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1.
基于西安市污水处理厂出水一级A达标排放的要求,对西安市某污水处理厂A2/O工艺运行效果进行监测分析,结果表明,该污水处理厂出水总磷一级A达标率仅为31.61%,出水总磷浓度偏高成为该污水处理厂一级A达标的限制因素。通过对污水处理厂现场调研与水质沿程监测分析发现,该污水处理厂污泥水中含有大量SS和TP,此部分污泥水回流至系统前端导致生物池进水总磷浓度急剧升高,生物池超负荷运行导致出水总磷偏高。同时由于生物池碳源不足,厌氧池释磷作用微弱,影响了系统的除磷效果。针对以上问题,进行了初沉池运行方式调整、强化污泥处理、出水增设滤池等一系列改造措施。改造后系统除磷效果明显提高,出水TP降低至(0.39±0.08)mg·L~(-1),基本可以达到一级A排放标准。  相似文献   

2.
利用计算机仿真研究两点进水对倒置AAO流程除磷的作用,发现将污水按选择池进水流量与厌氧池进水流量的分配比(简称进水流量分配比)为1.0/0、0.9/0.1、0.8/0.2、0.7/0.3、0.6/0.4、0.5/0.5分流到选择池和厌氧池,会影响中等COD负荷(200~220 mg/L)下该流程的除磷效果。原因在于,污水分流到厌氧池虽然能提高厌氧池内乙酸浓度,但同时会因稀释作用而降低厌氧池及好氧池中聚磷菌的浓度,影响聚磷菌厌氧释磷及好氧吸磷的作用。两点进水对低COD负荷(140~180 mg/L)及高COD负荷(260~340 mg/L)下该流程的除磷效果无明显影响,前者因各反应池(除二沉池外)内聚磷菌浓度本身很低,后者则因各反应池内聚磷菌浓度本身很高,改变进水流量分配比不会改变这2种情况下各反应池内聚磷菌释磷或吸磷的强度。  相似文献   

3.
厌氧-局部循环供氧生物膜技术处理农村污水   总被引:1,自引:0,他引:1  
通过模拟农村生活污水水质和间歇进水特点,利用“厌氧-局部循环供氧生物膜”技术,研究该工艺对有机物、氮、磷的去除效果.厌氧池和局部循环供氧池有效容积比为1∶1.6,曝气装置位于局部循环供氧池中间底部,环形导流板将局部循环供氧池分隔成中间好氧区和四周缺氧区,斜管沉淀池前置到厌氧池与局部循环供氧池之间,出水端设置循环水池.装置连续稳定运行12个月,平均进水量为140 L/d,生物反应区HRT为1.3d.监测结果表明,出水COD、BOD、NH3-N、TN和TP平均浓度分别在40.31、3.38、2.69、11.98和0.75 mg/L,达到了国家城镇污水处理厂污染物排放指标(GB-18918-2002)中的一级排放标准.研究表明,厌氧-局部循环供氧技术是一种适合农村分散污水处理的新工艺,可有效减轻农业面源污染.  相似文献   

4.
利用北京某污水处理厂监测数据,建立了该厂的TSS和COD质量平衡模型。利用质量平衡校验污水厂监测数据,结果表明该厂初沉池、生物处理单元和污泥脱水单元TSS平衡误差分别为20.7%、19.3%和5.8%,全厂COD平衡误差为-3.8%,平衡准确性较好。通过与奥地利Strass污水处理厂的COD质量平衡数据进行比较,发现两者的差异主要在于:Strass污水处理厂通过一级处理去除了60.7%的进水COD,而北京某污水厂去除46.0%;Strass污水厂进水COD有35.9%转化为了CH4,而北京某厂为8.5%;Strass污水厂进水COD负荷的21.8%在生物反应池中通过碳氧化和反硝化转化为了CO2,而北京某污水厂为37.3%。COD质量平衡的差异是导致两厂曝气电耗和沼气产电差异的重要原因。以北京某厂COD质量平衡优化为视角,提出污水厂节能降耗的建议。  相似文献   

