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Analysis of the Effect and Influencing Factors of Rural Domestic Sewage Treatment Based on A^(2)O-MBBR Integrated Process
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作者 Wangang WU Aiping WU +2 位作者 Guixiang YUAN Yuyuan ZHOU Junwei LU 《Agricultural Biotechnology》 2024年第2期27-32,共6页
[Objectives] This study was conducted to solve the prominent problems in the treatment of domestic sewage in southern rural areas of China. [Methods] An integrated process treatment mode of anaerobic/anoxic/aerobic mo... [Objectives] This study was conducted to solve the prominent problems in the treatment of domestic sewage in southern rural areas of China. [Methods] An integrated process treatment mode of anaerobic/anoxic/aerobic moving bed biofilm reactor (A 2O-MBBR) was proposed to analyze and study its operating effect and influencing factors. [Results] The A^(2)O-MBBR mode had good COD removal efficiency and nitrogen and phosphorus removal performance, and the water quality index of the effluent met the Class A standard of GB181918-2002. This mode is suitable for treating rural domestic sewage, and has high treatment effects in different operating periods. In spring, the average removal rates of COD, NH_(4)^(+)-N, TN, TP and SS reached (83.53 ± 2.15)%, (89.44 ± 4.97)%, (67.36±18.53)%, (88.22±11.21)% and (91.73±2.25)%, respectively;In the autumn period, the average removal rates of COD, NH_(4)^(+)-N, TN, TP and SS were (83.49±2.64)%, (89.26±9.19)%, (66.05±17.00)%, (87.48±9.68)%, and (91.13±2.35)%. [Conclusions] This study provides theoretical reference and technical support for the popularization and application of A^(2)O-MBBR integrated process. 展开更多
关键词 A^(2)O-MBBR process Rural domestic sewage Nitrogen and phosphorus removal
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A^(2)/O-BAF工艺短程硝化模式下反硝化除磷技术在处理低C/N城市污水中的效能
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作者 阚子建 《中国新技术新产品》 2023年第1期118-120,共3页
为探索A^(2)/O-BAF工艺短程硝化模式下反硝化除磷技术在除磷低C/N比例城市生活污水中的除磷除氮效能,该文结合短程硝化模式应用的基本特点,以亚硝态氮作为受体,构建反硝化除磷工艺,其结果显示A^(2)/O-BAF短程硝化模式下的亚硝积累率达到... 为探索A^(2)/O-BAF工艺短程硝化模式下反硝化除磷技术在除磷低C/N比例城市生活污水中的除磷除氮效能,该文结合短程硝化模式应用的基本特点,以亚硝态氮作为受体,构建反硝化除磷工艺,其结果显示A^(2)/O-BAF短程硝化模式下的亚硝积累率达到95.2%,反硝化除磷阶段对正磷酸盐的去除贡献率达到75.42%,在批次试验中在反硝化阶段以亚硝态氮为电子受体吸出的凝含量达到26.28 mg/L,吸磷率达到72.3%,反硝化阶段以亚硝态氮作为受体的脱磷效率占总脱磷效率的72.91%。在A^(2)/O-BAF工艺短程硝化模式下,采用反硝化除磷技术可以在低C/N比例的城市污水中发挥良好的除磷效果,该工艺可推广应用。 展开更多
关键词 A^(2)/o-baf 短程硝化模式 反硝化脱磷技术 低C/N比 城市污水 除磷效能
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A^(2)/O-BAF反硝化脱氮除磷双污泥系统的二次启动特性 被引量:5
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作者 赵鑫磊 付雪 +4 位作者 毛佩玥 张民安 吴新波 马娟 陈永志 《工业水处理》 CAS CSCD 北大核心 2021年第9期81-85,91,共6页
采用A^(2)/O-BAF双污泥系统,考察池容比(V厌氧∶V缺氧∶V好氧)分别为3∶5∶2和1∶3∶1时对搁置2个月的活性污泥去除污染物性能的恢复情况。结果表明,2种池容比对COD和NH_(4)^(+)-N的去除性能恢复影响较小。V厌氧∶V缺氧∶V好氧=3∶5∶2... 采用A^(2)/O-BAF双污泥系统,考察池容比(V厌氧∶V缺氧∶V好氧)分别为3∶5∶2和1∶3∶1时对搁置2个月的活性污泥去除污染物性能的恢复情况。结果表明,2种池容比对COD和NH_(4)^(+)-N的去除性能恢复影响较小。V厌氧∶V缺氧∶V好氧=3∶5∶2更有利于TN和PO_(4)^(3-)-P的去除性能恢复,其出水TN和PO_(4)^(3-)-P在第7天和第4天分别达到14.20 mg/L和0.42 mg/L,TN、PO_(4)^(3-)-P去除率分别为80.47%、92.02%。拟合方程分析厌氧释磷和缺/好氧吸磷的小试结果表明:V厌氧∶V缺氧∶V好氧=3∶5∶2的厌氧释磷量和缺氧吸磷量更高,且吸磷速率更快。即V厌氧∶V缺氧∶V好氧=3∶5∶2更有利于A^(2)/O-BAF系统的二次启动。 展开更多
关键词 A^(2)/o-baf双污泥系统 池容比 二次启动
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Anoxic Biological Phosphorus Uptake in A^2O Process 被引量:10
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作者 WANG Xiaolian(王晓莲) +3 位作者 WANG Shuying(王淑莹) PENG Yongzhen(彭永臻) 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2005年第4期516-521,共6页
