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1.
矿化垃圾对剩余污泥厌氧水解、酸化的影响   总被引:1,自引:0,他引:1  
通过向剩余污泥发酵系统中加入不同剂量的矿化垃圾的方法,探究了矿化垃圾对剩余污泥厌氧水解、酸化过程的影响.结果表明,添加1/3g/g TSS(总悬浮固体)剂量以内的矿化垃圾能显著提高WAS的水解、酸化过程,且矿化垃圾的最佳投加量为1/3g/g TSS,在此条件下,试验组SCOD/TCOD以及最大产酸量(183.45mg COD/g VSS,发酵时间为6d)均高于空白组(79.45mg COD/g VSS,发酵时间为10d).机理研究表明,矿化垃圾能够促进污泥的溶解、蛋白质和多糖的水解以及氨基酸和葡萄糖的酸化.在投加矿化垃圾的反应体系中与水解、酸化有关酶的活性也均高于空白试验组,进一步证实了矿化垃圾能够强化污泥厌氧发酵的水解酸化反应.  相似文献   

2.
在厌氧消化反应器中施加0.6V电压刺激,考察初始pH值(3,5,7,9,11)对剩余污泥厌氧消化效果的影响.结果表明,当初始pH值为9、厌氧消化至32d时,污泥挥发性固体有机物去除率为38.1%,甲烷产率为224mLCH4/g VS;同样的消化时间内,初始pH值为7的对照组,其挥发性固体有机物去除率为32.2%,甲烷产率仅为162mLCH4/g VS.调节初始pH值可加速污泥水解酸化过程,其中pH值为11时,水解酸化效果最好,比其他pH值条件下产生更多的挥发性脂肪酸(VFAs).在产酸高峰期,初始pH值为3、11时,乙酸和丁酸是主要产物;初始pH值为5、7、9时,主要产物是乙酸和丙酸.调节初始pH值能加速氨氮的释放,且pH值为酸性(3,5)时的氨氮浓度高于碱性条件下(9,11)的浓度.  相似文献   

3.
The anaerobic ammonia oxidation(Anammox) bioreactor was successfully started up with the nitrifying activated sludge. After anaerobically operated for 105 d, the bioreactor reached a good performance with removal percentage of both ammonia and nitrite higher than 95% and volumetric total nitrogen removal as high as 149.55 mmol/( L. d). The soft padding made an important contribution to the high efficiency and stability because it held a large amount of biomass in the bioreactor.  相似文献   

4.
石化废水剩余污泥在厌氧消化时,污泥停留时间长,且产气量较低,并且反应器容积较大,所需资金投入较高。污泥厌氧消化预处理能够改变污泥特性,缩短了后续消化时间,提高甲烷产量,减少剩余污泥量。综述了各种污泥预处理技术的最新进展,分析了石化污泥厌氧消化预处理的可行性。  相似文献   

5.
厌氧活性污泥工艺生物发酵产氢能力研究   总被引:17,自引:0,他引:17       下载免费PDF全文
为了获得廉价氢气,开发新能源,利用厌氧活性污泥对有机废水的发酵作用制取氢气,应用研制的连续流生物制氢反应器进行试验。结果表明,碳水化合物的产氢─产酸过程是通过乙醇型发酵。在最佳运行条件下,产氢能力达0.42~0.47LH2/L·h,气体产率达0.3m3发酵气/kg进水COB。还探讨了COD容积负荷、搅拌器转速等运行参数对产氢能力的影响,提出了获得较高产氢能力的工程控制对策,为进一步开发生物制氢技术,实现工业化提供了依据。  相似文献   

