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1.
To investigate the influence of illumination on the fermentative hydrogen production system, the hydrogen production efficiencies of two kinds of anaerobic activated sludge (floc and granule) from an anaerobic baffled reactor were detected under visible light, dark and light-dark, respectively. The 10 mL floc sludge or granular sludge was respectively inoculated to 100 mL diluted molasses (chemical oxygen demand of 8000 mg·L−1) in a 250 mL serum bottle, and cultured for 24 h at 37°C under different illumination conditions. The results showed that the floc was more sensitive to illumination than the granule. A hydrogen yield of 19.8 mL was obtained in the dark with a specific hydrogen production rate of 3.52 mol·kg−1MLVSS·d−1 (floc), which was the highest among the three illumination conditions. Under dark condition, the hydrogen yield of floc sludge reached the highest with the specific hydrogen production rate of 3.52 mol·kg−1MLVSS·d−1, and under light-dark, light, the specific hydrogen production rate was 3.11 and 2.21 mol·kg−1MLVSS·d−1, respectively. The results demonstrated that the illumination may affect the dehydrogenase activity of sludge as well as the activity of hydrogen-producing acetogens and then impact hydrogen production capacity.  相似文献   

2.
为提高餐厨垃圾沼气工程能源利用效率.本试验采用全混合式连续发酵,通过调控餐厨垃圾高温厌氧发酵过程中OLR变化,探究OLR为0.7、1.2、4.4 kg·m-3·d-1下产气性能、pH、SCOD和VFAs等参数变化.结果表明,反应器能在0.7 kg·m-3·d-1下低负荷启动,此阶段产气性能较差,VFAs浓度受正丁酸含量增长缓慢上升,但仍处于低浓度范围.OLR提升至1.2 kg·m-3·d-1,正丁酸分解成乙酸速率加快,乙酸浓度比0.7 kg·m-3·d-1阶段增长17.36%,发酵液中VFAs积累导致系统酸化抑制产甲烷菌产气性能,外加碱溶液无法调控酸碱平衡.OLR为4.4 kg·m-3·d-1时,VFAs浓度增长趋于平稳,调节pH至6.7以上反应器稳定运行.随着产甲烷菌活性恢复,沼气产量维持在25 L·d-1左右,VFAs浓度快速下降并稳定在19.68~21.30 g·L-1之间.实际沼气工程可控制OLR在0.7 kg·m-3·d-1下启动,待发酵系统稳定运行后增加OLR至4.4 kg·m-3·d-1同时调节pH到6.7以上,可以达到最佳产沼气工艺.而维持OLR在1.2 kg·m-3·d-1更适合获得高浓度VFAs.  相似文献   

3.
Nitrogen removal performance and nitrifying population dynamics were investigated in a redox stratified membrane biofilm reactor (RSMBR) under oxygen limited condition to treat ammonium-rich wastewater. When the NHt4+-N loading rate increased from 11.1±1.0 to 37:2 ± 3:2 gNHt4+-N·m−2·d−1, the nitrogen removal in the RSMBR system increased from 18.0±9.6 mgN·d−1 to 128.9±61.7 mgN·d−1. Shortcut nitrogen removal was achieved with nitrite accumulation of about 22:3 ± 5:3 mgNO2-N·L−1. Confocal micrographs showed the stratified distributions of nitrifiers and denitrifiers in the membrane aerated biofilms (MABs) at day 120, i.e., ammonia and nitrite oxidizing bacteria (AOB and NOB) were dominant in the region adjacent to the membrane, while heterotrophic bacteria propagated at the top of the biofilm. Real-time qPCR results showed that the abundance of amoA gene was two orders of magnitude higher than the abundance of nxrA gene in the MABs. However, the nxrA gene was always detected during the operation time, which indicates the difficulty of complete washout of NOB in MABs. The growth of heterotrophic bacteria compromised the dominance of nitrifiers in biofilm communities, but it enhanced the denitrification performance of the RSMBR system. Applying a high ammonia loading together with oxygen limitation was found to be an effective way to start nitrite accumulation in MABs, but other approaches were needed to sustain or improve the extent of nitritation in nitrogen conversion in MABs.  相似文献   

