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1.
SBR分段进水工艺提高污水厂的脱氮效率   总被引:1,自引:0,他引:1  
研究了SBR分段进水工艺用于污水厂升级改造并提高脱氮效率的方法,通过对昆明某污水厂实际运行工艺的实际调研,决定从运行模式、进水方式和排水比变化三方面用SBR研究影响脱氮效率的因素。结果表明,将原工艺2次搅拌、2次曝气的运行模式改为1次搅拌、1次曝气,会改善原模式下第2次搅拌过程中无反硝化反应的状况,提高系统的总氮去除率;将原工艺连续进水的方式改变为间歇进水,系统的脱氮效率提高了5%以上;分3个阶段研究了排水比在20%~40%之间变化对总氮去除率的影响,每阶段2个反应器的对比实验发现,排水比变大相应的总氮去除率升高,但当排水比为35%和40%时系统出水中会有较高浓度的氨氮,因此,排水比为30%最为合宜。  相似文献   

2.
城市污水处理厂采用多点进水的改良A2/O生物脱氮除磷工艺,取得了较好的脱氮除磷效果.在工艺运行中,通过采取有效的调控措施,保证了生化池脱氮除磷各反应单元的溶解氧要求,得到了较佳的工艺运行参数控制范围.  相似文献   

3.
为实现污水厂低碳氮比尾水深度脱氮除磷,考察以玉米芯为外碳源满足反硝化除磷最佳碳氮比要求时有机物及氮、磷的去除效果。在DO0.3 mg·L-1条件下,SBR系统最佳进水C/N为6,此时出水TN和TP分别为3.57 mg·L-1和1.24 mg·L-1;投加玉米芯作为外碳源和生物载体构建SBBR系统,可将进水C/N从3.5提升至6,同时出水COD保持在40 mg·L-1左右,出水TN和TP分别降至3.04 mg·L-1和0.54 mg·L-1。研究表明,以玉米芯为固体碳源和生物载体的SBBR系统的脱氮除磷效果优于相同C/N条件下的SBR系统,玉米芯的粗糙表面和纤维结构为反硝化除磷菌提供了良好的缺氧环境和载体基础,使得SBBR系统的生物量及活性整体增强。  相似文献   

4.
改良A^2/O工艺的工程实践   总被引:5,自引:0,他引:5  
城市污水处理厂采用多点进水的改良A^2/O生物脱氮除磷工艺,取得了较好的脱氮除磷效果.在工艺运行中,通过采取有效的调控措施,保证了生化池脱氮除磷各反应单元的溶解氧要求,得到了较佳的工艺运行参数控制范围.  相似文献   

5.
为解决脱氮除磷对碳源的竞争及不同泥龄需要等问题,提出强化序批式生物膜反应器(SBBR)脱氮与人工湿地除磷联合工艺.通过将SBBR系统分为2格,并采用交替运行的方式(进水和曝气),强化了碳源保存,进一步提高脱氮效率;SBBR系统出水进入栽种菖蒲(Acorus calamus L.)的人工湿地,利用基质和植物吸附等作用进一步除磷.结果表明:(1)2格交替运行SBBR脱氮效果良好,稳定时出水COD均值为34 mg/L,去除率约为93%;出水NH+4-N均值为2.0 mg/L,去除率约为94%;出水TN维持在4.5 mg/L左右,去除率约为86%;出水TP在2 mg/L附近波动,除磷效果并不理想,有时还会出现出水TP高于进水TP的释磷现象.(2)人工湿地除磷效果良好且稳定.当进水TP为0.6~6.7 mg/L时,出水TP维持在0.3~0.7 mg/L.(3)该联合工艺有良好的脱氮除磷效果.系统出水NH+4-N、TN、TP均值分别为2.0、2.4、0.5 mg/L,去除率均值分别为94%、92%、90%.  相似文献   

6.
侧流除磷ERP-SBR新工艺在进水COD=338~527 mg/L、TN=40~60 mg/L、TP=8~11 mg/L的水质条件下,出水COD≤39 mg/L、NH3-N≤1.8 mg/L、TN≤5.8 mg/L、TP≤0.29 mg/L,且72%的总氮损失发生在好氧曝气阶段.在分析影响该工艺生物脱氮因素时发现:SBR反应器的DO时间分布是影响好氧生物脱氮和缺氧内碳源反硝化的重要因素;侧流除磷工艺特有的高浓度活性污泥、颗粒大且密实的污泥絮体有利于形成好氧生物脱氮过程所需要的微环境;控制较长的污泥龄有利于提高系统的好氧脱氮能力,SRT与好氧脱氮率之间具有良好的线性关系:ηODN(%)=0.89×SRT-5.74.  相似文献   

