Zhang Qingjun, Zhu Tong, Wang Youzhao, Ma Feng, Yao Sai, An Ning, Xiao Qingxiang
School of Mechanical Engineering and Automation, Northeastern University, Shenyang, China.
Liaoning Urban Construction Design Institute Co. Ltd, Fushun, China.
J Environ Sci Health B. 2023;58(1):58-68. doi: 10.1080/03601234.2023.2169528. Epub 2023 Jan 28.
The enrichment and adaptation of hyper-thermal compost-derived thermophilic inoculum by repeated batch cultivation (RBC) was conducted by investigating bacterial community. The effects of recycling hyper-thermal inoculum by RBC into co-composting were investigated through evaluating the influences of temperature, pH, moisture, C/N ratio, transformation of nitrogen, composting maturity, humification levels and scanning electron microscopy (SEM). The results showed that RBC enriched the thermophilic bacterial community and nitrogen fixation bacteria of the compost-derived thermophilic inoculum. Simultaneously, recycling the inoculum into co-composting increased the temperature, nitrate nitrogen (NO-N) and Germination index (GI), and improved the transformation of nitrogen and humification levels. Conclusively, recycling hyper-thermal inoculum by RBC into co-composting can improve the degradation process.
通过研究细菌群落,采用重复批次培养(RBC)对超高温堆肥衍生的嗜热接种物进行富集和驯化。通过评估温度、pH值、湿度、碳氮比、氮转化、堆肥成熟度、腐殖化水平以及扫描电子显微镜(SEM)等方面的影响,研究了通过RBC将超高温接种物循环用于共堆肥的效果。结果表明,RBC富集了堆肥衍生嗜热接种物中的嗜热细菌群落和固氮细菌。同时,将接种物循环用于共堆肥提高了温度、硝态氮(NO-N)和发芽指数(GI),并改善了氮转化和腐殖化水平。总之,通过RBC将超高温接种物循环用于共堆肥可以改善降解过程。