4.
有机负荷和温度波动对厌氧菌群及酶活影响   总被引:1,自引:0,他引:1  
于钦  冯磊  甄箫斐 《环境科学学报》2020,40(12):4358-4367
基于太阳能辅热厌氧消化反应器进行餐厨垃圾半连续发酵试验,探究了温度波动和有机负荷调控(OLR=2.0、4.0、6.0、7.0 kg·m-3·d-1)对甲烷产量、酶活性变化和微生物群落结构的影响.结果表明,反应器可以在OLR为2.0 kg·m-3·d-1下稳定运行并在6.0 kg·m-3·d-1时实现最佳甲烷生产效率,虽然太阳能组比电能组减少了4倍能耗,但热辐射不稳定导致太阳能组发酵温度波动,甲烷平均产量比电能组减少21%.此外,蛋白酶在温度波动环境下表现出较高活性,但脂肪酶和淀粉酶活性却受到抑制.高通测序结果表明,低OLR阶段乙酸型产甲烷菌Methanosaeta活性较强,随着OLR递增氢营养型产甲烷菌MethanoregulaMethanospirillum相对丰度逐渐提高,而试验全过程中水解细菌Firmicutes相对丰度维持在62%~95%,占据主导地位.  相似文献   

5.
容积负荷对ABR-MBR工艺反硝化除磷性能的影响   总被引:2,自引:2,他引:0  
吕亮  尤雯  韦佳敏  吴鹏  沈耀良 《环境科学》2018,39(1):239-246
采用连续流ABR-MBR组合工艺处理生活污水,研究不同容积负荷(volume loading rate,VLR)对该工艺反硝化除磷性能的影响,获得最佳工艺参数.试验考察ABR进水容积负荷(以COD计,下同)分别为0.76、1.01、1.51和2.27 kg·(m~3·d)~(-1)时系统去碳脱氮除磷的性能,并在各ABR容积负荷条件下考察MBR容积负荷对MBR反应器硝化性能的影响.结果表明,在ABR进水容积负荷为1.51 kg·(m~3·d)~(-1)的条件下,系统A2隔室COD去除量最大,并在MBR容积负荷为0.462 kg·(m~3·d)~(-1)时,MBR反应器中实现了短程硝化,系统NH_4~+-N和TN去除率分别达到90%和72%以上,厌氧释磷量为7.41 mg·L~(-1),缺氧吸磷量达到15.42 mg·L~(-1),出水PO_4~(3-)-P浓度低于0.5 mg·L~(-1),这表明短程硝化更有利于强化ABR-MBR系统的反硝化除磷性能.  相似文献   

6.
为高效处理玉米淀粉生产废水,启动并持续运行了一个四格室厌氧折流板反应器(ABR),通过分阶段提升进水COD的方法,探讨了有机负荷率(OLR)对ABR运行效能的影响,并采用间歇培养方式考察了OLR对沿程格室中不同营养类型产甲烷菌群活性的影响.结果表明,在OLR分阶段从2.7提高到8.0 kg·m-3·d-1的过程中,ABR前两个格室(C1和C2)始终呈现出典型的产酸发酵特征,其污泥的有机挥发酸(VFAs)比产率为0.54~0.76 kg·kg-1·d-1(以每天每千克MLVSS产出的1千克有机挥发酸计,下同),而后两个格室(C3和C4)则表现出典型的产甲烷特征,其污泥的比产甲烷速率达98 L·kg-1·d-1(以每天每千克MLVSS产出的1升甲烷计,下同)以上.活性污泥产甲烷活性测试结果表明,当OLR为2.7~8.0 kg·m-3·d-1时,C3中的氢营养型产甲烷菌群保持了较高的产甲烷活性,其最大甲烷产量(Pmax)和最大比产甲烷速率分别达到了20.4 mL和16.5 mL·g-1·h-1(以每小时每克MLVSS产出的1毫升甲烷计,下同)以上.乙酸营养型产甲烷菌群的累计甲烷产量由大到小依次为:C3 > C4 > C1 > C2.经过144 h的培养后,C3中乙酸营养型产甲烷菌群的累计甲烷产量为15.1~15.2 mL,最大比产甲烷速率为10.0~10.8 mL·g-1·h-1.  相似文献   

