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1.

Wastewater treatment plants (WWTP) are highly non-linear operations concerned with huge disturbances in flow rate and concentration of pollutants with uncertainties in the composition of influent wastewater. In this work, the activated sludge process model with seven reactor configuration in the ASM3bioP framework is used to achieve simultaneous removal of nitrogen and phosphorus. A total of 8 control approaches are designed and implemented in the advanced simulation framework for assessment of the performance. The performance of the WWTP (effluent quality index and global plant performance) and the operational costs are also evaluated to compare the control approaches. Additionally, this paper reports a comparison among proportional integral (PI) control, fuzzy logic control, and model-based predictive control (MPC) configurations framework. The simulation outcomes indicated that all three control approaches were able to enhance the performance of WWTP when compared with open loop operation.

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2.
通过系列杯罐试验混凝处理合流污水,采用硫酸铝(Al2(SO4)3)、硫酸铁(Fe2(SO4)3)、聚合氯化铝(PAC)和聚合氯化铝铁(PAFC)4种混凝剂均能有效去除污水中的 TP、PO3-4-P、SS和COD。聚合金属盐(PAC和PAFC)混凝处理效果优于金属盐(Al2(SO4)3和Fe2(SO4)3),达到相同的处理效果的投加量明显低于后者。助凝剂采用聚丙烯酰胺(PAM)、聚乙烯醇(PVA)、自制的高分子聚合物(AN)和活化硅酸(AS),在保持较低混凝剂投加量的条件下可明显提高污水处理效果;添加助凝剂对强化PO3-4-P的去除作用不明显,PO3-4-P的去除仅与混凝剂的投加量相关。混凝剂和助凝剂对污水中NH3-N的去除作用相对不显著。SS去除率随混凝剂投加量的变化趋势说明混凝的机理较为复杂,可能存在多种混凝机理共同作用。  相似文献   

3.
双循环两相生物处理工艺工程应用的探讨   总被引:5,自引:0,他引:5  
探讨了新型生物脱氮除磷工艺--双循环两相(BICT)生物处理工艺的生产规模应用问题.通过在序批式活性污泥法基础上增设独立的生物膜反应器,实现微生物的分相培养,BICT工艺为提高系统的脱氮除磷能力,增强运行稳定性和可靠性创造了条件.技术经济比较分析说明,BICT工艺技术先进、运行稳定,投资及运行费用具有竞争力,在污水处理要求愈加严格的情况下,具有推广价值和应用前景.  相似文献   

4.
改进型曝气生物滤池对生活污水氮去除的影响   总被引:1,自引:2,他引:1  
采用下向流中部曝气的运行方式,对生活污水进行了处理,考察了气水比、有机负荷对生物滤池的去除效果及其沿程生化特性。结果表明:水力停留时间为8 h,气水比为10∶1条件下可获得最佳的处理效果,COD、TN和NH4+-N的平均去除率分别为92.5%、48.6%和69.4%。进水有机负荷增加,COD和NH4+-N的去除率下降,TN的去除率可达60.5%。结合理论分析,对脱氮性能进行了探讨。  相似文献   

5.
不同生物营养物处理工艺剩余污泥中温水解特性   总被引:1,自引:0,他引:1  
为了解不同生物营养物处理(BNR)工艺剩余污泥性质差异及其中温水解特性,采用序批式实验研究了来源于Orbal氧化沟(OD)和倒置A2/O工艺剩余污泥在中温水解过程中污泥浓度、营养物释放、污泥粒径、污泥絮凝性、污泥比阻及污泥胞外聚合物(EPS)的历时变化。结果表明,相同泥龄(约18 d)条件下,Orbal OD剩余污泥氮含量较高,倒置A2/O剩余污泥磷含量较高,两者VSS/SS均低于0.6,导致中温水解过程污泥减量空间有限、氮磷释放速率不同。此外,尽管倒置A2/O工艺剩余污泥絮体尺寸及絮凝能力明显大于Orbal OD工艺剩余污泥的对应值,但两污泥比阻相近。中温水解过程中,两污泥絮体的尺寸均变小、絮凝能力均降低、比阻均增高;两者的胞外聚合物均呈现增高再降低趋势,且蛋白质均占EPS质量的75%以上,为主要的胞外物质。  相似文献   

