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1.
污水短程脱氮工艺中亚硝酸盐积累的影响因素   总被引:4,自引:2,他引:4       下载免费PDF全文
采用主要由厌氧-好氧-缺氧构成的短程脱氮工艺,进行了常温条件下处理生活污水的实验.分析了DO、游离氨(FA)等因素对亚硝酸盐积累的影响.结果表明,DO是影响短程硝化的主要因素,控制好氧1区的DO在1.5~2.5mg/L、好氧2区的DO在0.5~1.0mg/L,可以实现稳定的亚硝酸盐的积累,氨氮去除率达到90%.对氨氧化菌(AOB)进行T-RFLP群落分析表明,该工艺运行中的AOB优势菌种为Nitrosomonas oligotropha culster.  相似文献   

2.
不同曝气量对SBBR短程硝化微生物特性及氮转化的影响   总被引:2,自引:1,他引:2  
在实验室规模的序批式生物膜反应器(SBBR)中研究了不同曝气量(7.2、12.0、15.6L·h-1,对应反应器中平均溶解氧浓度分别为0.5、0.8、1.2mg·L-1)下生物膜的生物特性变化及短程硝化过程规律.结果表明:减小曝气量使反应器内溶解氧浓度降低,将导致生物膜的总生物量下降,生物膜中氨氧化菌逐渐成为优势菌,无论数量还是生物活性均高于亚硝酸氧化菌,利于亚硝酸盐积累;在一个反应周期中,生物膜对溶解氧需求的分配是不同的,曝气初期溶解氧主要用于异氧菌对COD的降解,其后用于氨氮转化.根据上述规律,提出在短程硝化过程中采用"梯级递减式曝气"供氧新策略,即在反应初期保持一种较大的曝气量,提高反应器溶解氧浓度,促进COD快速降解,随后保持一种小曝气量使反应器中溶解氧维持较低的浓度,从而促进亚硝酸盐积累及优化供氧效率.  相似文献   

3.
A novel treating technology for nitrogen removal from soybean wastewater was studied. The process for nitrogen removal was achieved by alternating aeration and mixing, combined with real-time control strategies.Results showed that the COD and total nitrogen removal rates are more than 90% and 92% at COD and total nitrogen loads of 1.0- 1.2 kg COD/(kgMLSS. d) and 0.20- 0.27 kg TN/(kgMLSS. d), respectively. In addition, it could improve sludge settling property. SVl value is less than 70 g/ml during the whole cycles. The method not only may be adapted to treat soybean wastewater with high nitrogen, but also may be applied to treat other high nitrogen wastewater.  相似文献   

4.
曝气生物滤池中的亚硝酸盐积累及其影响因子   总被引:34,自引:4,他引:34  
马军  邱立平 《环境科学》2003,24(1):84-90
通过模型试验研究了曝气生物滤池脱氮过程中的亚硝酸盐积累现象,考察了运行条件对亚硝酸盐积累的影响.试验结果表明,曝气生物滤池在滤速1~2m/h、气水比3:1、水温20.5℃~26.5℃、进水氨氮负荷0.26~0.62kg/(m3·d)、总氮负荷0.28~0.63kg/(m33·d)和0.18~0.42kg/(m3·d)反应器内反应液和处理水连续监测结果、反应器内含氮化合物空间分布分析以及微生物数量及活性测定结果表明,反应器中出现了明显的亚硝酸盐积累现象,表现出显著的短程硝化反硝化特征.初步分析探讨了亚硝酸盐积累的形成机理和运行条件对亚硝酸盐积累的影响,认为反冲洗过程是最主要的影响因素,而曝气生物滤池的结构特征和运行方式是其能够出现亚硝酸盐积累,并进行短程硝化反硝化脱氮的主要原因.  相似文献   