7.
复合式厌氧氨氧化反应器脱氮性能研究   总被引:4,自引:1,他引:3  
采用低速机械搅拌装置,以无纺布作为固定床的填料,把搅拌床与固定床的优点有机结合起来,设计一种复合式厌氧氨氧化反应器.在反应器中,生物滞留量相对较高,微生物的性状由接种时的碎絮状很快转变成颗粒状,短期内反应器系统的脱氮性能迅速提高,启动时间大为缩短.仅用38d,反应器中总氮去除速率稳定增长至1.9kg·m·-3d-1.随...  相似文献   

8.
To fulfill the requirements of Guidelines for approval of ballast water management system (G8), a set of onshore ballast water treatment equipment utilizing micro-pore ceramic filtration (MPCF) and UV radiation (MPCF&UV) system was designed and set up with a maximum flow rate of 80 m3·h−1. Technical feasibilities of MPCF&UV system were evaluated in three areas: removal efficiencies of indicator organism and oceanic bacteria, perdurability of a ceramic filter, and application on native seawater. The results showed that no indicator organism (Dunaliella) or oceanic bacteria was detected after treatment of 20 L MPCF and UV radiation at 1.3×104 μW·s·cm−2. A 20 L ceramic filter can run continuously for 5.3 h at the flow rate of 15 m3·h−1 before its pressure drop up to 0.195 MPa. The removal percentage of total plankton amounts were 91.9% at a flow rate of 70 m3·h−1 by 80 L MPCF and UV radiation at 1.3×104 μW·s·cm−2.  相似文献   

9.
张玉君  李冬  王歆鑫  张杰 《环境科学》2021,42(9):4383-4389
为了探究间歇梯度曝气下污泥龄对氨氧化菌(AOB)和亚硝酸盐氧化菌(NOB)的影响,研究短程硝化内源反硝化除磷系统对于处理低C/N比生活污水的优势作用,本文采用SBR反应器培养好氧颗粒污泥,实验进水采用实际生活污水.结果表明,在SRT由50 d逐渐降低至30 d过程中,比氨氧化速率由3.16 mg·(g·h)-1增加至4.38 mg·(g·h)-1,比亚硝酸盐氧化速率由3.4 mg·(g·h)-1降为1.8 mg·(g·h)-1左右,可知NOB活性降低约44%,从而使系统实现了短程硝化.当SRT为30 d时,由典型周期实验可知亚硝酸盐最大积累量可达6.93mg·L-1.由于系统中污泥浓度随SRT的减少而略有降低,因此在反应进行至40 d左右时根据DO曲线采取降低曝气量的策略,最终SRT为30 d时系统出水COD浓度为40.76 mg·L-1,TN浓度为12.4 mg·L-1,TP浓度为0.31 mg·L-1,强化了系统中C、N和P的同步去除,最终得到了稳定运行的短程硝化内源反硝化除磷系统.同时好氧颗粒污泥EPS含量与SRT呈现负相关性,蛋白质含量由污泥龄为50 d的66.7 mg·g-1升为30 d的95.1mg·g-1,多糖保持在12.1~17.2 mg·g-1的范围内,说明SRT的降低对蛋白质含量的影响较多糖大,当SRT为30 d时,PN/PS值保持在6.2左右,好氧颗粒污泥在该条件下仍能保持较好的结构稳定性.  相似文献   

10.
移动床生物膜反应器净化模拟水产养殖废水的研究   总被引:1,自引:0,他引:1  
采用移动床生物膜反应器(MBBR)净化模拟水产养殖废水.结果表明,MBBR净化模拟水产养殖废水效果良好.在水力停留时间(HRT)为8 h,DO为2.0~3.0 mg·L-1的条件下,反应器启动迅速、运行稳定,能使COD和氨氮去除率均达到80%以上,TP去除率达到50%左右;有机负荷为(0.76±0.03)kg·m-3·d-1时,TN及氨氮去除效果最好,去除率分别达到71.73%及98.42%.为达到良好的TN去除效果,有机负荷不宜低于0.5 kg·m-3·d-1;DO为(3.00±0.25)mg·L-1时,TN去除效果最好,最有利于同步硝化反硝化;为保持较高的氨氮去除效率,并减少亚硝态氮积累,DO浓度不应低于2.0 mg·L-1;HRT过短会使氨氮去除效率降低,且可能出现亚硝态氮积累;采用序批式进水运行方式,对TP的去除效果优于连续进水方式,但运行周期后半段会出现亚硝态氮积累,对鱼类产生危害.  相似文献   