6.
颤蚓对活性污泥沉降性能的影响   总被引:5,自引:2,他引:5  
系统考察了低、中、高3种不同污泥浓度下(TSS≈4 g·L-1、6 g·L-1和8 g·L-1),一定的颤蚓投加比例对活性污泥沉降性能的影响,并同时考察了颤蚓对污泥特性的影响.研究结果表明,投加颤蚓后60min内,活性污泥沉降速率明显加快,60min时的污泥容积相对于未投加颤蚓前可减少8%~42%;而且.这种效应对污泥浓度高的活性污泥更为显著和有效.然而.通过对污泥特性的分析表明,颤蚓在短时间内(1~3h)对污泥平均粒径、Zeta 电位并无多少影响;此时污泥容积指数(SVI)和胞外聚合物含量(EPS)却反而略有增加.  相似文献   

7.
以聚丙烯(PP)微塑料为研究对象,考察不同浓度PP微塑料对污泥厌氧消化产CH4和产酸效能的作用影响,同时采用荧光定量PCR方法定量检测了乙酸激酶(AK)和mcrA基因在不同PP微塑料作用下的丰度变化.结果表明,PP微塑料对污泥厌氧消化产CH4和产酸效能具有促进影响,CH4和乙酸累计产量随PP微塑料投加量的增大而升高,当PP微塑料投加量为0.2g/g VSS时,CH4和乙酸累计产量与空白对照相比分别提高148.2%和15.2%,达227.1mL/g VSS和1291.2mg/L.相应地,mcrA基因丰度随之提高98.2%,表明PP微塑料对产甲烷菌的生长和繁殖具有促进作用,进而强化污泥厌氧消化产CH4效能.  相似文献   

8.
在接种量20%和35℃条件下,采用2.5 L单相厌氧消化反应器对含固率(TS)为7%、10%、13%的三组高氮污泥进行厌氧消化实验,分析污泥在消化过程中各项指标的变化和产气情况。结果表明,15 d时系统顺利启动,污泥没有产生酸抑制现象,三组实验的单位挥发性固体(VS)产气量达到991 ml/g、1 354 ml/g和441 ml/g。TS 10%组运行较其他两组稳定。  相似文献   

9.
为了探究新兴污染物得克隆(DPs)对剩余活性污泥(WAS)发酵产酸及污泥特征的影响,以WAS及DPs为研究对象,建立序批式反应器,在中温条件下探究了不同含量的DPs对WAS发酵的影响.结果表明,DPs对污泥厌氧发酵产短链脂肪酸(SCFA)具有明显的抑制作用,当DPs含量为300.0mg/kg TSS时,SCFA的最大产...  相似文献   

10.
盐度变化对厌氧污泥胞外聚合物的影响   总被引:4,自引:0,他引:4  
为探讨盐度变化对厌氧污泥胞外聚合物的影响,采用三维荧光(3D-EEM)和傅里叶变换红外(FTIR)技术,研究了不同盐度下升流式厌氧污泥流化床(UASB)中污泥的松散结合型胞外聚合物(LB-EPS)与紧密结合型胞外聚合物(TB-EPS)的变化规律,并分析了LB-EPS和TB-EPS与污泥沉降性间的关系.结果表明,进水盐度由0逐渐增加至8%,厌氧污泥LB-EPS和TB-EPS含量分别由4.94和12.25 mg·g~(-1)(以VSS计)增加至41.47和43.04 mg·g~(-1)(以VSS计);LB-EPS和TB-EPS中蛋白(PN)和多糖(PS)含量的比值分别由3.2和3.8降低至1.8和2.3;污泥容积指数(SVI)与LB-EPS、TB-EPS均正相关;3D-EEM光谱显示,色氨酸蛋白和芳环蛋白荧光峰存在于不同盐度下LB-EPS和TB-EPS中,类胡敏酸荧光峰仅存在于盐度高于4%的TB-EPS中;FTIR分析表明,进水盐度的增加导致LB-EPS和TB-EPS中PS的C—O组分相对含量增加.  相似文献   

