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1.
本研究在柱形SBR反应器中接种市政污水厂活性污泥,以乙酸钠为碳源,考察了逐步提高进水有机负荷(OLR)对好氧颗粒污泥(AGS)形成的影响,并分析了污泥外观形态、微生物活性与胞外聚合物(EPS)组成的演化规律.结果表明,当进水OLR在3.20~4.84 kg·(m3·d)-1时,污泥粒径的增长速率最快.更高的OLR将导致絮状污泥的大量出现,需辅以应急性排泥,才能保持AGS在反应器中的主导地位.成熟AGS的污泥浓度(MLSS)、污泥体积指数(SVI30)、平均粒径、沉降速率和比耗氧速率(SOUR)分别达到23.9 g·L-1、20 m L·g-1、1.4 mm、102 m·h-1和50.2 mg·(g·h)-1.污泥颗粒化过程不仅使污泥形态发生了根本变化,也显著增强了微生物活性.在此期间,胞外聚合物中PN、PS含量的变化对生物量累积、颗粒生长表现出良好的响应关系.充分发挥EPS组分的指示功能,将有助于优化现有AGS的培养方法.  相似文献   

2.
通过考察好氧颗粒污泥特征、比耗氧速率(SOUR)、处理效果和菌群的变化,探索常温储存实际低碳源废水培养出的好氧颗粒污泥的可行性.试验结果表明,常温清水储存60d后颗粒结构未出现明显解体;污泥浓度由4960mg/L小幅降低至4740mg/L,但沉降性能保持良好(SVI为24.2mL/g);SOUR整体下降较小(16%),尤其是硝化菌的SOUR;污泥菌群在门和属水平上的相对丰度均发生了变化.在恢复运行后,颗粒形态恢复快且良好,粒径在长期运行后明显增大(200~250μm);污泥沉降性能始终保持良好(SVI<20mL/g),SOUR在运行20d后既能恢复;运行11d后COD处理效果完全恢复(平均出水COD为53mg/L),运行5d后NH4+-N处理效果完全恢复(平均出水NH4+-N为0.7mg/L).常温清水储存好氧颗粒污泥不仅操作方便,而且反应器能快速恢复稳定运行,具有显著的实际应用价值.  相似文献   

3.
在低温条件下运行好氧颗粒污泥反应器,絮状污泥颗粒化过程中信号分子可通过传导作用引起各层物质之间的组分变化,通过研究胞外聚合物及污泥相关疏水性的变化规律,并观察此过程中微生物菌群的群落演替特点,揭示环二鸟苷酸(c-di-GMP)在低温好氧颗粒污泥形成过程中的变化规律与影响作用.结果表明:接种污泥在颗粒化过程中,胞外聚合物含量从48mg/gMLVSS增长至139mg/gMLVSS,其中以TB层蛋白质增长为主,在颗粒化过程中,c-di-GMP含量由62μg/gMLVSS增至600μg/gMLVSS,始终影响微生物运动及生物膜形成,促使具备胞外聚合物分泌功能的菌群加快分泌胞外聚合物,促进好氧颗粒污泥的形成.各个阶段污泥中微生物种群存在较大差异,在反应器运行初始阶段与c-di-GMP合成相关的菌群占据优势,同时在后期表现出较好的脱氮除磷能力,在低温条件下好氧颗粒污泥微生物菌群发生演替并最终形成稳定的菌群结构.  相似文献   

4.
采用序批式活性污泥(SBR)工艺,分别以葡萄糖(R1反应器)和乙酸钠为基质(R2反应器)运行102 d,对培养成熟的颗粒污泥特性进行研究.结果表明:R1反应器中以球菌为主,R2反应器中以杆菌、球菌为主;在颗粒刚成熟时,R2反应器的颗粒大些,且集中,粒径在0.1~1.0 mm,随着颗粒成熟期的延长,R1反应器的粒径要大些,最大为2,2 mm;R1和R2反应器的耗氧速率(OUR)分别为1.184和0.944 mg/(L·min),比耗氧速率(SOUR)分别为0.838和0.825 mg/(g·min);有机污染负荷为600~1 200 mg/L时,R1和R2反应器的CODCr去除率均达到95%~98%.  相似文献   

