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1.
IntroductionTheUASBreactoranditsvariousmodificationshavebeensuccessfullyappliedtothetreatmentofvariouskindsofwastewater(hightolowstrength ,industrialanddomestic)underpsychrophilic ,mesophilicandthermophilicconditions(Lettinga ,1995 ) .Modernanaerobicreactors…  相似文献   

2.
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   

3.
混合污泥接种的厌氧氨氧化处理污泥脱水液的启动   总被引:9,自引:1,他引:8       下载免费PDF全文
采用UASB反应器,接种由好氧颗粒污泥、厌氧颗粒污泥、氧化沟活性污泥及短程硝化活性污泥组成的混合污泥,以污泥脱水液经短程硝化处理后水质为进水,在温度(30±0.2)℃, pH值7.3~7.9,初期进水氨氮、亚硝氮容积负荷分别为0.07, 0.10kg/(m3×d)条件下,经过24d运行,氨氮和亚硝氮得到稳定同步去除,186d时TN去除负荷达0.99 kg/(m3×d).启动初期,氨氮、亚硝氮进水浓度分别为20,30mg/L,二者浓度随去除量增加而逐级增加,最高分别达到157,216mg/L;启动过程中,系统受到O2抑制以及O2和亚硝氮基质的连续抑制,分别经过了约10d和30d才得以恢复. 厌氧氨氧化(ANAMMOX)反应与反硝化反应可以共存于系统中,产气量与总氮去除呈正比关系,可及时地指示系统运行状态,对气体成分检测,氮气含量在99.8%.在稳定期ANAMMOX反应呈pH值升高而碱度略有降低.接种混合污泥、低基质负荷启动ANAMMOX,可30d内实现稳定的氨氮和亚硝氮同步去除,180d左右启动成功.  相似文献   

4.
Shortcut nitrification-denitrification, anaerobic ammonium oxidation (ANAMMOX), and methanogenesis have been successfully coupled in an Expanded Granular Sludge Bed-Biological Aerated Filter (EGSB-BAF) integrated system. As fed different synthetic wastewater with chemical oxygen demand (COD) of 300–1200 mg·L−1 and NH4+-N of 30–120 mg·L−1 at the outer recycle ratio of 200%, the influence of influent on ANAMMOX in the integrated system was investigated in this paper. The experimental results showed that higher COD concentration caused an increase in denitrification and methanogenesis but a decrease in ANAMMOX; however, when an influent with the low concentration of COD was used, the opposite changes could be observed. Higher influent NH4+-N concentration favored ANAMMOX when the COD concentration of influent was fixed. Therefore, low COD =NH4+-N ratio would decrease competition for nitrite between ANAMMOX and denitrification, which was favorable for reducing the negative effect of organic COD on ANAMMOX. The good performance of the integrated system indicated that the bacterial community of denitrification, ANAMMOX, and methanogenesis could be dynamically maintained in the sludge of EGSB reactor for a certain range of influent.  相似文献   

5.
厌氧氨氧化微生物颗粒化及其脱氮性能的研究   总被引:22,自引:4,他引:18  
利用厌氧颗粒污泥作为种泥,启动SBR反应器,旨在培养厌氧氨氧化颗粒污泥以及研究其脱氮性能.结果表明,水力停留时间(HRT)是富集厌氧氨氧化微生物的1个重要控制因素,以HRT为30 d,第58 d时,SBR反应器就出现厌氧氨氧化现象,与此同时,颗粒污泥由灰黑色变为棕褐色,粒径减小.到第90 d时,成功培养出厌氧氨氧化颗粒污泥,NH+4-N和NO-2-N同时被去除,最大去除速率分别达到14.6 g/(m3·d)和6.67 g/(m3·d).从第110 d开始,逐步降低HRT,以提高基质负荷促进厌氧氨氧化菌生长.到目前t=156 d,HRT降到5 d,氨氮和亚硝酸氮的去除率分别达到60.6%和62.5%,亚硝酸氮/氨氮的比率为1.12.污泥也由棕褐色变为红棕色,形成红棕色的具有高厌氧氨氧化活性颗粒污泥,总氮负荷达到34.3 g/(m3·d).  相似文献   

