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Characteristics of extracellular fluorescent substances of aerobic granular sludge in pilot-scale sequencing batch reactor 被引量:9
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作者 涂响 苏本生 +1 位作者 李小宁 竺建荣 《Journal of Central South University》 SCIE EI CAS 2010年第3期522-528,共7页
The aerobic granular sludge was cultivated in a pilot-scale sequencing batch reactor (SBR), and some of the granules were stored at 8 ℃ for 150 d. Extracellular polymeric substances (EPS) of sludge samples were e... The aerobic granular sludge was cultivated in a pilot-scale sequencing batch reactor (SBR), and some of the granules were stored at 8 ℃ for 150 d. Extracellular polymeric substances (EPS) of sludge samples were extracted and analyzed during the granulation and storage process. The results show that the contents of protein and EPS increase along with the granulation process, while polysaccharides remain almost unchanged. The content of protein in EPS is almost two-fold larger than that of polysaccharides in granular sludge cultivated with municipal wastewater. Moreover, some of the granules disintegrate during storage, corresponding to the decrease of protein contents in EPS. Three peaks are identified in three-dimensional excitation emission matrix (EEM) fluorescence spectra of the EPS in the aerobic granules. Two peaks (A and B) are attributed to the protein-like fluorophores, and the third (peak C) is related to visible fulvic-like substances. Peak A gradually disappears during storage, while a new peak related to ultraviolet fulvic acid (peak D) is formed. The formation and the stability of aerobic granules are closely dependent on the quantity and composition of EPS proteins. Peak C has no obvious changes during granulation, while the fulvic-like substances present an increase in fluorescence intensities during storage, accompanied with an increase in structural complexity. The fulvie-like substances are also associated with the disintegration of the aerobic granules. 展开更多
关键词 aerobic granules extracellular polymeric substances (EPS) protein fulvic acid sequencing batch reactor (SBR) excitation emission matrix fluorescence spectroscopy
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氮负荷对短程反硝化耦合厌氧氨氧化生物膜系统脱氮性能的影响 被引量:19
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作者 彭永臻 王锦程 +2 位作者 李翔晨 杜睿 刘莹 《北京工业大学学报》 CAS CSCD 北大核心 2021年第12期1367-1376,共10页
短程反硝化作为厌氧氨氧化反应基质亚硝酸盐(NO_(2)^(-)-N)获取的新途径,近年来受到广泛关注.短程反硝化与厌氧氨氧化耦合的污水脱氮工艺具有重要应用潜力.然而,城市污水基质浓度较低且波动频繁,有效实现厌氧氨氧化菌持留与富集是该工... 短程反硝化作为厌氧氨氧化反应基质亚硝酸盐(NO_(2)^(-)-N)获取的新途径,近年来受到广泛关注.短程反硝化与厌氧氨氧化耦合的污水脱氮工艺具有重要应用潜力.然而,城市污水基质浓度较低且波动频繁,有效实现厌氧氨氧化菌持留与富集是该工艺稳定脱氮的关键.针对上述问题,构建了基于生物膜的短程反硝化耦合厌氧氨氧化工艺,采用2种结构不同的生物填料为载体,对比系统长期脱氮性能,重点考察氮负荷降低过程中系统氮素转化规律及菌群活性变化,深入分析生物膜胞外聚合物(extracellular polymeric substances,EPS)产生特性.结果表明,以含氨氮(NH_(4)^(+)-N)与硝酸盐氮(NO_(3)^(-)-N)废水为处理对象,乙酸钠为有机碳源,分别采用聚氨酯海绵填料(R1)和聚乙烯空心环填料(R2)成功构建了短程反硝化耦合厌氧氨氧化生物膜系统.进水NH_(4)^(+)-N与NO_(3)^(-)-N由150 mg/L逐渐降低至50 mg/L、氮负荷由0.6 kg/(m^(3)·d)降为0.2 kg/(m^(3)·d)时,R1和R2维持高效稳定脱氮,低负荷阶段平均总氮(TN)去除率分别为87.6%和83.6%.厌氧氨氧化作用始终为主要脱氮途径,其占两系统TN去除的贡献率分别高达98.2%和97.4%.生物膜短程反硝化速率随氮负荷减少而降低,但高NO_(2)^(-)-N积累特性未受影响,R1系统NO_(2)^(-)-N积累效率达到95.1%且高于R2(89.8%),其厌氧氨氧化活性降低程度小于R2,表明聚氨酯填料更适合低负荷下该工艺长期运行.低负荷下微生物分泌更多EPS,蛋白质含量增加有助于系统应对氮负荷变化.综上,短程反硝化耦合厌氧氨氧化生物膜工艺处理低基质废水时具有稳定高效的重要优势,为解决厌氧氨氧化应用的瓶颈问题提供了新方法,具有研究意义和应用价值. 展开更多
关键词 短程反硝化 厌氧氨氧化 生物膜 氮负荷 胞外聚合物(extracellular polymeric substances EPS) 生物脱氮
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