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1.
通过对装有不同填料的2个厌氧移动床生物膜反应器(R1和R2)的有机负荷、COD去除率、沼气产量及其组成、出水挥发性有机酸(VFA)和出水pH值的对比,得出在填料充填率相同、进水COD和进水pH相似的情况下,填料比表面积是影响厌氧移动床生物膜反应器运行效果的主要因素.R1中填料的比表面积为528 m^2/m^3,R2中填料比表面积为211m^2/m^3.在整个运行阶段,填料比表面较大的R1反应器的运行结果较好.试验结束时,R1与R2的有机负荷比为1.61,而R1与R2填料上的污泥量之比为4.42.  相似文献   

2.
厌氧附着膜膨胀床反应器预处理有机氯农药废水的研究   总被引:1,自引:0,他引:1  
针对有机氯农药废水可生化性差的特点,研究了采用厌氧膨胀床颗粒活性炭反应器对其预处理以提高可生化性的效果.未经处理的有机氯农药废水及经混凝、Fenton氧化处理后的有机氯农药废水分别进入厌氧反应器,在进水pH为6.8~7.2,水力停留时间为48 h,有机物容积负荷为1.41~3.19 kg COD/m3.d时,3种废水的出水B/C值分别为0.35、0.41和0.42;出水COD分别为1280、1050和659 mg/L;出水色度分别为50倍(灰白)、20倍(灰白)和20倍(灰白).从运行稳定、经济的角度,选择混凝-厌氧组合作为该农药废水的预处理工艺.研究提出采用单位表面面积生物膜底物降解速率LW作为厌氧膨胀床反应器的设计指标,并根据试验数据得出厌氧膨胀床颗粒活性炭反应器的动力学模型,为工程设计及运行管理提供依据.  相似文献   

3.
UASB处理硫酸盐有机废水的启动   总被引:1,自引:0,他引:1  
为了考察上流式厌氧污泥床反应器(UASB)处理含硫酸盐有机废水的特性,采用有效容积为10 L的UASB,研究了启动运行过程中COD和SO2-4降解情况、出水VFA和pH值、产气量及颗粒污泥比产甲烷活性(SMA)变化状况。结果表明,接种厌氧颗粒污泥,保持进水COD为1 500 mg/L,SO2-4浓度为100 mg/L,将HRT由24 h缩短至12 h以提高负荷,经历55 d成功启动了UASB反应器;当HRT为12 h,进水COD和SO2-4负荷为3.0 kg/(m3·d)和0.20 kg/(m3·d),COD和SO2-4的去除率分别达到80%和89%,出水VFA为3 mmol/L,产气量达9.5 L/d,颗粒污泥的SMA为86.4 mL/(g VSS·d)。  相似文献   

4.
复合耐盐微生物菌剂强化MBBR工艺处理高盐废水   总被引:2,自引:0,他引:2  
在移动床生物膜反应器(MBBR)中接种SEM复合耐盐微生物菌剂,研究5% ~ 10%盐度条件下悬浮填料的挂膜启动及其对高盐废水的强化处理效果.实验结果表明,MBBR在高盐环境下能够顺利挂膜,其挂膜效果受盐度及无机盐种类的影响:较高盐度下成功挂膜所需的周期更长,同一盐度下NaCl体系挂膜效果优于Na2SO4体系.MBBR处理羧甲基纤维素生产废水效果优于活性污泥法:进水盐浓度均为5%~7%,当进水COD 5 343 mg/L时,MBBR出水COD小于300mg/L,经絮凝后低于100 mg/L,容积负荷高达2.67 kg COD/(m3·d),而活性污泥法在进水COD 3 563 mg/L时,出水COD小于400 mg/L,经絮凝后低于150 mg/L,容积负荷仅为1.68 kg COD/(m3·d).MBBR生物膜处理体系稳定性及去除能力更高,能够抵抗较高盐度范围波动、有机负荷等的冲击.  相似文献   

5.
大型UASB处理阿维菌素废水厌氧污泥颗粒化研究   总被引:3,自引:1,他引:2  
采用大型UASB反应器处理阿维菌素废水,接种好氧絮状污泥,经过189 d运行,成功实现了厌氧污泥颗粒化.通过调节反应器进水水质控制进水中阿维菌素浓度和长时间培养驯化,阿维菌素对厌氧消化的抑制影响基本消除.UASB反应器进水pH值4~5、COD 8890~12 100 mg/L、容积负荷达到10.5 kg COD/m3·d,COD去除率稳定在85%以上,出水COD为1308~1670 mg/L.  相似文献   

