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1.
传统活性污泥法与膜生物反应器污泥沉降性能的比较   总被引:5,自引:1,他引:4  
针对污泥沉降性能,在运行条件相同的情况下对膜生物反应器(MBR)与传统活性污泥法(CAS)进行比较。结果表明:CAS工艺污泥沉降性能优于MBR工艺;CAS工艺出水水质受污泥沉降性能影响大;MBR工艺污泥沉降性能主要由反应器中累积的高浓度胞外聚合物(EPS)含量所影响,当EPS浓度大于100mg/g时,污泥沉降性能开始恶化;CAS工艺曝气池中EPS浓度没有累积;MBR工艺污泥颗粒平均粒径小于CAS工艺中污泥颗粒。  相似文献   

2.
采用竖式SBR作为反应器,利用城市污水处理厂剩余污泥作为接种污泥,通过不间断运行培养出好氧颗粒污泥。实验结果表明,采用非限量曝气模式好氧颗粒污泥降解模拟污水的效果较好,其COD去除率可达98%以上。曝气量对好氧颗粒污泥的形成和稳定具有重要影响,当气速为26.5m/h时,好氧颗粒污泥的性状和处理有机废水效果最佳。同时好氧颗粒污泥对pH值的变化不明显,当pH为5—8范围内,其COD去除率都可达到85%以上。但是未经驯化的好氧颗粒污泥对对硝基苯酚和对氯苯酚两种芳香类有机物较敏感,而对硝基苯酚对其毒性更大。当对硝基苯酚和。对氯苯酚浓度为10mg/L时,其COD去除率仅为42.5%和52%。  相似文献   

3.
反硝化除磷工艺节约碳源,节省曝气量,同时减少剩余污泥产量,是一种低碳型污水脱氮除磷新技术。污水反硝化除磷最终通过排放剩余污泥来实现,设置合理的污泥停留时间(Sludge Retention Time,SRT)将影响系统的除磷效果,最终决定系统的运行稳定性和高效性。因此本研究有助于实现除磷工艺的优化,具有重大的工程意义。本实验设置序批式反应器(Sequencing Batch Reactor,SBR)反硝化除磷系统,系统研究了不同SRT(10 d、15 d、20 d、25 d和30 d)对反硝化除磷效果以及污泥特性的影响。结果显示,当SRT=15d时,磷去除率达到98.1%,系统除磷效果最佳;随着系统SRT的梯度增长,系统污泥产率依次为0.216 1mg VSS/mg COD、0.209 0mg VSS/mg COD、0.1894mg VSS/mg COD、0.170 5mg VSS/mg COD、0.140 3mg VSS/mg COD,逐渐降低;系统污泥磷含量依次为8.09%、8.43%、8.27%、7.92%、7.62%,总体成下降趋势;CST依次为3.54g/g SS、3.73g/g SS、2.39g/g SS、2.1g/g SS、1.71g/g SS,污泥脱水性能增强。试验表明SRT的变化影响系统除磷效果及污泥特性,为优化反硝化除磷技术提供理论依据。  相似文献   

4.
溶解氧(DO)浓度是影响丝状菌污泥膨胀最重要的因素之一。选用具有代表性的啤酒废水为处理对象,研究了SBR工艺中DO浓度对丝状菌污泥膨胀的影响。结果表明:高DO浓度(4~6.5mg/L)不会导致丝状菌污泥膨胀;低DO浓度能引起丝状菌污泥膨胀,当DO浓度降低至0.4mg/L时,SVI升高到210mL/g,会导致污泥膨胀发生。低DO浓度下污泥膨胀发生后,在较高的DO浓度条件下运行一定的周期数后,污泥膨胀能得到有效控制,使污泥沉降性能恢复到正常水平。  相似文献   