5.
EGSB反应器中颗粒污泥床工作状况及污泥性质研究   总被引:13,自引:1,他引:13  
研究了处理低浓度有机废水的EGSB反应器中颗粒污泥床状况及颗粒污泥的性质,结果表明,液体表面上升流速(Vup)是影响EGSB反应器交通的重要参数,当进水COD为600-800mg/L时。较佳的液体表面上升流速(Vup)为1.5-4.5m/h,在此条件下EGSB反应器COD负菏为24.5-25.7kg/(m^3.d),COD去除率大于85%;同时还发现,经过一定时间的运行后,反应器中颗粒污泥粒径分布、沉顾委速率、胸外聚合物(ECP)等性质都发生了明显变化,颗粒污泥的平均粒径由0.85mm增加到1.78mm。平均沉降速度由41.2m/h提高到83.2m/h,而胞外聚合物(ECP)的含量则由接种污泥的32.5mg/g增加到57.8mg/g。  相似文献   

6.
同步脱氮除磷颗粒污泥硝化反硝化特性试验研究   总被引:4,自引:4,他引:0  
在厌氧/好氧交替运行的SBR反应器中,以成熟的脱氮除磷颗粒污泥为研究对象,对其硝化及反硝化特性进行研究.结果表明,静态试验中颗粒污泥的最大硝化速率为14.13 mg·(g·h)-1,最大反硝化速率为34.89 mg·(g·h)-1,最大缺氧吸磷反硝化速率为13.11 mg·(g·h)-1,污泥具有较好的硝化、反硝化性能;反应器中污泥最大硝化速率为4.60 mg·(g·h)-1,最大反硝化速率为1.43 mg·(g·h)-1;通过N的物料平衡得到,同步硝化反硝化反应去除N约为232.5 mg·d-1,占N去除总量的54.3%;另外,颗粒污泥对P和N的去除率分别在95%和90%左右,反应器具有较好的同步脱氮除磷效果.  相似文献   

7.
不同恢复方式对硝化颗粒污泥活性的影响   总被引:1,自引:1,他引:0  
郭秀丽  高大文  卢健聪 《环境科学》2013,34(10):3981-3985
利用SBR反应器培养的成熟好氧硝化颗粒污泥,进行了硝化颗粒污泥临界活性以及不同氨氮浓度及曝气时间对储存的好氧硝化颗粒污泥活性恢复的影响研究.结果表明,储存不同时间的硝化菌活性(SOUR,O2/VSS)差别较大,储存前硝化颗粒污泥硝化菌SOUR为13.15 mg·(g·h)-1,储存20 d的硝化菌SOUR下降了1.26 mg·(g·h)-1,恢复运行了5个周期,氨氮去除率已经达到95%以上,恢复后活性为13.87 mg·(g·h)-1.但储存30 d的硝化菌SOUR降了11.63 mg·(g·h)-1,恢复运行51个周期后,氨氮去除率才达到92.64%,恢复后活性为14.92 mg·(g·h)-1,同时这种储存方法恢复时间较长,因此提出硝化颗粒污泥的临界活性为当硝化菌SOUR开始下降时,进行活性恢复.在临界活性的基础上,采用当硝化菌SOUR下降到临界活性时实施恢复,之后进入下一个储存周期,这种储存方式即为动态储存.当进水氨氮浓度分别为20、30、40 mg·L-1时,进行颗粒污泥活性恢复,进水氨氮浓度为40 mg·L-1恢复后硝化菌活性最高,经过3次动态储存后,其活性保持良好.当曝气时间分别为1、2、3 h时,进行颗粒污泥活性恢复,曝气时间为1 h时恢复后硝化菌活性最高,在动态储存过程中其活性一直保持较高水平.  相似文献   

8.
沉降速率作为选择压对好氧颗粒污泥性质影响   总被引:6,自引:1,他引:6  
在序批式反应器中以普通活性污泥驯化而得的好氧颗粒污泥为接种污泥,葡萄糖为碳源,研究作为选择压的沉降速率对好氧颗粒污泥性质的影响。结果表明:作为选择压的沉降速率与反应器中SV值和MLSS成反比关系;在沉降速率变化过程中,污泥龄、耗氧速率、胞外多聚物和COD去除率均产生变化。在本试验条件下,改变沉降速率,能改变反应器中生物量的洗出量并在一定程度上影响微生物群体的组成,从而影响活性的生物学性能;但生物相的改变限度在一定范围内,存在着动态平衡。污泥龄的波动与不同沉降速率下反应器中污泥中的胞外多聚物含量的变化有关。大量的胞外多聚物在颗粒污泥表面形成粘液层,对颗粒污泥形成保护。不同沉降速率下颗粒污泥的的胞外多聚物发生变化,进而影响颗粒污泥的稳定性。  相似文献   

