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接种后半连续更换堆肥材料对低温堆肥保温性能的影响。

Effect of semi-continuous replacements of compost materials after inoculation on the performance of heat preservation of low temperature composting.

机构信息

College of Life Science, Northeast Agricultural University, Harbin 150030, China; School of Resources and Environment Science, Wuhan University, Wuhan 430079, China.

Beijing Tongzhou Agriculture Products Quality Inspection & Testing Center, Beijing 101149, China.

出版信息

Bioresour Technol. 2019 May;279:50-56. doi: 10.1016/j.biortech.2019.01.090. Epub 2019 Jan 23.

Abstract

Development of cold-adapted microbial agent is an efficient approach for composting in low temperature. The study was conducted to evaluate the effect of semi-continuous replacements of compost materials after inoculation (SRMI) on the heat preservation of low temperature composting derived from chicken manure. Results revealed that SRMI could significantly improve the heat preservation of the pile, although the time of start-up in two inoculation groups was approximately the same. Due to the increase in the number of replacements of materials led to the changes in microbial community structures and enzyme activity. Non-metric multidimensional and colorimetric methods indicated that microbial community structures and enzyme activity was completely different in SRMI. Structural equation model was constructed by key factors involved in diversity of the microbial community, enzyme activity, temperature and bio-heat generation. In summary, SRMI decidedly increase the heat preservation time of the pile and start-up efficiency of the low temperature composting.

摘要

开发耐冷微生物制剂是低温堆肥的有效方法。本研究旨在评估接种后半连续更换堆肥材料(SRMI)对鸡粪低温堆肥保温的影响。结果表明,SRMI 可显著提高堆体的保温效果,尽管两个接种组的启动时间大致相同。由于更换材料的次数增加,导致微生物群落结构和酶活性发生变化。非度量多维和比色法表明,SRMI 中微生物群落结构和酶活性完全不同。通过涉及微生物群落多样性、酶活性、温度和生物热产生的关键因素构建结构方程模型。总之,SRMI 显著增加了堆体的保温时间和低温堆肥的启动效率。

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