5.
An UASB+Anoxic/Oxic (A/O) system was introduced to treat a mature landfill leachate with low carbon-to-nitrogen ratio and high ammonia concentration. To make the best use of the biodegradable COD in the leaehate, the denitrifieation of NOx^--N in the reeireulation effluent from the elarifier was carried out in the UASB. The results showed that most biodegradable organic matters were removed by the denitrifieation in the UASB. The NH4^+-N loading rate (ALR) of A/O reactor and operational temperature was 0.28- 0.60 kg NH4^+-N/(m^3-d) and 17-29℃ during experimental period, respectively. The short-cut nitrification with nitrite accumulation efficiency of 90%-99% was stabilized during the whole experiment. The NH4^+-N removal efficiency varied between 90% and 100%. When ALR was less than 0.45 kg NH4^+-N/(m^3.d), the NH4^+-N removal efficiency was more than 98%. With the influent NH4^+-N of 1200-1800 mg/L, the effluent NH4^+-N was less than 15 mg/L. The shortcut nitrification and denitrifieation can save 40% carbon source, with a highly efficient denitrifieation taking place in the UASB. When the ratio of the feed COD to feed NH4^+-N was only 2-3, the total inorganic nitrogen (TIN) removal efficiency attained 67%-80%. Besides, the sludge samples from A/O reactor were analyzed using FISH. The FISH analysis revealed that ammonia oxidation bacteria (AOB) accounted for 4% of the total eubaeterial population, whereas nitrite oxidation bacteria (NOB) accounted only for 0.2% of the total eubaeterial population.  相似文献   

6.
A membrane aerated biofilm reactor is a promising technology for wastewater treatment. In this study, a carbon-membrane aerated biofilm reactor (CMABR) has been developed, to remove carbon organics and nitrogen simultaneously from one reactor. The results showed that CMABR has a high chemical oxygen demand (COD) and nitrogen removal efficiency, as it is operated with a hydraulic retention time (HRT) of 20 h, and it also showed a perfect performance, even if the HRT was shortened to 12 h. In this period, the removal efficiencies of COD, ammonia nitrogen (NH4^+-N), and total nitrogen (TN) reached 86%, 94%, and 84%, respectively. However, the removal efficiencies of NH4^+-N and TN declined rapidly as the HRT was shortened to 8 h. This is because of the excessive growth of biomass on the nonwoven fiber and very high organic loading rate. The fluorescence in situ hybridization (FISH) analysis indicated that the ammonia oxidizing bacteria (AOB) were mainly distributed in the inner layer of the biofilm. The coexistence of AOB and eubacteria in one biofilm can enhance the simultaneous removal of COD and nitrogen.  相似文献   

7.
在2个相同的USB反应器(R1无载体,R2采用多孔生物填料为载体)中构建了短程反硝化工艺,对R1和R2NO3--N→NO2--N转化性能、短程反硝化颗粒污泥物化特性、胞外聚合物(EPS)产生特性以及微生物功能菌群主要特征进行差异分析.结果表明,反应器运行81d,氮负荷(NLR)为1.2kg/(m3·d)时,NO3--N→NO2--N转化率(NTR) R2(85%)高于R1(80%);载体颗粒污泥(R2)沉降性能优于自固定化颗粒污泥(R1)且载体颗粒污泥(R2)更容易截留EPS,PN/PS值R1(1.29)>R2(1.15),污泥体积指数(SVI) R1(27.07mL/g MLSS)>R2(19.36mL/g MLSS);扫描电镜发现R1污泥表面聚集长杆菌,R2污泥表面聚集短杆菌和球菌,与R1相比R2颗粒污泥结构更加规则密实.微生物高通量测序结果表明,R2物种丰富度和多样性高于R1,变形菌门、拟杆菌门和绿弯菌门在短程反硝化系统中占主导地位,R1和R2主要NO2--N积累功能菌属均为Acinetobacter属(R1-59.18%、R2-46.04%)和Thauera属(R1-6.81%、R2-5.99%).  相似文献   