5.
矿化垃圾生物反应床处理焦化废水研究   总被引:15,自引:0,他引:15  
王敏  赵由才 《环境技术》2004,22(1):25-28
本工作研究了矿化垃圾生物反应床处理焦化废水的可行性。研究表明,当废水浓度COD在(900—1450)mg/L时,经过单级矿化垃圾生物反应床,COD,NH3-N和挥发酚的去除率分别为82%,95%和98%,几种典型杂环化合物的去除率达64%。同样条件下经过两级回流(系统出水以1:1的出水回流比回流至第一级反应床前后再进入两级反应床处理)矿化垃圾反应床处理,相应的COD,NH3-N、挥发酚和几种典型杂环化合物的去除率分别上升到92%,96%,99%,74%以上。整个过程中无需曝气,没有污泥排出。  相似文献   

6.
杨健  周小波 《四川环境》2006,25(1):1-3,7
高浓度酒精糟液经厌氧生物处理后排出的消化液COD浓度为4500—6000mg/L,SS浓度高这1500—2.600mg,/L,且由于微小沼气泡附着在厌氧污泥上,沉降性能很差,难以与消化液相分离,对后续处理十分不剁。本研兜采用预曝气.化学混凝沉淀组合工艺,对该消化液进行去除高浓度SS的顸处理试验,研究探讨了曝气时间、混凝剂种类和投加量对SS和COD去除效果的影响。试验结果表明,预曝气.化学混凝沉淀组合工艺对消化液SS的去除效果十分显著。当预曝气时间为6.0h,FeCl3投加量为100mg/L时,消化液的SS去除率75.4%,COD去除率24.3%,可为后续的好氧生物处理提供较为有利的水质和负荷条件。  相似文献   

7.
油田含油污泥经过无害化处理后制成路基材料是一种有效的含油污泥资源化利用途径。文章针对油田含油污泥处理后残渣(含油率≤2%)作为路基材料对环境的影响进行了分析和评价,结果表明:含油污泥经过无害化处理后残渣(含油率≤2%)作为路基材料可以满足JTGD 30—2015《公路路基设计规范》三、四级公路路床的路基填料要求;放射性检测结果表明其满足建筑材料的要求;其浸出液中重金属、苯并(a)芘、石油类、COD等主要污染指标检测值满足GB 8978—1996《污水综合排放标准》一级标准要求;残渣中重金属、农药类等污染指标检出值低于GB 15618—1995《土壤环境质量标准》限值。  相似文献   

8.
赵禹  周雪飞 《四川环境》2009,28(6):58-64,67
为了提高出水质量,法国小镇Cagnes—sur—Mer的生活污水处理厂从2008年初开始实施高有机负荷的运行,但同时这也提高了出泥产量。由于污泥的处理费用及搬运污泥的交通费用很高,水厂对污泥进行了污泥好氧稳定工艺,工艺使用纯氧机(VSA装置)就地利用空气制氧。工艺投入运行后,每日对好氧消化池的入泥和出泥进行采样和检测(MLSS、MLVSS、pH、COD、DRYNESS etc)以建立完整的运行数据。污泥经好氧消化作用后其有机物含量减少60%以上,每月减少40吨的出泥。同时,消化池的使用还使水厂周日也能对曝气池中的污泥进行抽取,缓解了以往由于周日停止排泥而导致周一曝气池中污泥浓度过大的问题。从而达到优化出水水质的目的。消化池中的温度维持在40℃左右,因为反应为放热反应,所以无需加热设备。此项目所收集到的数据将为这种工艺的发展提供帮助。同时也可以为那些想要减少出泥量的水厂提供一种新的方法。因为它投资小,见效快,操作简单。  相似文献   

9.
为了解决污水厂生化系统剩余污泥产量过多的问题,采用延长污泥龄(SRT)的方法,对剩余污泥减量化的影响进行了研究。实验得知:污泥龄由8d增至16d时,污泥表观产率系数下降28.53%,而污泥龄由8d增至24d时,污泥表观产率系数下降51.12%。污泥龄的延长对CODCr的去除能力没有明显的影响,但使出水NH3-N浓度和TP浓度均升高,通过调整碳氮磷源的比例降低出水NH3-N和TP浓度。实验结果表明:SRT的延长,不仅降低活性污泥工艺中的剩余污泥的产量,同时还能降低处理与处置的费用,有发展前景,值得深入研究。  相似文献   