6.
河底沉积物培养耐酸产甲烷颗粒污泥的试验研究   总被引:4,自引:0,他引:4  
利用河底沉积物作为接种污泥,在一个3.1L的EGSB反应器中进行培养耐酸产甲烷颗粒污泥的试验研究.结果表明,EGSB反应器在pH6.0,出水碱度低于400mg CaCO3/L,容积负荷5.3kg COD/(m3d)的条件下培养出具有良好沉降性能和产甲烷活性的耐酸颗粒污泥.形成耐酸颗粒污泥后,EGSB反应器在pH5.8~6.0,进水COD 3000mg/L,容积负荷5.2kg COD/(m3d)的条件下稳定运行29d, COD去除率平均为89.2%,出水总碱度仅为264.4mg CaCO3/L,沼气中甲烷的含量约为56.9%.扫描电镜观察发现颗粒污泥内部存在成簇生长的索氏甲烷丝菌  相似文献   

7.
Introduction D istillery w astew ater m ainly includes spent w ash, w hich is one of the m ost com plex, troublesom e industrial organic effluents. This kind of w astew ater has previously been treated aerobically after dilution w ith other w ash w aters.…  相似文献   

8.
A combined process consisting of a short-cut nitrification (SN) reactor and an anaerobic ammonium oxidation upflow anaerobic sludge bed (ANAMMOX) reactor was developed to treat the diluted effluent from an upflow anaerobic sludge bed (UASB) reactor treating high ammonium municipal landfill leachate.The SN process was performed in an aerated upflow sludge bed (AUSB) reactor (working volume 3.05 L),treating about 50% of the diluted raw wastewater.The ammonium removal efficiency and the ratio of NO 2 N to NOx-N in the effluent were both higher than 80%,at a maximum nitrogen loading rate of 1.47 kg/(m 3 ·day).The ANAMMOX process was performed in an UASB reactor (working volume 8.5 L),using the mix of SN reactor effluent and diluted raw wastewater at a ratio of 1:1.The ammonium and nitrite removal efficiency reached over 93% and 95%,respectively,after 70-day continuous operation,at a maximum total nitrogen loading rate of 0.91 kg/(m 3 ·day),suggesting a successful operation of the combined process.The average nitrogen loading rate of the combined system was 0.56 kg/(m 3 ·day),with an average total inorganic nitrogen removal efficiency 87%.The nitrogen in the effluent was mostly nitrate.The results provided important evidence for the possibility of applying SN-ANAMMOX after UASB reactor to treat municipal landfill leachate.  相似文献   

9.
IntroductionTheanaerobicammoniaoxidation(Anammox)isanovelbiologicalreactionthatproducesmolecularnitrogenwithammoniaaselectrondonorandnitriteaselectronacceptor,respectively (vandeGraff,1995 ;1996 ) .Anammoxprocesshasbeenshowntobeapromisingwayofremovingnitr…  相似文献   

10.
采用间歇试验研究了微量NO2氛围下,好氧、厌氧氨氧化复合颗粒污泥动力学特性.结果表明,微量NO2能提高O2反应活性,强化好氧氨氧化过程.反应动力学可用Andrews方程描述,NO2半饱和系数和抑制系数分别为1.32,7.11μmol/L.NO2强化厌氧氨氧化过程动力学模型中最大强化系数为43.5,NO2半饱和系数和抑制系数分别为16.9,0.348μmol/L,基础速率系数为0.024.建立了NO2强化完全自营养脱氮动力学模型,并对EGSB反应器中脱氮过程进行了模拟,当DO为0.6mg/L,NO2为3.0μmol/L时,总氮去除率达最大值.根据模拟结果优化反应器运行条件,总氮去除率由26.86%~31.65%提高到58.83%~63.08%,总氮平均去除速率由0.113 kg/(m3·d)提高到0.234kg/(m3·d).  相似文献   

11.
部分亚硝化-厌氧氨氧化耦合工艺处理污泥脱水液   总被引:16,自引:1,他引:15       下载免费PDF全文
在缺氧滤床+好氧悬浮填料生物膜工艺中实现部分亚硝化,然后进行厌氧氨氧化(ANAMMOX),考察其对高含氮、低C/N污泥脱水液的处理能力.结果表明,亚硝化反应器在15~29℃、DO 6~9mg/L条件下,通过综合调控进水氨氮负荷(ALR)、进水碱度/氨氮、水力停留时间(HRT)等运行参数,可以调节出水(NO2--N)/(NH4+-N)的比率,能够较好地实现部分亚硝化反应以完成厌氧氨氧化.当进水ALR为1.16kg/(m3·d),进水碱度/氨氮为5.1时,出水(NO2--N)/(NH4+-N)在1.2左右,(NO2--N)/(NOx--N)大于90%,进入ANAMMOX反应器的氮物质去除率达到83.8%.  相似文献   