11.
章豪  冯鑫  单捷  潘杨 《环境科学学报》2019,39(11):3764-3771
在同步去除及富集磷酸盐的基础上,通过研究水力停留时间(8 h、6 h、4 h)及不同的进水磷浓度考察磷负荷对于反应器的运行效能和微生物群落结构的影响,探究生物膜反应器所能承受的最大磷负荷,并探究微生物种群与工艺性能的响应关系,获取高效生物膜驯化的最优进水磷条件,以及分析该条件下的种群结构.结果表明,在驯化阶段,在磷负荷低于0.18 kg·m~(-3)·d~(-1)时,磷负荷的提升不会影响磷去除率,磷去除率保持在98.3%;当磷负荷达到0.24 kg·m~(-3)·d~(-1)时,磷去除率下降到84.3%,但P_(rel)/C_(upt)依旧从最初的0.06上升至0.121.MiSeq测序结果表明优势菌门为变形菌门(Proteobacteria),从59.2%增长至83.5%,反应器中的优势聚磷菌科为红环菌科(Rhodocyclaceae),从11.8%增长至27.3%.在回收阶段,在保证好氧出水达标的情况下,磷酸盐浓度升高至56.4 mg·L~(-1),富集液浓度达到鸟粪石法回收磷的标准.通过增加进水磷负荷可使聚磷菌丰度提高,进而提高了回收液磷浓度.  相似文献   

12.
PN-ANAMMOX一体化反应器处理电子行业PCB废水   总被引:2,自引:0,他引:2  
袁砚  李祥  周呈  陈宗姮 《环境科学》2015,36(7):2591-2596
利用已经启动成功并达到稳定脱氮效能的部分亚硝化-厌氧氨氧化一体化反应器,研究碱性印制电路板(PCB)废水自养生物脱氮的可行性及运行特性.结果表明,将进水NH+4-N浓度维持在220 mg·L-1时,经过80 d的运行,一体化反应器出水NH+4-N、NO-2-N浓度降低并稳定在4.0 mg·L-1和9.8 mg·L-1左右,脱氮效能最高达到1.29 kg·(m3·d)-1.同时出水总氮小于50 mg·L-1,满足接管排放标准.一体化反应器内好氧区NO-2-N产生速率最高为2.05 kg·(m3·d)-1,厌氧区的厌氧氨氧化菌最高脱氮效能为2.91 kg·(m3·d)-1,说明各功能菌在相应区域得到稳定地增长.一体化反应器适用于无机含氨的碱性PCB废液自养生物脱氮处理.  相似文献   

13.
采用连续搅拌釜式反应器(CSTR)成功启动了餐厨垃圾与剩余污泥混合发酵平行系统,重点探究了不同污泥停留时间(SRT)缩减幅度对于餐厨垃圾和剩余污泥混合发酵系统的影响.结果表明,较大幅度地缩减SRT( 8. 3 d)提升反应器运行负荷,不利于反应器的稳定运行;随着反应器运行负荷的增加,SRT缩减幅度应逐渐降低(5~0. 9 d),能够取得餐厨垃圾和剩余污泥混合发酵系统的高负荷稳定运行.经过282 d的运行,CSTR混合发酵系统能够在SRT为9. 1 d,进料负荷(以COD计)为(12. 9±1. 5) g·(L·d)~(-1)的条件下稳定运行,相应的甲烷产量为3. 94~4. 25 L·(L·d)~(-1),甲烷产率(以COD计)为288~302 m L·g-1,p H和挥发性脂肪酸(VFA,以COD计)分别稳定在7. 80~7. 83和0. 32~0. 39 g·L-1.此外,还探究了高负荷条件下餐厨垃圾和剩余污泥混合发酵污泥特性,结果表明,餐厨垃圾和剩余污泥混合发酵系统甲烷转化途径以乙酸转化途径为主,具有较高的乙酸、丙酸、丁酸和戊酸的产甲烷活性和辅酶F420的质量摩尔浓度.  相似文献   

