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生态学杂志 ›› 2024, Vol. 43 ›› Issue (9): 2737-2749.doi: 10.13292/j.1000-4890.202409.040

• 土壤与农业生态 • 上一篇    下一篇

通气策略对不同有机物料腐殖化进程和微生物群落结构的影响

牛明芬1,胡丹丹1,吴天木2,石莹2,宋俏博3,马建3*   

  1. 1沈阳建筑大学市政与环境工程学院, 沈阳 110168; 2沈阳市沈北新区乡村振兴发展中心, 沈阳 110086; 3中国科学院沈阳应用生态研究所, 沈阳 110016)

  • 出版日期:2024-09-10 发布日期:2024-09-11

Effects of ventilation strategies on humification process and microbial community structure of different organic materials.

NIU Mingfen1, HU Dandan1, WU Tianmu2, SHI Ying2, SONG Qiaobo3, MA Jian3*   

  1. (1School of Municipal and Environmental Engineering, Shenyang Jianzhu University, Shenyang 110168, China; 2Shenyang Shenbei New District Rural Revitalization and Development Center, Shenyang 110086, China; 3Institute of Applied Ecology, Chinese Academy of Sciences, Shenyang 110016, China).

  • Online:2024-09-10 Published:2024-09-11

摘要: 基于通气量影响好氧堆肥微生物呼吸强度并影响腐殖化进程的预判,设计不同通气策略下玉米秸秆+尿素、玉米秸秆+牛粪、玉米秸秆+鸡粪等不同有机物料的堆肥腐殖化进程实验,进行反应器方式堆肥。结果表明,经40天堆肥,分阶段通气调节策略能使尿素、鸡粪氮源有机物料组合干物质损失率分别减少12.4%和16.2%,并分别提高腐殖质聚合度至17.9%和18.1%;牛粪氮源有机物料对分阶段通气调节策略堆肥的反馈主要是胡富比的增加。对堆肥后各处理微生物群落结构的分析表明,通气量和堆肥物料共同作用于堆肥物料的微生物群落,且较易分解物质的堆体有着相似的微生物物种组成。研究发现,分阶段通气调节策略对不同有机物料腐殖化进程的影响效果不同,更适用于较易分解有机物料腐殖化进程的调控。


关键词: 好氧堆肥, 通气调控, 腐殖化, 腐植酸, 微生物群落结构

Abstract: To optimize the humification process of compost, we investigated the effects of ventilation volume on microbial respiration intensity using different nitrogen sources including corn straw + urea, corn straw + cow manure, and corn straw + chicken manure in a composting reactor. The results showed that the phased ventilation regulation strategy effectively reduced dry matter loss rate of urea and organic material combination of chicken manure nitrogen source by 12.4% and 16.2%, respectively, while increasing the degree of humus polymerization to 17.9% and 18.1%, respectively, after a composting period of 40 days. The main reason was an increase in HA-FA ratio within the manure compost material. The analysis of the microbial community structure for post-composting treatments revealed that the compost material’s microbial community was influenced by both ventilation and material composition. Compost bodies containing more easily decomposable materials exhibited similar microbial species composition. The phased ventilation regulation strategy had varying effects on the humification of different organic materials, and would be more suitable for regulating the humification process of easily decomposable organic materials.


Key words: aerobic compost, ventilation regulation, humification, humic acid, microbial community structure