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寒冷地区有机废物堆肥的连续保温策略:基于耐寒菌群。

Continuous insulation strategy of organic waste composting in cold region: Based on cold-adapted consortium.

机构信息

College of Life Science, Northeast Agricultural University, Harbin 150030, China.

Department of Chemistry, Tianjin Normal University, Tianjin 300387, China.

出版信息

Bioresour Technol. 2021 Sep;335:125257. doi: 10.1016/j.biortech.2021.125257. Epub 2021 May 7.

Abstract

Compost is a self-heating process for organic waste. Microbes are the main executors in composting process. However, due to low temperature in winter and low efficiency of composting, a lot of heat is lost in composting. In this study, taking-out and feed-batch composting method (TFC) can supplement nutrition and improve composting microenvironment. Compared with NC, the amount of carbohydrates, protein and fat decomposed by TFC increase by 56.8%, 237% and 122%, respectively, in the composting start-up period (0-100 h). Structure and function of microbial community have changed due to stimulation of cold-adapted consortium. In addition, this study shows that core bacteria stimulate cooperation among different bacteria in the organic components metabolism networks. Finally, based on the important role of cold-adapted consortium, the sustainable heating strategy of composting system is put forward, which converts organic wastes into released heat for daily heating and hot water preparation, leading role of cold-adapted consortium.

摘要

堆肥是有机废物的自热过程。微生物是堆肥过程中的主要执行者。然而,由于冬季温度低和堆肥效率低,堆肥过程中会损失大量热量。在本研究中,采用取料补料堆肥法(TFC)可以补充营养并改善堆肥微环境。与 NC 相比,在堆肥启动期(0-100 h),TFC 分解的碳水化合物、蛋白质和脂肪的量分别增加了 56.8%、237%和 122%。由于冷适应菌丛的刺激,微生物群落的结构和功能发生了变化。此外,本研究表明,核心细菌刺激不同细菌在有机成分代谢网络中的合作。最后,基于冷适应菌丛的重要作用,提出了堆肥系统的可持续加热策略,将有机废物转化为释放的热量,用于日常供暖和热水制备,发挥冷适应菌丛的主导作用。

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