6.
为了解不同生物营养物处理(BNR)工艺剩余污泥性质差异及其中温水解特性,采用序批式实验研究了来源于Orbal氧化沟(OD)和倒置A2/O工艺剩余污泥在中温水解过程中污泥浓度、营养物释放、污泥粒径、污泥絮凝性、污泥比阻及污泥胞外聚合物(EPS)的历时变化。结果表明,相同泥龄(约18d)条件下,OrbalOD剩余污泥氮含量较高,倒置A2/O剩余污泥磷含量较高,两者VSS/SS均低于0.6,导致中温水解过程污泥减量空间有限、氮磷释放速率不同。此外,尽管倒置A2/O工艺剩余污泥絮体尺寸及絮凝能力明显大于OrbalOD工艺剩余污泥的对应值,但两污泥比阻相近。中温水解过程中,两污泥絮体的尺寸均变小、絮凝能力均降低、比阻均增高;两者的胞外聚合物均呈现增高再降低趋势,且蛋白质均占EPS质量的75%以上,为主要的胞外物质。  相似文献   

7.
Environmental Science and Pollution Research - Eco-ditches are being explored to maximize their capability of capturing pollutants and mitigate any harmful side effects in rivers. In this study,...  相似文献   

8.
针对普通生物转盘生物量小,有机负荷低等特点,首次采用新型网状生物转盘辅以生物接触氧化技术联合处理城市生活污水,为提高其处理效果,分别考察了水力停留时间、转盘转速、气水比、有机负荷的研究对COD去除效果的影响。结果表明:网状生物转盘具有较强的抗冲击负荷的能力,实验中转盘的有机负荷为35.41 g COD/(m2·d)时,...  相似文献   

9.
高效菌藻塘系统对农村污水中磷的强化去除效果研究   总被引:1,自引:1,他引:0  
研究了高效菌藻塘系统处理太湖地区农村生活污水除磷效果及其强化措施。高效菌藻塘和水生生物塘HRT分别为8 d和4 d,进水总磷浓度为1.7~17.1 mg/L,出水总磷浓度全年平均值为3.33 mg/L,高效菌藻塘系统的除磷能力欠佳。通过降低水生生物塘内水深、采用废弃石膏作为填料构建了新型复合水生生物塘,HRT=1.6 d条件下,复合水生生物塘出水总磷可保持在1 mg/L以下,可达到GB18918-2002一级B排放标准。  相似文献   

10.
传统的脱氮除磷工艺存在许多不足之处 ,经济、高效、低耗的可持续脱氮除磷工艺已成为污水处理的发展方向。在分析中 ,介绍了运用短程硝化反硝化、厌氧氨氧化、反硝化除磷理论的工艺 :SHARON工艺、CANON工艺、ANAMMOX工艺、SHARON与ANAMMOX联合工艺、DEPHANOX工艺、BCFS○R工艺的机理和研究进展  相似文献   

11.
The phosphate fertilizer industry produces highly hazardous and acidic wastewaters. This study was undertaken to develop an integrated approach for the treatment of wastewaters from the phosphate industry. Effluent samples were collected from a local phosphate fertilizer producer and were characterized by their high fluoride and phosphate content. First, the samples were pretreated by precipitation of phosphate and fluoride ions using hydrated lime. The resulting low- fluoride and phosphorus effluent was then treated with the enhanced biological phosphorus removal (EBPR) process to monitor the simultaneous removal of carbon, nitrogen, and phosphorus. Phosphorus removal included a two-stage anaerobic/aerobic system operating under continuous flow. Pretreated wastewater was added to the activated sludge and operated for 160 days in the reactor. The operating strategy included increasing the organic loading rate (OLR) from 0.3 to 1.2 g chemical oxygen demand (COD)/L.d. The stable and high removal rates of COD, NH4(+)-N, and PO4(3-)-P were then recorded. The mean concentrations of the influent were approximately 3600 mg COD/L, 60 mg N/L, and 14 mg P/L, which corresponded to removal efficiencies of approximately 98%, 86%, and 92%, respectively.  相似文献   