6.
为了考察水力停留时间(HRT)对炭纤维载体固定床厌氧反应器运行效果的影响,在进水COD分别为20 000~25 000 mg/L和40 000~45 000 mg/L2个浓度范围下,研究了不同HRT对反应器运行效果的影响。结果表明,通过HRT的调整,在达到相同有机负荷(OLR)下,进水COD为20 000~25 000 mg/L的COD去除率和产气量,明显比进水COD为40 000~45 000 mg/L的运行效果好;进水COD为20 000~25 000 mg/L,HRT为14 h,相应的OLR为41.09 kgCOD/(m3.d)时,COD去除率仍然维持在68%以上,沼气容积产气率达到14.55 m3/(m3.d)。炭纤维载体固定床厌氧反应器具有较高的COD去除率、产气效率以及抵抗低pH、高负荷冲击的能力,运行过程中没有发生反应器堵塞的现象。  相似文献   

7.
新型厌氧反应器--USSB的启动研究   总被引:3,自引:1,他引:2  
对上流式分段污泥床反应器在中温(35±2)℃下处理生活污水前的启动过程进行了试验研究.反应器经过40 d的启动后,当进水有机负荷为2.2 kg COD/m3·d时,其COD去除率能稳定在80%左右,出水pH值和碳酸氢盐碱度/VFA分别大于6.5和2,整个系统运行稳定.  相似文献   

8.
UASB处理甲醇废水的实验研究   总被引:1,自引:0,他引:1  
利用升流式厌氧污泥床(UASB)反应器在中温条件下处理高COD浓度的甲醇废水。当反应器稳定运行,进水COD=36 000 mg/L时,容积负荷可达到70~74 kg COD/(m3.d),COD去除率可以达到95%以上,出水COD2 000 mg/L。通过实验取得的良好实验效果,为利用厌氧技术处理甲醇废水提供了设计依据。  相似文献   

9.
曝气生物滤池去除有机物及硝化氨氮的影响因素研究   总被引:8,自引:0,他引:8  
采用以陶粒为填料的曝气生物滤池(BAF)处理低浓度生活污水,研究在气水比一定的条件下,水力负荷、有机负荷及氨氮负荷对BAF去除有机物及硝化氨氮的性能的影响.研究结果表明,当试验进水COD为105.8~156.6 mg/L,气水比为3:1的条件下,降解有机物的最佳水力负荷为1.35~1.68 m3/(m2·h),COD平均去除率为86.3%.氨氮负荷是影响反应器硝化性能的直接因素.当水力负荷为1.05 m3/(m2·h),平均进水COD为106.1 mg/L时,若使出水氨氮低于15 mg/L,则反应器能承受的最大进水氨氮负荷为0.5 kg/(m3·d)左右.并确立了相应的反应器动力学模型.  相似文献   

10.
MBBR处理猪场废水厌氧消化液的研究   总被引:5,自引:0,他引:5  
采用移动床生物膜反应器(MBBR)处理猪场废水厌氧消化液,考察了水力停留时间(HRT),进水COD和NH3-N浓度对反应器处理效果的影响.结果表明,在温度为20~30℃,填料填充比为50%,进水COD和NH3-N浓度分别为1016 mg/L和496 mg/L条件下,当HRT为12.5 h时,COD和NH3-N去除率可分别达到62%和77%,猪场废水厌氧消化液中可生物降解性有机物基本得到去除,当HRT增至23.8 h时,COD和NH3-N去除率分别为64%和86%,出水COD和NH3-N浓度分别为368 mg/L和70 ms/L,均达到了<畜禽养殖业污染物排放标准>(GB18596-2001)的要求.  相似文献   

