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1.
实验采用厌氧膨胀颗粒污泥床(EGSB)反应器与好氧膜生物反应器(MBR)组合工艺对糖蜜发酵废水进行处理.重点考察了组合工艺对发酵废水的处理效能,包括甲烷的产生效率、污染物(COD、NH4+-N和TN)的去除效能.实验结果表明:控温条件下[(35±1)℃]、进水COD约为2250mg/L、pH在为6.0左右时,EGSB对发酵废水的COD去除率可达75.6%,甲烷的容积产气速率为0.48m3/(m3·d).MBR在溶解氧(DO)为1~2mg/L左右时,采用曝气-搅拌交替运行方式处理EGSB出水,可以实现同步硝化反硝化,并且在曝气3h-搅拌1h交替运行条件下,NH4+-N、TN去除率分别为85.13%、58.57%,而最终COD去除率达到85%.  相似文献   

2.
生活垃圾焚烧厂渗沥液是一种含高氨氮高有机物浓度的难处理废水,目前渗沥液生物脱氮多采用多级硝化反硝化处理工艺,存在能耗大、效率低等不足。以厌氧氨氧化技术为核心,构建连续流厌氧消化-短程硝化-厌氧氨氧化三段式工艺,分析垃圾焚烧厂渗沥液的生物脱氮效果、有机物迁移转化规律、功能微生物活性及组成变化。结果表明:在进水ρ(NH4+-N)为900~1800 mg/L,ρ(COD)为3000~20000 mg/L时,系统处理效果良好,稳定运行期间总无机氮和COD去除率分别为85%和77%。其中厌氧消化段可去除约45%的COD,短程硝化段NO2--N积累率保持在97%以上,厌氧氨氧化段稳定运行期间总无机氮去除率约为85%,系统内也存在一定程度反硝化反应。接入渗沥液后,自养脱氮体系中功能微生物氨氧化菌(AOB)和厌氧氨氧化菌(Anammox)的活性均有不同程度的下降,采用宏基因组学结合16S rDNA高通量测序技术对比分析微生物的群落和功能组成变化,发现渗沥液中高浓度的有机物使短程硝化段和厌氧氨氧化段内异养反硝化菌相对丰度上升,Anammox受到难降解有机物抑制,其中Candidatus_Kuenenia菌属适应性较强,在驯化后仍然可以维持厌氧氨氧化系统较高的脱氮效果。  相似文献   

3.
Nitrogen removal via nitrite from municipal landfill leachate   总被引:2,自引:0,他引:2  
A system consisting of a two-stage up-flow anaerobic sludge blanket (UASB), an anoxic/aerobic (A/O) reactor and a sequencing batch reactor (SBR), was used to treat landfill leachate. During operation, denitrification and methanogenesis took place simultaneously in the first stage UASB, and the e uent chemical oxygen demand (COD) was further removed in the second stage UASB. Then the denitrification of nitrite and nitrate in the returned sludge by using the residual COD was accomplished in the A/O reactor, and ammonia was removed via nitrite in it. Last but not least, the residual ammonia was removed in SBR as well as nitrite and nitrate which were produced by nitrification. The results over 120 d (60 d for phase I and 60 d for phase II) were as follows: when the total nitrogen (TN) concentration of influent leachate was about 2500 mg/L and the ammonia nitrogen concentration was about 2000 mg/L, the shortcut nitrification with 85%–90% nitrite accumulation was achieved stably in the A/O reactor. The TN and ammonia nitrogen removal e ciencies of the system were 98% and 97%, respectively. The residual ammonia, nitrite and nitrate produced during nitrification in the A/O reactor could be washed out almost completely in SBR. The TN and ammonia nitrogen concentrations of final e uent were about 39 mg/L and 12 mg/L, respectively.  相似文献   