9.
朱亮  徐向阳  郑昱 《环境科学学报》2005,25(11):1448-1456
研究了序批式气提生物反应器(SABR)处理氯苯胺类(CAs)有机废水过程中好氧污泥的颗粒化.SABR运行15d后,反应器内出现细小污泥颗粒,通过缩短循环时间与污泥沉降时间,并逐步提高COD与CAs进水负荷,SABR运行48d后污泥颗粒化明显;反应器在循环时间为12h、污泥沉降时间为6min、表面气速为2.4cm.s-1、COD负荷为1.0~3.6kg.m-3.d-1、CAs负荷逐步提升至800g.m-3.d-1的条件下继续运行50d,SABR污泥颗粒化趋于成熟,COD、CAs去除率稳定在90%、99.9%以上.根据污泥形态、最小沉降速率、SVI和目标污染物降解性能的变化,好氧污泥颗粒化过程可分为启动期、颗粒污泥形成期、生长期和成熟期.成熟好氧颗粒污泥粒径为0.9~2.5mm,平均颗粒密度为64g.L-1(以MLVSS计),污泥最小沉降速率为68.4m.h-1,SOUR为167mg.g-1.h-1;颗粒污泥外形为圆形或椭圆形,呈橙黄色,结构较致密,颗粒内外分布有丰富的类球菌、类短杆菌,与胞外多聚物交织共存.  相似文献   

10.
不同颗粒龄的好氧颗粒污泥性能的研究   总被引:6,自引:3,他引:3  
在SBR反应器中,分别以絮状活性污泥培养的好氧颗粒污泥和直接接种的已稳定运行1 a的好氧颗粒污泥为对象,对2种颗粒龄不同的颗粒污泥的形态、理化特性、对有机物降解能力以及微生物活性进行了比较研究.结果表明,小颗粒龄好氧颗粒的平均湿密度、污泥的比重和表示物理强度的完整系数(IC)分别为1.066 g.cm-3、1.013 g.cm-3和98.7%,各指标均高于大颗粒龄好氧颗粒的1.026 g.cm-3、1.010 g.cm-3和98.4%,两者的平均粒径分别为1.9 mm和2.2 mm.小颗粒龄好氧颗粒和大颗粒龄好氧颗粒的沉降速度分别为0.005~0.032 m.s-1和0.003~0.028 m.s-1,前者的SVI较低,且两体系中好氧颗粒的沉降速度均随粒径的增大而增大.两者对COD、NH4+-N的去除率都保持在90%以上和85%左右,从出水COD浓度、NH4+-N浓度和周期试验来看,小颗粒龄好氧颗粒对COD、NH4+-N的去除效果更好,两者对TP的去除率分别维持在40%~90%和32%~85%,但两者对TN的去除效果相差不大,去除率都在80%左右.同时,小颗粒龄好氧颗粒的异养菌比耗氧速率(SOURH)、亚硝酸菌比耗氧速率(SOURNH4)、硝酸菌比耗氧速率(SOURNO2)分别为26.4、14.8和11.2 mg.(h.g)-1,均大于大颗粒龄好氧颗粒的25.2、14.4和8.4 mg.(h.g)-1.综上所述,好氧颗粒污泥由于颗粒龄的不同会具有明显不同的理化性质,颗粒龄小的好氧颗粒具有更好的有机物降解能力、更高的微生物活性和更好的稳定性.  相似文献   

