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1.
以生活污水为原水,在常温(25~33℃)条件下采用连续流改进A2/O反应器进行脱氮除磷实验研究。系统内COD降解,TN与TP去除主要在活性污泥段完成,而NH4+-N去除基本在生物接触氧化区完成。从中沉池出水硝态氮影响因素分析可知,选用较高的有机负荷有利于实现系统内分相培养。泥龄对实现系统内微生物异养菌和自养菌的分相培养具有关键影响。当泥龄10 d,可实现系统内异养菌与自养菌的分相培养。  相似文献   

2.
循环式活性污泥法(CASS)存在微生物的混合培养、泥龄、硝酸盐等问题,制约系统脱氮除磷效率的进一步提高.双循环两相生物处理(BICT)工艺以CASS工艺为基础,通过单独设立膜法硝化池,使自养菌和异养菌分开培养,解决了微生物混合生长所带来的问题,同时BICT工艺中间歇反应器与连续流反应器的特殊组合方式使污泥在序批式活性污泥法(SBR)各池间转移,可增加系统充水比和提高容积利用率.保证BICT工艺具有良好的氮、磷去除效果.利用BICT工艺对CASS工艺进行工程升级改造,比利用物化法对CASS工艺进行改造所需投资省、运行费用低.在对CASS工艺进行改造时,可以优先考虑BICT工艺.  相似文献   

3.
研究了筛选的自养和异养微生物菌群的脱氮效果后发现 ,异养微生物无论是生长还是对NH+ 4 N及NO-2 N的去除都明显好于自养微生物。通过研究 ,培养出了具备很强脱氮能力包含自养和异养菌的混合微生物 ,在细胞干重浓度为0 .4 8g/L的情况下 ,在实验 3h和 5h后 ,可将初始浓度 10 6mg/L的NH+ 4 N和初始浓度 4 9.9mg/L的NO-2 N全部去除。  相似文献   

4.
含盐量与负荷对好氧颗粒中自养与异养菌的影响   总被引:2,自引:0,他引:2  
研究了含盐量分别为2.5%和5%,有机负荷分别为8 kg COD/(m3·d) 和16 kg COD/(m3·d)条件下好氧颗粒污泥中自养菌和异养菌的成长情况,研究结果如下:(1)系统在高COD负荷条件下抗盐度的冲击能力要强于低负荷条件;(2)从4个反应器对COD的去除效果来看,含盐量对异养菌的影响要低于硝化自养菌;(3)在低负荷情况下,硝化自养菌为优势菌种,在一个周期内产生的NO-3-N要高于高负荷,而在高负荷情况下,异养菌为优势菌种。  相似文献   

5.
海水微生物菌群去除铵氮和亚硝酸氮研究   总被引:7,自引:0,他引:7  
研究了筛选的自养和异养微生物菌群的脱氮效果后发现,异养微生物无论是生长还是对NH4^ -N及NO2-N的去除都明显好于自养微生物。通过研究,培养出了具备很强脱氮能力包含自养和异养菌的混合微生物,在细胞干重浓度为0.48g/L的情况下,在实验3h和5h后,可将初始浓度106mg/L的NH4^ -N和初始浓度49.9mg/L的NO2^--N全部去除。  相似文献   

6.
在污水生物脱氮工艺中,硝化过程是由自养硝化菌和异养硝化菌共同完成的.2类细菌的N2O生成机理及逸出量与系统中溶解氧的高低密切相关.了解硝化系统中的典型菌种自养菌Nitrosomonas europaea和异养菌Alcaligenesfaecalis生成N2O的机理是控制硝化过程中N2O逸出的理论基础,通过筛选优势菌种构建同步硝化-反硝化作用则是控制N2O逸出的新途径.  相似文献   