4.
高氮渗滤液缺氧/厌氧UASB-SBR工艺低温深度脱氮   总被引:7,自引:1,他引:6       下载免费PDF全文
在低温条件下,采用缺氧/厌氧UASB-SBR组合工艺处理实际垃圾填埋场渗滤液.结果表明,该工艺可实现有机物和氮的同步、深度去除.在进水COD平均为11950.2mg/L,NH4+-N为982.7mg/L的条件下,出水分别为390.1mg/L和2.9mg/L,去除率分别为96.7%和99.7%.同时,缺氧UASB1反应器的最大COD负荷达到13kg/(m3×d),最大COD去除速率为12.39 kg/(m3×d),具有高效缺氧反硝化和高效厌氧降解有机物反应的双重功效, 在SBR反应器的缺氧段和缺氧UASB,反应器内获得了99%以上的反硝化率.对于冬季水温分别为14.9,14.1,13.5,11.05℃的低温条件下,SBR反应器实现了完全硝化和反硝化,出水TN分别为4.1,5.7,14.1,16.5mg/L,达到了深度脱氮的目的.此外,在上述温度范围内,温度对反硝化速率(rN)的影响大于对硝化速率 (rDN)的影响, rN/rDN比值相对恒定.  相似文献   

5.
以磁混凝预处理后的生活污水为处理对象,构建了部分亚硝化-厌氧氨氧化分体式反应器,通过曝气调控与生物强化促进部分亚硝化反应的稳定进行,并耦合厌氧氨氧化反应进行深度脱氮.近100d的运行结果表明,在生物强化和间歇曝气的控制条件下,亚硝酸盐积累率达到了89.93%;提高亚硝化反应器中曝气阶段溶解氧浓度(从0.6~0.8mg/L升高至1.0~1.2mg/L)有利于氨氮与总氮去除.该系统最高能够去除95.45%的氨氮和86.28%的总氮,实现了稳定、高效脱氮;磁混凝预处理后的生活污水在亚硝化反应器中,间歇曝气条件促进了残留的溶解性有机物为反硝化提供碳源,COD总去除率达到64.65%~74.42%,并且亚硝化反应器出水与系统最终出水的有机物组分相似,主要为难降解有机物.  相似文献   

6.
以磁混凝预处理后的生活污水为处理对象,构建了部分亚硝化-厌氧氨氧化分体式反应器,通过曝气调控与生物强化促进部分亚硝化反应的稳定进行,并耦合厌氧氨氧化反应进行深度脱氮.近100d的运行结果表明,在生物强化和间歇曝气的控制条件下,亚硝酸盐积累率达到了89.93%;提高亚硝化反应器中曝气阶段溶解氧浓度(从0.6~0.8mg/L升高至1.0~1.2mg/L)有利于氨氮与总氮去除.该系统最高能够去除95.45%的氨氮和86.28%的总氮,实现了稳定、高效脱氮;磁混凝预处理后的生活污水在亚硝化反应器中,间歇曝气条件促进了残留的溶解性有机物为反硝化提供碳源,COD总去除率达到64.65%~74.42%,并且亚硝化反应器出水与系统最终出水的有机物组分相似,主要为难降解有机物.  相似文献   

7.
IntroductionTheUASBreactoranditsvariousmodificationshavebeensuccessfullyappliedtothetreatmentofvariouskindsofwastewater(hightolowstrength ,industrialanddomestic)underpsychrophilic ,mesophilicandthermophilicconditions(Lettinga ,1995 ) .Modernanaerobicreactors…  相似文献   

8.
The integration of methanogenesis with denitrification and anaerobic ammonium oxidation (ANAMMOX) was studied in an expanded granular sludge bed (EGSB) reactor in this work. Experimental results from the continuous treatment of wastewater with nitrite and ammonium, which lasted for 107 days, demonstrated that wastewater with high nitrite and ammonium could be anaerobically treated in an expanded granular sludge bed reactor. More than 91% to 97% of COD were removed at up to about 3.9 g COD/(L x d) of COD volumetric loading rate. More than 97% to 100% of nitrite was denitrified at up to about 0.8 g NO2(-) -N/(L x d), which is 16 times higher than that in a conventional activated sludge system with nitrification/denitrification (0.05 gN/(L x d)). No dissimilatory reduction of nitrite to ammonium occurred in the process. However, maximum of about 40% ammonium was found to be lost. Batch tests of 15 days with sludge from the reactor showed that 100% of nitrite was denitrified completely, and about 3% of ammonium was removed when only ammonium (34.3 mg/L) and nitrite (34.3 mg/ L) were added into the sludge suspension medium. Furthermore, about 15% of ammonium amounts were lost with organic COD addition. It suggested that the methanogenesis in the system could enhance ANAMMOX because of intermediate hydrogen produced during methanogenesis.  相似文献   