12.
Environmental Science and Pollution Research - Many advanced technologies have shown encouraging results in removing antibiotics from domestic wastewater. However, as activated sludge treatment is...  相似文献   

13.
选取水华束丝藻与铜绿微囊藻作为典型水华蓝藻,探索水华蓝藻净化水体及合成生物柴油的潜力.采用氮磷浓度为NH4+-N 7.5 mg/L,PO43--P 1.0 mg/L的模拟污水,重点考察了在光照强度与温度不同的条件下2种微藻对氮磷的去除率,并利用尼罗红荧光染色法测定了微藻中的中性脂含量.结果表明,2种藻对PO43--P的去除率均较高,最高达到98%,对NH4+-N的去除率稍低,最高为52%.水华束丝藻及铜绿微囊藻均具有较强积累中性脂的能力,适宜的温度与光照条件有利于微藻对氮磷的去除及细胞中脂类的积累.2种藻均在光照强度为12 000 lx时中性脂含量更高.水华束丝藻在温度为18~22℃条件下,生长更优,氮磷净化效果较好,中性脂积累能力更强.而铜绿微囊藻在温度为22~26℃时表现更好.  相似文献   

14.
污水生物除磷研究进展   总被引:8,自引:0,他引:8  
水体富营养化是世界性难题,其中磷通常是主要限制因子.生物除磷工艺简单,污泥产量少,可节约能源,运行费用也较低,便于操作和磷的回收.在介绍水体中磷的来源、污染特点及其造成危害的基础上,着重综述了国内外生物除磷的研究进展,并对生物除磷存在的问题和发展趋势提出了一些看法.  相似文献   

15.
A pilot submerged membrane bioreactor coupled with biological nutrient removal was used to treat the primary effluent at a municipal wastewater treatment plant. Long-term experiments were conducted by varying hydraulic retention time from 6 to 8 hours and solids retention time from 20 to 50 days, respectively. The performance was assessed by monitoring key wastewater parameters, including chemical oxygen demand (COD), nitrogen, and phosphorus concentration in individual anoxic, anaerobic, aerobic, and membrane separation zones. Results showed that the tested system can consistently achieve COD, nitrogen, and phosphorus removal efficiencies at 80 to 98%, 70 to 93%, and 89 to 98%, respectively. Effluent COD remained low as a result of efficient solid retention, even though there was great variation in influent quality. However, total nitrogen increased proportionally with influent concentration. At a 50-day solids retention time, higher COD and nitrogen oxides specific utilization rates in the anoxic zone resulted in a high production of nitrogen oxides in the subsequent aerobic zone.  相似文献   

16.
王娟  范迪 《环境工程学报》2006,7(6):117-121
采用水解酸化 CAST 混凝 复合滤池与水解酸化 接触氧化 混凝 复合滤池2种组合工艺对造纸中段废水与生活污水进行合并处理对照试验.结果表明,两种工艺都是切实可行的,二级出水均可达到<污水综合排放标准>(GB8978-1996)二级标准,深度处理出水可达中水水质要求.其中以水解酸化 CAST 混凝 复合滤池组合工艺效果最好.  相似文献   

17.
造纸中段废水与生活污水合并深度处理工艺   总被引:2,自引:0,他引:2  
采用水解酸化+CAST+混凝+复合滤池与水解酸化+接触氧化+混凝+复合滤池2种组合工艺对造纸中段废水与生活污水进行合并处理对照试验.结果表明,两种工艺都是切实可行的,二级出水均可达到《污水综合排放标准》(GB8978-1996)二级标准,深度处理出水可达中水水质要求.其中以水解酸化+CAST+混凝+复合滤池组合工艺效果最好.  相似文献   