11.
Anaerobic and aerobic (AnA) and completely aerobic (CA) sequencing-batch reactors (SBRs) were used to investigate the suitability of the AnA process for treating phosphorus (P)-deficient wastewaters with highly variable influent chemical oxygen demand (COD) loading. Both SBRs were subjected to influent COD loading patterns (LPs) that simulated (1) daily COD loading fluctuations, (2) weekend shutdowns, and (3) long weekend or holiday shutdowns. During LP 1, the AnA SBR produced lower average effluent soluble phosphorus concentrations than CA SBR (0.4 vs. 1.0 mgP/L). A similar result was observed during LP 2, but effluent acetate was detected after the first high COD loading cycle of the weekday loading period. During LP 3, the volatile suspended solids content of both reactors dropped sharply, and the effluent quality of both SBRs deteriorated. Model predictions suggest that the AnA process is stable when treating LP 1, but eventually fails when treating LP 2.  相似文献   

12.
COD浓度和进水流量比对一体化工艺脱氮除碳的影响   总被引:1,自引:1,他引:0  
保持进水总流量不变,以一定流量比同时从缺氧区和厌氧区进水,探讨了不同进水流量比(R=Q/Q)和进水COD浓度对中心岛式一体化OCO工艺脱氮除碳的影响。研究结果表明,进水COD浓度和进水流量比Rs对COD的去除效果影响不大,出水COD浓度一直稳定在50 mg/L以下,去除率在92%以上;进水COD浓度和进水流量比Rs共同决定着系统TN的去除效果,进水COD浓度为100 mg/L、200 mg/L时,TN去除率随着进水流量比Rs的减小呈增加的趋势;当进水COD浓度为 300 mg/L时,TN去除率随着进水流量比Rs的减小呈先升高后降低的趋势,在进水流量比Rs为3∶1时TN去除率最高,达到87%。  相似文献   

13.
采用UASB中试(100 m3/d)对生活污水处理进行了研究。试验结果表明,采用此系统处理生活污水,出水水质良好。COD的去除率在52%~83%,出水的COD值<100 mg/L以下,SS的去除率在95%左右,UASB处理生活污水的最佳停留时间为6 h。产气率在0.1 m3/d。不管停留时间在10 h、5 h,出水的氨氮、乙酸值比进水的高;钙、镁、总氮、总磷、硫酸根和硝酸根离子出水值比进水值低。  相似文献   

14.
Three columns each with 770 cm2 of surface area and 60-105 cm effective depth were set up for this study. These columns were filled with compacted, stabilized refuse. High-strength brewery wastewaters were uniformly trickled down the medium. Overall, 16 runs with various organic loadings were tested and the results demonstrated that the stabilized refuse had excellent capability in removing chemical oxygen demand (COD). The COD removal efficiency reached 95% at a depth of 60 cm at Q = 8 L/day for the initial COD of approximately 6000 mg/L and the efficiency increased to >99% at a depth of 90 cm (organic loading of 0.69 kg/m3/day). As would be expected, the filter performance is a function of flow rate, influent COD concentration, and bed depth. The Schulze equation is able to predict the COD removal performance well. The variations of pH, oxidation reduction potential, and volatile fatty acids indicated that the acidogenesis reaction occurred in the upper layers.  相似文献   

15.
采用厌氧流化床(AFB)-序批式反应器(SBR)工艺处理蓝皮制革工业废水。分别考察了水力停留时间(HRT)、容积负荷对厌氧流化床以及曝气时间、污泥浓度、溶解氧浓度对SBR反应器处理效果的影响。试验结果表明,AFB将实验废水的BOD_5/COD(B/C)值由0.19~0.26提高至0.35~0.42,有效提高了其可生化性;在进水COD浓度为1 700~1 890 mg/L、HRT为1 d、容积负荷为1.792 kg COD/(m~3·d)时,COD去除率达65.2%~68.5%,且具有良好的抗冲击负荷能力。SBR在进水COD浓度为628~712 mg/L、污泥浓度为2.9 g/L、曝气时间为10 h、溶解氧浓度为2 mg/L工况下,COD去除率达87.6%,NH_3-N去除率达93.6%,处理后出水水质符合污水综合排放标准(GB 8978-1996)中的一级标准要求。  相似文献   