11.
In order to evaluate the influence of microbial community structure of seed sludge on the properties of aerobic nitrifying granules, these granules were cultivated with different seed sludge, and the variation of microbial community and dominant bacterial groups that impact the nitrogen removal efficiency of the aerobic nitrifying granules were analyzed and identified using 16s rDNA sequence and denaturing gradient gel electrophoresis (DGGE) profiles. The results presented here demonstrated that the influence of the community structure of seed sludge on the properties of aerobic nitrifying granules was remarkable, and the granules cultivated by activated sludge from a beer wastewater treatment plant showed better performance, with a stable sludge volume index (SVI) value of 20 mL/g, high extracellular polymeric substance (EPS) content of 183.3 mg/L, high NH4+-N removal rate of 89.42% and abundant microbial population with 10 dominant bacterial groups. This indicated that activated sludge with abundant communities is suitable for use as seed sludge in culturing aerobic nitrifying granules.  相似文献   

12.
Aerobic granules seeded with activated sludge flocs and pellets (obtained from activated sludge flocs) were cultivated in two sequencing batch reactors and their characteristics were compared. Compared with granules seeded with activated sludge flocs, those seeded with pellets had shorter start-up time, larger diameter, better chemical oxygen demand removal e ciency, and higher hydrophobicity, suspended solid concentration, and Mg2+ content. The di erent inocula led the granule surface with di erent microbial morphologies, but did not result in di erent distribution patterns of extracellular polymeric substances and cells. The anaerobic bacterium Anoxybacillus sp. was detected in the granules seeded with pellets. These results highlighted the advantage of pellet over activated sludge floc as the seed for aerobic granulation and wastewater treatment.  相似文献   

13.
曝气量对SBAR中好氧颗粒污泥特性的影响   总被引:4,自引:1,他引:3  
采用SBAR反应器对比研究了颗粒化后表观气速为1.8 cm·s-1和0.9cm·s-1时对成熟好氧颗粒污泥形态结构、粒径、强度等物理特性和硝化性能以及胞外聚合物代谢的影响.结果表明,颗粒化后降低曝气量增加颗粒形态不规则程度,空隙增大;55d试验中,与高曝气量下相比,降低曝气量使表观污泥产率提高33%,颗粒粒径平均增长速率提高25%,相对颗粒强度降低6%, EP5含量平均降低12%.两反应器颗粒污泥SVI值均在10~15 mL·g-1,沉降性能良好,且均具有良好硝化性能和降解COD能力.与高曝气量下相比,低曝气量下硝化菌群活性低,而异养菌活性高.  相似文献   

14.
The effect of COD/N ratio on the granulation process and microbial population succession was investigated. Four identical sequencing batch reactors, R1, R2, R3 and R4, were operated with various initial COD/N ratios ranging from 0/200 to 800/200 (m/m). Ethanol was fed as the source of COD. Aerobic granules were successfully cultivated in R2 and R3, operating with the COD/N ratio of 200/200 and 400/200, respectively. Scanning electron microscope observations indicated that short rod-shaped and spherical bacteria were dominant in R2, while granules produced in R3 were surrounded with a large amount of filamentous bacteria. The average specific nitritation rate in R2 and R3 were 0.019 and 0.008 mg N/(mg MLVSS.hr), respectively. Fluorescence in situ hybridization results demonstrated that nitrifying bacteria population was enriched remarkably in R2. It indicated that nitrification ability and nitrifying bacteria population were enriched remarkably at low COD/N ratio. However, no granules were formed in R1 and R4 which might attribute to either limited or excessive extracellular polymeric substances production. This study contributed to a better understanding of the role of COD/N ratio in nitrifying sludge granulation.  相似文献   

15.
在R1、R2和R3共3组气提式内循环序批式反应器中启动好氧颗粒污泥工艺,探讨在无选择压作用下有机负荷对好氧颗粒污泥的形成及稳定性的影响.其中,R1、R2分别以7 kg.(m3.d)-1和3 kg.(m3.d)-1的目标COD负荷直接启动,R3以1.5kg.(m3.d)-1逐步增加至3 kg.(m3.d)-1的递增COD负荷方式启动.结果表明,3组反应器在启动期中均能快速形成好氧颗粒污泥,但以目标负荷启动方式易使好氧颗粒污泥反应器产生丝状菌污泥膨胀.通过对颗粒形成过程、粒径、性质以及胞外多聚物等指标分析,认为递增负荷的启动方式可有效抑制启动初期丝状菌污泥膨胀,且形成的颗粒更为稳定,生物降解效率更高.  相似文献   