9.
内循环移动床生物膜反应器的研究与应用   总被引:2,自引:0,他引:2  
对传统移动床生物膜反应器进行改进,开发了内循环移动床生物膜反应器,通过处理模拟生活污水的研究,考察了反应器去除有机物和脱氮的能力。结果表明,在填料投加率为35%、进水COD为200~800mg/L、HRT为6h、有机负荷为0.8~3.2kg/(m.3d)的条件下,系统COD的去除率在89%以上;同时反应器具有良好的同步硝化反硝化脱氮能力,在DO为2.0mg/L、C/N为25、HRT为6h的条件下,NH4-N和TN的平均去除率分别可以达到98%和93%。另外,内循环移动床生物膜反应器与移动床生物膜反应器的对比实验结果表明,前者对COD和氮的去除效果都优于后者。  相似文献   

10.
一体式厌氧氨氧化工艺处理高氨氮污泥消化液的启动   总被引:1,自引:0,他引:1  
利用新型固定生物膜一活性污泥反应器处理实际污泥消化液,通过接种短程硝化污泥和厌氧氨氧化生物膜填料,逐渐提高进水氨氮浓度并控制溶解氧浓度在0.11~0.42mg/L,系统在65d内实现了短程硝化-厌氧氨氧化反应的启动.反应器系统稳定运行阶段具有良好的污染物去除效果,进水COD和氨氮浓度为921和1120.8mg/L,COD、氨氮和总氮去除率分别为66.8%,99.0%和94.4%,总氮去除负荷为0.27kgN/(m3·d).试验表明采取逐步提高进水中消化液比例的策略,有利于一体式厌氧氨氧化工艺的快速启动.进一步分析发现系统同时存在厌氧氨氧化和反硝化的脱氮途径,对总氮去除的贡献率分别为67.4%~91.1%和8.9%~32.6%.  相似文献   

11.
Terylene artificial silk printing and dyeing wastewater(TPD wastewater), containing averaged 710 mg/L terephthalic acid(TA) as the main carbon source and the character pollutant, was subjected to expanded granular sludge bed(EGSB) process. The stability of the EGSB process was firstly conducted by laboratory experiment. TA ionization was the predominated factor influencing the acid-base balance of the system. High concentration of TA in wastewater resulted in sufficient buffering capacity to neutralize the volatile fatty acids(VFA)generated from substrate degradation and provided strong base for anaerobic system to resist the pH decrease below 6.5. VFA and UFA caused almost no inhibition on the anaerobic process and biogas production except that pH was below 6.35 and VFA was at its maximum value. Along with the granulating of the activated sludge, the efficiency of organic removal and production rate of biogas increased gradually and became more stable. After start-up, the efficiency of COD removal increased to 57%—64%, pH stabilized in a range of 7.99—8.04, and production rate of biogas was relatively high and stable. Sludge granulating, suitable influent of pH and loading were responsible for the EGSB stability. The variation of VFA concentration only resulted in neglectable rebound of pH, and the inhibition from VFA could be ignored in EGSB. The EGSB reactor was stable for TPD wastewater treatment.  相似文献   

12.
A bench-scale expanded granular sludge bed (EGSB) reactor was applied to the treatment of palm oil mill ettluent (POME).The reactor had been operated continuously at 35℃ for 514 d,with organic loading rate (OLR) increased from 1.45 to 17.5 kg COD/(m3·d).The results showed that the EGSB reactor had good performance in terms of COD removal on the one hand,high COD removal of 91% Was obtained at two days’ of hydraulic retention time (HRT),and the highest OLR of 17.5 kg COD/(m3·d).On the other hand,only 46% COD in raw POME Was transformed into biogas in which the methane content was about 70% (v/v).A 30-d intermittent experiment indicated that the maximum transformation potential of organic matter in raw POME into methane Was 56%.Volatile fatty acid (VFA) accumulation was observed in the later operation stage,and this Was settled by supplementing trace metal elements.On the whole,the system exhibited good stability in terms of acidity and alkalinity.Finally, the operational problems inherent in the laboratory scale experiment and the corresponding countermeasures were also discussed.  相似文献   