10.
炼油化工废水水量大,含有较高浓度的COD、NH3-N、硫、酚、石油类等污染物,活性污泥法具有运行稳定,耐负荷运行、成本低、维护方便和处理效果良好的特点。文章通过分析污泥沉降比与各因素之间的关系,得出:温度是影响沉降比主要因素,外界环境因素也影响污泥沉降比,污泥沉降比对维持曝气池稳定有重要作用,利用污泥沉降比可以调节剩余污泥排放量,控制污泥浓度;通过污泥沉降比的变化可以及早判断和发现污泥膨胀,及时做出工艺运行调整。  相似文献   

11.
针对某企业高含盐有机生产废水,采用传统活性污泥法,实验研究了氯化钙盐度对活性污泥性能的影响,分别研究了盐度对有机物的去除能力、活性污泥中微生物的耗氧速率、活性污泥的结构和沉淀效果及对菌胶团中微生物生态的影响。结果表明,当氯化钙盐度从0mg/L升高到40000mg/L的时候,废水中COD的去除率由92.9%降低到56%,活性污泥的耗氧速率下降,菌胶团的微生物种类也随之减少,MLVSS/MLSS下降,活性污泥中的无机成分增加,沉淀性能增强,菌胶团也更为致密。  相似文献   

12.
Chlorophenol compounds present in many chemical industry wastewaters are resistant to biological degradation because of the toxic effects of such compounds on microorganisms. Synthetic wastewater containing different concentrations of 2,4 dichlorophenol (DCP) was subjected to biological treatment in an activated sludge unit. Effects of feed DCP concentration on COD, DCP, and toxicity removals and on sludge volume index were investigated at a constant sludge age of 10 days and hydraulic residence time (HRT) of 25 h. The Resazurin method based on dehydrogenase activity was used for assessment of toxicity for the feed and effluent wastewater. Percent COD, DCP, and toxicity removals decreased and the effluent COD, DCP, and toxicity levels increased with increasing feed DCP concentrations above 150 mgl(-1) because of inhibitory effects of DCP. Biomass concentration in the aeration tank decreased and the sludge volume index (SVI) increased with feed DCP concentrations above 150 mgl(-1) resulting in lower COD and DCP removal rates. The system should be operated at feed DCP concentrations of less than 150 mgl(-1) in order to obtain high COD, DCP, and toxicity removals.  相似文献   

13.
In this study treatment of palm oil mill effluent (POME) was investigated using aerobic oxidation based on an activated sludge process. The effects of sludge volume index, scum index and mixed liquor suspended solids during the acclimatizing phase and biomass build-up phase were investigated in order to ascertain the reactor stability. The efficiency of the activated sludge process was evaluated by treating anaerobically digested and diluted raw POME obtained from Golden Hope Plantations, Malaysia. The treatment of POME was carried out at a fixed biomass concentration of 3900+/-200mg/L, whereas the corresponding sludge volume index was found to be around 105+/-5mL/g. The initial studies on the efficiency of the activated sludge reactor were carried out using diluted raw POME for varying the hydraulic retention time, viz: 18, 24, 30 and 36h and influent COD concentration, viz: 1000, 2000, 3000, 4000 and 5000mg/L, respectively. The results showed that at the end of 36h of hydraulic retention time for the above said influent COD, the COD removal efficiencies were found to be 83%, 72%, 64%, 54% and 42% whereas at 24h hydraulic retention time they were 57%, 45%, 38%, 30% and 27%, respectively. The effectiveness of aerobic oxidation was also compared between anaerobically digested and diluted raw POME having corresponding CODs of 3908 and 3925mg/L, for varying hydraulic retention time, viz: 18, 24, 30, 36, 42, 48, 54 and 60h. The dissolved oxygen concentration and pH in the activated sludge reactor were found to be 1.8-2.2mg/L and 7-8.5, respectively. The scum index was found to rise from 0.5% to 1.9% during the acclimatizing phase and biomass build-up phase.  相似文献   

