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1.
ASBR厌氧氨氧化反应器的快速启动及脱氮原理分析   总被引:3,自引:1,他引:2  
以城市生活污水为基本水质进行配水,采用ASBR研究了厌氧氨氧化反应器的快速启动过程及脱氮性能。实验条件如下:T为(35±1)℃、HRT为24 h、pH为7.2~7.5,进水NH4+-N、NO2--N浓度为40~160 mg/L,TN负荷为0.08~0.34 kg TN/(m3.d),按2∶1比例混合接种好氧短程硝化污泥和厌氧氨氧化污泥,经49 d运行成功启动厌氧氨氧化反应器,并实现稳定运行。实验结果表明:稳定运行期NH4+-N、NO2--N去除率分别达96%和98%;NH4+-N、NO2--N去除量与NO3--N生成量比值为1∶1.05∶0.29,较为接近理论值;成功启动的反应器出水pH高于进水;系统TN去除率平均值为79.7%;反应器内存在反硝化与厌氧氨氧化的协同作用,实现了部分COD去除;污泥由深棕色絮状变成红褐色颗粒状,经SEM扫描电镜观察污泥菌群种类单一,多为球状菌,有漏斗状缺口,具有典型氨氧化菌形态特征。  相似文献   

2.
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   

3.
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   

4.
通过接种厌氧氨氧化菌(Candidatus Brocadia)与部分反硝化菌(Thauera)形成厌氧氨氧化与部分反硝化耦合处理模拟城镇污水中的氨氮(NH_4~+-N)与硝氮(NO3--N),考察不同NO3--N/NH_4~+-N比对耦合系统脱氮性能的影响及最佳NO3--N/NH_4~+-N比下耦合系统的稳定性和脱氮的途径。结果表明:在COD/NO3--N为2.5、NH_4~+-N浓度为20~40 mg·L~(-1)的条件下,NO3--N/NH_4~+-N比在0.8~1.6的范围内均可实现部分反硝化与厌氧氨氧化协同脱氮,且当NO3--N/NH_4~+-N比为1.2时,耦合效果最佳,对应的NH_4~+-N、NO3--N及总氮(TN)去除率分别为92.85%、99.68%和96.42%;厌氧氨氧化菌在耦合系统中的活性稳定在(4.62±0.44)mg·(g·h)-1(以VSS计),且与反硝化菌存在协同竞争关系,进水NO3--N的84.3%由厌氧氨氧化途径去除,15.7%由异养反硝化途径去除。  相似文献   

5.
不同泥源对厌氧氨氧化反应器启动的影响   总被引:2,自引:1,他引:1  
李祥  黄勇  袁怡  张丽  朱莉 《环境工程学报》2012,6(7):2143-2148
采用2套上流式生物膜反应器,分别接种少量厌氧氨氧化污泥和大量硝化污泥,考察其对厌氧氨氧化反应器启动的影响。污泥接种入反应器后,测得接种厌氧氨氧化污泥的反应器(R1)内MLSS为0.22 g/L,另一个反应器(R2)MLSS为2.7 g/L。与直接接种厌氧氨氧化污泥相比,R1经过72 d的运行才显现出厌氧氨氧化特性。经过114 d的培养,前者氮去除速率由0.23 kg/(m3.d)提升到5.29 kg/(m3.d),总氮去除率大于89%;R2的氮去除速率由0.01 kg/(m3.d)提升到1.1 kg/(m3.d),总氮去除率大于84.6%。说明普通污泥启动需要一个较长的筛选过程,直接接种少量的厌氧氨氧化污泥比接种普通的污泥能够更快启动厌氧氨氧化反应器。  相似文献   

6.
研究了上流式厌氧污泥床(UASB)反应器中厌氧氨氧化工艺的脱氮性能。接种体积比为1∶1的已驯化半年的厌氧氨氧化污泥混培物和城市污水处理厂回流污泥,采用提高基质浓度和缩短水力停留时间(HRT)2种方式提高UASB反应器的脱氮性能。结果发现,2种方式结合可在UASB反应器中获得较高的脱氮速率,经过280d后,最高总氮去除速率达到5.16kg/(m3·d)。缩短HRT并未对UASB反应器的脱氮效果产生不良影响,反而强化了脱氮性能。HRT由0.4d缩短至0.2d时,总氮去除速率由1.89kg/(m3·d)增加到3.66kg/(m3·d)。形成的颗粒污泥中的细菌的细胞形态不规则,内部有厌氧氨氧化体,为典型厌氧氨氧化菌结构特征。污泥的比基质转化速率为3.15kg/(kg·d)。经16SrDNA检测,污泥中的厌氧氨氧化菌属于"Candidatus Kuenenia"属。  相似文献   

