Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences, Beijing, 100085, China.
Appl Microbiol Biotechnol. 2015 Sep;99(17):7321-31. doi: 10.1007/s00253-015-6640-z. Epub 2015 May 13.
Sludge bio-drying in which sludge is dried by means of the heat generated by the aerobic degradation of its own organic substances has been widely used for sludge treatment. A better understanding of the evolution of dissolved organic matter (DOM) and its degradation drivers during sludge bio-drying could facilitate its control. Aeration is one of the key factors that affect sludge bio-drying performance. In this study, two aeration strategies (pile I-the optimized and pile II-the current) were established to investigate their impacts on the evolution of DOM and the microbial community in a full-scale sludge bio-drying plant. A higher pile temperature in pile I caused pile I to enter the DOM and microbiology stable stage approximately2 days earlier than pile II. The degradation of easily degradable components in the DOM primarily occurred in the thermophilic phase; after that degradation, the DOM components changed a little. Along with the evolution of the DOM, its main degradation driver, the microbial community, changed considerably. Phyla Firmicutes and Proteobacteria were dominant in the thermophilic stage, and genus Ureibacillus, which was the primary thermophilic bacteria, was closely associated with the degradation of the DOM. In the mesophilic stage, the microbial community changed significantly at first and subsequently stabilized, and the genus Parapedobacter, which belongs to Bacteriodetes, became dominant. This study elucidates the interplay between the DOM and microbial community during sludge bio-drying.
污泥生物干化是利用污泥中有机物质好氧降解产生的热量来干燥污泥的一种方法,已被广泛应用于污泥处理。更好地了解污泥生物干化过程中溶解有机物(DOM)的演变及其降解驱动因素,有助于对其进行控制。曝气是影响污泥生物干化性能的关键因素之一。本研究建立了两种曝气策略(堆肥 I-优化和堆肥 II-当前),以研究它们对全规模污泥生物干化厂中 DOM 演变和微生物群落的影响。堆肥 I 中的较高堆温使堆肥 I 比堆肥 II 提前约 2 天进入 DOM 和微生物学稳定阶段。DOM 中易降解成分的降解主要发生在高温阶段;在此降解之后,DOM 成分变化不大。随着 DOM 的演变,其主要降解驱动因素微生物群落发生了很大变化。厚壁菌门和变形菌门在高温阶段占优势,主要的高温细菌属是 Ureibacillus,与 DOM 的降解密切相关。在中温阶段,微生物群落首先发生显著变化,随后稳定下来,属于拟杆菌门的属 Parapedobacter 成为优势菌。本研究阐明了污泥生物干化过程中 DOM 和微生物群落之间的相互作用。