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1.
有机物浓度对厌氧氨氧化脱氮性能影响试验研究   总被引:8,自引:2,他引:6  
通过间歇试验和连续试验研究了不同有机物浓度对厌氧氨氧化活性及脱氮性能的影响。间歇试验结果表明:自养条件下厌氧氨氧化菌的最大比反应速率为0.189 kg NH+4-N/(kg VSS·d);当氨氮和亚硝酸盐氮浓度为80 mg/L时,有机物的添加降低了厌氧氨氧化速率,当有机物浓度超过70 mg/L时,厌氧氨氧化菌的最大比反应速率降低到0.05 kg NH+4-N/(kg VSS·d)以下,是反硝化菌与厌氧氨氧化菌竞争亚硝酸盐产生了可逆抑制的结果。连续试验结果表明,高氮低碳源有机环境下厌氧氨氧化能稳定运行,并且比自养系统中总氮的去除率有所提高,当COD值为50 mg/L时,总氮去除率最大,平均值达96.59%,是反硝化菌和厌氧氨氧化菌共同脱氮的结果;当有机物浓度过高时,ANAMMOX对TN去除贡献率持续降低,反硝化不断得到强化,厌氧氨氧化运行不稳定。  相似文献   

2.
厌氧氨氧化无纺滤布生物膜反应器的运行   总被引:1,自引:0,他引:1  
王勇  黄勇  袁怡  李祥  曹贵华 《环境工程学报》2009,3(6):1015-1018
氧气是厌氧氨氧化菌的抑制因素,通过无纺滤布生物膜系统内部形成适合厌氧氨氧化菌的厌氧环境,运行62 d,实现0.617 kg N/(m3·d)氮容积去除负荷,稳定运行阶段氨氮和亚硝氮的去除率分别为97.9%和98.7%;98 mg N/L NO-2-N经24 h接触产生完全抑制,通过将进水亚硝氮浓度降至20~40 mg N/L,运行31 d,成功恢复厌氧氨氧化活性,试验末期氮容积去除负荷为0.641 kg N/(m3·d)。  相似文献   

3.
炭管膜曝气生物膜反应器SNAD脱氮研究   总被引:1,自引:0,他引:1  
以包裹无纺布的微孔炭管作为膜曝气生物膜反应器(MABR)的膜组件,进行了短程硝化,厌氧氨氧化和反硝化耦合脱氮(SNAD)研究。实验中,控制温度34±1℃,pH 7.5~8.5, HRT 8 h,通过逐步降低膜内压力使反应器中的溶解氧由8 mg/L逐步降低到0.5 mg/L以下。实验采用亚硝酸细菌挂膜,然后接种厌氧氨氧化细菌,实现在单一反应器中同时发生短程硝化、厌氧氨氧化和反硝化耦合脱氮功能。结果表明,经过180 d的连续稳定运行,氨氮去除率达到了93.4%,总氮去除率达到了92.5%,COD去除率达到97.2%, 氨氮去除负荷0.6 kg N/(m3 ·d)。适合SNAD工艺的最佳C/N比为0.2~0.6,当COD浓度过高时,会抑制厌氧氨氧化细菌,使SNAD工艺的处理效果明显下降。  相似文献   

4.
祖波  张代钧  阎青  蔡庆 《环境工程学报》2008,2(9):1223-1227
采用批试验方法,研究微量NO2对颗粒污泥厌氧氨氧化、甲烷化和反硝化耦合的影响。基于Haldane模型建立了厌氧氨氧化的NO2强化函数,估计了强化函数中的最大强化系数(30.55)、NO2半饱和常数(1.96 mg/L)、NO2抑制常数(0.0082 mg/L)和基础速率系数(0.0314)。微量NO2对甲烷化和反硝化动力学可用反竞争性抑制动力学方程进行描述。甲烷化的最大比乙酸盐去除速率为0.15 mg COD/(mg VSS·h),乙酸盐半饱和常数为395 mg COD/L,NO2抑制系数为0.623 mg/L。反硝化的亚硝酸盐氮最大去除速率0.00685 h-1,亚硝酸盐氮半饱和常数 0.214 mg/L,NO2抑制系数为22.4 mg/L。试验中大部分的NOx气体物质出现损失。  相似文献   