5.
对山东省徒骇河—马颊河流域内某具有代表性的县级城市污水处理厂的进水特征、运行效果和处理费用进行了分析。结果表明:(1)该污水处理厂进水污染物浓度远低于设计指标。(2)该污水处理厂2012年单位水处理平均耗电量为0.267kW·h/m3,略低于国内单位水处理平均耗电量水平,略高于发达国家单位水处理平均耗电量水平,仍具有节能潜力。该污水处理厂单位水处理耗电量与单位水处理COD削减量呈线性相关,可通过COD进出水浓度及耗电量—污染物削减量线性关系式近似估算污水处理的耗电量。(3)该污水处理厂单位水处理总费用约0.58元/m3,其中电费和设备折旧费分别占单位水处理总费用的53.99%和33.67%,为污水处理厂运行费用的主要构成部分。  相似文献   

6.
倒置A~2/O与常规A~2/O工艺除磷效果对比   总被引:2,自引:0,他引:2  
通过对西安市某污水处理厂倒置A2/O工艺的沿程监测和工艺解析,分析明确了该工艺生物除磷效果差的影响因素。研究表明,缺氧池反硝化不完全,厌氧池高浓度硝酸盐是抑制聚磷菌释磷的重要因素。当厌氧池内硝酸盐浓度大于4 mg/L时会明显抑制生物除磷效果。硝酸盐的浓度在1~4 mg/L时,随着硝酸盐浓度的升高,释磷效果显著降低。为避免硝酸盐对聚磷菌的影响,需将厌氧池硝酸盐浓度控制在1 mg/L以下。硝酸盐对聚磷菌释磷的影响原因是生物脱氮除磷对碳源的竞争,以乙酸钠和原污水为碳源分析硝氮盐对释磷效果的影响。结果表明,易于生物降解的优质碳源更有利于聚磷菌在厌氧环境下释磷,倒置A2/O的前置式缺氧池首先将大量优质碳源用于反硝化,而造成后续厌氧池聚磷菌释磷效果差。针对这一研究结果,对该污水厂提出将倒置A2/O调整为常规A2/O的改造方案,改造后厌氧池硝酸盐浓度由3.57 mg/L降低至0.89 mg/L,聚磷菌释磷量提高1.8倍,系统除磷效果增强,出水总磷降低至0.66 mg/L,与倒置A2/O相比降低0.21 mg/L。  相似文献   

7.
宜兴市徐舍污水处理厂的一期工程设计规模为1.0×10^4m^3/d,厂区总规模为3.0×10^4m^3/d。一期工程处理工艺采用改良型C-AAO工艺,该工艺以改良型AAO工艺Sure进周出辐流式二沉池为基础,将缺氧池、厌氧池、好氧池、二沉池、硝化液回流、污泥回流系统组合为一体,具有占地面积小、投资省、能耗低、原水适应能力强、运行管理方便的突出优点。处理出水水质优于《城镇污水处理厂污染物排放标准》(GB18918-2002)一级A标准。文中详述了该工程的设计参数、处理工艺流程及其设计特点。  相似文献   

8.
以处理城市污水的中试规模Johannesburg工艺为对象,探讨不同配水比对预缺氧池的反硝化及Johannesburg工艺脱氮除磷效果的影响。在总HRT为12.86 h,预缺氧池HRT为0.6 h的条件下,当配水比分别为0%、10%、20%和30%时,预缺氧池硝酸盐去除率分别为37.67%、78.95%、87.62%和94.95%,对应的厌氧池磷酸盐浓度分别为8.72、19.37、16.1和12.99 mg/L。预缺氧池最佳配水比为10%,此时厌氧段释磷速率、好氧吸磷速率和缺氧吸磷速率分别为6.94、3.17和2.12 mg/(g MLSS·h),厌氧池中磷的最大浓度和污泥中的磷最大含量可达到19.37 mg/L和25.7 mg TP/g MLSS。出水COD、NH3-N、TN和TP等各项水质指标有80%以上的概率达到《城镇污水处理厂污染物排放标准(GB18918-2002)》一级A标准。  相似文献   

