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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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Dyestuff wastewater treatment by combined SDS-CuO/TiO_2 photocatalysis and sequencing batch reactor 被引量:2
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作者 徐璇 吉芳英 +3 位作者 范子红 何莉 胡学斌 张琨 《Journal of Central South University》 SCIE EI CAS 2012年第6期1685-1692,共8页
Combined technology of SDS-CuO/TiO2 photocatalysis and sequencing batch reactor (SBR) were applied to treating dyestuff wastewater. Photocatalysis was carried out in a spiral up-flow type reactor as pre-treatment. S... Combined technology of SDS-CuO/TiO2 photocatalysis and sequencing batch reactor (SBR) were applied to treating dyestuff wastewater. Photocatalysis was carried out in a spiral up-flow type reactor as pre-treatment. SDS-CuO/TiO2 photocatalyst was prepared by modification of nano-TiO2 using CuO and sodium dodecyl sulfate (SDS). Results show that the SDS-CuO/TiO2 photocatalyst contains two kinds of crystals, including TiO2 and CuO. The band gap of this photocatalyst is 1.56 eV, indicating that it can be excited by visible light (2〈794.87 nm). And characterization also shows that there are alkyl groups on its surface. It takes 40 rain to improve the biodegradability of dyestuff wastewater. Five-day biochemical oxygen demand (BODs) and dehydrogenase activity (DHA) of wastewater reach the maximum value when dissolved oxygen is higher than 2.97 mg/L. SBR reactor was used to treat this biodegradability improved wastewater. Chemical oxygen demand (COD) and colority decline to 72 mg/L and 20 times, respectively, when the sludge loading is 0.179 kg(COD)/[kg(MLSS)'d], dissolved oxygen is 4.09 mg/L and aeration time is 10 h. 展开更多
关键词 BIODEGRADABILITY PHOTOCATALYSIS sequencing batch reactor dyestuffwastewater
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Impact of salinity on treatment of saline wastewater by sequencing batch biofilm reactor process 被引量:4
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作者 卢杰 闫雪 +2 位作者 马艳飞 田彩星 丁金城 《Journal of Central South University》 SCIE EI CAS 2014年第5期1989-1994,共6页
High salinity industrial wastewater is difficult to treat using biological treatment system because of the high concentrations of salt.The potential of a sequencing batch biofilm reactor(SBBR)process in treating synth... High salinity industrial wastewater is difficult to treat using biological treatment system because of the high concentrations of salt.The potential of a sequencing batch biofilm reactor(SBBR)process in treating synthetic high salinity wastewater was evaluated at laboratory scale during a 110-day operation.The reactor was operated in a 12 h cycle,and each cycle consisted of 0.25 h influent addition,8 h aeration,3 h anoxic reaction,0.5 h sedimentation and 0.25 h effluent withdrawal.Gradual increase in salinity gradient was applied during the acclimatization period.The acclimated SBBR system was demonstrated to be an effective process to remove organic compounds and ammonia nitrogen under high salinity conditions with chemical oxygen demand(COD)and ammonia nitrogen(NH3-N)removal efficiencies of 88% and 80%,respectively.The microscopic examination indicated that rather than rotifers or vorticella,the zoogloea,filamentous fungus mingled with a small quantity of swimming infusorians were dominant bacteria in SBBR system.The removal efficiencies close to 80% in COD and 75% in NH3-N were achieved at an organic loading rate(OLR)of 0.96 kg COD/(m3·d),pH of 7.0,salinity of 14 g/L and NH3-N of 30 mg/L. 展开更多