16.
A study of the anaerobic treatment of wastewaters derived from red (RWWW) and tropical fruit wine (TFWWW) production was carried out in four laboratory-scale fluidized bed reactors with natural zeolite as bacterial support. These reactors operated at mesophilic temperature (35 degrees C). Reactors R1 and R2 contained Chilean natural zeolite, while reactors R3 and R4 used Cuban natural zeolite as microorganism support. In addition, reactors R1 and R3 processed RWWW, while reactors R2 and R4 used TFWWW as substrate. The biomass concentration attached to zeolites in the four reactors studied was found to be in the range of 44-46 g volatile solids (VS)/L after 90 days of operation time. Both types of zeolites can be used indistinctly in the fluidized bed reactors achieving more than 80%-86% chemical oxygen demand (COD) removals for organic loading rates (OLR) of up to at least 20 g COD/L d. pH values remained within the optimal range for anaerobic microorganisms for OLR values of up to 20 and 22 g COD/L d for RWWW and TFWWW, respectively. Toxicity and inhibition levels were observed at an OLR of 20 g COD/L d in reactors R1 and R3 while processing RWWW, whereas the aforementioned inhibitory phenomena were not observed at an OLR of 24 g COD/L d in R2 and R4, treating TFWWW as a consequence of the lower phenolic compound content present in this substrate. The volatile fatty acid (VFA) levels were always lower in reactors processing TFWWW (R2 and R4) and these values (< 400 mg/L, as acetic acid) were lower than the suggested limits for digester failure. The specific methanogenic activity (SMA) was twice as high in reactors R2 and R4 than in R1 and R3 after 120 days of operation when all reactors operated at an OLR of 20 g COD/L d.  相似文献   

17.
A study of the anaerobic treatment of wastewaters derived from red (RWWW) and tropical fruit wine (TFWWW) production was carried out in four laboratory-scale fluidized bed reactors with natural zeolite as bacterial support. These reactors operated at mesophilic temperature (35°C). Reactors R1 and R2 contained Chilean natural zeolite, while reactors R3 and R4 used Cuban natural zeolite as microorganism support. In addition, reactors R1 and R3 processed RWWW, while reactors R2 and R4 used TFWWW as substrate. The biomass concentration attached to zeolites in the four reactors studied was found to be in the range of 44–46 g volatile solids (VS)/L after 90 days of operation time. Both types of zeolites can be used indistinctly in the fluidized bed reactors achieving more than 80%–86% chemical oxygen demand (COD) removals for organic loading rates (OLR) of up to at least 20 g COD/L d. pH values remained within the optimal range for anaerobic microorganisms for OLR values of up to 20 and 22 g COD/L d for RWWW and TFWWW, respectively. Toxicity and inhibition levels were observed at an OLR of 20 g COD/L d in reactors R1 and R3 while processing RWWW, whereas the aforementioned inhibitory phenomena were not observed at an OLR of 24 g COD/L d in R2 and R4, treating TFWWW as a consequence of the lower phenolic compound content present in this substrate. The volatile fatty acid (VFA) levels were always lower in reactors processing TFWWW (R2 and R4) and these values (< 400 mg/L, as acetic acid) were lower than the suggested limits for digester failure. The specific methanogenic activity (SMA) was twice as high in reactors R2 and R4 than in R1 and R3 after 120 days of operation when all reactors operated at an OLR of 20 g COD/L d.  相似文献   

18.
为了研究厌氧折流板反应器在常温下的启动情况,在22.5~30.2℃条件下,对不加填料的5隔室厌氧折流板反应器和加填料的4隔室复合式厌氧折流板反应器同步进行了启动实验。实验用水为高浓度淀粉废水,两反应器采用相同的启动策略,即梯度增加进水COD浓度与降低水力停留时间相结合的方式。两反应器有效容积均为47.8 L,启动初始负荷为0.6 kg COD/(m3.d),逐渐增加到10 kg COD/(m3.d)。实验表明,经过6个阶段87 d的运行,反应器启动完成,并成功培养出颗粒污泥,两反应器对COD的去除率都能达到85%以上。在启动过程中两反应器对COD的去除效率相近。  相似文献   

19.
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   

20.
采用混凝沉淀 厌氧折流板反应池 两级好氧生化工艺处理毛毯废水。在废水 pH为 4 .6 3— 6 .95、CODCr为96 6— 1990mg/L、BOD5为 2 4 3— 4 97mg/L、SS为 344— 4 36mg/L、色度 4 0 0倍时 ,处理出水达到一级排放标准。该处理技术先进、可靠。  相似文献   

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