8.
高负荷是升流式(Up-flow Anaerobic Sludge Bed, UASB)、内循环厌氧反应器(internal circulation, IC)和厌氧膜生物反应器(anaerobic membrane bioreactor, AnMBR)等厌氧生物反应器发展的趋势,也是实现"沼气升级(biogas upgrading)"的难点.挥发性有机酸(volatile fatty acids, VFAs)和溶解性无机碳(total inorganic carbon, TIC)既是厌氧消化必经的中间产物,又与氨氮等弱碱共同影响高负荷厌氧消化过程的pH变化,并决定着沼气中的甲烷含量.VFAs、TIC和氨氮构成的三元pH酸碱缓冲体系是高负荷厌氧消化"沼气升级"的关键操作条件.本文总结了高负荷厌氧消化过程中pH变化规律和影响,针对不同VFAs/氨氮关系的形成机制,分析了高负荷厌氧消化碳酸盐缓冲体系特征及其对沼气CH_4/CO_2构成的影响.以厌氧膜生物反应器为例,讨论了近年来基于pH在线监测和调控方法、理论模型方面的研究进展,同时对未来的重点研究方向提出展望,以期为今后的高负荷AnMBR研发提供参考.  相似文献   

9.
The influence of a Reactive Brilliant Red X-3B (RBR X-3B) dye on the peroxidase isoenzyme of Phanerochaete chrysosporium was determined, and the biofilm structure in a white rot fungal continuous membrane bioreactor (MBR) was also investigated by scanning electron microscope (SEM). The variation of peroxidase isoenzyme and the decolorization rate in the continuous MBR were evaluated. The results showed that the 100 mg/L RBR X-3B could stimulate the production of the peroxidase isoenzyme in the shaking-flask culture. In addition, two new peroxidase isoenzyme bands with relative mobility (Rf) value of 0.27 and 0.28 appeared, but the activity was lower than the blank control of 11 d. In the continuous MBR, the system worked stably during the first 60 d, the main peroxidase isoenzyme bands existed and three new bands with Rf value of 0.10, 0.27, and 0.28 appeared. Meanwhile, the biofilm grew well and the average decolorization rate could reach 90.6%. But the bands of peroxidase isoenzyme decreased rapidly at day 65, only two bands with Rf value 0.24 and 0.26 existed, and the decolorization rate decreased to 78.3%. Therefore, 5 bottles of P. chrysosporium mycelial pellet were added into the MBR, and then the activity of the peroxidase isoenzyme and the decolorization rate had a slight recovery. Finally, the decolorization rate finally decreased to 75.2%. These results contribute to a comprehensive understanding of the variation of peroxidase isoenzyme and biofilm in continuous MBR by white rot fungi.  相似文献   

10.
A lab-scale sequencing batch reactor (SBR) was setup and the aerobic granular sludge was successfully incubated by using anaerobic granular sludge as seed sludge. Nitrogen was partially removed by simultaneous nitrification and denitrification (SND) via nitrite with free ammonia (FA) of about 10 mg/L. The denaturing gradient gel electrophoresis (DGGE) method was used to investigate community structure of α-Proteobacteria, β-Proteobacteria, ammonia oxidizing bacteria (AOB), and Nitrospira populations during start-up. The population sizes of bacteria, AOB and Nitrospira were examined using real-time PCR method. The analysis of community structure and Shannon index showed that stable structure of AOB population was obtained at the day 35, while the communities of α-Proteobacteria, β-Proteobacteria, and Nitrospira became stable after day 45. At stable stage, the average cell densities were 1.1×1012, 2.2×1010 and 1.0×1010 cells/L for bacteria, AOB and Nitrospira, respectively. The relationship between characteristics of nitrifying bacteria community and nitrogenous substrate utilization constant was discussed by calculating Pearson correlation. Certain correlation seemed to exist between population size, biodiversity, and degradation constant. And the influence of population size might be greater than that of biodiversity.  相似文献   

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