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11.
曝气生物滤池是一种新型的水处理技术。选择海绵块作为曝气生物滤池的填料,研究了此种海棉块在曝气生物滤池内的挂膜效果.讨论了不同的水力停留时间对曝气生物滤池处理生活污水效果的影响。结果表明,水力停留时间对处理效能有较明显的影响.缩短水力停留时间使反应器对COD、氨氮和悬浮物的去除率下降。  相似文献   
12.
Biofilm formation was enhanced by exogenous AHLs. ● EPS production and microbial adhesive strength of biofilm were promoted. ● Exogenous AHLs improved the performance of biofilters treating toluene. Biofilters are typical biofilm reactors, and they usually have poor biofilm formation resulting in limited reactor performance. Exogenous acylated homoserine lactones (AHLs) can enhance biofilm formation in many bioreactors based on quorum sensing regulation. However, their effect on biofilm in biofilters utilized for volatile organic compound (VOC) removal is unknown and needs to be investigated. In this study, the effects of the exogenous AHLs on biofilters for gaseous toluene removal were investigated. Analysis of biofilms in biofilters showed that the addition of exogenous AHLs considerably enhanced biofilm growth; the average biofilm concentration increased by 18%. Furthermore, the average biofilm coverage proportions in biofilters with and without exogenous AHLs were 17 % and 13 %, respectively, demonstrating the positive effect of exogenous AHLs on biofilm coverage. In particular, exogenous AHLs promoted the production of extracellular polymeric substances and the microbial adhesive strength of the biofilm. In addition, the exogenous AHLs showed no significant effect on the gaseous toluene removal efficiency of the biofilter. These results show that exogenous AHLs can enhance biofilm formation and can guide the application of exogenous AHLs in VOC biofilters.  相似文献   
13.
生物膜净化含苯废气的性能研究   总被引:3,自引:1,他引:3  
在生物法净化废气装置中生物膜是设备的主体和关键.研究以净化含苯废气的生物滴滤塔为对象,采用静态反应器对塔内生物膜的净化性能进行研究,探索其过程机理,为生物滴滤器的优化提供技术支持.结果表明,在生物滴滤器中单位体积生物膜的呼吸速率和苯去除速率都沿气流方向逐渐减小,但单位质量生物膜的苯去除速率却是塔中部高两边低.研究发现,当生物膜经过3d的闲置后,苯的消除能力提高了70%左右,但闲置时间超过5d后,生物净化性能开始下降.综合实验结果,推测在生物膜中同时存在苯的生物降解过程和生物储备能源的合成过程,在苯浓度越高的地方储备能源的量也越多,储备能源的存在降低了生物膜的净化能力但增强了生物膜的稳定性.  相似文献   
14.
To study the effect of flow velocity on drinking water distribution systems, bulk water quality was monitored over 28 days, biomass was measured, and 16S rDNA was sequenced on the 28th day using a water distribution simulation system. The relationship between bulk water quality and biofilm was statistically analyzed. Flow velocity of 0.5 m/s yielded the most total organic carbon (TOC) (5.26 ± 0.17 mg/L) in the bulk water, the most bulk water bacteria (lg (n+1/mL-1) = 4.79 ± 0.02), the worst bulk water quality, and the most biofilm bacteria (lg (n+1/cm-2) = 5.48 ± 0.06). A Pearson correlation analysis showed the total number of biofilm bacteria was positively correlated with conductivity (R = 0.73, P < 0.01), turbidity (R = 0.87, P < 0.001), TOC (R = 0.94, P < 0.001), and total bacteria (R = 0.92, P < 0.001), and was negatively correlated with residual chlorine (R = -0.68, P < 0.05). Biofilm diversity was high under the low (0.1 m/s) and high (2.5 m/s) flow rates, but the bacterial diversity of biofilm was the lowest at the 0.5 m/s flow rate, in which Proteobacteria dominated the biofilm community structure. These results suggest that flow velocity affects bulk water quality and biofilm population structure, and water quality and biofilm population structure are interrelated, which provides the theoretical basis for research on biofilms in drinking water distribution systems. © 2018 Science Press. All rights reserved.  相似文献   
15.
Aerobic granule is a special microbial aggregate associated with biofilm structure. The formation of aerobic granular sludge is primarily depending on its bacterial community and relevant microbiological properties. In this experiment, a strain with high microbial attachment was isolated from aerobic granular sludge, and the detailed characteristics were examined. Its high attachment ability could reach 2.34 (OD600nm), while other low attachment values were only around 0.06-0.32, which indicated a big variation among the different bacteria. The strain exhibited a very special morphology with many fibric fingers under SEM observation. A distinctive behaviour was to form a spherical particle by themselves, which would be very beneficial for the formation and development of granular sludge. The EPS measurement showed that its PN content was higher than low attachment bacteria, and 3D-EEM confirmed that there were some different components. Based on the 16S rRNA analysis, it was identified to mostly belong to Stenotrophomonas. Its augmentation to particle sludge cultivation demonstrated that the strain could significantly promote the formation of aerobic granule. Conclusively, it was strongly suggested that it might be used as a good and potential model strain or chassis organism for the aerobic granular sludge formation and development.  相似文献   
16.
