碳源对膨胀污泥微生物多样性的影响研究

    Effect of Carbon Source on Microbial Diversity in Bulking Sludge

    • 摘要: 为探究碳源对膨胀污泥内微生物多样性的影响,采用淀粉和乙酸钠2种不同碳源进行人工配水并成功诱发丝状菌污泥膨胀.实验结果表明,尽管不同的碳源类型会使污泥产生不同的沉降性能变化,却不会影响其对污染物的整体处理效果.膨胀的发生不仅会导致系统内微生物丰度、均一性、多样性和丰富度的下降,还会使不同门类下不同功能的微生物菌群及相关菌属的相对丰度产生不同变化.所有泥样中相对丰度最大的门类均为Proteobacteria,且以淀粉为碳源的废水环境更有利于该门类微生物的生长.在不同特定菌群中,除磷菌群的相对丰度受2种碳源影响最大,而在相关菌属中,作为优势丝状菌的ThiothrixHaliscomenobacter的相对丰度在2种碳源下均随污泥膨胀的发生而升高,Tetrasphaera则与之相反;以Nitrosomonas为代表的5种脱氮菌属的相对丰度随膨胀的发生而升高,以Nitrospira为代表的7种脱氮菌属及以Candidatus AccumulibacterCandidatus Competibacter为代表的5种除磷菌属的相对丰度变化则与其相反.此外,淀粉进水下发生的污泥膨胀使反应器内操作分类单元(operational taxonomic units,OTUs)数减少了251,是乙酸钠进水下减少数量的5倍多,表明其对微生物多样性的影响大于乙酸钠.

       

      Abstract: To investigate the effect of carbon source on microbial diversity in bulking sludge, two different carbon sources, starch and sodium acetate, were used for artificial wastewater and the filamentous sludge bulking was successfully induced. Results show that although different types of carbon sources may cause different SVI, the overall treatment effect of pollutants has not been affected. The occurrence of bulking can not only lead to the decrease of microbial abundance, homogeneity, diversity and richness, but also cause different changes in the relative abundance of microbial community of different categories and functions. Proteobacteria is the phyla with the largest relative abundance in all the sludge samples, and the wastewater environment with starch as carbon source is more conducive to the growth of it. In different microbial communities, the two carbon sources have the greatest influence on the relative abundance of phosphorus removal bacteria. The relative abundance of Thiothrix and Haliscomenobacter, as dominant filamentous bacteria, increases with the sludge bulking under the two carbon sources, while Tetrasphaera is the opposite. The relative abundance of five denitrifier genera represented by Nitrosomonas increases with the sludge bulking, while the relative abundance of seven denitrifier genera represented by Nitrospira and five phosphorus removal bacteria represented by Candidatus Acumulibacter and Candidatus Competibacter decreases. In addition, sludge bulking caused by starch reduces the number of OTUs in the reactor by 251, more than 5 times that of acetate, indicating a greater impact on microbial diversity.

       

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