Li Haijie, Mu Ruihua, He Yanhui, Deng Zihe, Liu Xiaocheng, Wu Zhansheng
School of Environmental and Chemical Engineering, Xi'an Key Laboratory of Textile Chemical Engineering Auxiliaries, Xi'an Polytechnic University, Xi'an, 710048, People's Republic of China.
Environ Sci Pollut Res Int. 2022 Dec;29(58):87775-87789. doi: 10.1007/s11356-022-21698-6. Epub 2022 Jul 11.
Two composting experiments were conducted to investigate the effects of commercial microbial agents on microbial succession and nutrient flow such as humification, maturation, and stability during the aerobic composting of the spent mushroom substrate (SMS). The cellulose degradation rate of T (added microbial agents at the initial stage) reached 41.8%, which was much significantly (p < 0.05) higher than that of CK (14.9%). The seed germination index (GI) in T (82.38%) was significantly (p < 0.05) higher than that in CK (74.74%) in the maturation phase. Moreover, the total organic carbon/total nitrogen ratio (C/N) and electrical conductivity (EC) value of T decreased to 10.5 and 2.37 mS/cm, respectively. Chemical detection and fluorescence excitation-emission region integration method (EEM-FRI) analysis showed that the microbial agents significantly accelerated the organic matter (OM) decomposition and promoted the quality of mature compost using SMS as a single raw material. The bacterial abundance of T was significantly richer than the CK due to the addition of microbial agents. The results could provide a comprehensive understanding of adding microbial agents into composting SMS and a scientific feasibility strategy to rational utilization of resources in the edible fungi industry, which was conducive to the waste management and sustainable development of the edible fungi industry.
进行了两项堆肥实验,以研究商业微生物剂对蘑菇废料(SMS)好氧堆肥过程中微生物演替以及腐殖化、成熟和稳定性等养分流动的影响。T组(在初始阶段添加微生物剂)的纤维素降解率达到41.8%,显著高于CK组(14.9%)(p < 0.05)。在成熟阶段,T组的种子发芽指数(GI)(82.38%)显著高于CK组(74.74%)(p < 0.05)。此外,T组的总有机碳/总氮比(C/N)和电导率(EC)值分别降至10.5和2.37 mS/cm。化学检测和荧光激发-发射区域积分法(EEM-FRI)分析表明,微生物剂显著加速了有机物(OM)的分解,并以SMS作为单一原料提高了成熟堆肥的质量。由于添加了微生物剂,T组的细菌丰度明显高于CK组。研究结果可为理解在SMS堆肥中添加微生物剂提供全面认识,并为食用菌产业资源合理利用提供科学可行策略,有利于食用菌产业的废弃物管理和可持续发展。