7.
利用硫化物对亚硝酸盐氧化菌的抑制作用,快速建立短程硝化。通过改变供氧条件,硫化物作为电子供体推动自养反硝化,实现同一序批反应器一体化脱氮。采用序批反应器SBR处理模拟市政污水,在DO浓度(1.5±0.5)mg·L~(-1),硫化物浓度50 mg·L~(-1),温度25℃,水力停留时间12 h的条件下,共运行90 d,控制反应器厌氧低氧时间,达到90%以上的总氮去除率。同时研究了硫化物对短程硝化的抑制作用、最适宜运行p H条件、污泥颗粒大小变化、污泥产生量等。硫化物抑制亚硝酸盐氧化菌推动短程硝化反硝化生物脱氮技术有着反应条件可控性高、短程硝化建立时间短、脱氮效果好等优点,适用于低碳氮比的市政污水处理。  相似文献   

8.
培养方式对废水脱氮与沼气脱硫污泥驯化影响   总被引:1,自引:0,他引:1  
实验研究了底物、接种污泥和微生物生长方式对猪场废水脱氮和沼气脱硫耦联污泥驯化及活性恢复的影响,以解决快速富集培养废水脱氮与沼气脱硫微生物的问题。研究发现,就脱氮脱硫均达到60%的时间而言,接种厌氧污泥反应器为9 d,比接种好氧污泥反应器(18 d)和不接种污泥加填料反应器(21 d)更短。以含氮含硫废水为底物驯化时,接种厌氧污泥更有利于脱氮脱硫污泥的驯化;而同为接种好氧污泥时,以含氮含硫废水为底物的驯化方式更有利于脱氮脱硫污泥的驯化。污泥活性恢复实验中,以含氮废水+沼气(H2S)为底物培养驯化的污泥,硫转化活性恢复所用的时间为15 d,比含氮含硫废水为底物驯化污泥的活性恢复时间更长。  相似文献   

9.
污泥脱水液的经济高效脱氮处理已成为污水处理中的重要环节.依托天津津南污泥处理厂采用两段式部分亚硝化/厌氧氨氧化(PN/A)脱氮工艺处理污泥脱水液,在35℃下,对工程规模的工艺启动和稳定运行特性进行了研究.结果表明:接种活性污泥可成功启动部分亚硝化(PN)反应器,PN反应器出水NO2--N/NH4+-N为1.1时,可实现...  相似文献   

10.
城市污水条件下ASBR厌氧氨氧化的启动与脱氮性能   总被引:2,自引:0,他引:2  
采用ASBR在城市污水条件下进行厌氧氨氧化的启动与脱氮性能研究。实验接种好氧硝化污泥,在温度为(35±1)℃、HRT为24 h、pH为7.3~8.5的条件下经过130 d的培养,成功启动了厌氧氨氧化反应。实验结果表明,厌氧氨氧化反应稳定运行时,TN容积负荷平均为0.179 kg/(m3.d),NH4+-N、NO2--N和TN去除率分别达到了95.30%、91.30%和76.28%。启动期和稳定运行期NH4+-N、NO2--N去除量和NO3--N生成量的比值分别达到1∶1.54∶0.25和1∶1.27∶0.27;稳定运行期进出水pH差值由启动时的0.85下降到0.24。启动期反硝化和厌氧氨氧化反应同时存在而在稳定运行期厌氧氨氧化发展成为主导反应。MLSS和MLVSS/MLSS先减少后增加,反映了启动过程中硝化细菌、反硝化细菌的衰亡和厌氧氨氧化菌逐渐富集的过程,这与反应器的宏观运行效果相一致。  相似文献   