12.
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   

13.
研究了ANAMMOX耦合异养反硝化反应器的启动过程,考察了苯酚浓度对耦合反应器脱氮性能的影响.接种2L(占反应器有效容积的20%)挥发性悬浮固体(MLVSS)为6000mg/L的ANAMMOX颗粒污泥,在pH7.8、温度为25℃、HRT为1.5h的条件下经过86d的培养,ANAMMOX耦合异养反硝化启动成功.实验结果表明,在稳定运行阶段,NH4+-N、NO2--N和TN平均去除率分别为85.4%、86.1%和79.9%,TN平均容积负荷和TN平均去除负荷分别为2.63,2.10kg/(m3·d);ANAMMOX颗粒污泥外面包裹着苯酚反硝化菌;系统内异养反硝化与ANAMMOX存在协同和竞争关系.当苯酚浓度≥0.3mmol/L时,ANAMMOX菌的活性受到很大抑制,苯酚浓度的升高加剧了苯酚反硝化菌与ANAMMOX菌之间的竞争;从脱氮效果及系统稳定两方面综合考虑,当苯酚浓度为0.2mmol/L时,耦合效果最好,消耗的NH4+-N、NO2--N与生成的NO3--N之比为1:1.52:0.11.  相似文献   

14.
好氧颗粒污泥亚硝化工艺的启动与运行特性研究   总被引:10,自引:8,他引:2  
杨洋  左剑恶  卜德华  顾夏声 《环境科学》2007,28(11):2462-2466
以具有硝化功能的活性污泥与厌氧产甲烷颗粒污泥的混合物接种小试曝气上流式污泥床反应器,采用自配无机氨氮废水为进水,在中温(30~35℃)条件下成功培养获得亚硝化颗粒污泥,亚硝化工艺的进水NH4-N负荷可达2 .5~3 .0 kg/(m·d),氨氮去除率和亚硝化率均可稳定在90%以上;进水中约100 mg/L的有机COD对亚硝化工艺的运行无明显影响;常温(约20℃)条件下亚硝化工艺也能高效稳定运行.  相似文献   

15.
蚀刻液废水厌氧氨氧化脱氮性能研究   总被引:3,自引:0,他引:3       下载免费PDF全文
李祥  黄勇  朱莉  袁怡  李大鹏  张丽 《中国环境科学》2012,32(12):2199-2204
采用上流式生物膜反应器接种厌氧氨氧化污泥,研究了印制电路板行业蚀刻液废水厌氧氨氧化脱氮可行性.结果表明,蚀刻液废水作为NH4+-N源时,其所携带的物质对厌氧氨氧化污泥活性具有毒性作用.当蚀刻液废水稀释到NH4+-N浓度150mg/L进入反应器14d后,厌氧氨氧化氮去除速率从3.2kg/(m3·d)下降到1.2kg/(m3·d).但是通过驯化培养可以很好地缓解蚀刻液对厌氧氨氧化污泥的毒性影响.经过110d的驯化,蚀刻液废水稀释到NH4+-N浓度300mg/L进入反应器后并未出现明显的抑制现象.厌氧氨氧化氮去除速率从1.6kg/(m3·d)上升到6.0kg/(m3·d).说明通过驯化培养后,厌氧氨氧化工艺能够很好的运用到PCB行业高NH4+-N废水的处理.  相似文献   

16.
泳动床/好氧颗粒污泥新技术处理生活污水的特性研究   总被引:8,自引:0,他引:8  
张岩  王永胜  白玉华  陈晨  吕鑑  张杰 《环境科学》2007,28(10):2249-2254
基于生物膜法和活性污泥法的联合工艺技术,开发了泳动床/好氧颗粒污泥污水处理新技术.试验阶段,泳动床/好氧颗粒污泥技术表现出高效处理生活污水和实现污泥减量的显著特性.在水力停留时间HRT为3.2 h, COD负荷与NH+4-N负荷分别为2.03  kg/(m·d) 和0.52  kg/(m·d)时,分别获得COD 90.9%和NH+4-N 98.3%的平均去除效果.系统运行16 d开始出现好氧颗粒污泥,颗粒呈球形、椭球形和棒形,试验阶段混合液悬浮固体浓度MLSS最高达5 640 mg/L, MLVSS/MLSS平均高达0.87.此外,镜检表明好氧颗粒污泥与生物膜均聚集大量的原生动物和后生动物,形成较长和较稳定的食物链,有利于污泥减量,运行过程中污泥产率(MLSS/CODremoved)为0.175 5,仅为普通好氧工艺的50%左右.  相似文献   