14.
厌氧氨氧化启动过程及微生物群落结构特征   总被引:2,自引:8,他引:2  
汪瑶琪  张敏  姜滢  徐乐中  陈重军  沈耀良 《环境科学》2017,38(12):5184-5191
采用UASB反应器以体积比1∶2接种实验室培养的具有厌氧氨氧化(ANAMMOX)功能的厌氧污泥和城市污水厂的好氧污泥,耗时17 d成功启动ANAMMOX反应,启动阶段分为菌体水解期、活性提高期和稳定运行期.稳定运行后,逐步提高反应器容积负荷富集厌氧氨氧化菌,当容积负荷由0.10 kg·(m~3·d)~(-1)增至0.44 kg·(m~3·d)~(-1)时,总氮(TN)去除负荷也随之由0.09 kg·(m~3·d)~(-1)提高到0.42 kg·(m~3·d)~(-1),反应器污泥逐渐由浅红色加深,粒径大于0.2 mm的污泥所占比例由10.90%增至38.37%.采用高通量测序对接种污泥和负荷提高期的污泥进行检测,其中绿曲挠菌门(Chloroflexi)、变形菌门(Proteobacteria)、WWE3门、放线菌门(Actinobacteria)、浮霉菌门(Planctomycetes)等占据主导.随着厌氧氨氧化菌富集程度的增大,脱氮功能菌中的变形菌门所占比例逐渐减少,从21.60%降至14.20%,而浮霉菌门随之增多,相对丰度由0.73%升至15.50%.当反应器的容积负荷增到0.44 kg·(m~3·d)~(-1)时,浮霉菌门中,Candidatus Brocadia属、Candidatus Jettenia属和Candidatus Kuenenia属是主要菌属,Candidatus Brocadia属占13.40%,是主要的厌氧氨氧化菌属.  相似文献   

15.
分置式厌氧陶瓷膜生物反应器处理模拟生活污水试验研究   总被引:2,自引:0,他引:2  
为强化厌氧系统的处理效能,延缓厌氧膜生物反应器膜污染速率,采用分置式厌氧陶瓷膜生物反应器处理模拟生活污水.结果表明:厌氧反应器UASB经过60 d的启动,可实现对模拟生活污水的良好处理,COD去除率超过90%;耦合膜组件运行后,膜出水COD在22.58 mg·L~(-1)左右,COD总去除率平均为95.53%,甲烷日均产量为352 mL·d~(-1),产率最高达到0.11 m~3·kg~(-1);跨膜压差(TMP)达到26.81 kPa时膜污染严重,周期为14 d,反冲洗能够去除膜表面的泥饼层,有效地延长膜污染周期;对混合液及滤饼层中的多糖和蛋白质浓度进行了分析,结果表明,蛋白质是引起膜污染的主要物质.  相似文献   

16.
Nitrogen removal of wetlands under 40 different inflow loadings were studied in the field during 15 months. The removal efficiency of four different sets of beds, namely the reed bed, the Zizania caduciflor bed, the mixing planting bed, and the control bed were studied. The outflow loading and total nitrogen (TN) removal rate of these beds under different inflow loadings and pollution loadings were investigated. The inflow loadings of 4 subsurface flow systems (SFS) ranged from 400 to 8000 mg·(m2·d)−1, while outflow loadings were less than 7000 mg·(m2·d)−1. The results showed that the inflow and outflow loading of TN removal rate in SFS presented an obvious linear relationship. The optical inflow loading to run the system was between 2000 to 4000 mg·(m2·d)−1. Average removal rate was between 1062 and 2007 mg·(m2·d)−1. SFS with plant had a better removal rate than the control. TN removal rates of the reed and Zizania caduciflora bed were 63% and 27% higher than the control bed, respectively. The results regarding the TN absorption of plants indicated that the absorption amount was very limited, less than 5% of the total removal. It proved that plants clearly increase TN removal rates by improving the water flow, and increasing the biomass, as well as activities of microorganisms around the roots. The research provided a perspective for understanding the TN removal mechanism and design for SFS. __________ Translated from Environmental Science, 2006, 27(2): 253–256 [译自: 环境科学]  相似文献   