A lab-scale anaerobic-anoxic-oxic (A2O) process used to treat a synthetic brewage wastewater was investigated. The objectives of the study were to identify the existence of denitrifying phosphorus removing bacteria (D... A lab-scale anaerobic-anoxic-oxic (A2O) process used to treat a synthetic brewage wastewater was investigated. The objectives of the study were to identify the existence of denitrifying phosphorus removing bacteria (DPB), evaluate the contribution of DPB to biological nutrient removal and enhance the denitrifying phosphorus removal in A2O bioreactors. Sludge analysis confirmed that the average anoxic P uptake accounted for approximately 70% the total amount of P uptake, and the ratio of anoxic P uptake rate to aerobic P uptake rate was 69%. In addition, nitrate concentration in the anoxic phase and different organic substrate introduced into the anaerobic phase had significant effect on the anoxic P uptake. Compared with conventional A2O processes, good removal efficiencies of COD, phosphorus, ammonia and total nitrogen (92.3%, 95.5%, 96% and 79.5%, respectively) could be achieved in the anoxic P uptake system, and aeration energy consumption was saved 25%. By controlling the nitrate recirculation flow in the anoxic zone, anoxic P uptake could be enhanced, which solved the competition for organic substrates among poly-P organisms and denitrifiers successfully under the COD limiting conditions. Therefore, in wastewater treatment plants the control system should be applied according to the practical situation to optimize the operation. 展开更多
关键词 A^2O process nitrogen and phosphorus removal denitrifying phosphorus removing bacteria nitrate recirculation flow
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Removal of nitrogen and phosphorus in a combined A^2/O-BAF system with a short aerobic SRT 被引量:15
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作者 DING Yong-wei WANG Lin +1 位作者 WANG Bao-zhen WANG Zheng 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2006年第6期1082-1087,共6页
A bench-scale anaerobic/anoxic/aerobic process-biological aerated filter (A^2/O-BAF) combined system was carded out to treat wastewater with lower C/N and C/P ratios. The A^2/O process was operated in a short aerobi... A bench-scale anaerobic/anoxic/aerobic process-biological aerated filter (A^2/O-BAF) combined system was carded out to treat wastewater with lower C/N and C/P ratios. The A^2/O process was operated in a short aerobic sludge retention time (SRT) for organic pollutants and phosphorus removal, and denitrification. The subsequent BAF process was mainly used for nitrification. The BAF effluent was partially returned to anoxic zone of the A^2/O process to provide electron acceptors for denitrification and anoxic P uptake. This unique system formed an environment for reproducing the denitdfying phosphate-accumulating organisms (DPAOs). The ratio of DPAOs to phosphorus accumulating organisms (PAOs) could be maintained at 28% by optimizing the organic loads in the anaerobic zone and the nitrate loads into the anoxic zone in the A^2/O process. The aerobic phosphorus over-uptake and discharge of excess activated sludge was the main mechanism of phosphorus removal in the combined system. The aerobic SRT of the A^2/O process should meet the demands for the development of aerobic PAOs and the restraint on the nitrifiers growth, and the contact time in the aerobic zone of the A^2/O process should be longer than 30 min, which ensured efficient phosphorus removal in the combined system. The adequate BAF effluent return rates should be controlled with 1--4 mg/L nitrate nitrogen in the anoxic zone effluent of A^2/O process to achieve the optimal nitrogen and phosphorus removal efficiencies. 展开更多