17.
焦化废水厌氧氨氧化生物脱氮的研究   总被引:4,自引:1,他引:3       下载免费PDF全文
采用厌氧氨氧化(ANAMMOX)工艺处理焦化废水,在厌氧34℃、pH值7.5~8.5,HRT为33h的条件下,经过115d成功启动厌氧氨氧化反应器.当进水NH4+-N、NO2--N浓度分别为80、90mg/L左右时, TN负荷可达160mg/(L·d),系统NH4+-N和NO2--N的去除率最高分别达86%和98%,TN去除率可达75%. GC-MS分析结果表明,酚类是焦化废水中较易被生物利用的有机物,ANAMMOX过程对好氧短程硝化工艺出水残余低浓度酚类有机物有进一步去除作用.  相似文献   

18.
耦合反硝化的CANON生物滤池脱氮研究   总被引:1,自引:0,他引:1  
为探究有机物对全程自养脱氮(CANON)工艺的脱氮性能的影响,采用上向流火山岩填料反应器处理模拟废水,在反应器最优工况下实现亚硝化、厌氧氨氧化与反硝化的耦合.结果表明,滤柱在氨氮浓度为200mg/L时的最优总氮去除率均值可达76.73%,总氮去除负荷为2.82kgN/(m3·d).C/N为0.2的有机物水平对反应器的脱氮效果具有促进作用,并可通过HRT的调节实现总氮去除率大于89%(理想条件下CANON的最大脱氮率).因此,通过控制C/N可以提升滤柱氮素去除效率.  相似文献   

19.
赵晴  刘梦莹  吕慧  梁俊宇  刁兴兴  张鑫  孟了 《环境科学》2019,40(9):4195-4201
本研究从某垃圾填埋场计划将现有的垃圾渗滤液短程硝化反硝化脱氮工艺改造为短程硝化反硝化耦合厌氧氨氧化工艺的实际需求入手,以短程硝化反硝化污泥作为接种污泥,在上流式厌氧污泥床反应器(UASB)中完成厌氧氨氧化启动.探究反应器运行中的脱氮效能、氮容积负荷和氮去除负荷情况,并利用16S rRNA基因序列分析技术对长期运行条件下系统中微生物群落结构演替进行分析.结果表明,反应器经历了149 d后成功启动厌氧氨氧化,稳定运行后的进水总氮容积负荷达到4 000. 00 mg·(L·d)-1,总氮容积平均去除速率达到3 885. 76 mg·(L·d)-1,系统氨氮和亚硝酸盐氮的平均去除率均超过了95%.运行第250 d时,系统的生物多样性减少,门水平上厌氧氨氧化主要菌群Planctomycetes的丰度达到了54. 94%;属水平上Candidatus Kuenenia为主要菌属,其相对丰度达到了49. 66%.结果证明,在短程硝化反硝化基础上耦合厌氧氨氧化实现垃圾渗滤液深度处理的升级改造工艺具有可行性.  相似文献   

20.
林可霉素生产废水的厌氧生物处理工艺   总被引:17,自引:2,他引:15  
采用单相中温升流式厌氧污泥床(UASB)反应器厌氧生物工艺处理含有有毒难降解有机物的林可霉素生产废水.当进水COD 8000~14000 mg/L,HRT约10h时,COD容积负荷可达20~35kg/(m3·d),COD去除率为50%~55%.适时调整并维持较高的表面水力负荷[0.2~0.4 m3/(m2·h)]、较高的进水有机基质浓度(COD为2000~3000mg/L)和污泥COD负荷[0.2~0.5 kg/(kg·d)],并适当延长启动驯化时间可培养出沉降性好、污泥活性较高的颗粒污泥.废水厌氧生物降解动力学符合Monod方程,动力学常数Vmax=1.3 d-1,Ks=8133mg/L.废水中不可生物降解物质占总COD的比例约为30%,这是废水COD去除率偏低的重要因素.  相似文献   

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