5.
温度和pH值对CANON工艺的影响试验研究   总被引:3,自引:0,他引:3  
采用2组SBBR反应器研究了进水氨氮浓度为160 mg NH+4-N/L、间歇曝气并且曝停比为2 h∶2 h、DO为2.0~2.5 mg/L (曝气)/ 0.2~0.4 mg/L(停曝)和HRT为48 h时,温度和pH值对CANON工艺的影响,试验结果表明,CANON工艺最适温度和pH值分别为30℃和8。在一定温度范围内(不大于30℃),CANON系统的氨氮转化速率和脱氮效能随着温度的升高而升高。温度达到35℃时,厌氧氨氧化反应速率较低而不能把亚硝化反应生成的NO-2全部转化为氮气,此时较高的DO(2.0~2.5 mg/L)不利于淘汰CANON系统内的硝酸菌,部分氨氮将通过全程硝化反应被氧化为NO-3。而在pH值为6~9的范围内,CANON 系统均可实现硝酸菌的“洗脱”,避免全程硝化反应的发生。  相似文献   

6.
利用氮素计量关系和批式实验研究了SBR系统中基于短程硝化的单级自养脱氮特性和脱氮途径。结果表明,SBR系统获得良好脱氮效果,TN最高去除负荷和去除速率分别达0.49 kg N/(m3.d)和0.20 kg N/(kg VSS.d);系统中82%的氨氮转化成气体脱除,10%的氨氮转化成硝酸盐氮。批式实验结果表明,SBR系统中的污泥同时具有厌氧氨氧化、亚硝酸盐氧化和自养反硝化活性,三者的反应速率分别为0.12 kg NH4+-N/(kg VSS.d)、0.04 kg NO2--N/(kg VSS.d)和0.03 kg NO2--N/(kg VSS.d)。综上,SBR系统中氮的脱除是短程硝化、厌氧氨氧化和反硝化共同作用的结果,产生的硝酸盐是厌氧氨氧化和硝化作用所致。  相似文献   

7.
DO对好氧颗粒污泥短程同步硝化反硝化脱氮的影响   总被引:8,自引:2,他引:6  
以模拟城市污水为处理对象,研究了不同溶解氧下序批式活性污泥反应器(SBR)的短程同步硝化反硝化过程特征及处理效果。试验结果表明,溶解氧浓度是实现短程同步硝化反硝化的一个重要控制参数。在亚氮积累阶段,控制温度为28~32℃,pH值为7.5~7.8,当进水NH+4-N为30 mg/L左右,COD为250 mg/L左右时,亚硝酸盐氮的积累率达到96%~98%。在试验阶段,常温下控制溶解氧在0.5~1.0 mg/L,可保证氨氮的去除率达到95%~97%,总氮的去除率达到82%~85%。  相似文献   

8.
好氧与厌氧氨氧化复合颗粒污泥完全自营养脱氮影响因素   总被引:4,自引:1,他引:3  
采用间歇实验,考察了初始NH+4-N浓度、DO浓度和pH对颗粒污泥完全自营养脱氮的特性的影响。研究表明,在完全自营养脱氮系统中,当DO为0.6~0.8 mg/L,pH控制在7.5~7.8时,好氧氨氧化和厌氧氨氧化速率在一定范围内随NH+4-N浓度(30~150 mg/L)的增加而增加,较高的氨氮浓度能提高自营养脱氮反应速率。较高的DO有利于提高亚硝酸盐氧化速率,但会导致亚硝酸盐的积累;DO浓度过低时,好氧氨氧化过程受到抑制。NH+4浓度为36 mg/L,DO控制在0.6~0.8 mg/L的条件下,当pH值为7.8时,完全自营养脱氮的效果最佳,总氮去除速率达最大值为23.976 mg/(g MLSS·d)。  相似文献   