关键词 nitrogen and phosphorus removal denitrifying phosphorus removal denitrifying phosphorus accumulating organisms (DPAOs) anaerobic/anoxic/aerobic process (A^2/O) biological aerated filter (BAF) aerobic sludge retention time (SRT)
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A^(2)O-BAF双污泥系统处理生活污水研究进展
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作者 白岩 李广 +1 位作者 余运涌 李星雨 《浙江化工》 CAS 2022年第11期44-49,共6页
A^(2)O-BAF双污泥系统集A^(2)O和BAF各自优势于一体,通过A^(2)/O活性污泥系统和BAF生物膜系统串联组成,短污泥龄运行的A^(2)O主要完成除磷和反硝化,长污泥龄的BAF实现稳定的硝化过程。该工艺解决了传统A^(2)O中存在的固有污泥龄矛盾和... A^(2)O-BAF双污泥系统集A^(2)O和BAF各自优势于一体,通过A^(2)/O活性污泥系统和BAF生物膜系统串联组成,短污泥龄运行的A^(2)O主要完成除磷和反硝化,长污泥龄的BAF实现稳定的硝化过程。该工艺解决了传统A^(2)O中存在的固有污泥龄矛盾和碳源竞争问题,作为一种新型高效组合工艺,近年来受到广泛关注。以该组工艺为基础,通过合理控制运行参数、研究低温条件和低温菌植入对系统影响,对提高系统的脱氮除磷效率及最大限度发挥A^(2)O-BAF双污泥系统自身的优势具有重大现实意义。 展开更多
关键词 A^(2)o-baf双污泥系统 污泥龄 低温菌 脱氮除磷效率
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污泥停留时间对新型A^(2)/O工艺联合生物滤池深度处理城镇废水的探究 被引量:1
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作者 龙一飞 潘婵 +1 位作者 赵军丽 鄢小虎 《水处理技术》 CAS CSCD 北大核心 2022年第8期116-119,共4页
为探究污泥停留时间(SRT)对新型A^(2)/O联合生物滤池工艺深度处理城镇低C/N效能的影响,以实际低C/N废水为探究对象,构建了中试规模的A^(2)/O联合BAF工艺,通过调控不同SRT,在室温环境下比较新型处理工艺对生物脱氮除磷及污泥特征的影响... 为探究污泥停留时间(SRT)对新型A^(2)/O联合生物滤池工艺深度处理城镇低C/N效能的影响,以实际低C/N废水为探究对象,构建了中试规模的A^(2)/O联合BAF工艺,通过调控不同SRT,在室温环境下比较新型处理工艺对生物脱氮除磷及污泥特征的影响。结果表明,SRT延长对COD去除影响不明显,但提高了NH_(4)^(+)-N和PO_(4)^(3-)-P的去除率,SRT延长至16 d时,NH_(4)^(+)-N和PO_(4)^(3-)-P的去除率分别高达94.6%~96.8%和94.5%~95.3%,均高于SRT为10 d。SRT延长提高了污泥浓度并导致VSS/TSS增加,此外,SRT适当延长改善了污泥沉降性,提高了胞外聚合物含量,尤其当SRT为14 d时,EPS含量高达60.5~62.3 mg/g,蛋白质(PN)/多糖(PS)提高至1.59~1.71。本研究结果对新型A^(2)/O联合BAF的应用提供了一定数据支撑与理论依据。 展开更多
关键词 SRT A^(2)/o-baf工艺 脱氮除磷 污泥特征
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Toxicity Reduction of Municipal Wastewater by Anaerobic-anoxic-oxic Process 被引量:5
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作者 MAN-HONG HUANG YONG-MEI LI GuO-WEi GU 《Biomedical and Environmental Sciences》 SCIE CAS CSCD 2010年第6期481-486,共6页
Objective This study was conducted to optimize the operational parameters of anaerobic-anoxic-oxic (A^2/O) processes to reduce the toxicity of municipal wastewater and evaluate its ability to reduce toxicity. Method... Objective This study was conducted to optimize the operational parameters of anaerobic-anoxic-oxic (A^2/O) processes to reduce the toxicity of municipal wastewater and evaluate its ability to reduce toxicity. Methods A luminescent bacterium toxicity bioassay was employed to assess the toxicity of influent and effluent of each reactor in the A2/O system. Results The optimum operational parameters for toxicity reduction were as follows: anaerobic hydraulic retention time (HRT) = 2.8 h, anoxic HRT = 2.8 h, aerobic HRT = 6.9 h, sludge retention time (SRT) = 15 days and internal recycle ratio (IRR) = 100%. An important toxicity reduction (%) was observed in the optimized A2/O process, even when the toluene concentration of the influent was 120.7 mg·L^-1. Conclusions The toxicity of municipal wastewater was reduced significantly during the A^2/O process. A^2/O process can be used for toxicity reduction of municipal wastewater under toxic-shock loading. 展开更多
关键词 A^2/O process Municipal wastewater Toxicity reduction process optimization Toxic-shock loading
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A^2O-BAF工艺处理低C/N值生活污水的快速启动 被引量:5
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作者 王建华 陈永志 彭永臻 《中国给水排水》 CAS CSCD 北大核心 2010年第15期32-35,40,共5页
