College of Veterinary Medicine, Northwest A&F University, Yangling, Shaanxi Province, 712100, PR China.
College of Natural Resources and Environment, Northwest A&F University, Yangling, Shaanxi, 712100, PR China.
J Environ Manage. 2022 Sep 1;317:115474. doi: 10.1016/j.jenvman.2022.115474. Epub 2022 Jun 4.
Nitrogen loss during composting is closely related to NH-N conversion, and ammonia-oxidizing bacteria (AOB) are important microorganisms that promote NH-N conversion. Since the biological activity of conventional AOB agents used for compost inoculation declines rapidly during the thermophilic phase of composting, new compound inoculants should be developed that are active during that phase. In the current study, the effects of inoculating cattle manure compost with newly isolated AOB (5%, v/w) [thermotolerant AOB X-2 strain (T-AOB-2), mesophilic AOB X-4 strain (M-AOB-4), and AOB X-2 combined with AOB X-4 (MT-AOB-2-4)] on the conversion of nitrogen, compost maturity, and the resident microbial community were studied. During 35 days of composting, compared with the control, AOB inoculation reduced NH emissions by 29.98-46.94%, accelerated the conversion of NH-N to NO-N, increased seed germination values by 13.00-25.90%, and increased the abundance of the microbial community at the thermophilic phase (16.38-68.81%). Network analysis revealed that Bacillaceae play a crucial role in the composting process, with the correlation coefficients: 0.83 (p < 0.05) with NH, 0.64 (p < 0.05) with NH-N, and 0.81 (p < 0.05) with NO-N. In addition, inoculation with MT-AOB-2-4 notably increased the total nitrogen content of compost, prolonged the sanitation stage, and promoted compost maturity. Hence, MT-AOB-2-4 may be used to increase the microbial community abundance and improve the efficiency of cattle manure composting.
在堆肥过程中,氮损失与 NH-N 转化密切相关,氨氧化细菌(AOB)是促进 NH-N 转化的重要微生物。由于传统的 AOB 制剂在堆肥高温阶段的生物活性迅速下降,因此需要开发新的复合接种剂,使其在该阶段具有活性。本研究中,通过向牛粪堆肥中接种新分离的 AOB(5%,v/w)[耐热 AOB X-2 菌株(T-AOB-2)、嗜温 AOB X-4 菌株(M-AOB-4)和 AOB X-2 与 AOB X-4 联合(MT-AOB-2-4)],研究了其对氮转化、堆肥成熟度和土著微生物群落的影响。在 35 天的堆肥过程中,与对照相比,AOB 接种减少了 29.98-46.94%的 NH 排放,加速了 NH-N 向 NO-N 的转化,提高了种子发芽值 13.00-25.90%,并增加了高温阶段微生物群落的丰度(16.38-68.81%)。网络分析表明,芽孢杆菌科在堆肥过程中起着至关重要的作用,其相关系数为:0.83(p<0.05)与 NH 相关,0.64(p<0.05)与 NH-N 相关,0.81(p<0.05)与 NO-N 相关。此外,MT-AOB-2-4 的接种显著增加了堆肥的总氮含量,延长了卫生阶段,促进了堆肥成熟。因此,MT-AOB-2-4 可用于增加微生物群落的丰度,提高牛粪堆肥的效率。