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厌氧生物法废水处理技术进展 总被引:2,自引:0,他引:2
阐明了厌氧生物法处理废水的特征,并着重介绍了厌氧接触反应器、厌氧流化床反应器、厌氧膨胀床反应器.厌氧生物转盘和厌氧污泥床反应器在各种厌氧生物法处理废水工艺中的应用情况。 相似文献
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涤纶厂聚酯废水的生化处理 总被引:2,自引:0,他引:2
本文简述了涤纶厂聚酯废水的特点,介绍了对这种废水的三种生化处理方法(活性污泥法,生物塔滤-生物流化床法,氧化沟-厌氧-生物接触氧化法)及其优缺点,并较详细地介绍了氧化沟-厌氧-生物接触氧化法的处理工艺。 相似文献
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对模拟碳纤维生产废水进行“厌氧-好氧”静态小试,根据COD的去除效果确定该碳纤维废水的可生化性。采用“二级厌氧-微氧-好氧”组合工艺进行动态中试,考察废水的处理效果及系统的抗冲击性能。试验结果表明:该工艺对碳纤维生产废水的处理效果较好;系统具有厌氧池出水pH增大的特点,且抗冲击能力较强;在厌氧池水温为28~38 ℃、好氧池水温不低于15 ℃、废水流量为100 L/h、进水COD为660 mg/L、进水ρ(氨氮)为4.9 mg/L的条件下,出水COD稳定在50 mg/L以下,ρ(氨氮)稳定在5 mg/L以下,能够满足GB 8978-1996《污水综合排放标准》的要求。 相似文献
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硫酸盐型厌氧氨氧化(S-ANAMMOX)可将废水中的氮硫元素同时去除,避免了氨氮、硫酸盐分别处理时过程不稳定、去除效率低等不足,且不产生二次污染。但该反应的启动耗时长以及机理不明确影响了其应用。本文在探讨S-ANAMMOX反应机理的基础上,对反应器、污泥源、填料、碳源及运行条件等启动过程影响因素进行了阐述,并对今后的研究做出了展望。指出:应在量化反应产物的基础上深入对反应机理和功能微生物特性的研究;分析反应器、污泥源等启动因素的差异性;促进S-ANAMMOX在实际废水处理中的应用。 相似文献
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采用基于固态碳源的厌氧氨氧化与反硝化耦合脱氮工艺处理高氮低碳的金属热处理废水。通过接种城市生活污水处理厂剩余污泥和厌氧氨氧化絮状污泥,研究了以固态碳源(3-羟基丁酸脂和3-羟基戊酸脂共聚物,PHBV)和沸石为组合填料的分区式耦合反应器的启动和运行特性。经过76 d的运行,耦合反应器的总氮去除速率达1.05 kg/(m3·d),且具有良好的出水COD稳定性。废水经过反应器沸石区后,氨氮去除率达97%,亚硝态氮去除率达81%,而硝态氮去除率几乎为零;经过PHBV区后,硝态氮去除率达76%,亚硝态氮去除率达99%,氨氮去除率达97%。沸石区主要进行厌氧氨氧化反应,PHBV区主要进行反硝化反应,功能分区明确,耦合效果较好。 相似文献
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Karen Budwill Phillip M. Fedorak William J. Page 《Journal of Polymers and the Environment》1996,4(2):91-102
The microbial degradation of poly (3-hydroxyalkanoates) (PHAs) under anaerobic conditions with various terminal electron acceptors was examined. Nitrate-reducing consortia were established using activated sludge, and PHAs were shown to be biodegradable under these conditions. A positive correlation between carbon dioxide production and nitrate reduction was demonstrated. Nitrous oxide accumulated as the main N-containing product of nitrate reduction. The amount of PHAs in activated sludge cultures decreased approximately 20% within 40 days of incubation. Attempts were made to establish iron- and sulfate-reducing consortia from spring water, yet it could not be demonstrated that the mixed cultures were capable of degrading PHAs. Pure cultures of iron- and sulfate-reducing bacteria could not utilize PHAs as sole carbon sources. Methanogenic environments sampled included pond sediment and rumen fluid. PHAs were fermented to methane and carbon dioxide after 10 weeks by a sediment consortium, with 43 to 57% of the substrate carbon transformed to methane. Although it could not be demonstrated that PHAs were biodegraded by a rumen fluid consortium, a facultative anaerobic bacterium, identified as aStaphylococcus sp., that could grow on PHAs was isolated from rumen fluid. 相似文献
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厌氧氨氧化-反硝化协同脱氮研究 总被引:4,自引:1,他引:3
采用厌氧氨氧化(ANAMMOX)工艺的上流式厌氧污泥床(UASB)-生物膜反应器(简称反应器)处理高浓度含氮废水,启动并稳定运行630d后,进行进水浓度负荷实验分析。当进水ρ(NH3-N),ρ(NO2--N),ρ(TN)分别为340.0,448.8,788.8mg/L时,其去除率分别为84.0%,93.0%,85.0%。在反应器中连续加入有机物(葡萄糖),进水ρ(NH3-N)和ρ(NO2--N)分别为240.0,316.8mg/L,进水COD为330.0—380.0mg/L,COD去除率达92.0%。仅用23d,在同一反应器系统中成功实现了ANAMMOX与反硝化协同作用脱氮。葡萄糖的存在对系统去除NH3-N和NO2--N的能力影响不大。 相似文献
