首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到18条相似文献,搜索用时 515 毫秒
1.
污泥回流分离工艺(RSSP)除磷脱氮试验研究   总被引:1,自引:1,他引:0  
介绍了一种新型的脱氮除磷工艺——回流污泥分离工艺(return sludge separate process),及其运行情况。该工艺在传统的厌氧缺氧好氧(A2/O)的模式下,针对硝酸盐对厌氧释磷的抑制问题进行改进,提出回流污泥的气浮浓缩分离方案,以提高系统的脱氮除磷效果。研究结果表明,在进水COD为250~400 mg/L,NH+4-N为30~45 mg/L,PO3-4-P为8~10 mg/L左右时,该工艺对NH+4-N和PO3-4-P的去除率分别可达79.3%和95%。该系统与A2/O的平行比较数据表明,该系统能够提高氮磷综合处理效率,解决A2/O处理工艺中存在无效释磷和硝酸根抑制问题。  相似文献   

2.
A/O和A2/O工艺对膜生物反应器处理焦化废水影响的研究   总被引:3,自引:1,他引:2  
为提高膜生物反应器对焦化废水的处理效果,采用A/O和A2/O两种工艺的膜生物反应器处理焦化废水,通过对比处理效果、分析膜污染情况,寻求膜生物反应处理焦化废水的最优工艺。实验结果表明:A2/O工艺系统对酚、NH3-N、COD的去除率分别为99%、90%和95%;A/O工艺系统对酚、NH3-N和COD的去除率分别为97%、75%和93%。A2/O膜生物反应器系统对焦化废水中NH3-N的去除效果明显优于A/O膜生物反应器系统,其反硝化率为50%~70%。对膜污染分析表明不同工艺对膜污染的影响不显著,A2/O工艺膜通量衰减59%,A/O工艺膜通量衰减56%。研究表明在膜生物反应器中,A2/O工艺对焦化废水的去除效果要优于A/O工艺。  相似文献   

3.
为开发新型除磷脱氮工艺,研制了将MBR和A2/O工艺相结合的新型MB(A2/O)反应器。研究了MB(A2/O)反应器处理城市污水厌氧富磷上清液的化学除磷,并分析了过程机理及特性。结果表明:对于TP在30~45 mg/L的富磷上清液,采用含20% Ca(OH)2的工业石灰与P的最佳投加质量比为22.5;纯Ca(OH)2与P的最佳投加质量比为5.6(摩尔比为2.5);FeSO4·7H2O与P的最佳投加质量比为10.7(Fe2+与P的摩尔比为1.3);Al2(SO4)3·12H2O与P的最佳投加质量比为12(Al3+与P的摩尔比为1.3)时,均可使出水TP稳定在0.3 mg/L以下;以石灰、NaOH的联合投加方式可大幅减少石灰投加量。  相似文献   

4.
改良型A2/O-MBR工艺的反硝化除磷性能研究   总被引:2,自引:0,他引:2  
重点考察了一种改良型膜生物反应器(A2/O-MBR)的脱氮除磷性能。该工艺主要特点在于对膜池硝化回流液进行了固液分离,并将上清液和浓缩污泥分别回流至缺氧池和厌氧池,这种改进提高了系统对氮、磷的同步去除效率。实验结果表明,在水力停留时间(HRT)为12 h,污泥龄(SRT)为30 d,混合液回流比为200%的运行条件下,进水COD、NH4+-N、TN和TP平均浓度分别为(225±38)、(24.8±3.9)、(26.7±2.9)和(2.90±0.53)mg/L时,增加膜池硝化回流液固液分离装置前后,系统对COD和NH4+-N的去除都维持在较高水平,而系统对TN和TP的去除效果显著提高,出水TN和TP平均浓度分别由(14.9±3.3)mg/L和(1.95±0.72)mg/L下降到(9.4± 1.9)mg/L和(0.91±0.38)mg/L,表明增加膜池硝化回流液固液分离装置显著改善了A2/O-MBR系统的脱氮除磷效果。反硝化除磷活性实验结果进一步表明,改进后系统中反硝化除磷活性占总除磷活性的比例由51.5%上升至61.7%,说明增加膜池硝化回流液固液分离装置强化了系统的反硝化除磷性能。  相似文献   

5.
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   

6.
在上流式污泥床反应器(USB)内,接种好氧活性污泥,以甲醇为碳源,NO-3为电子受体,经过40多d培养,得到良好的反硝化颗粒污泥,粒径2~3 mm,MLSS为36 g/L,氮去除速率和COD去除速率分别在0.15 g NO3-N/(g VSS·d)和0.8 g COD/(g VSS·d)。当负荷提高至6.44 g NO3-N/(L·d)继续运行1周后,观察到反应器内颗粒污泥出现上浮,浓度降低,颗粒粒径多数在3~5 mm,外观呈乳白色。为恢复反应器稳定运行,当负荷降至3.86 g NO3-N/(L·d)时,上浮现象减轻,当负荷降至2.57 g NO3-N/(L·d)时,上浮现象消失,颗粒污泥密度由不稳定时的1.0018 g/cm3提高到1.0126 g/cm3,颗粒粘连现象基本消失,污泥氮去除速率在0.19 g NO3-N/(g VSS·d),连续运行30 d,系统保持稳定。分析认为,颗粒污泥表面微生物生长速度过快是导致不稳定的主要因素,较长的泥龄有利于系统稳定。  相似文献   