13.
文章研究了有机基质对反硝化除磷工艺脱氮除磷效果的影响,实验结果表明:有机基质是影响反硝化除磷效果的重要因素,磷的去除主要在缺氧阶段由反硝化除磷实现。实验保持N、P进水40 mg/L、8 mg/L不变,当COD/P≥31.25时,出水磷浓度小于1 mg/L,去除率大于85%,出水中氨氮和硝酸氮约为0,氮的去除率接近100%,COD的去除率在95%以上;当进水25≤COD/P≤31.25时,出水磷浓度为1~2.4 mg/L,去除率大于70%,氮的去除率接近100%,COD的去除率大于90%;研究结果推断,随着进水有机基质的降低,厌氧池聚磷菌放磷量逐渐减少,缺氧池反硝化除磷量也逐渐降低,二沉池出水磷酸盐含量逐渐升高,反硝化除磷的效率随着有机基质浓度的降低而逐渐降低。  相似文献   

14.
庄桂嘉  刘立凡  黄潇  高静思  朱佳 《环境工程》2022,40(12):128-133
为提高电镀废水的污染物去除效率,探讨厌氧-缺氧-好氧(AAO)-生物膜耦合工艺的有机物去除和脱氮除磷效能。结果表明:AAO-生物膜工艺处理电镀难降解有机废水运行效果良好,COD去除率稳定在89%左右;脱氮主要途径是好氧硝化,缺氧反硝化,60 d运行中系统脱氮率达到70%~80%;难降解有机物影响NH4+-N和COD的去除效率,且存在时间差距,在其影响下,NH4+-N的变化稍滞后于COD。AAO-生物膜工艺的除磷效果经50 d运行后趋于稳定,出水TP浓度低于1 mg/L,去除率>65%,除磷主要依靠厌氧释磷和好氧吸磷过程。  相似文献   

15.
低溶解氧污泥微膨胀节能方法在A/O中的试验验证   总被引:10,自引:5,他引:5  
采用实际的生活污水,在A/O系统中验证了低溶解氧污泥微膨胀节能理论与方法.结果表明,A/O系统在微膨胀运行期间SVI值能稳定维持在150~230 mL/g之间,单纯低溶解氧不会造成污泥沉降性能的严重恶化.相对于高溶解氧、污泥沉降性能良好时的运行情况,微膨胀期间COD和总氮去除率略有升高,分别为86%和63%,氨氮去除率略有下降,平均为70%,且约有10%~25%的氮可通过同步硝化反硝化去除.丝状菌的网捕作用使出水的SS浓度明显减低,出水浊度低于3 NTU.维持DO=0.5 mg/L所需的理论供气量相对DO=2.0 mg/L时可节约17%,对实际的小试结果比较发现可节约57%的曝气量.  相似文献   

16.
UASB1-A/O-UASB2深度处理垃圾渗滤液   总被引:1,自引:0,他引:1       下载免费PDF全文
针对传统垃圾渗滤液生物处理TN去除率低、投加碳源成本高的问题,采用UASB1-A/O-UASB2(单级上流式厌氧污泥床+缺氧/好氧+后置上流式厌氧污泥床)工艺处理实际垃圾渗滤液,实现NH4+-N和TN的同步深度脱除,并且定量解析了A/O反应器实现并维持稳定短程硝化的影响因素. 结果表明:以V(垃圾渗滤液)∶V(生活污水)为1∶5的混合液作为进水,其ρ(CODCr)、ρ(TN)和ρ(NH4+-N)分别为1 700~1 800、660~700和650~680 mg/L,最终出水CODCr、TN和NH4+-N去除率均在95%以上,出水ρ(TN)为38 mg/L,满足GB 16889—2008《生活垃圾填埋场污染控制标准》的排放要求. 在好氧反应器中,FA(游离氨)与FNA(游离亚硝酸)对NOB(硝化细菌)的联合抑制作用是实现NO2--N积累率稳定在80%以上的主要原因,而产生的NO2--N和NO3--N可在UASB2中以难降解的有机物为碳源,通过反硝化途径被去除. 研究显示,组合系统可实现对TN的深度去除.   相似文献   