9.
吴飞  徐剑新  吕晨 《环境工程学报》2020,14(4):1129-1136
为深入落实长江大保护政策,对南京经济技术开发区污水处理厂实施了提标改造。提标工艺为粗细格栅+曝气沉砂池+AAO+高效沉淀池+滤布滤池+消毒。结果表明:在该工艺运行过程中,进水可部分选择性地或全部越过厌氧池进入缺氧池,从而强化反硝化脱氮;在好氧池池末端前置投加除磷药剂,不仅可去除一定的COD和TP,还有强化二沉池污泥压缩、泥水分离的效果;借助碳源投加可提高来水可生化性;增加一套占地面积小、处理效果稳定的高效沉淀池+滤布滤池+消毒三级处理工艺,可控制出水水质,使其持续稳定达标;提标后出水COD、TP、TN、NH_3-N、SS的平均质量浓度分别由37.9、0.323、11.18、1.94、19 mg·L~(-1)降低至22.3、0.029、4.55、0.08、3 mg·L~(-1),污水直接处理成本由0.47元·t~(-1)增加到0.78元·t~(-1);提标后出水水质稳定达到《城镇污水处理厂污染物排放标准》(GB 18918-2002)一级A标准,部分指标满足《地表水环境质量标准》(GB 3838-2002)Ⅳ类水标准要求。该提标改造项目的实施经济效益可行、社会效益显著,可为同类型污水处理厂提标改造工作提供参考。  相似文献   

10.
四川望佳人工湿地系统生活污水净化效果   总被引:2,自引:0,他引:2  
取样监测分析了望佳人工湿地系统各组成单元对COD、TN、NH3-N、TP和SS的去除效果。在水力负荷为0.18 m3/m·d、温度为8~19℃、p H为6~8的条件下,分析结果表明,各单元COD、TN、NH3-N、TP和SS的系统去除率满足:人工快渗池>厌氧调节池>1号表流湿地>潜流湿地>氧化塘>2号表流湿地>1号水平潜流湿地>2号水平潜流湿地,其中人工快渗池单元的系统去除率平均值分别为21.21%、22.74%、22.49%、25.58%和30.85%。监测期间COD、TN、NH3-N、TP和SS的总去除率平均值分别为89.41%、90.27%、89.89%、89.89%和92.28%,系统出水达《城镇污水处理厂污染物排放标准》GB18918-2002一级标准的B标准。监测表明,该湿地设计偏于保守,还可以优化设计单元以减少建设和运行成本。  相似文献   

11.
通过对昆明市餐饮和居民生活污水厌氧模拟实验研究,初步探讨生活污水中CH4的产生规律,实验结果表明,在自然条件下,餐饮和居民生活污水中产生的甲烷浓度最大值分别为1.63 mg/L和3.82 mg/L。并且将COD、硫酸盐、硫化物、TN的浓度变化与甲烷浓度变化进行Pearson简单相关性分析,结果表明,1/COD、COD/硫酸盐和1/TN与甲烷在置信度为0.01时极显著相关,硫化物与甲烷在置信度为0.05时不相关;COD、硫酸盐和TN浓度的变化对生活污水中甲烷的产生起关键性作用。对居民生活污水中甲烷产生规律进行温度和pH控制分析研究,实验结果表明,生活污水在25~30℃时,24 h内甲烷产生量最大值为8.6494 mg/L,明显大于其他温度段的甲烷产生量;在pH为7~8之间时,甲烷的产生量在24 h内达到的最大值为3.0477 mg/L,明显高于其他pH控制段的甲烷产生量。  相似文献   

12.
污水输送和污水处理过程中会有大量的CH4温室气体产生和排放。总结了污水厌氧生化处理过程中CH4产生的机制,列举了产甲烷菌的种类。同时,分析了在污水生化处理各单元CH4产生与排放的影响因素:污水处理过程中,DO、pH、温度、污泥负荷、硝酸盐浓度和亚硝酸盐浓度等因素会影响CH4的产生。在污水处理过程中的厌氧段,CH4的排放主要是与CH4产生量及CH4在污水中的溶解度有关;在好氧段,CH4的排放与机械搅拌或曝气作用对水流的扰动有关。  相似文献   