关键词 sequencing batch biofilm reactor saline wastewater microscopic examination sludge acclimation salinity shock
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Transformation and performance of granular sequence batch reactor under conventional organic loading rate condition
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作者 钟晨 王亚芹 +3 位作者 吕俊平 李耀辰 王永建 竺建荣 《Journal of Central South University》 SCIE EI CAS 2014年第7期2819-2825,共7页
Laboratory experiments were conducted to investigate the transformation and performance of a granular sequence batch reactor(SBR) under the conventional organic loading rate(OLR) condition.Aerobic granules were succes... Laboratory experiments were conducted to investigate the transformation and performance of a granular sequence batch reactor(SBR) under the conventional organic loading rate(OLR) condition.Aerobic granules were successfully cultivated in a SBR by means of alternative feeding load combined with reducing settling time after 60 d operational period.Subsequently,the black fungal granules were presented in reactor because of the filamentous overgrowth on the surface of aerobic granules.A small amount of fungal granules had no effect on the performance of granular SBR.Aerobic granules completely vanished and fungal granules eventually became the dominant species in subsequent 90 d operation after granulation.The three-dimensional excitation emission matrix(EEM) spectra result shows that the extracellular polymeric substances(EPS) component in both granules has no much difference,whereas the content of EPS in fungal granules is higher than that in bacterial granules.Due to their low bioactivity,the chemical oxidation demand(COD) and NH4-N removal efficiencies gradually decrease from 90.4%–96.5% and 99.5% to 71.8% and 32.9% respectively while the fungal granules become dominant in the SBR. 展开更多
关键词 aerobic granular conventional organic loading rate filamentous microorganisms fungal granules sequence batch reactor
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四种碳源条件下城市污水处理厂尾水深度脱氮的性能与微生物种群结构 被引量:22
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作者 彭永臻 王鸣岐 +2 位作者 彭轶 刘莹 张亮 《北京工业大学学报》 CAS CSCD 北大核心 2021年第10期1158-1166,共9页
城市污水处理厂出水符合一级A排放标准,其中含有的硝酸盐氮仍可能引起敏感水域水质恶化,故仍需进一步开发尾水深度脱氮技术.研究采用乙酸钠、葡萄糖、甲醇、乙醇4种碳源作为外加碳源,探究序批式反应器(sequencing batch reactor,SBR)悬... 城市污水处理厂出水符合一级A排放标准,其中含有的硝酸盐氮仍可能引起敏感水域水质恶化,故仍需进一步开发尾水深度脱氮技术.研究采用乙酸钠、葡萄糖、甲醇、乙醇4种碳源作为外加碳源,探究序批式反应器(sequencing batch reactor,SBR)悬浮污泥系统进行城市污水厂尾水深度脱氮的可行性.试验结果表明:在进水硝酸盐质量浓度约为15 mg/L、硝酸盐氮容积负荷率为0.03 kg/(m^(3)·d)的条件下,分别投加4种不同的碳源,SBR均能达到97.80%以上的NO_(x)^(-)-N去除率,出水ρ(NO_(x)^(-)-N)<1 mg/L.4个系统实现稳定深度脱氮所需的COD/ρ(N)分别为5、12、6和7,对应去除1 g NO_(x)^(-)-N的碳源量分别为7.35、12.00、4.00和3.37 g,其中乙醇为碳源时投加量最低而葡萄糖为碳源时最高.使用原位全周期方法测得的4个系统平均氮去除速率分别为0.72、0.19、0.32和0.73 kg/(m^(3)·d),其中乙醇和乙酸钠为碳源时反应速率最高而葡萄糖为碳源时最低.碳源种类对微生物种群组成具有显著影响.经过78 d的培养之后,乙酸钠和葡萄糖系统污泥与接种污泥相比种群结构简单,乙酸钠为碳源时微生物以Firmicutes门为主(94%),葡萄糖为碳源时微生物以Actinobacteria 门(45%)和Patescibacteria 门(44%)为主.与之相反,甲醇、乙醇系统中微生物种群的多样性比起种泥有所上升. 展开更多
关键词 城市污水厂尾水 4种液态碳源 深度脱氮 生物种群结构 序批式反应器(sequencing batch reactor SBR) 地表Ⅲ类水
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