11.
以污水处理厂剩余污泥为研究对象,污泥经酸/碱预处理(pH=3.0/pH=10.0)后,分别以FeOOH、FeCl3及Fe2O3为外加铁源,进行厌氧发酵,探究铁源对厌氧系统中蓝铁石晶体生成的影响.结果表明:FeCl3和FeOOH可以高效地被还原为Fe2+,其铁还原效率(EFe)最高为56.24%~80.10%,且酸处理效果优于碱处理(3.00%~13.31%),而Fe2O3的EFe相对较低,最高分别为31.94%(pH=3.0)和50.1%(pH=10.0).FeOOH和Fe2O3的投加,可促进胞外聚合物(EPS)中蛋白质含量的提升,增强胞外电子传递能力,但Fe2O3因其结晶度高,阻碍了铁还原微生物对铁源的利用,导致铁还原效率低.上清液PO43-浓度、污泥Fe-P比例与EFe呈负相关,EFe越高则PO  相似文献   

12.
Effects of sludge age on volatile fatty acids (VFAs) production and Phosphorus (P) release during anaerobic acidification of waste activated sludge (WAS) were investigated. Sequencing batch reactors (SBR) fed with simulating domestic sewage were applied to produce WAS of different sludge ages, and batch tests were used for anaerobic acidification. The maximum dissolved total organic carbon, release of  PO43+?P, and accumulation of acetate (C2), propionate (C3), butyrate (C4), and valerate (C5) decreased by 56.2%, 55.8%, 52.6%, 43.7%, 82.4% and 84.8%, respectively, as the sludge age of WAS increased from 5 to 40 days. Limited degradation of protein played a dominating role in decreasing DTOC and VFAs production. Moreover, the increase in molecular weight of organics and organic nitrogen content in the supernatant after acidification suggested that the refractory protein in WAS increased as sludge age extended. Although the production of C2, C3, C4, and C5 from WAS decreased as the sludge age increased, the proportions of C2 and C3 in VFAs increased, which might be due to the declined production of C5 from protein and the faded genus Dechlorobacter. Keeping sludge age of WAS at a relatively low level (<10 days) is more appropriate for anaerobic acidification of WAS as internal carbon sources and P resource.  相似文献   

13.
以剩余污泥和烟草废弃物为研究对象,探究了针铁矿对有机物厌氧消化产甲烷的影响.针铁矿投加能提高消化产气率至359.4mL/g,显著高于空白对照组.针铁矿有助于混合气体中甲烷含量的升高并减少CO2的体积分数.针铁矿利于剩余污泥和烟草废弃物共消化过程有机物溶出,纤维素减量,从而为产甲烷古菌提供充足的消化底物.针铁矿利于酸化代谢过程,在针铁矿投加组中挥发性脂肪酸的最大产量仅为56.2mg/g,显著低于空白组,此外针铁矿促进丙酸的合成.针铁矿促进乙酸降解,在消化第1d,针铁矿投加实验组中乙酸降解率高达65.5%,较高于空白组中的56.6%.酶活性分析表明针铁矿促进水解,酸化及产甲烷过程关键酶.Methanothrix和Methanobacterium是产甲烷阶段重要微生物,454高通量测序表明针铁矿提高Methanothrix和Methanobacterium的相对丰度至59.6%和23.5%,显著高于空白对照组.  相似文献   

14.
基质种类对活性污泥絮体性状的影响   总被引:3,自引:1,他引:2  
利用葡萄糖、淀粉、乙酸钠和苯酚4种典型基质,分别在4个相同的序批式反应器(Sequencing Batch Reactor,SBR)中培养活性污泥,并研究了基质种类对活性污泥絮体性状的影响.结果表明,以葡萄糖为底物培养的活性污泥胞外多糖含量最少,而苯酚所培养的活性污泥胞外蛋白质最多;从形成的EPS总量来看,苯酚最多,乙酸钠次之,葡萄糖和淀粉较少.不同基质培养的污泥Zeta电位也有一定差别,这是由EPS中多糖和蛋白质的比例不同造成的.红外分析表明,4种基质培养的污泥EPS中的主要基团较为相似,羧基、醇羟基、羧酸、酰胺和多聚糖均是EPS中的主要基团.此外,进水基质对活性污泥絮体的粒度分布及分形结构也有重要影响.  相似文献   