• Quorum sensing enhancement and inhibition methods are summarized. • Effects of quorum sensing regulation on biofilm are reviewed. • Current knowledge gaps and research challenges are proposed. Quorum sensing (QS) plays an important role in microbial aggregation control. Recently, the optimization of biological waste treatment systems by QS regulation gained an increasing attention. The effects of QS regulation on treatment performances and biofilm were frequently investigated. To understand the state of art of QS regulation, this review summarizes the methods of QS enhancement and QS inhibition in biological waste treatment systems. Typical QS enhancement methods include adding exogenous QS molecules, adding QS accelerants and cultivating QS bacteria, while typical QS inhibition methods include additions of quorum quenching (QQ) bacteria, QS-degrading enzymes, QS-degrading oxidants, and QS inhibitors. The specific improvements after applying these QS regulation methods in different treatment systems are concluded. In addition, the effects of QS regulation methods on biofilm in biological waste treatment systems are reviewed in terms of biofilm formation, extracellular polymeric substances production, microbial viability, and microbial community. In the end, the knowledge gaps in current researches are analyzed, and the requirements for future study are suggested.  相似文献   
17.
• A Passive Aeration Ditch was developed to treat decentralized wastewater. • A model was developed to describe the process performance. • A high C/N ratio facilitates microbial growth but nitrification deteriorates. • A high salinity decreases both organic and nitrogen contaminants removal. Decentralized wastewater containing elevated salinity is an emerging threat to the local environment and sanitation in remote coastal communities. Regarding the cost and treatment efficiencies, we propose a passive aeration ditch (PAD) using non-woven polyester fabric as a feasible bubbleless aerator and biofilm carrier for wastewater treatment. Consideration has been first given to PAD’s efficacy in treating saline decentralized wastewater, and then to the impact of chemical oxygen demand-to-nitrogen (C/N) ratio and salinity on biofilm formation. A multispecies model incorporating the salinity effect has been developed to depict the system performance and predict the microbial community. Results showed that the PAD system had great capacity for pollutants removal. The biofilm thickness increased at a higher C/N ratio because of the boost of aerobic heterotrophs and denitrifying bacteria, which consequently improved the COD and total nitrogen removal. However, this led to the deterioration of ammonia removal. Moreover, while a higher salinity benefited the biofilm growth, the contaminant removal efficiencies decreased because the salinity inhibited the activity of aerobic heterotrophs and reduced the abundance of nitrifying bacteria inside the biofilm. Based on the model simulation, feed water with salinity below 2% and C/N ratio in a range of 1 to 3 forms a biofilm that can reach relatively high organic matter and ammonia removal. These findings not only show the feasibility of PAD in treatment of saline decentralized wastewater, but also offer a systematic strategy to predict and optimize the process performance.  相似文献   
18.
复合式生物膜反应器中生物膜的特性   总被引:11,自引:0,他引:11  
传统的活性污泥工艺中加入废弃轮胎颗粒作为生物膜载体形成的复合式生物膜反应器。在颗粒浓度为40g/L时,稳定运行条件下在轮胎颗粒表面可形成约50mg/g的生物膜量,即在传统曝气池的2000-3000mg/L悬浮生长污泥的基础上,可增加2000mg/L的附着生物膜量。  相似文献   
19.
有机碳源和溶解氧对亚硝酸盐生物硝化的影响研究   总被引:2,自引:0,他引:2  
从城市污水处理厂的活性污泥中纯化分离到高活性硝化菌株N-20(Nitrobacter sp.),在一种新型材料Carbon Foam的表面挂膜;通过对菌株N-20进行摇瓶试验,选择添加有机碳源的种类,将其在pH7.5~8.0、温度28℃的条件下,分别以NaNO2和K2HPO4为氮源和磷源,通过生物滤塔中的液相连续试验,考察在不同DO的条件下有机碳源对硝化作用的影响规律。结果表明,以葡萄糖作为有机碳源,DO≥2mg/L,葡萄糖低于20mg/L时,生物滤塔内可进行正常硝化,NO2^--N的硝化去除率维持在90%左右,随着葡萄糖浓度的增加,硝化去除率下降到70%;DO≤2mg/L,葡萄糖对硝化作用的抑制增强,当葡萄糖为200mg/L时,生物滤塔中NO^2-—N的硝化去除率仅为32%。  相似文献   
20.
基于微电极的生物膜分析技术的研究进展   总被引:5,自引:0,他引:5  
文章介绍了一类尖端直径为1μm~20μm的吸管型电化学传感器-微电极.由于其具有的较高空间分辨率,可用于废水生物处理反应器中生物膜及生物絮体内部等微环境的测试.综述了近年来微电极在生物膜微环境测试中的应用成果,并与一些其他的生物膜分析技术进行比较.探讨了微电极技术用于环境工程领域的发展前景和趋势.  相似文献   
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