17.
The UCD/CIT model was modified to include a process analysis (PA) scheme for gas and particulate matter (PM) to study the formation of secondary nitrate aerosol during a stagnant wintertime air pollution episode during the California Regional PM2.5/PM10 Air Quality Study (CRPAQS) where detailed measurements of PM components are available at a few sites. Secondary nitrate is formed in the urban areas from near the ground to a few hundred meters above the surface during the day with a maximum modeled net increase rate of 4 μg·m−3·d−1 during the study episode. The secondary nitrate formation rate in rural areas is lower due to lower NO2. In the afternoon hours, near-surface temperature can be high enough to evaporate the particulate nitrate. In the nighttime hours, both the gas phase N2O5 reactions with water vapor and the N2O5 heterogeneous reactions with particle-bound water are important for secondary nitrate formation. The N2O5 reactions are most import near the surface to a few hundred meters above surface with a maximum modeled net secondary nitrate increase rate of 1 μg·m−3·d−1 and are more significant in the rural areas where the O3 concentrations are high at night. In general, vertical transport during the day moves the nitrate formed near the surface to higher elevations. During the stagnant days, process analysis indicates that the nitrate concentration in the upper air builds up and leads to a net downward flux of nitrate through vertical diffusion and a rapid increase of surface nitrate concentration.  相似文献   

18.
The purpose of this study was to develop a pilot scale tubular photo bioreactor (80 L) for photo fermentative hydrogen production by photosynthetic purple-non-sulfur bacterium, Rhodobacter capsulatus, operating in outdoor conditions, using acetate as the carbon source. The reactor was operated continuously in fed-batch mode for 30 days throughout December 2008 in Ankara. It was placed in a greenhouse in order to keep the temperature above freezing levels. It was found that R. capsulatus had a rapid growth with a specific growth rate of 0.025 h?1 in the exponential phase. The growth was defined with modified logistic model for long term duration. The hydrogen production and feeding started in the late exponential phase. Evolved gas contained 99% hydrogen and 1% carbon dioxide by volume. The average molar productivity calculated during daylight hour was 0.31 mol H2/(m3 h) with regard to the total reactor volume and 0.112 mol H2/(m2·day) with regard to the total illuminated surface area. It was proven that even at low light intensities and low temperatures, the acetic acid which was fed to the system can be utilized for biosynthesis, growth and hydrogen production. The overall hydrogen yield was 0.6 mole H2 per mole of acetic acid fed. This study showed that photofermentation in a pilot scale tubular photo bioreactor can produce hydrogen, even in winter conditions.  相似文献   

19.
Among the numerous parameters affecting the membrane bioreactor (MBR) performance, the aeration intensity is one of the most important factors. In the present investigation, an anoxic/aerobic-type (A/O-type) sequencing batch MBR system, added anoxic process as a pretreatment to improve the biodegradability of azo dye wastewater, was investigated under different aeration intensities and the impact of the aeration intensity on effluent quantity, sludge properties, extracellular polymeric substances (EPS) amount generated as well as the change of permeation flux were examined. Neither lower nor higher aeration intensities could improve A/O-type sequencing batch MBR performances. The results showed 0.15 m3·h−1 aeration intensity was promising for treatment of azo dye wastewater under the conditions examined. Under this aeration intensity, chemical oxygen demand (COD), ammonium nitrogen and color removal as well as membrane flux amounted to 97.8%, 96.5%, 98.7% and 6.21 L·m−2·h−1, respectively. The effluent quality, with 25.0 mg·L−1COD, 0.84 mg·L−1 ammonium nitrogen and 8 chroma, could directly meet the reuse standard in China. In the meantime, the sludge relative hydrophobicity, the bound EPS, soluble EPS and EPS amounts contained in the membrane fouling layer were 70.3%, 52.0 mg·g−1VSS, 38.8 mg·g−1VSS and 90.8 mg·g−1VSS, respectively, which showed close relationships to both pollutant removals and membrane flux.  相似文献   

20.
纤维载体的生物膜CANON反应器的启动特性   总被引:1,自引:2,他引:1  
为研究纤维载体在CANON工艺中的运行特性,同时接种亚硝化污泥及厌氧氨氧化污泥启动CANON反应器.结果表明经过85 d运行,成功启动了CANON反应器,NRR从0.09 kg·(m3·d)-1提升至0.9 kg·(m3·d)-1并能稳定运行,说明纤维载体有利于富集污泥,反应器内能维持较高的生物量.随着微生物的富集生长,生物膜变厚,反应器的能力提升,反应器中DO达到5 mg·L-1.利用微电极测得生物膜由表及里的DO梯度为0.32~0 mg·L-1,说明生物膜变厚,氧对生物膜的穿透力减弱,亚硝化微生物量降低.荧光定量PCR结果表明,启动前后NOB菌数量维持在较低水平,AOB菌的丰度增长不大,ANAMMOX菌细胞增长了一个数量级.  相似文献   

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