7.
通过模型实验考察了雨季合流污水水量冲击以及冲击过后恢复初始状态过程中活性污泥的呼吸图谱变化规律。结果表明:雨季冲击下好氧池污泥浓度降幅较自、异养菌呼吸速率大;异养菌呼吸速率降幅较自养菌大。而COD去除率降幅小,NH_4~+-N去除率降幅大,与自养菌、异养菌呼吸速率的降幅不一致。表明异养菌虽受冲击影响较大,但因其所占污泥比例仍较大,COD处理的缓冲能力大;自养菌占污泥比例较小,虽受冲击的影响较小,但对NH_4~+-N处理的缓冲能力较小;另一方面,大雨冲击下自养菌呼吸比例上升10%,异养菌呼吸比例下降6%,表明在冲击过程中污泥中微生物结构有小幅变化。  相似文献   

8.
采用生物滤床处理NO模拟废气,研究了停留时间(EBRT)、有机物浓度等在生物硝化去除NO技术中的作用过程.实验结果表明,EBRT和有机物含量是影响NO硝化去除效率的主要因素,NO去除效果随着有机物含量和EBRT的增大而提高;当进口浓度50 mg/m3,营养液中葡萄糖40 mg/L,EBRT>3 min时,NO去除率达95%以上.比较自养菌和异养菌对NO硝化去除的效果,异养菌的去除效率提高20%~30%,具有广泛应用前景.  相似文献   

9.
将新型智能化曝气控制系统(automatic oxygen supply device,AOSD)应用于A/O工艺中,研究AOSD系统曝气模式控制下的A/O工艺(I-A/O)与持续曝气模式的A/O工艺(C-A/O)对低C/N生活污水处理能力的有效性,并从系统活性污泥特性的角度探究I-A/O系统反硝化菌在脱氮过程中对碳素的摄取、利用途径。结果表明:低进水碳源负荷下,I-A/O与C-A/O系统对COD、NH_4~+-N的平均去除率稳定且均达80%以上;I-A/O系统对TN去除率高出C-A/O系统25.97%,其对TN具有明显的去除优势;2套系统对TP均无去除效果。I-A/O系统活性污泥好氧异养菌产率系数Y_H为0.142 mg·mg~(-1),活性污泥衰减系数K_d为0.018 d~(-1),均低于C-A/O系统;在进水低C/N水平下,I-A/O系统活性污泥可通过更强的吸附贮存碳源能力、较低的好氧异养菌竞争压力、溶胞作用为反硝化菌提供更多的碳源以便脱氮反应。C/N是I-A/O系统曝气总量节省率重要影响因素之一,相比于C-A/O系统,其处理低C/N生活污水可节约曝气系统约52%的曝气量。  相似文献   

10.
以模拟生活污水为研究对象,探讨膜曝气生物反应器在不同的曝气压力下溶解氧的分布特征,并分析了DO的分布对有机物和氮去除率的影响。研究结果表明,不同的曝气压力下,沿曝气膜径向位置DO值逐渐降低呈梯度分布,轴向位置的DO浓度变化随沿程氧分压减小逐渐降低;不同位置的DO分布差异影响反应器内微生物群落的分布情况,进而影响碳氮的去除效果。COD和NH_4~+-N去除主要依靠生物膜内的好氧异养菌,去除率随DO的上升而增大,当反应体系中DO浓度在1.71 mg·L~(-1)以上时,两者的最大去除率分别为84.4%和92.1%;TN的去除率随DO的上升而减小,在低DO的主体料液中,生物膜内侧依然保持高氧低碳环境,在保证硝化反应的同时反硝化作用进行较为充分,去除率可高达76.1%。  相似文献   

11.
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   

12.
一株高效异养硝化-好氧反硝化菌的分离鉴定及脱氮性能   总被引:6,自引:0,他引:6  
从经驯化的污泥中筛选出一株异养硝化-好氧反硝化细菌,编号为TN-05,通过形态学特征观察,生理生化特征试验和核酸序列分析鉴定其为门多萨假单胞菌(pseudomonasmendocina)。同时对其进行脱氮性能研究,结果表明,TN-05具有较好的异养硝化能力,菌株在培养至48h时对总氮和氨氮去除率均能达95%以上。通过反硝化能力验证实验发现,菌株对NO3-N和N0f—N也分别具有较好的去除效率。将菌株应用于人工合成废水中,发现对废水中氨氮优先利用并能在24h时使去除率接近100%,对硝态氮和亚硝态氮也具有一定的去除效率。因此,菌株TN-05是一株同时具备异养硝化和好氧反硝化能力的高效菌株。  相似文献   