9.
UASB反应器厌氧氨氧化菌的脱氮特性研究   总被引:8,自引:3,他引:5  
研究UASB厌氧氨氧化(ANAMMOX)反应器运行情况,采用普通城市污水厂活性污泥接种,人工合成废水,pH值在7.4~7.8之间,温度控制在(32±1)℃。在反应器稳定运行270~450 d之间的180 d中,对NH+4-N和NO-2-N去除率均达到99.9%以上,总氮去除率保持在90%以上,NO-3-N产生量在20~30 mg/L之间波动。研究表明,UASB厌氧氨氧化反应器处理废水效果明显,对NH+4-N、NO-2-N和TN去除率高,NO-2-N和NH+4-N比值可以指示厌氧氨氧化反应器性能的演变。UASB反应器稳定运行阶段容积负荷的影响较小,ANAMMOX菌对合成废水适应性强,反应器抗冲击能力较强,受冲击后恢复迅速。出水pH值稳定在8.5附近,pH值变化情况可作为反应器运行状况的指示。关键词硝化厌氧氨氧化上流式厌氧污泥床生物脱氮  相似文献   

10.
污水生物生态处理工艺中的脱氮机理研究   总被引:2,自引:0,他引:2  
曹玉梅  李田  陆斌  王玲 《环境工程学报》2009,3(10):1735-1740
通过水解池-美人蕉湿地、水解/接触氧化池-菖蒲湿地现场实验装置考察了生物-生态工艺深度净化分散生活污水的效果。结果表明,水解池-美人蕉湿地尽管湿地停留时间达到7 d,出水NH+4-N仍难以达到一级A(GB18918-2002)标准;而增加接触氧化池后,湿地停留时间仅2 d,组合工艺出水水质远优于一级A出水要求。美人蕉湿地脱氮的主要途径是湿地微生物的硝化/反硝化,植物吸收约占28%。对经接触氧化处理,NH+4-N、NO-3-N浓度均较高的进水,菖蒲湿地可在C/N小于2时高效脱氮。菖蒲湿地对TN的去除占组合工艺TN去除量的79%,其中植物吸收仅占湿地除氮总量的8%。湿地介质的厌氧氨氧化活性试验表明,菖蒲湿地介质表面的微生物在无有机碳源存在的条件下,可使培养液中的NH+4-N与NO-3-N、NO-2-N短期内发生同步脱氮,厌氧氨氧化可能是菖蒲湿地在进水低碳源条件下脱氮的主要原因。  相似文献   

11.
流态对活性污泥硝化性能及菌群结构的影响   总被引:1,自引:0,他引:1  
生化反应器流态会影响基质分布,从而影响反应器内微生物的性能与菌群结构。在相同氮负荷下运行SBR和CSTR以对比分析2种典型流态(推流式和完全混合式)对活性污泥中硝化菌性能及其菌群结构的影响。结果表明,SBR中,氨氧化速率(AUR)和亚硝酸盐氧化速率(NUR)分别为(16.55±2.05)mg N/(L·g VSS·h)和(15.33±2.02)mg N/(L·g VSS·h),CSTR中AUR和NUR分别为(10.13±0.73)mg N/(L·g VSS·h)和(9.34±2.56)mg N/(L·g VSS·h);SBR中,氨氧化菌(AOB)和亚硝酸盐氧化菌(NOB)含量分别为(3.4±0.3)%和(5.4±1.2)%,优势菌分别为Nitrosomonas europaea-Nitrosococcus mobilis lineage和Nitrobacter,CSTR中,AOB和NOB含量分别(3.1±0.4)%和(6.8±1.1)%,优势菌分别为Nitrosospira和Nitrospira。虽然2个流态下的硝化菌含量接近,但推流式的硝化速率比完全混合式高64%,这是因为推流式更有利于反应速率较快的r-strategist(Nitrosomonas europaea-Nitrosococcus mobilis lineage和Nitrobacter)生存,而完全混合式则更利于反应速率较慢K-strategist(Nitrosospira和Nitrospira)生存。  相似文献   