13.
The nitrogen-removal performances of three full-scale piggery wastewater treatment plants, with different organic and nitrogen loads, at the capacity ranges of 95 to 130 m3/d, were compared in this study. Plants 1 and 2 can be characterized as the modification of anoxic-aerobic operating systems, while an anaerobic and anoxic-aerobic system was used in plant 3. The influent piggery wastewater concentration for plant 1 was relatively lower, but with higher organic and nitrogen loads, resulting in higher chemical oxygen demand (COD) and ammonium-nitrogen in effluent. Plant 2 was operated with strong piggery wastewater, resulting in a higher operating temperature. The high temperature could inhibit the nitrifying activity in plant 2. Although plant 3 was operated with a higher influent total COD-to-total Kjeldahl nitrogen ratio (TCOD:TKN), an additional external carbon source was required to polish the final effluent to remove nitrogen. Influent COD in plant 3 was used in the anaerobic-anoxic reactor for both methane (CH4) production and denitrification. Based on various mass balances, including caloric, COD, and alkalinity, the key elements for the successful nitrogen removal from the piggery waste were reactor temperature (less than 35degrees C), influent TCOD:TKN (greater than 6), and alkalinity-to-TKN ratio (greater than 3).  相似文献   

14.
外循环式UASB反应器处理高浓度酒精废水   总被引:1,自引:1,他引:0  
利用改进型上流式厌氧污泥床反应器在中温条件下处理高浓度酒精废水,研究反应器的启动影响因素及颗粒污泥形成过程,分析反应器运行特性。在容积负荷为10.39 kg COD/(m3.d),COD去除率达90.2%,VFA在300 mg/L以下,平均产气率为0.328 m3/kg COD,取得最佳的运行效果,为高浓度酒精废水的处理应用提供科学依据。  相似文献   

15.
This paper presents results from a methane (CH4) gas emission characterization survey conducted at the Loma Los Colorados landfill located 60 km from Santiago, Chile. The landfill receives approximately 1 million metric tons (t) of waste annually, and is equipped with leachate control systems and landfill gas collection systems. The collected leachate is recirculated to enable operation of the landfill as a bioreactor. For this study, conducted between April and July 2000, a total of 232 surface emission measurements were made over the 23-ha surface area of the landfill. The average surface flux rate of CH4 emissions over the landfill surface was 167 g x m(-2) x day(-1), and the total quantity of surface emissions was 13,320 t/yr. These values do not include the contribution made by "hot spots," originating from leachate pools caused by "daylighting" of leachate, that were identified on the landfill surface and had very high CH4 emission rates. Other point sources of CH4 emissions at this landfill include 20 disconnected gas wells that vent directly to the atmosphere. Additionally, there are 13 gas wells connected to an incinerator responsible for destroying 84 t/yr of CH4. The balance also includes CH4 that is being oxidized on the surface of the landfill by meth-anotrophic bacteria. Including all sources, except leachate pool emissions, the emissions were estimated to be 14,584 t/yr CH4. It was estimated that less than 1% of the gas produced by the decomposition of waste was captured by the gas collection system and 38% of CH4 generated was emitted to the atmosphere through the soil cover.  相似文献   

16.
外循环式UASB反应器处理槟榔废水   总被引:1,自引:0,他引:1  
在中温(35±2℃)条件下,利用外循环式UASB反应器处理中高有机浓度的槟榔加工废水,并着重探讨了水力停留时间(HRT)对厌氧消化的影响。研究表明,当反应器稳定运行,水力停留时间为1 d,进水COD浓度5 000 mg/L左右,容积负荷在2.53-5.25 kg COD/(m3·d)时,COD去除率在38%以上,出水COD〈3 000 mg/L,平均产气率为0.41 m3/kg COD;若水力停留时间延长至4 d,容积负荷为1.26-1.30 kg COD/(m3·d),COD去除率可以达到79%,出水COD〈1 200 mg/L,出水可生化性下降,BOD5/COD平均为0.28,实验取得了良好的处理效果,为利用厌氧技术处理槟榔加工废水提供了设计依据。  相似文献   

17.
在优势菌生物除铬系统中悬挂表面磁场分别为0~6 mT和0~20 mT的磁片,分别控制磁片之间的磁场强度介于0~4.5 mT和0~14 mT,以未加磁场的对照系统作为参照,考察试验污泥活性的变化.试验结果表明,反应器中磁场强度为0~4.5 mT时,对厌氧活性污泥活性的促进效果较好,最大产甲烷速率(Umax.CH4)达64.3 mL CH4/g VSS·d,比非磁场系统提高20.6%,消耗单位COD产甲烷量为0.140 mL CH4/mg COD,比系统非磁场系统提高70.7%.同时发现了磁场的引入,提高了试验污泥利用COD物质生成甲烷的效率,对于低有机负荷重金属废水的生物净化尤其意义重大.  相似文献   

18.