18.
The need to improve on-site wastewater treatment processes is being realized as populations move into more environmentally sensitive regions and regulators adopt the total maximum daily load approach to watershed management. Under many conditions, septic systems do not provide adequate treatment; therefore, advanced systems are required. These systems must remove significant amounts of biochemical oxygen demand (BOD) and suspended solids, and substantially nitrify, denitrify, and remove phosphorus. Many existing advanced on-site wastewater systems effectively remove BOD, suspended solids, and ammonia, but few substantially denitrify and uptake phosphorus. The purpose of this research was to design and test modifications to an existing on-site wastewater treatment system to improve denitrification and phosphorus removal. The Nayadic (Consolidated Treatment Systems, Inc., Franklin, Ohio), an established, commercially available, extended-aeration, activated sludge process, was used to represent a typical existing system. Several modifications were considered based on a literature review, and the option with the best potential was tested. To improve denitrification, a supplemental treatment tank was installed before the Nayadic and a combination flow splitter, sump, and pump box with a recirculation system was installed after it. A recirculation pump returned a high proportion of the system effluent back to the supplemental treatment tank. Two supplemental treatment tank sizes, three flowrates, and three recirculation rates were tested. Actual wastewater was dosed as brief slugs to the system in accordance with a set schedule. Several ion-exchange resins housed in a contact column were tested on the effluent for their potential to remove phosphorus. Low effluent levels of five-day biochemical oxygen demand, suspended solids, and total nitrogen were achieved and substantial phosphorous removal was also achieved using a 3780-L supplemental treatment tank, a recirculation ratio of 5:1, and a fine-grain activated aluminum-oxide-exchange media. Good results were also obtained with an 1890-L supplemental treatment tank and a recirculation ratio of 3:1. The most significant benefit of the supplemental treatment tank, in combination with the recirculation system, appears to be the low nitrogen concentration dosed to the Nayadic. By reducing the nitrogen concentration and spreading out its mass over time during no-flow periods, the Nayadic's inherent low-level denitrifying capacity was more closely matched and effective treatment was achieved.  相似文献   

19.
To test the possible use of composted food waste and wastewater sludge as biofilters to treat gas-phase volatile organic compounds (VOCs), batch experiments were conducted with an isolated strain that could degrade aromatic compounds under aerobic conditions. A benzene and trichloroethylene (TCE) mixture was used as the gas-phase pollutant in experiments with composted food waste, sludge, and soil. Under aerobic conditions, benzene was degraded as a primary substrate and TCE was degraded cometabolically, with water contents varying from 6 to 60% (volume of water added/volume of solid). Optimal water content for VOC removal was 12% for the soil, 36% for the composted food waste, and 48% for the sludge. The extent of VOC sorption and biodegradation at the optimal water content was different for each material. With the same initial VOC concentration, more VOCs were removed by sorption onto the composted food waste and the sludge, while less VOCs were biodegraded in comparison with the results using soil. The reason the biodegradation in the soil was greater may be partly attributed to the fact that, due to less sorption, the aqueous-phase concentration of VOCs, which microorganisms could utilize as a carbon source or cometabolize, was higher. We also speculate that the distribution of microorganisms in each medium affects the rate of biodegradation. A large number of microorganisms were attached to the composted food waste and sludge. Mass transfer of VOCs and oxygen to these microorganisms, which appear to have been heterogeneously distributed in clusters, may have been limited, resulting in hindered biodegradation.  相似文献   

20.
A membrane-assisted and a conventional activated sludge system, both operated in an enhanced biological phosphorus removal (EBPR) mode and under identical operating conditions, were studied to investigate the effect of the membrane solids-liquid separation on nitrification activity. Both the membrane EBPR (MEBPR) and conventional EBPR (CEBPR) processes achieved stable and complete removal of ammonium-nitrogen from the influent wastewater. However, when the intrinsic nitrification activity was assessed in offline batch tests, the CEBPR mixed liquor exhibited 15 to 75% greater nitrification potential than the MEBPR counterpart. These results were further validated by monitoring nitrification rates of conventional mixed liquor as it evolved toward a membrane mixed liquor. It was also demonstrated that the larger aerobic mass fraction of the MEBPR system could not be the only factor influencing the reduced intrinsic nitrification rate. The present study strongly suggests that the presence of a membrane solids-liquid separation per se may be sufficient to alter the nitrification kinetics of an EBPR mixed liquor and that this possibility should be considered in arriving at an appropriate process design.  相似文献   

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