12.
通过控制好氧区低DO浓度以及缩短好氧实际水力停留时间(actual hydraulic retention time,AHRT),在处理低C/N比实际生活污水的A2/O工艺中,成功启动并维持了短程硝化反硝化;系统亚硝酸盐积累率稳定维持在90%左右,氨氮去除率在95%以上。通过提取富集氨氧化菌(ammonia oxidizing bacteria,AOB)的基因组DNA,经两次常规PCR扩增和琼脂糖凝胶电泳,以纯化回收的DNA扩增片段作为实时荧光定量PCR检测AOB数量的DNA标准品,建立了检测AOB数量的实时荧光定量PCR标准曲线。利用实时荧光定量PCR技术比较了A2/O系统在不同运行条件及亚硝酸盐积累率情况下AOB菌群数量。结果表明,随着系统亚硝酸盐积累率的上升,系统内AOB菌群数量也大幅上升。全程硝化和短程硝化时,系统内的AOB菌群数量分别为5.28×109cells/g MLVSS和3.95×1010cells/g MLVSS。此外,亚硝酸盐积累率的下降相对于AOB菌群数量的下降有一定的滞后性。  相似文献   

13.
Anammox enrichment from different conventional sludges   总被引:23,自引:0,他引:23  
Chamchoi N  Nitisoravut S 《Chemosphere》2007,66(11):2225-2232
Three sets of sequencing batch reactor (SBR) were used for Anammox enrichment from conventional sludges including upflow anaerobic sludge blanket, activated sludge, and anaerobic digestion sludge. After four months of operation, the Anammox activity occurred in all reactors allowing continuous removal of ammonium and nitrite. The morphology of the cultivated Anammox sludge was observed using scanning electron microscope. The photographs showed that the obtained culture was mostly spherical in shape, presumably Anammox culture. There were also filamentous-like bacteria co-existing in the system. Fluorescence in situ hybridization (FISH) analysis using 16S rRNA targeting oligonucleotide probes PLA46 and Amx820 showed that the dominant population developed in all SBRs was hybridized with both PLA46 and Amx820 gene probes. It means that the cultivated biomass in all SBRs was classified in the group of Planctomycetales bacteria with respect to the anaerobic ammonium-oxidizing bacteria, Candidatus Brocadia anammoxidans and Candidatus Kuenenia stuttgartiensis. Numerous time sequences were tested in this experiment. The shortest workable reaction time was found in the range from 5 to 7 h. Good quiescence of sludge was obtained at 30 min of settle period followed by a discharge period of 15 min. A long-term performance showed a near perfect removal of nitrite based on the influent NO2(-)-N concentration of 50-70 mg l(-1). The maximum ammonia removal efficiency was 80% with the influent NH4(+)-N concentration of 40-60 mg l(-1). It is, therefore, concluded that Anammox cultivation from conventional sludges was highly possible under control environment within four months.  相似文献   

14.
利用序批式活性污泥反应器(SBR)研究NaCl盐度对耐盐脱氮污泥硝化功能的影响,在此基础上考察瞬时盐度冲击对氨氧化细菌(AOB)、亚硝酸氮氧化细菌(NOB)的抑制及恢复情况。实验结果表明,当废水中NaCl浓度为0~50g/L时,AOB几乎没有影响,NOB影响较小。当NaCl浓度为60 g/L时,AOB影响较小,NOB受到一定程度的抑制。当NaCl浓度为70 g/L时,AOB、NOB均受到严重的抑制;耐盐脱氮污泥能够适应NaCl浓度50 g/L的瞬时冲击,盐度降低有利于AOB、NOB的恢复。当耐盐脱氮污泥受到NaCl浓度60 g/L的瞬时冲击时,系统发生"中毒"现象,盐度降低至0 g/L时,AOB、NOB均有不同程度恢复。  相似文献   