15.
The concept of temperature staged and biological phased (TSBP) was proposed to enhance the performance of waste-activated sludge anaerobic digestion. Semi-continuous experiments were used to investigate the effect of temperature (35 to 70℃) as well as the hydraulic retention time (HRT) (2, 4 and 6 days) on the acidogenic phase. The results showed that the solubilization degree of waste- activated sludge increased from 14.7% to 30.1% with temperature increasing from 35 to 70℃, while the acidification degree was highest at 45℃ (17.6%), and this was quite different from the temperature impact on hydrolysis. Compared with HRT of 2 and 6 days, 4 days was chosen as the appropriate HRT because of its relatively high solubilization degree (24.6%) and acidification degree (20.1%) at 45℃. The TSBP system combined the acidogenic reactor (45℃, 4 days) with the methanogenic reactor (35℃, 16 days) and the results showed 84.8% and 11.4% higher methane yield and volatile solid reduction, respectively, compared with that of the single-stage anaerobic digestion system with HRT of 20 days at 35℃. Moreover, different microbial morphologies were observed in the acidogenic- and methanogenic-phase reactors, which resulted from the temperature control and HRT adjustment. All the above results indicated that 45℃ was the optimum temperature to inhibit the activity of methanogenic bacteria in the acidogenic phase, and temperature staging and phase separation was thus accomplished. The advantages of the TSBP process were also confirmed by a full-scale waste-activated sludge anaerobic digestion project which was an energy self-sufficient system.  相似文献   

16.
To investigate the effect of ultrasonic pretreatment on anaerobic digestion and sludge dewaterability and further to probe into the influencing factors on sludge dewaterability, sludge flocs were stratified into four fractions: (1) slime; (2) loosely bound extracellular polymeric substances (LB-EPS); (3) tightly bound EPS (TB-EPS); and (4) EPS-free pellets. The results showed that ultrasonic pretreatment increased the anaerobic digestion efficiency by 7%–8%. Anaerobic digestion without ultrasonic pretreatment deteriorated the sludge dewaterability, with the capillary suction time (CST) increased from 1.42 to 47.3 (sec L)/g-TSS. The application of ultrasonic pretreatment firstly deteriorated the sludge dewaterability (normalized CST increased to 44.4 (sec L)/g-TSS), while subsequent anaerobic digestion offset this effect and ultimately decreased the normalized CST to 23.2 (sec L)/g-TSS. The dewaterability of unsonicated sludge correlated with protein (p = 0.003) and polysaccharide (p = 0.004) concentrations in the slime fraction, while that of sonicated sludge correlated with protein concentrations in the slime and LB-EPS fractions (p < 0.05). Fluorescent excitationemission matrix analysis showed that the fluorescence matters in the LB-EPS fraction significantly correlated with sludge dewaterability during anarobic digestion.  相似文献   