This article presents a review of anaerobic treatment technologies to treat slaughterhouse wastewater including its advantages and disadvantages. Physico-chemical characteristics and biochemical methane potential (BMP) of slaughterhouse wastewater are addressed. Various anaerobic treatment technologies are presented with the related operating parameters, viz., hydraulic retention time (HRT), organic loading rate (OLR), upflow velocity (Vup), and biogas yield vis-a-vis treatment efficiency in terms of chemical oxygen demand (COD). In addition, various factors that affect the anaerobic treatment of slaughterhouse wastewater such as high oil & grease (O & G) concentration in influent, inhibitors, volatile fatty acids (VFAs), and the loading rate are also addressed. The literature review indicated that the slaughterhouse wastewater can be treated effectively by employing any anaerobic treatment technologies at OLRs up to 5 kg COD/m3.d with more than 80% COD removal efficiency without experiencing operational problems. Anaerobic hybrid reactors (AHRs) were found the most effective among various reviewed technologies because of their ability to operate at higher OLRs (8 to 20 kg COD/m3.d) and lower HRTs (8 to 12 hrs).

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19.
The increasing concentration of carbon dioxide (CO2)--the most dominant component of greenhouse gases--in the atmosphere has been of growing concern for many years. Many methods focus on CO2 capture and storage and there is always the risk of CO2 release to the environment. In this study, a new method to convert CO2 to biogas with a high content of methane (CH4) in an anaerobic system with a lab-scale upflow anaerobic sludge blanket reactor at 35 degrees C was developed. In a series of experiments, the reactor was run with and without CO2-saturated solutions including volatile fatty acids (VFAs) as sources of hydrogen. The concentration of dissolved CO2 in the influent solutions was 2.2-6.1 g/L, with corresponding chemical oxygen demand (COD) values of 2.6-8.4 g/L for the solutions. Overall CO2 removal values of 2.7-20 g/day (49-88% conversion) were obtained for the organic loading rates (OLR) and CO2 loading rates of 8-36 gCOD/L day and 6-26 gCO2/L x day, respectively with CH4 purity of above 70%. Also, VFA and COD removal were in the range of 79-95% and 75-90%, respectively. Methanogenic activities of the cultures with the concentrations measured as volatile suspended solids (VSSs) were 0.12-0.40 L CH4/gVSS x d with the highest value for the system containing acetic acid. This anaerobic method can be applied to reduce CO2 emitted to the atmosphere from a wide variety of industrial point sources with a value-added product, CH4.  相似文献   

20.
The kinetics of the anaerobic digestion of olive mill wastewater (OMW) was studied in the mesophilic and thermophilic ranges of temperature. Two completely mixed continuous flow bioreactors operating at 35 degrees C and 55 degrees C and with an average biomass concentration of 5.45 g VSS litre(-1) were used. The thermophilic reactor worked satisfactorily between hydraulic retention times (HRT) of 10 to 40 days, removing between 94.6 and 84.4% of the initial chemical oxygen demand (COD). In contrast, the mesophilic reactor showed a marked decrease in substrate utilization and methane production at a HRT of 10 days. TVFA levels and the TVFA/alkalinity ratio were higher and close to the suggested limits for digester failure. The yield coefficient for methane production (1 CH(4) STP g(-1) COD(added)) was 28% higher in the thermophilic process than in the mesophilic one. Macroenergetic parameters, calculated using Guiot's kinetic model, gave yield coefficients for the biomass (Y) of 0.18 (mesophilic) and 0.06 g VSS g(-1) COD (thermophilic) and specific rates of substrate uptake for cell maintenance (m) of 0.12 (mesophilic) and 0.27 g COD g(-1) VSS.day(-1) (thermophilic). The experimental results showed the rate of substrate uptake (R(s); g COD g(-1) VSS.day(-1)), correlated with the concentration of biodegradable substrate (S(b); g COD litre(-1)), through an equation of the Michaelis-Menten type for the two temperatures used.  相似文献   

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