11.
In order to remove high concentrations of hydrogen sulfide (H2S) gas from anaerobic wastewater treatments in livestock farming, a novel process was evaluated for H2S gas abatement involving the combination of chemical absorption and biological oxidation processes. In this study, the extensive experiments evaluating the removal efficiency, capacity, and removal characteristics of H2S gas by the chemical absorption reactor were conducted in a continuous operation. In addition, the effects of initial Fe2+ concentrations, pH, and glucose concentrations on Fe2+ oxidation by Thiobacillus ferrooxidans CP9 were also examined. The results showed that the chemical process exhibited high removal efficiencies with H2S concentrations up to 300 ppm, and nearly no acclimation time was required. The limitation of mass-transfer was verified as the rate-determining step in the chemical reaction through model validation. The Fe2+ production rate was clearly affected by the inlet gas concentration as well as flow rate and a prediction equation of ferrous production was established. The optimal operating conditions for the biological oxidation process were below pH 2.3 and 35 degrees C in which more than 90% Fe3+ formation ratio was achieved. Interestingly, the optimal glucose concentration in the medium was 0.1%, which favored Fe2+ oxidation and the growth of T. ferrooxidans CP9.  相似文献   

12.
一株高效脱硫菌的分离鉴定和脱硫特性研究   总被引:3,自引:0,他引:3  
从污水净化厂二沉池回流污泥中分离到一株硫杆菌菌株dj-5,该菌株是一种兼性厌氧菌,通过生理生化特性鉴定,并结合16S rDNA序列分析及鉴定,该菌株可以确定为脱氮硫杆菌(Thiobacillus denitrificans)。该菌株的生长曲线表明菌体生长迅速,延滞期约为8 h,然后细菌进入对数生长期,这一阶段持续时间大约20~24 h,稳定期较短,细菌很快进入衰亡期。通过脱硫工艺实验考察了pH值、温度和搅拌速度对脱硫率和菌体生长的影响,结果表明,在进气量180 L/h、pH=6~8、温度为25~35℃和搅拌速度为270 r/min时,该菌株能正常生长,对进气浓度高达2 500 mg/m3的硫化氢脱除率在91%以上。  相似文献   

13.
UASB反应器处理链霉素废水启动及运行性能   总被引:2,自引:0,他引:2  
采用上流式厌氧污泥床(UASB)反应器处理链霉素生产废水,研究了中温条件下反应器启动和稳定运行中废水处理性能及厌氧污泥颗粒化过程。结果表明,通过逐步提高链霉素废水进水比例和负荷,可以实现UASB反应器的启动和稳定运行,并对高浓度链霉素实际废水具有良好的处理性能,COD去除率稳定在80%以上,COD去除负荷达7.2 kg/(m3·d),CH4产生量达到6.2 L/d。UASB反应器启动运行过程中,链霉素废水对污泥活性具有抑制影响,造成短期反应器运行性能明显下降,而后很快恢复。同时高负荷链霉素废水造成甲烷产率降低。污泥性状变化显著,污泥形态逐渐转变为颗粒态,污泥粒径增大,出现大量0.5~1.0 mm颗粒污泥,污泥VSS/SS比值升高,污泥沉降性明显增强,比产甲烷活性显著升高,表明污泥开始实现颗粒化。  相似文献   

14.
苯酚的厌氧生物处理   总被引:3,自引:0,他引:3  
采用不断增加苯酚浓度而降低葡萄糖浓度的方法可驯化厌氧污泥中的微生物,使厌氧污泥最终以苯酚为唯一碳源生长,可显著提高厌氧污泥降解苯酚的能力;对苯酚间歇厌氧降解过程进行了分析。苯酚浓度在0~1.680 mg/L范围内,其厌氧降解过程符合一级动力学。Aiba模型、Haldane模型和Teisser 模型均可很好地描述处于对数期时厌氧污泥的比生长速率与初始底物浓度之间的关系,其中以Teisser 模型模拟的效果最好。将驯化污泥接种于UASB中可实现对含酚废水处理的连续运行,最大的有机负荷达2 g COD/(L·d),稳定运行时苯酚的去除率可维持在96%以上。  相似文献   

15.
通过土柱实验模拟再生水在粉土层下渗过程中NO3--N、NO2--N、NH4+-N的迁移转化规律。结果表明,实验温度为23.2~25.9℃时,土柱内发生反硝化反应,NO3--N的去除率为9.74%~39.16%,反应符合一级反应动力学方程,衰减系数为0.0968~0.5531m-1;实验温度低于19℃时,土柱内反硝化反应消失,说明低温是制约再生水在土柱内发生反硝化作用的主要因素。  相似文献   