7.
利用亚硝酸盐为电子受体反硝化聚磷菌的筛选与富集   总被引:1,自引:0,他引:1  
依据DPB原理,利用SBR动态反应器和静态释/聚磷装置.以A2/O工艺厌氧段污泥为种泥,研究以亚硝酸盐为电子受体反硝化聚磷菌的筛选与富集,同时对选择、富集污泥的反硝化聚磷性能进行了考察.结果表明:利用亚硝酸盐为电子受体的反硝化聚磷菌存在于A2/O厌氧段污泥中,通过厌氧/好氧和厌氧/缺氧方式运行后,聚磷菌总数由1400个/mL增加到32 000个/mL,其中反硝化聚磷菌占聚磷菌总数的比例也由14.5%提高到81%,磷酸盐和亚硝酸盐去除率分别由最初的8.65%和7.55%上升到91%和95.62%;筛选与富集利用亚硝酸盐为电子受体的反硝化聚磷菌时,缺氧段进水COD的浓度须控制在10 mg/L以下;当体系处于稳定状态,且亚硝酸盐氮浓度高达30 mg/L时,并未对反硝化聚磷菌的生存产生抑制和体系运行产生干扰,此时磷酸盐出水低至1.06 mg/L.  相似文献   

8.
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   

9.
采用厌氧 缺氧SBR反应器对以硝酸盐作为电子受体的反硝化除磷过程进行了研究。结果表明 ,反硝化聚磷菌完全可以在厌氧 缺氧交替运行条件下得到富集。稳定运行的厌氧 缺氧SBR反应器的反硝化除磷效率 >90 % ,出水磷浓度 <1mg L。进水COD浓度对反硝化除磷的效率影响很大 ,在COD浓度 <180mg L时 ,进水COD浓度越高 ,除磷效率也就越高。较高浓度的进水COD浓度将导致有剩余的COD进入缺氧段 ,对反硝化吸磷构成不利影响。污泥龄为 16d时 ,厌氧 缺氧SBR反应器取得稳定和理想的反硝化除磷效果。污泥龄减少到 8d ,由于反硝化聚磷菌的流失导致反硝化除磷效率的下降。当污泥龄恢复到 16d时 ,经过一段时间的运行 ,反硝化聚磷菌重新得到富集 ,除磷效率恢复到 90 %以上。  相似文献   

10.
针对厌氧氨氧化工艺需要提供充足的亚硝酸盐氮为电子受体的问题,利用培养基对SBR中具有一定短程硝化功能的污泥进行富集培养,得到氨氧化菌和亚硝酸盐氧化菌的数量之比为104︰1,并研究了工艺条件对短程硝化的影响,结果表明,适合氨氧化菌生长的最佳温度为30℃、pH为7.5、nHCO-3/nNH+4-N值为1。以适合氨氧化菌生长的最佳环境条件优化SBR,在进水氨氮浓度为250 mg/L时,氨氮的转化率达到90%以上,亚硝酸盐氮积累率维持在85%以上,反应器中氨氧化菌与亚硝酸盐氧化菌的数量之比为103∶1,亚硝酸盐的高效积累为厌氧氨氧化工艺处理高氨废水的过程提供了稳定的电子受体。  相似文献   

11.
间歇曝气SBR工艺脱氮除磷试验研究   总被引:2,自引:0,他引:2  
采用间歇曝气序批式反应器(SBR)工艺,通过曝气时间、交替次数的调整对该系统的脱氮除磷效果进行了研究,最终将工艺确定为厌氧1.5 h、好氧1.0 h、缺氧1.0 h、好氧20 min、缺氧1.0 h、好氧20 min.同时进行批式试验,对不同阶段的反硝化除磷菌(DPAOs)占除磷菌(PAOs)的比例进行了计算.结果表明:该系统与最初的厌氧/好氧SBR相比节省了44%的曝气量,且对COD、总氮、氨氮和磷的去除率分别达88%、89%、100%和100%,系统中DPAOs所占比例为39%.  相似文献   

12.
A pilot plant anaerobic/anoxic/oxic (A2/O) system fed with domestic wastewater was operated to examine the effect of varying different types of carbon source (acetic acid, propionic acid, and glucose), added as a complement to the wastewater, on the (1) process performance and (2) microbial population. The operational condition that lead to a significant removal of total nitrogen (82%) was achieved with acetic acid. When the complementary carbon source was propionic acid, an improved removal efficiency of orthophosphate (97%) was observed. Because this finding was concurrent with higher polyphosphate-accumulating organism (PAO) population fractions detected using fluorescent in situ hybridization analysis (41.9 +/- 3.0%), it suggests that members of PAO populations that were able to reduce nitrate gained importance over PAO members that could not, thus improving the denitrifying phosphorus removal.  相似文献   