17.
针对高负荷餐厨垃圾和剩余污泥混合发酵系统在实际应用过程中存在的盐度抑制问题,通过批次试验探究了不同钠盐(CH3COONa、NaCl和Na2SO4)对中温混合发酵体系的影响,考察了添加不同浓度钠盐时混合发酵体系的甲烷累积产量、有机物去除率、挥发性脂肪酸(VFAs)累积量及水解、酸化、乙酸化和产甲烷速率的抑制作用.结果表明,随着CH3COONa浓度的增加,相应的甲烷产量逐渐增加,但在高浓度时理论甲烷产量降低,当Na+浓度为8 g·L-1时,对产甲烷抑制率为21%.此外,NaCl和Na2SO4对甲烷累积产量具有抑制作用,相同Na+浓度下,Na2SO4对混合发酵体系甲烷产量的抑制作用更大;当SO42-浓度为8.3 g·L-1时,相应甲烷抑制率为23%.相反,Cl-浓度为3.1~6.2 g·L-1时,对混合发酵过程中甲烷抑制率为4.6%~7.7%;但随着Cl-浓度增至9.3~12.3 g·L-1时,甲烷产量提升了14.5%~37.6%.分析认为,NaCl对混合发酵过程有机物去除率的抑制作用主要是Na+的影响,而Na2SO4的抑制作用主要来源于SO42-和Na+的协同作用.NaCl和Na2SO4对水解速率和产甲烷速率的抑制作用较大,而对酸化速率和乙酸化速率抑制作用较小.  相似文献   

18.
对改进型MDATIAT(ModifiedDemandedAerationTankIntermittentAerationTank)同步脱氮除磷工艺中活性污泥在不同基质下的厌氧释磷特性进行了研究.在葡萄糖、甲酸钠、乙酸钠和丙酸钠4种单一基质中,活性污泥厌氧释磷量分别为1.58、3.55、3.04和1.86mg·L-1;释磷速率分别达到0.02、0.05、0.15和0.10mg·L-1·min-1.另外,在葡萄糖、甲酸钠、乙酸钠和丙酸钠组成的混合基质中的活性污泥厌氧释磷试验结果表明,混合基质中活性污泥释磷量和释磷速率均大于4种单一基质中的释磷量和释磷速率,分别达到8.51mg·L-1和0.31mg·L-1·min-1.  相似文献   

19.
温度和储存基质是颗粒污泥储存过程中的重要控制因子.本文选取某IC反应器内典型厌氧颗粒污泥(AGS)为对象,研究了温度和储存基质对储存后AGS理化性质、结构特征和菌群结构的影响.结果显示,常温(20℃)和添加基质可减缓储存过程中AGS粒径下降,维持形状稳定.中温(35℃)利于削减储存液中积累的酪氨酸、色氨酸等芳香性氨基酸,但会增加难降解腐殖酸类物质积累.中温条件适于短期储存(1.5个月)过程中维持颗粒污泥结构稳定,而常温适于长期储存(3个月).不同条件储存后,污泥中的优势菌群在门水平和属水平相似,分别为Chloroflexi、Bacteriodetes、Euryarchaeota、Hyd24-12和Anaerolinea、Bacteroidales、T78、Methanobacterium、Methanosaeta.但功能菌群受温度影响变化显著,常温条件下产甲烷菌群相对丰度下降至2.70%~3.00%,而发酵菌群丰度提高至65.90%~67.40%.中温和基质对污泥菌群结构影响较小.综合而言,常温利于维持AGS理化性能和结构稳定,中温利于维持菌群活性和结构稳定,基质添加利于增强AGS的综合性能,但效果不显著.  相似文献   

20.
温度对活性污泥沉降性能与微生物种群结构的影响   总被引:3,自引:0,他引:3  
为探究运行温度与活性污泥沉降性能之间的关系,采用5个带有自控设备的序批式反应器考察了不同的运行温度(15,20,25,30和35℃)对活性污泥沉降性能及微生物种群结构的影响.结果表明,采用短时进水,由于运行温度对污泥沉降性能的影响远远弱于底物浓度的影响,且系统中的优势丝状菌以Type 0041和Type 0092为主,所以5个系统均未发生污泥膨胀现象;采用长时进水,5个系统均发生了丝状膨胀现象,温度与低底物浓度的相互作用导致污泥的SVI值随运行温度(15~30℃)的增加而升高,而运行温度为35℃时污泥的SVI值要低于30℃的情况.同时不同的运行温度下污泥胞内胞外贮存特性及优势丝状菌的种类差异较大.  相似文献   

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