15.
有机负荷对膜-生物反应器硝化性能的影响   总被引:1,自引:0,他引:1  
采用厌氧动态膜-生物反应器(AnDMBR)组合自养膜-生物反应器(MBR)工艺,研究冬季低温条件下系统的硝化效果以及TP的去除效果,并与单级MBR工艺进行对比。结果表明:(1)AnDMBR对COD的去除率基本保持在50%~60%,AnDMBR组合自养MBR工艺对COD的去除率为80%~85%;单级MBR工艺对COD的去除率为80%左右。(2)总体上,AnDMBR组合自养MBR工艺对NH4+-N的去除率大于95%;单级MBR对NH4+-N的去除效果比AnDMBR组合自养MBR工艺差。(3)AnDMBR组合自养MBR工艺中,出水NO2--N与NO3--N均有积累;单级MBR工艺中,出水NO2--N积累不明显。(4)相对于亚硝酸盐氧化菌(NOB),氨氧化菌(AOB)对有机负荷更敏感,当有机负荷高时,AOB更易受到异养菌活动的抑制;当有机负荷降低、异养菌活性减弱时,AOB活性明显增强,系统的硝化效果得到明显改善。(5)AnDMBR组合自养MBR工艺对TP的去除率高于80%,单级MBR工艺稳定后对TP的去除率仅为20%~30%。(6)从呼吸速率和硝化速率可知,自养MBR的硝化效果优于单级MBR。  相似文献   

16.
This study investigated the nitrifying community structure in a single-stage submerged attached-growth bioreactor (SAGB) that successfully achieved stable nitrogen removal over nitrite of a high-strength ammonia wastewater. The reactor was operated with intermittent aeration and external carbon addition (methanol). With influent ammonia and total Kjeldahl nitrogen ranging from 537 to 968 mg/L and 643 to 1510 mg/L, respectively, 85% nitrogen removal was obtained, and effluent was dominated by nitrite (NO2-/NOx > 0.95). Nitrifying community analysis using fluorescence in situ hybridization (FISH), with a hierarchical set of probes targeting known ammonia-oxidizing bacteria (AOB) within beta-proteobacteria, showed that the AOB community of the biofilter consists almost entirely of members of the Nitrosomonas europaea/eutropha and the Nitrosococcus mobilis lineages. Image analysis of FISH pictures was used to quantify the identified AOB, and it was estimated that Nitrosomonas europaea/eutropha-like AOB accounted for 4.3% of the total volume of the biofilm, while Nitrosococcus mobilis-like AOB made up 1.2%; these numbers summed up to a total AOB fraction of 5.5% of the total volume on the biofilm. Nitrite-oxidizing bacteria (NOB) were not detectable in the biofilm samples with probes for either Nitrospira sp. or Nitrobacter sp., which indicated that NOB were either absent from the biofilters or present in numbers below the detection limit of FISH (< 0.1% of the total biofilm). Nitrite oxidizers were likely outcompeted from the system because of the free ammonia inhibition and the possibility that the aeration period (from intermittent aeration) was not sufficiently long for the NOB to be released from the competition for oxygen with heterotrophs and AOB. The nitrogen removal via nitrite in a SAGB reactor described in this study is applicable for high-ammonia-strength wastewater treatment, such as centrate or industrial wastes.  相似文献   

