaction of abiotic and biotic pathways, which verified by variance partitioning analysis and structural equation model. Therefore, fired clay minerals play a remarkable driving role in formation and immobilization of organic nitrogen.
本研究比较了烧制前后粘土矿物对鸡粪堆肥过程中有机氮固定和氮素损失减少的影响。粘土矿物和烧制粘土矿物处理增加了有机氮含量,并显著减少了氮素损失,损失顺序为 CK(52.61%)>M(47.15%)>I(45.90%)>M-(42.58%)>I-(40.59%)。同时,网络分析表明,与氮转化相关的核心细菌群落更加丰富,烧制粘土矿物处理中单个核心细菌对氮组分的转化效果增强。此外,烧制粘土矿物增强了环境因素、细菌群落和有机氮之间的相关性,并通过方差分解分析和结构方程模型验证了非生物和生物途径的相互作用。因此,烧制粘土矿物在有机氮的形成和固定中起着显著的驱动作用。