13.
A laboratory-scale continuous-flow system with an anaerobic/anoxic/aerobic configuration was set up to study the effect of oxygen in the internal recycle stream; of particular interest was its performance of denitrifying phosphorus-accumulating organisms (DPAOs). It was found that, by using a degas device, the dissolved oxygen in the nitrate recycle stream was effectively decreased from 0.1 +/- 0.02 to 0.01 +/- 0.01 mg/L. This provided a favorable condition for DPAOs to grow under an anoxic condition and thus be sustained successfully in the system. When the degas device was removed from the system, the dissolved oxygen concentration in the anoxic reactor increased to 0.1 +/- 0.02 mg/L. The proliferation of the denitrifying glycogen-accumulating organisms (DGAOs) population and deterioration of DPAOs performance was observed. The increased population of DGAO/GAOs, which competed for the carbon source with DPAO/ PAOs, resulted in a poor performance of biological phosphorus removal.  相似文献   

14.
Microbial kinetic analysis of three different types of EBNR process   总被引:3,自引:0,他引:3  
Pai TY  Tsai YP  Chou YJ  Chang HY  Leu HG  Ouyang CF 《Chemosphere》2004,55(1):109-118
The disadvantages of developed biological nutrient removal (BNR) processes (additional energy for liquid circulation and addition of external carbon substrate for denitrification in anoxic zones) were improved by reconfiguring the process into (1) an anaerobic zone followed by multiple stages of aerobic-anoxic zones (TNCU3 process) or (2) anaerobic, oxic, anoxic, oxic zones in sequence (TNCU2 process). These two pilot plants were operated at a recycling sludge ratio of 0.5 without internal recycle of nitrified supernatant. The sludge retention time was maintained at 10 d. The main objective of this study is to analyze the kinetics of different microorganisms in these two processes and A2O process by using the Activated Sludge Model No. 2d. The effective removal efficiency of carbon, total phosphorus and total nitrogen at 87-98%, 92-100% and 63-80%, respectively, were achieved in the testing runs. According to model simulations, the microbial kinetics in the TNCU3 and TNCU2 processes would be affected by different operations. When the step feeding strategy was adopted, the HRT was longer due to the less influent flowrate in the front stages and the microbes would grow in quantities by about 6% in the aerobic reactors. In the followed anoxic reactors, the microbes would decrease in quantities by about 12% due to the dilution effect. The dilution effects in TNCU3 and TNCU2 processes did not take place in A2O process because the recycling mixed liquid from the aerobic reactor to the anoxic reactor still contained particulate components. The XH, XPAO, and XAUT concentrations in the effluent of the last tank were lower when the step-feeding mode was adopted. The TNCU3 and TNCU2 processes could be operated efficiently without nitrified liquid circulation and addition of external carbon substrate for denitrification.  相似文献   

15.
Environmental Science and Pollution Research - A new multi-point inflow pre-anoxic/oxic/anaerobic/anoxic/oxic (A1/O2/A3/A4/O5) sludge-membrane coupling process and pilot plant were developed and...  相似文献   

16.
在分析传统A2/O工艺缺陷的基础上,提出了一种改进型A2/O工艺。为了防止回流污泥中的硝酸盐进入厌氧区,在传统A2/O工艺的厌氧区后面增加一个体积较小的缺氧选择池,回流污泥进入缺氧选择池,并进行反硝化消耗回流污泥中的硝酸盐;同时,在缺氧区通过反硝化除磷实现"一碳两用"。结果表明,改进型A2/O工艺有较好的脱氮除磷效果,在COD为298mg/L、TN为55mg/L左右、TP为7mg/L左右时,系统对COD、TN、TP的平均去除率分别为88.44%、77%、95%。  相似文献   

17.
在缺氧/好氧工艺的不同回流比条件下,对处理效果特别是脱氮效果进行了研究。结果表明,混合液和污泥合并回流,当回流比从R=4到R=7时,均能获得良好的脱氮效果,TN去除率达到75.4%以上,出水TN〈10mg/L。而回流比的变化对BOD的去除效果影响较小。当BOD污泥负荷从0.096kg/(kg&#183;d)降低到0.063ks/(kg&#183;d)时,对TN和BOD的去除率影响都很小。  相似文献   

18.
This study investigated the anoxic and aerobic phosphate uptake and release reactions and the fraction of denitrifying phosphate-accumulating organisms (DPAOs) under various initial chemical oxygen demand (COD) and residual COD conditions. The results showed that DPAOs and non-DPAOs could release phosphate when high soluble COD was present. Consequently, the phosphate-uptake potential was dynamic and increased when the initial COD increased, the initial polyhydroxyalkanoates (PHA) increased, and the residual COD decreased. Furthermore, the electron acceptor (oxygen of nitrate) has more significant influence on the phosphate uptake/release characteristics, while the residual COD concentrations have little influence on that. The fraction of DPAOs to phosphate-accumulating organisms was 42% when the initial PHA storage was enough by both DPAOs and non-DPAOs. This was closely related to the relative phosphate uptake (47%) in the anoxic zone of the process.  相似文献   

设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号