13.
污泥龄对LSP & PNR污泥减量新工艺运行效能的影响   总被引:2,自引:1,他引:1  
通过研究分析污泥龄(SRT)对富磷污水除磷的LSP&PNR污泥减量新工艺运行效果的影响,结果发现,延长污泥龄有利于提高系统的厌氧释磷能力,但不影响其总的除磷率,同时磷的回收比例增大,当SRT=50 d时,磷回收率取得最大值70.4%;LSP&PNR系统污泥龄增加,还有利于污泥产率的降低。试验还发现,排富磷污水除磷的长污泥龄LSP&PNR系统的除磷效率与污泥产率之间不存在制约关系,即系统可以同时获得优异的污泥减量与生物除磷效果,当SRT=50 d时,每降解1 kg COD仅产生0.143 kg污泥,而除磷率达最高值928%;LSP&PNR系统中SRT、DO与SVI之间存在一定的相关性,在供氧充足(DO=0.8~1.5 mg/L)条件下,SRT增加,SVI越高,但对于SRT为50 d的LSP&PNR系统,稳定运行时没有污泥膨胀之虞。  相似文献   

14.
Solids retention time (SRT), biological scum trapping and recycle, and the dynamic equilibrium between Nocardioform populations in the foam and the mixed liquor are the controlling factors in activated sludge foaming events caused by Nocardioform bacteria. For the operating modes described in this paper, a cured mixed liquor foaming condition (filament counts of approximately 10(5) intersections/g volatile suspended solids) was only achieved when SRT control, selective wasting, and polymer addition were in effect. Solids retention time control, with the SRT remaining below 1.5 days, and selective wasting will cure a severely foaming mixed liquor, but effects will only be observed after 3 or 4 months after implementation. The combined wastage of Nocardioform bacteria from selective wasting and SRT control can ensure long-term foam control to the operation of a pure-oxygen activated sludge system with foam-trapping features. An SRT of 0.3 days will result in the complete washout of Nocardioform bacteria from the activated sludge system, which can then operate at an SRT of 3 days free of Nocardioform. Polymer addition to mixed liquor is only effective for foam control when a large portion of the system biomass exists as a heavy layer of foam above the mixed liquor.  相似文献   

15.
通过实验考察了SUFR系统中活性污泥的特性及进水COD浓度、SRT和停运对稳定性的影响。结果表明:SUFR系统的污泥颗粒直径多在0.7~0.9 mm之间,属于小颗粒污泥,污泥沉降性能良好;对氮、磷有较好的去除效果。SUFR系统氮的去除对SRT有一定的耐冲击负荷,但受进水COD的影响较大;磷的去除对进水COD和SRT有较好的冲击能力;系统在经过72 h停运后污泥沉降性、脱氮与除磷效果都有较大降低,但基本在1周内就可恢复。  相似文献   

16.
The reduction of organic and nitrogen pollution of wastewater was investigated in two hybrid reactors and compared with the reduction obtained by using a conventional activated sludge reactor (ASR) run as a control. Both HR-1 and HR-2 were activated sludge systems where a low-density carrier, P1 (polyethylene) for HR-1 and P2 (recycled plastics) for HR-2, was added. Firstly, the three reactors were operated at 10 days Suspended Solid Retention Time (SRT(SS)), leading to a complete nitrification. Secondly, the SRT(SS) for each reactor was lowered to 3 days. Nitrification was lost for the ASR but remained complete for HR's. Respirometric techniques were used to measure fixed or suspended biomass activities for heterotrophic and autotrophic biomass. More than 90% of the autotrophic activity was found on the supports whatever the SRT(SS) used. The results may underline the role of the carrier geometry or surface characteristics on the autotrophic/heterotrophic microorganism distribution.  相似文献   