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Control of GHG emission at the microbial community level 总被引:1,自引:0,他引:1
All organic material eventually is decomposed by microorganisms, and considerable amounts of C and N end up as gaseous metabolites. The emissions of greenhouse relevant gases like carbon dioxide, methane and nitrous oxides largely depend on physico-chemical conditions like substrate quality or the redox potential of the habitat. Manipulating these conditions has a great potential for reducing greenhouse gas emissions. Such options are known from farm and waste management, as well as from wastewater treatment. In this paper examples are given how greenhouse gas production might be reduced by regulating microbial processes. Biogas production from manure, organic wastes, and landfills are given as examples how methanisation may be used to save fossil fuel. Methane oxidation, on the other hand, might alleviate the problem of methane already produced, or the conversion of aerobic wastewater treatment to anaerobic nitrogen elimination through the anaerobic ammonium oxidation process might reduce N2O release to the atmosphere. Changing the diet of ruminants, altering soil water potentials or a change of waste collection systems are other measures that affect microbial activities and that might contribute to a reduction of carbon dioxide equivalents being emitted to the atmosphere. 相似文献
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Sanjoy K. Bhattacharya 《补救:环境净化治理成本、技术与工艺杂志》1992,2(2):199-210
Because bioremediation must satisfy the fundamental biological tastes of specific organisms, environmental engineers must create a nutritious waste stew. Waste-hungry organisms need a proper electron acceptor. Oxygen is preferred; if it is not available, nitrate, sulfate, or carbon dioxide may work. The waste itself is a source of carbon and energy. Macronutrients are next—including phosphorus, nitrogen, and certain metals, if they are not already present in the wastewater—as well as micronutrients. Other factors, including pH, temperature, aeration, and mixing must suit the organisms' natural temperaments. This article explores how bioengineers can combine these ingredients in precise quantities and proportions in both conventional and innovative aerobic and anaerobic bioprocesses, including in situ treatment and even composting, to make the organisms healthy, happy, and inexpensive. 相似文献
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将处理柠檬酸废水的内循环厌氧反应器的出水以不同比例回流至水解酸化池,研究了厌氧出水回流对水解酸化过程及厌氧处理过程的影响。实验结果表明:厌氧出水参与水解酸化能明显提高水解酸化池的出水pH及废水的预酸化度,厌氧出水添加比(V(厌氧出水)∶V(废水))为1∶4及以上时,可使水解酸化池的出水pH稳定在4.5以上,同时达到10.0%以上的预酸化度,且对NH3-N的去除能力明显增强;随水解酸化时间的延长,水解酸化池的出水pH先减小后增大,而预酸化度则呈上升趋势;水解酸化3.0 h时,厌氧出水COD降至1 200 mg/L以下。厌氧出水参与水解酸化能增强厌氧反应器中微生物对挥发性脂肪酸的利用率,提高厌氧反应器出水的pH,降低出水COD及其波动幅度,增强厌氧系统的稳定性及自我修复能力。 相似文献
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李杰 《再生资源与循环经济》2011,4(8):41-44
采用以IC厌氧反应器为主的三级处理工艺处理酿酒废水,出水回用于锅炉冷却用水,产生的沼气发电用于污水处理站设备运行。工程运行结果表明,通过出水回用及沼气发电较好地进行资源的综合利用,变废为宝,值得推广。 相似文献