16.
Triclosan is an antimicrobial agent which is widely used in household and personal care products. Widespread use of this compound has led to the elevated concentrations of triclosan in wastewater, wastewater treatment plants (WWTPs) and receiving waters. Removal of triclosan and formation of triclosan-methyl was investigated in activated sludge from a standard activated sludge WWTP equipped with enhanced biological phosphorus removal. The removal was found to occur mainly under aerobic conditions while under anoxic (nitrate reducing) and anaerobic conditions rather low removal rates were determined. In a laboratory-scale activated sludge reactor 75% of the triclosan was removed under aerobic conditions within 150 h, while no removal was observed under anaerobic or anoxic conditions. One percent of the triclosan was converted to triclosan-methyl under aerobic conditions, less under anoxic (nitrate reducing) and none under anaerobic conditions.  相似文献   

17.
Zhou W  Imai T  Ukita M  Li F  Yuasa A 《Chemosphere》2007,66(5):924-929
Serious inhibition was found in the regular up-flow anaerobic sludge blanket (UASB) reactor in treating the evaporator condensate from a sulfite pulp mill, which contained high strength sulfur compounds. After applying the direct limited aeration in the UASB, the inhibition was alleviated gradually and the activity of the microorganisms was recovered. The COD removal rate increased from 40% to 80% at the organic loading rate of 8kgCODm(-3)d(-1) and a hydraulic retention time of 12h. Limited aeration caused no oxygen inhibition to the anaerobic microorganisms but instigated sulfide oxidization and H(2)S removal, which was beneficial to the methanogens. The experiment confirmed the feasibility of applying limited aeration in the anaerobic reactor to alleviate the sulfide inhibition. It also proved that the anaerobic system was actually aerotolerant. SEM observation showed that the predominant microorganisms partly changed from rod-shaped methanogens to cocci after the UASB reactor was aerated.  相似文献   

18.
The physico-chemical characteristics of granulated sludge lead us to develop its use as a packing material in air biofiltration. Then, the aim of this study is to investigate the potential of unit systems packed with this support in terms of ammonia and hydrogen sulfide emissions treatment. Two laboratory scale pilot biofilters were used. A volumetric load of 680 g H2S m(-3) empty bed day(-1) and 85 g NH3 m(-3) empty bed day(-1) was applied for eight weeks to a unit called BGSn (column packed with granulated sludge and mainly supplied with hydrogen sulfide); a volumetric load of 170 g H2S m(-3) empty bed day(-1) and 340 g NH3 m(-3) empty bed day(-1) was applied for eight weeks to the other called BGNs (column packed with granulated sludge and mainly supplied with ammonia). Ammonia and hydrogen sulfide elimination occur in the biofilters simultaneously. The hydrogen sulphide and ammonia removal efficiencies reached are very high: 100% and 80% for BGSn; 100% and 80% for BGNs respectively. Hydrogen sulfide is oxidized into sulphate and sulfur. The ammonia oxidation products are nitrite and nitrate. The nitrogen error mass balance is high for BGSn (60%) and BGNs (36%). This result could be explained by the denitrification process which would have occurred in anaerobic zones. High percentages of ammonia or hydrogen sulfide are oxidized on the first half of the column. The oxidation of high amounts of hydrogen sulfide would involve some environmental stress on nitrifying bacterial growth and activity.  相似文献   

19.
采用一体化A/O移动床生物膜法工艺,以模拟生活污水研究了该工艺的除碳脱氮效果,并对一体化移动床生物膜反应器的好氧区和缺氧区各纵向断面的COD、DO、NH3-N、TN、NO-3-N和NO-2-N进行了检测,通过对缺氧区各断面的DO和TN浓度分布情况,分析了脱氮的产生过程。试验结果表明: 在水力停留时间HRT=12 h,好氧区DO保持5 mg/L左右,COD进水浓度处于250~400 mg/L时,COD的去除率均在90%以上,且出水COD均在40 mg/L以下;TN进水浓度为20~50 mg/L时,NH3-N去除率高于90%,其出水浓度可达到5 mg/L以下,脱氮效率也较高,TN去除率可达到65%~85%。COD和NH3-N的浓度分布状况表明该一体化A/O移动床生物膜反应器的流态趋于全混式。  相似文献   

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