17.
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   

18.
A two-stage upflow anaerobic sludge blanket(UASB) and sequencing batch reactor(SBR) system was introduced to treat landfill leachate for advanced removal of COD and nitrogen at low temperature.In order to improve the total nitrogen(TN) removal efficiency and to reduce the COD requirement for denitrification,the raw leachate with recycled SBR nitrification supernatant was pumped into the first-stage UASB(UASB1) to achieve simultaneous denitrification and methanogenesis.The results showed that UASB1 played an important role in COD removal and UASB2 and SBR further enhanced the nutrient removal efficiency.When the organic loading rates of UASB1,UASB2 and SBR were 11.95,1.63 and 1.29 kg COD/(m3·day),respectively,the total COD removal efficiency of the whole system reached 96.7%.The SBR acted as the real undertaker for NH4+-N removal due to aerobic nitrification.The system obtained about 99.7% of NH4+-N removal efficiency at relatively low temperature(14.9-10.9°C).More than 98.3% TN was removed through complete denitrification in UASB1 and SBR.In addition,temperature had a significant effiect on the rates of nitrification and denitrification rather than the removal of TN and NH4+-N once the complete nitrification and denitrification were achieved.  相似文献   

19.
炭管曝气膜强化厌氧折流板反应器功能的研究   总被引:2,自引:1,他引:1  
孙翠  杨凤林  胡绍伟  刘惠军  孟军 《环境科学》2008,29(5):1216-1220
将微孔炭管曝气膜置于厌氧折流板反应器(ABR)隔室内,构建一种新型复合式生物反应器(HMABR),通过MABR与ABR的耦合作用强化ABR处理污水的功能,降解其中COD、NH 4-N和TN.结果表明,将驯化好生物膜的炭管曝气膜加入反应器第3隔室后,在膜内腔气压0.025MPa, HRT=24 h,进水COD为2 000 mg/L, NH 4-N为50 mg/L的条件下,系统发生同时硝化反硝化,出水COD、NH 4-N分别从加膜前的156 mg/L、36mg/L左右下降到45 mg/L、6mg/L左右, TN去除率达到87.66%,第3隔室挥发性脂肪酸(VFA)减少77.12%,总产气量减少30%.  相似文献   

20.
EGSB反应器中耦合厌氧氨氧化与甲烷化反硝化的研究   总被引:19,自引:3,他引:16  
将好氧活性污泥接种于膨胀颗粒污泥床(EGSB)反应器中,经过120 d的启动运行,形成颗粒污泥.在启动好的EGSB反应器进水中添加亚硝酸盐和氨盐,反应器内温度控制在32~35 ℃,pH为7.5~8.3,氧化还原电位为-150~-40 mV;水力停留时间4.2 h,上升流速4.86 m/h,经过270 d运行,逐步富集和耦合产甲烷菌、反硝化菌和厌氧氨氧化菌.在进水ρ(CODCr)为500 mg/L,有机容积负荷速率为4.800 kg/(m3·d)(以CODCr计)和1.152 kg/(m3·d)(以N计)的条件下,出水ρ(CODCr)维持在80 mg/L以下;CODCr,氨氮,亚硝态氮和总氮去除率分别为85%, 35%, 99.9%和67%;其去除速率分别稳定在6.12,0.202,0.575和0.777 kg/(m3·d);其中氨氮和总氮的去除速率分别是传统活性污泥法硝化/反硝化(0.05 kg/(m3·d))的4和15.5倍. pH,温度,溶解氧,氧化还原电位,亚硝酸盐和CODCr对EGSB反应器中厌氧氨氧化与甲烷化反硝化的耦合和颗粒污泥的特性均有影响.   相似文献   

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