16.
Aerobic granular sludge was cultivated by using different kinds of seed sludge in sequencing batch airlift reactor.The influence of seed sludge on physical and chemical properties of granular sludge was studied;the microbial community structure was probed by using scanning electron microscope and polymerase chain reaction-denaturing gradient gel electrophoresis(PCR-DGGE).The results showed that seed sludge played an important role on the formation of aerobic granules.Seed sludge taken from beer wastewater treatment plant(inoculum A) was more suitable for cultivating aerobic granules than that of sludge from municipal wastewater treatment plant(inoculum B).Cultivated with inoculum A, large amount of mature granules formed after 35 days operation, its SVI reached 32.75 mL/g, and SOUR of granular sludge was beyond 1.10 mg/(g·min).By contrast, it needed 56 days obtaining mature granules using inoculum B.DGGE profiles indicated that the dominant microbial species in mature granules were 18 and 11 OTU when inoculum A and B were respectively employed as seed sludge.The sequencing results suggested that dominant species in mature granules cultivated by inoculum A were Paracoccus sp., Devosia hwasunensi, Pseudoxanthomonas sp., while the dominant species were Lactococcus raffinolactis and Pseudomonas sp.in granules developed from inoculum B.  相似文献   

17.
为了考察氮磷同时缺乏对活性污泥系统的影响,采用2个序批式间歇反应器(SBR),按照缺氧/好氧的方式平行运行,通过调节不同的进水COD/N/P比,考察了氮磷同时缺乏状态下活性污泥系统的污泥沉降性、絮体形态、出水水质以及比耗氧速率等方面的表现。结果表明,在氮磷同时缺乏时,当进水COD/N/P比为100/2/0.4时,活性污泥系统会发生丝状菌膨胀,而当进水COD/N/P为100/0.5/0.1时,污泥沉降性保持良好;各反应器的活性污泥浓度均在逐渐地下降,MLSS由约2200mg/L下降至1800mg/L以下;各反应器的比耗氧速率均呈现逐渐上升的趋势,COD的去除率呈现逐渐下降的趋势。  相似文献   

18.
The effects of different substrates on the aerobic granulation process were studied using laboratory-scale sequencing batch reactors (SBRs). Four parallel granules sequencing batch reactors (GSBR): R1, R2, R3, and R4 were fed with acetate, glucose, peptone and fecula, respectively. Stable aerobic granules were successfully cultivated in R1, R2, R4, and smaller granules less than 500 μm were formed in R3. Morphology and the physic-chemical characteristics of aerobic granules fed with different carbon substrates were investigated by the four reactors operated under the same pressure. The aerobic granules in the four reactors were observed and found that peptone was the most stable one due to its good settleability even after a sludge age as short as 10 d. A strong correlation was testified between the characteristics of aerobic granules and the properties of carbon substrates. The stability of aerobic granules was affected by extracellular polymer substances (EPS) derived from microorganism growth during feast time fed with different carbon substrates, and the influence of the property of storage substance was greater than that of its quantity. Optimal carbon substrates, which are helpful in the cultivation and retention of well-settling granules and in the enhancement of the overall ability of the aerobic granules reactors, were found.  相似文献   

19.
在非曝气条件下接种好氧颗粒污泥(AGS)和绿藻藻种,经过18d的培养,成功构建了菌-藻共生好氧颗粒污泥系统(ABGS).研究表明,在非曝气条件下,与传统的AGS相比,ABGS具有更高的生物活性、除污染效能和机械强度,说明ABGS的稳定性更优.对ABGS的稳定性机理进行分析,发现在颗粒化过程中,胞外聚合物(EPS)特别是紧密结合层EPS(TB-EPS)中蛋白质(PN)含量明显增加,实验末期其含量增加至114.4mg/g MLSS,约为AGS的2.8倍.采用三维荧光光谱进一步分析EPS的组分,结果表明TB-EPS中氨基酸、色氨酸、芳香族蛋白质、络氨酸和色氨酸类物质是维持颗粒结构稳定性的重要原因.在微生物群落结构方面, ABGS的物种多样性和群落丰富度更高,原核生物绿弯菌门(Chloroflexi)和浮霉菌门(Planctomycetes)、真核生物绿藻门(Chlorophyta)的富集有利于加强系统的稳定性.  相似文献   

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