以低碳氮比的实际生活污水为处理对象,重点研究了A2O-BAF工艺的快速启动。结果表明,先单独对硝化型曝气生物滤池进行挂膜后再将A2O与BAF连接起来可成功启动该双污泥系统。采用快速排泥挂膜法和自然挂膜法相结合的复合挂膜法,使用不含有... 以低碳氮比的实际生活污水为处理对象,重点研究了A2O-BAF工艺的快速启动。结果表明,先单独对硝化型曝气生物滤池进行挂膜后再将A2O与BAF连接起来可成功启动该双污泥系统。采用快速排泥挂膜法和自然挂膜法相结合的复合挂膜法,使用不含有机物的配水对曝气生物滤池进行挂膜,18d后曝气生物滤池挂膜成功。系统连续运行44d后达到稳定。使用碳氮比为3.21的生活污水进行驯化,反硝化除磷菌占聚磷菌的比例为66.7%,缺氧吸磷为系统的主要除磷方式,此时出水氨氮、正磷酸盐浓度均接近于零,出水硝态氮为15.1mg/L左右,对COD、氨氮、总磷和总氮的去除率分别为82%、100%、100%和67%。表明该双污泥系统运行效果稳定,启动成功。 展开更多
关键词 A^2o-baf工艺 硝化型曝气生物滤池 反硝化除磷 快速启动
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Full-scale evaluation of reversed A^(2)/O process for removal of multiple pollutants in sewage 被引量:1
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作者 Qihang Wu Haiyan Li +6 位作者 Xiaodong Hu Yongfeng Shi Deguan Kong Yucheng Zhang Bixian Mai Dongye Zhao Jie Fu 《Chinese Chemical Letters》 SCIE CAS CSCD 2020年第10期2825-2830,共6页
This study evaluated the removal of multiple pollutants,i.e.,polybrominated diphenyl ethers(PBDEs),novel halogenated flame retardants(HFRs),sulfonamide antibiotics(SAs),and heavy metals(HMs),by a fullscale reversed A^... This study evaluated the removal of multiple pollutants,i.e.,polybrominated diphenyl ethers(PBDEs),novel halogenated flame retardants(HFRs),sulfonamide antibiotics(SAs),and heavy metals(HMs),by a fullscale reversed A^(2)/O process in a sewage treatment plant(STP)in Guangzhou,China.The reversed A^(2)/O process demonstrated high removal efficiencies(REs)for total PBDEs(60.5%±4.3%),novel HFRs(98.4%±2.8%)and HMs(70.1%±1.2%),and a relatively low RE for SAs(25.0%±2.3%).BDE 209,the dominant PBDE congener,showed a high residual concentration(13.41±5.18 ng/L)in the suspended particulate matter(SPM)of treated effluents.So me novel HFRs,dechlorane plus(DP)and decabromodiphe nyl ethane(DBDPE),were detected in the SPM of the raw sewage(7.50±4.14 ng/L and 11.52±11.65 ng/L,respectively).The removal ofSAs was mainly through biodegradation in the activated sludge bioreactors(ASBs).Ofthe HMs,Mn and Ni exhibited the lowest REs(47.5%±2.2%and 35.0%±2.6%,respectively),while Cr and Cu showed the highest removal(REs>80%).In terms of treatment units in the reversed A^(2)/O process,ASBs showed the highest RE(27.8%)for the multiple pollutants.The information can aid in our understanding of removal properties of STPs on various pollutants and evaluating the ecological/health risks of STPs as point pollutant sources. 展开更多
关键词 Polybrominated diphenyl ethers Halogenated flame retardants Sulfonamide antibiotics Heavy metals Reversed A^2/O process
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Effect of short-term atrazine addition on the performance of an anaerobic/anoxic/oxic process
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作者 Changyong WU Yongzhen PENG +1 位作者 Xiaoling LI Zhiqiang CHEN 《Frontiers of Environmental Science & Engineering》 SCIE EI CSCD 2010年第2期150-156,共7页
In this study,an anaerobic/anoxic/oxic(A^(2)O)wastewater treatment process was implemented to treat domestic wastewater with short-term atrazine addition.The results provided an evaluation on the effects of an acciden... In this study,an anaerobic/anoxic/oxic(A^(2)O)wastewater treatment process was implemented to treat domestic wastewater with short-term atrazine addition.The results provided an evaluation on the effects of an accidental pollution on the operation of a wastewater treatment plant(WWTP)in relation to Chemical Oxygen Demand(COD)and biological nutrient removal.Domestic wastewater with atrazine addition in 3 continuous days was treated when steady biological nutrient removal was achieved in the A^(2)O process.The concentrations of atrazine were 15,10,and 5 mg%L–1 on days 1,2 and 3,respectively.The results showed that atrazine addition did not affect the removal of COD.The specific NH4þoxidation rate and NO3–reduction rate