17.
Nitritation (ammonium to nitrite) as a pre-treatment of Anammox (anaerobic ammonium oxidation) is a key step for an energy-efficient nitrogen-removal alternative from dilute wastewaters, e.g. anaerobically-treated sewage, with which limited study has achieved sustainable nitritation at ambient temperature and short hydraulic retention times. To this end, pH-gradient real-time aeration control in an oxygen-based membrane biofilm reactor was observed at 20 °C in the sequencing batch mode. An optimum oxygen supply via diffusion for ammonium-oxidizing bacteria (AOB) was established, but nitrite-oxidizing bacteria (NOB) could be inhibited. The system achieved nitrite accumulation efficiencies varying from 88% to 94% with the aeration control. Mass balance and rate performance analyses indicate that this aeration control is able to supply an oxygen rate of 1.5 mol O2 mol?1 ammonium fed, the benchmark oxygenation rate based on stoichiometry for nitritation community selection. Microbial analyses confirmed AOB prevalence with NOB inhibition under this aeration control.  相似文献   

18.
厌氧氨氧化菌接种污泥的选择培养过程研究   总被引:9,自引:2,他引:9  
厌氧氨氧化菌的2种不同接种污泥培养实验表明,厌氧消化污泥和好氧硝化污泥均可成功启动厌氧氨氧化过程.接种厌氧消化污泥比好氧硝化污泥培养的厌氧氨氧化菌启动快,但后者去除效果较好.接种好氧硝化污泥的反应器的厌氧氨氧化速率随着氨氮基质进水浓度的增加呈线性增加.进水氨氮浓度为280 mg/L时的氨氮平均去除率达91%;而接种厌氧消化污泥的相应氨氮平均去除率仅为52%.厌氧氨氧化过程以接种好氧硝化污泥来启动为宜.  相似文献   

19.
Wen Q  Chen Z  Shi H 《Chemosphere》2008,71(9):1683-1692
Steady simultaneous nitrification-denitrification (SND) was achieved in a fluidized bed reactor (FBR) by the control of DO concentration without physical separation of the aerobic and anoxic zones. The performance and composition of nitrifying bacteria were examined in this study. The ammonium removal efficiency was higher than 80% and the DO concentration (1-5 mg l(-1)) had little influence on it. More than 50% total nitrogen (TN) removal efficiency was achieved when DO was less than 3 mg l(-1) and in many cases the removal efficiency varied between 60-70%. The volumetric loading of TN varied between 0.12 and 0.20 kg Nm(-3)d(-1). 16S rRNA-based terminal restriction fragment length polymorphism analysis was used to characterize the diversity and distribution of the ammonia oxidizing bacteria (AOB) and nitrite-oxidizing bacteria (NOB) in the FBR. The results indicated that, the composition and number of both AOB and NOB changed with position in the reactor and operating time. Nitrosomonas sp. was found to be dominant species of the AOB community, and Nitrobacter sp. also existed in the system. The SND mechanism in the FBR was proved to be the vertical stratification of active populations; however, the presence of microenvironments within the biofilm cannot be ruled out.  相似文献   

20.
亚硝酸盐对反硝化聚磷菌除磷性能的影响   总被引:3,自引:1,他引:2  
为考察亚硝酸盐对反硝化聚磷菌(DPB)的影响,试验以模拟污水为研究对象,采用2个相同的SBR反应器,分别进行亚硝酸盐浓度对DPB的抑制影响和亚硝酸盐对DPB驯化过程的研究。结果表明,当亚硝酸盐浓度高于20 mg/L时,未经亚硝酸盐驯化的DPB反硝化除磷性能受到明显抑制,而经过亚硝酸盐驯化后的DPB在亚硝酸盐浓度为32 mg/L左右时,依然保持良好的反硝化吸磷性能,但以亚硝酸盐为电子受体的反硝化吸磷速率要比硝酸盐为电子受体的低21%。由此说明,亚硝酸盐对DPB反硝化除磷的抑制作用是相对的,可通过亚硝酸盐对DPB的诱导驯化来降低此抑制作用,但硝酸盐比亚硝酸盐更适合作为DPB反硝化除磷的电子受体。  相似文献   

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