[微蓟马引起污泥膨胀的种群动态及关键影响因素]。

Q2 Environmental Science
Gao-Xin Su, Rong Qi, Shu-Min Xiao, Dian-Cheng Dou, Yu-Xin Guo, Jia Gao
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引用次数: 0

摘要

鉴于小微弧菌(Microthrix parvicella, M。采用多维综合丝状菌监测方法与分子定量方法相结合的方法,系统研究了城市污水处理厂低温期细小支原体(M. parvicella)过度生长过程中,细小支原体(M. parvicella)种群的丝状菌动态。建立了实验室规模的反应器,成功地模拟了低温条件下的膨胀现象。估算了膨胀期优势丝状菌的迁移趋势和主要影响参数,验证了在全装置污泥膨胀现象中影响丝状菌生长和消除的关键因素。结果表明,膨胀引起的细小支原体丝状菌多样性发生了显著变化,丝状菌的优势序列表现为0092型和0041型骨架丝状菌与细小支原体的竞争。在较低温度下,污泥负荷量是小苗芽孢杆菌竞争生长优势的重要控制因素:当温度较低(约15°C)时,低污泥负荷量[0.05 kg·(kg·d)-1]可以导致小苗芽孢杆菌的稳定升高,当负荷量增加到0.1 kg·(kg·d)-1或更高时,尽管存在低温因素,小苗芽孢杆菌种群仍呈现有针对性的下降。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
[Population Dynamics and Key Influencing Factors of Microthrix parvicella Caused Sludge Bulking].

Given the frequent occurrence of the sludge bulking phenomena caused by Microthrix parvicellaM. parvicella) overgrowth during the low-temperature period in the full-scale municipal wastewater treatment plant, the filamentous bacteria dynamics of the M. parvicella population were systematically investigated during the completed bulking period using the multi-dimensional integrated filamentous monitoring method combined with the molecular quantitative method. A lab-scale reactor was constructed and successfully simulated bulking phenomena under the low-temperature condition. The trend of dominant filamentous bacterial shift and the main influencing parameters were estimated during the bulking period, to verify the key factors for filament growth and extinction of the sludge bulking phenomenon in the full-scale plant. The results showed that the bulking-caused M. parvicella was characterized by significant changes in the diversity of filamentous bacteria, and the dominant filamentous bacterial succession was reflected in the competition between the skeleton filamentous bacteria Type 0092 and Type 0041 and M. parvicella. At lower temperatures, sludge loading was an important controlling factor for the competitive growth advantage of M. parvicella: when the temperature was lower (approximately 15°C), low sludge loading [0.05 kg·(kg·d)-1] could lead to the stabilized elevation of M. parvicella, and with the loading increased to 0.1 kg·(kg·d)-1 or more, M. parvicella populations showed a targeted decline despite the presence of the low temperature factor.

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来源期刊
环境科学
环境科学 Environmental Science-Environmental Science (all)
CiteScore
4.40
自引率
0.00%
发文量
15329
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