College of Bioengineering, Henan University of Technology, Zhengzhou, PR People's Republic of China.
Materials Energy Conservation Center, Beijing, PR People's Republic of China.
Environ Technol. 2021 Jan;42(3):459-467. doi: 10.1080/09593330.2019.1631890. Epub 2019 Jul 3.
When used to treat domestic wastewater, biofilms adhering to oxygen-permeable membranes are generally altered by environmental conditions. In this study, the effect of common conditions, including salinity, temperature, air-supplying pressure, flow velocity, influent COD, and NH-N on the biofilm structure were determined. Principal component analysis revealed that archaeal community was more easily affected by the changing conditions than bacteria. The subsequent redundancy analysis showed that salinity had the most influence on bacteria, followed by temperature, influent COD, flow velocity, pressure, and influent NH-N. In archaea, temperature had the highest effect, followed by flow velocity, salinity, influent NH-N, pressure, and influent COD. The key bacterial class Anaerolineae was not easily influenced by the above conditions, but the population probably contributed to the nitrogen removal. Gammaproteobacteria was promoted significantly by influent NH-N concentration, salinity, and pressure. Betaproteobacteria and Deltaproteobacteria were apparently inhibited by the high salinity and contributed to the organic compound degradation. Flow velocity primarily promoted the growth of Alphaproteobacteria. Candidatus had a higher tolerance for salinity but lower tolerance for influent NH-N than . The former probably played a more crucial role in ammoxidation. might disrupt nitrogen removal because it could consume the carbon source for denitrification.
当用于处理生活污水时,附着在透气膜上的生物膜通常会受到环境条件的影响。本研究确定了常见条件(包括盐度、温度、供气压力、流速、进水 COD 和 NH-N)对生物膜结构的影响。主成分分析表明,古菌群落比细菌更容易受到变化条件的影响。随后的冗余分析表明,盐度对细菌的影响最大,其次是温度、进水 COD、流速、压力和进水 NH-N。在古菌中,温度的影响最大,其次是流速、盐度、进水 NH-N、压力和进水 COD。关键细菌类群 Anaerolineae 不易受上述条件影响,但该种群可能有助于脱氮。γ-变形菌纲受进水 NH-N 浓度、盐度和压力的显著促进。β-变形菌纲和δ-变形菌纲显然受到高盐度的抑制,有助于有机化合物的降解。流速主要促进了α-变形菌纲的生长。与 相比, 对盐度的耐受性较高,但对进水 NH-N 的耐受性较低。前者可能在氨氧化中发挥更重要的作用。 可能会破坏氮的去除,因为它会消耗反硝化的碳源。