Environmental Biotechnology Laboratory, The University of Hong Kong, Pokfulam Road, Hong Kong, China.
Department of Civil and Environmental Engineering, Hong Kong University of Science and Technology, Hong Kong, China.
Appl Microbiol Biotechnol. 2017 Oct;101(20):7755-7766. doi: 10.1007/s00253-017-8499-7. Epub 2017 Sep 14.
In this laboratory-scale investigation on the applicability of the co-digestion of food waste with sewage sludge, evaluated were the effects of the single-stage versus two-stage operating modes at the hydraulic retention time (HRT) of 15 days, and the impact of HRTs: 15 days vs. 25 days, on the single-stage operation. An average volatile solid reduction (VSR) of 61% and methane yield of 314 ml/g-VS were achieved in the two-stage operation (HRT 15 days), while comparable VSR of 57% and the methane yield of 325 ml CH/g-VS could only be detected at a longer HRT at 25 days in the single-stage operation. The difference in the operating modes showed much higher influence on shaping the overall bacterial structures than the two HRTs of the single-stage operation. The one operational taxonomic unit (OTU) annotatable at the family level of Thermotogaceae was most abundant (> 10%) in all the methanogenic co-digestion consortia, and its dominant role was recognized to be independent of other OTU lineages in the community. OTUs in the phylum Proteobacteria were much more common as the persistent OTUs in the single-stage co-digestion consortia, while in the two-stage consortia, they were in the phylum Firmicutes. Annotation on the functional genes suggested that the phylum Firmicutes hosted the majority of pilus genes and hydrogenase genes that were reported to be essential for the syntrophic conversion of the high concentrations of alcohols and reduced fatty acids in the methanogenic reactor operated under the two-stage mode.
在这项关于食物垃圾与污水污泥共消化应用可行性的实验室规模研究中,评估了单级与两级操作模式在水力停留时间(HRT)为 15 天的情况下的效果,以及 HRT 的影响:15 天与 25 天,对单级操作的影响。在两级操作(HRT 15 天)中实现了平均挥发性固体减少(VSR)61%和甲烷产量 314ml/g-VS,而在单级操作中,仅在较长的 HRT 25 天时才能检测到可比的 VSR 57%和甲烷产量 325ml CH/g-VS。操作模式的差异对整体细菌结构的塑造影响远大于单级操作的两个 HRT。可在Thermotogaceae 科水平注释的一个操作分类单元(OTU)在所有产甲烷共消化生物群落中最为丰富(>10%),其主导作用被认为独立于群落中的其他 OTU 谱系。在单级共消化生物群落中,变形菌门的 OTUs 作为持久 OTUs 更为常见,而在两级生物群落中,它们则属于厚壁菌门。功能基因注释表明,厚壁菌门拥有大多数菌毛基因和氢化酶基因,这些基因被报道对在两级模式下运行的产甲烷反应器中高浓度醇和还原脂肪酸的协同转化至关重要。