decreased slightly due to the short-term atrazine addition.However,it did not affect the nitrogen removal due to the high nitrification and denitrification capacity of the system.Total nitrogen(TN)removal was steady,and more than 70%was removed during the period studied.The phosphorus removal rate was not affected by the short-term addition of atrazine under the applied experimental conditions.However,more poly-hydroxy-alkanoate(PHA)was generated and utilized during atrazine addition.The results of the oxygen uptake rate(OUR)showed that the respiration of nitrifiers decreased significantly,while the activity of carbon utilizers had no obvious change with the atrazine addition.Atrazine was not removed with the A^(2)O process,even via absorption by the activated sludge in the process of the short-term addition of atrazine. 展开更多
关键词 biological nutrient removal ATRAZINE anaerobic/anoxic/oxic(A^(2)O)process oxygen demand removal oxygen uptake rate(OUR)
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Combined effects of volume ratio and nitrate recycling ratio on nutrient removal,sludge characteristic and microbial evolution for DPR optimization 被引量:6
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作者 Miao Zhang Jing Gao +3 位作者 Yajun Fan Xiaoge Wu Jun Wu Chengda He 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2021年第6期69-83,共15页
The optimization of volume ratio(V_(An)/V_(A)/V_(0))and nitrate recycling ratio(R)in a two-sludge denitrifying phosphorus removal(DPR)process of Anaerobic Anoxic Oxic-Moving Bed Biofilm Reactor(A^(2)/O-MBBR)was invest... The optimization of volume ratio(V_(An)/V_(A)/V_(0))and nitrate recycling ratio(R)in a two-sludge denitrifying phosphorus removal(DPR)process of Anaerobic Anoxic Oxic-Moving Bed Biofilm Reactor(A^(2)/O-MBBR)was investigated.The results showed that prolonged anaerobic retention time(HRT An:1.25→3.75 hr)exerted favorable effect on chemical oxygen demand(COD)removal(57.26%→73.54%),poly-β-hydroxyalkanoates(PHA)synthesis(105.70→138.12 mg COD/L)and PO_(4)^(3-)release(22.3→38.9 mg/L).However,anoxic retention time(HRT A)and R exhibited positive correlation with PHA utilization(43.87%-81.34%)and denitrifying phosphorus removal(DPR)potential(NO_(3)-/PO^(3-)_(4):0.57-1.34 mg/mg),leading to dramatical TN removal variations from 68.86%to 81.28%.Under the V An/V A/V O ratio of 2:6:0,sludge loss deteriorated nutrient removals but the sludge bioactivity quickly recovered when the oxic zone was recovered.The sludge characteristic and microstructure gradually transformed under the dissolved oxygen(DO)control(1.0-1.5→1.5-2.0 mg/L),in terms of sludge volume index(SVI:194→57 m L/g VSS),median-particle-size(D 50:99.6→300.5μm),extracellular polymeric substances(EPS)(105.62→226.18 mg/g VSS)and proteins/polysaccharides(PN/PS)ratio(1.52→3.46).Fluorescence in situ hybridization(FISH)results showed that phosphorus accumulation organisms(PAOs)(mainly Cluster I of Accumulibacter,contribution ratio:91.79%-94.10%)dominated the superior DPR performance,while glycogen accumulating organisms(GAOs)(mainly Competibacter,contribution ratio:82.61%-86.89%)was responsible for deteriorative TN and PO_(4)^(3-)removals.The optimal HRT A and R assembled around 5-6.5 hr and 300%-400%based on the PHA utilization and DRP performance,and the oxic zones also contributed to PO_(4)^(3-)removal although it showed low dependence on DO concentration and oxic retention time(HRT_(0)). 展开更多
关键词 A^(2)/O-MBBR Denitrifying phosphorus removal Volume ratio Nitrate recycling ratio Microbial contribution process optimization
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