17.
The removal of particulate material in the aeration basin of the activated sludge process is mainly attributed to bioflocculation and hydrolysis of particulate substrate. The bioflocculation process in the aeration tank of the activated sludge process occurs only under favorable conditions in the system, and several common operational parameters affect its performance. The principal objective of this research was to observe the effect of mixed liquor suspended solids, solids retention time (SRT), and extracellular polymer substances on the removal of particulate substrate by bioflocculation. A first-order particulate removal expression, based on flocculation, accurately described the removal rates for supernatant suspended solids and colloidal chemical oxygen demand. Based on the results presented in this investigation, a mixed liquor concentration of approximately 2200 mg/L, an SRT of at least 3 days, and a contact time of 30 minutes are needed for relatively complete removal of the particulate substrate in a plug-flow reactor.  相似文献   

18.
A four-stage biological nutrient removal (BNR) process was operated to investigate the effect of anaerobically fermented leachate of food waste (AFLFW) as an external carbon source on nutrient removal from domestic wastewater having a low carbon-to-nitrogen ratio. The BNR system that was supplemented with AFLFW showed a good performance at a sludge retention time (SRT) of 30 days, despite low temperature. With this wastewater, average removal efficiencies of soluble chemical oxygen demand (COD), total nitrogen (T-N), and total phosphorus (T-P) were 88 to 93%, 70 to 74%, and 63 to 68%, respectively. In this study, several kinds of poly-hydroxyalkanoates (PHAs) were observed in cells. These included 24% poly-3-hydroxybutyrate (PHB), 41% poly-3-hydroxyvalerate (PHV), 18% poly-3-hydroxyhexanoate (PHH), 10% poly-3-hydroxyoctanoate (PHO), 5% poly-3-hydroxydecanoate (PHD). and 2% poly-3-hydroxydodecanoate (PHDD), indicating that microorganisms could store various PHAs through the different metabolic pathways. However, breakdown of the enhanced biological phosphorus removal (EBPR) mechanism was observed when SRT increased from 30 to 50 days for the enhancement of nitrification. To study the effect of SRT on EBPR, a sequencing batch reactor (SBR) system that was supplied with glucose was operated at various SRTs of 5, 10, and 15 days. Nitrification and denitrification efficiencies increased as SRT increased. However, the content of intracellular materials such as PHAs, glycogen. and poly-P in cells decreased. From these results, it was concluded that SRT should be carefully controlled to increase nitrification activity and to maintain biological phosphorus removal activity in the BNR process.  相似文献   

19.
以颗粒活性炭为填料,采用盐度梯度两步驯化法构建含盐水体生物滤器硝化功能,研究了生物滤器稳定后水力停留时间(hydraulic retention time,HRT)、进水氨氮负荷和CODMn/N等对反应器硝化性能的影响。结果表明,25~27℃,盐度30的含盐水体生物滤器硝化功能构建需73 d,其中淡水生物滤器硝化功能构建需28 d,淡水驯化为盐度15的生物滤器需19 d,盐度15驯化为盐度30的生物滤器需26 d;实验条件下生物活性炭填料反应器中生物量达到146~742.1 nmolP/g-BAC;调节进水氨氮浓度2 mg/L左右时,最佳HRT为1 h,氨氮去除率达到84.98%,相应的氨氧化菌和硝酸菌氧吸收速率(oxygen uptake rate,OUR)分别为2.091和1.948 mg O2/(g-BAC.h);HRT为1 h时,随着进水氨氮负荷的加大,氨氮去除率逐渐降低,当进水氨氮负荷由0.12增加到0.48 g-N/(kg-BAC.d)时,氨氮去除率由84.98%降低到41.68%,同时氨氧化菌OUR由2.091降低到0.625 mg O2/(g-BAC.h);随着CODMn/N的升高,氨氮去除率下降,CODMn/N从1~8时,氨氮去除率由84.98%降低到53.64%,CODMn去除率却逐渐增加,由40.86%增加到93.59%,异养菌OUR随着CODMn/N升高呈上升趋势,最大达到0.914 mg O2/(g-BAC.h)。  相似文献   

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