14.
中空纤维膜生物反应器处理炼厂浮选池出水试验研究   总被引:2,自引:0,他引:2  
研究设计的膜生物反应器处理炼厂浮选池出水,在每天进水容积负荷1.0 kg COD/m3,进水COD浓度600 mg/L,MLSS为900~5500 mg/L的条件下,无论活性污泥表现正常还是膨胀,过滤出水中COD均稳定地小于90 mg/L,处理效果好于目前炼油厂的合建式曝气池(容积负荷为0.5 kg COD/m3左右,出水COD100 mg/L左右)。试验运行期间,膜通量最高可达到42 L/m2·h。该工艺的技术关键是采用特殊流态来降低膜堵塞的膜生物反应器和优良质量的膜。  相似文献   

15.
抗生素药生产废水处理工艺改进研究   总被引:1,自引:0,他引:1  
企业抗生素废水经原有工艺处理后污染物指标偏高,且不稳定。工艺通过采用增加初沉池和二沉池、污泥回用等改进措施,COD、氨氮等排放浓度下降且稳定排放,改进效果明显。  相似文献   

16.
Wood processing effluents contain different types of phenolic compounds, from simple monomers to high molecular weight (MW) polyphenolic polymers, that can inhibit wastewater treatment. This work presents a comparative study of the methanogenic toxicity produced by three wood processing effluents (hardboard, fiberboard and BKME (kraft mill effluent)) using Pinus radiata, Eucalyptus and Tepa as feedstock (the last one being a native Chilean tree species). This study evaluates the influence of non-adapted granular and adapted flocculent sludge on forest industrial wastewater treatment as well as continuous anaerobic biodegradation of hardboard processing effluent using the upflow anaerobic sludge blanket (UASB). The adapted biomass (flocculent sludge) did not show any lag-phase signs. The 50% IC (the concentration causing 50% inhibition of methanogenic activity) was 4.3 g COD-effluent (chemical oxygen demand (COD)-of the effluent)/l and 2.8 g COD-effluent/l for the flocculent sludge and the granular sludge, respectively. The UASB system worked at low organic load rates (0.1-0.4 g COD/l d) with the COD removal ranging between 10 and 30%, and color removal did not occur under anaerobic conditions due to high MW. Indeed, the MW analysis indicates the presence of phenolic compounds over 25,000 Da in the anaerobic effluent.  相似文献   

17.
本文开展了利用O3氧化造纸废水生化处理系统产生剩余污泥的实验研究,根据O3对污泥性状、细胞溶解性COD及细胞电导率透性等指标的影响规律,提出了利用O3氧化剩余污泥实现系统污泥减量的最佳技术条件:在污泥浓度为5000mg/L时,体系中初始O3浓度为8.0~16.0mg/L时,接触氧化时间控制在20min,即可保证细胞溶胞的目的,在此条件下可实现系统污泥减量87.1%。  相似文献   

18.
A sequentially combined carbon (SCC) source using methanol and acetic acid was investigated for biological nitrogen and phosphorus removal in a wastewater treatment process consisting of an anoxic zone, an oxic zone and a final settling tank. The anoxic zone was divided into two separate anoxic zones to feed methanol in the first anoxic zone and acetic acid in the second anoxic zone. Methanol and acetic acid, each as the sole carbon source, were also tested for comparison. The use of SCC was superior in nitrogen removal with all combined COD ratios of methanol/acetic acid tested, yielding 95.8-97% efficiency (less than 1 mg N/l in the final effluent). The highest phosphorus removal of above 92% (final effluent concentration of 0.12 mg P/l) was achieved when only acetic acid was used at a quantity equivalent to 50 mg COD/l. However, when SCC was used, the acetic acid dosage of 50 mg COD/l could be reduced down to 20 mg COD/l when 30 mg COD/l was replaced by methanol; this resulted in a final effluent phosphorus concentration of 0.6 mg P/l. Additional benefits of SCC included the excellent sludge settling properties compared to the use of methanol or acetic acid alone.  相似文献   

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