7.
为了对比研究传统A~2/O工艺和氧化沟型A~2/O工艺的脱氮除磷性能,通过实验分析了2种工艺在不同水力停留时间、不同混合液回流比、不同污泥回流比、不同污泥浓度条件下的脱氮除磷效果及典型工况下的污染物去除过程。结果表明,2种工艺在大多数情况下均可实现良好的脱氮除磷性能,出水COD、NH_4~+-N、TN和TP等各项水质指标均可满足《城镇污水处理厂污染物排放标准》(GB 18918-2002)一级A要求。在传统A~2/O工艺的缺氧段发生了反硝化除磷反应,在氧化沟型A~2/O工艺中则未发生。  相似文献   

8.
城市污水处理厂提高污泥浓度的理论与实践   总被引:3,自引:1,他引:2  
在城市污水处理厂运行中,通过提高污泥回流比实现提高污泥浓度是有限的.分点进水高效脱氮除磷(ECOSUN-IDE)工艺改变了传统的进水方式,在活性污泥系统中进行分点进水,大幅度提高了污泥浓度,从而改进了城市污水处理厂脱氮除磷效率.  相似文献   

9.
针对改良多级A/O工艺处理低碳氮比生活污水难以同时兼顾脱氮除磷的问题,考察了内置式悬浮球中填加海绵块(填料A)和内置式悬浮球中填加海绵块、海绵铁和聚氯乙烯泡沫(填料B)两种悬浮复合填料的效果。结果表明,悬浮复合填料的添加可以在保证COD去除效果的基础上同时兼顾脱氮除磷。出水COD和氨氮可以达到《城镇污水处理厂污染物排放标准》(GB18918—2002)的一级A标准。填料B的脱氮除磷效果均优于填料A。可以通过添加外加碳源增强脱氮的主要限制步骤(反硝化作用),从而进一步提高脱氮效果,有望出水TN达到GB 18918—2002的一级A标准。  相似文献   

10.
研究了分别以葡萄糖和乙酸钠为碳源时多点交替进水阶式A2/O(CMICAO)工艺氮磷的去除效果,以及在不同进水C/N比时各进水量分配对脱氮除磷效果的影响.结果表明,在相同的进水COD浓度下,乙酸钠比葡萄糖更适合作为碳源,更能提高脱氮除磷效率.以葡萄糖为碳源时,COD为200 mg/L、C/N比为5、缺氧池与厌氧池进水配比为1∶2时,出水COD、TN、氨氮和TP浓度分别为28.5、10.8、2.1和0.5 mg/L,均达到国家一级A排放标准.若采用葡萄糖作为碳源,投加量以使进水C/N比为5~7.5为宜,外加碳源时缺氧池与厌氧池进水分配比可统一采用1∶1.  相似文献   

11.
The role of SBR mixed liquor volume exchange ratio in aerobic granulation   总被引:10,自引:0,他引:10  
Wang ZW  Liu Y  Tay JH 《Chemosphere》2006,62(5):767-771
Four sequencing batch reactors (SBR) were operated at different volume exchange ratios of 20-80%. Results showed that a rapid aerobic granulation could be achieved in SBR run at high volume exchange ratios, and the characteristics of mature aerobic granules in terms of mean size, SVI, granule fraction, EPS and calcium content were all closely related to the volume exchange ratio applied to SBR. To interpret the role of volume exchange ratio in aerobic granulation, a concept of minimum settling velocity of bioparticles was proposed, which is the function of both settling time and volume exchange ratio. It was further demonstrated that the effect of volume exchange ratio on aerobic granulation in SBR would be realized through selecting the minimum settling velocity of bioparticles. In fact, the minimum settling velocity would serve as a major selection pressure exerted on bioparticles. It appeared from this study that the production of EPS was stimulated significantly by high volume exchange ratio, which was associated with marketable accumulation of calcium ion in aerobic granulation. It is expected that this study may offer insights into the mechanism of aerobic granulation.  相似文献   

12.
污泥转移SBR工艺处理低浓度生活污水   总被引:1,自引:0,他引:1  
污泥转移SBR工艺是一种通过内部污泥回流实现污泥在不同SBR隔室间转移,从而增加污泥利用效率,提高系统除污效能的新工艺。以设计规模为240 m3/d、处理低浓度生活污水的工艺系统为对象,研究了新工艺在不同泥转移量(污泥回流比)下的除污性能,并与系统以传统SBR方式运行的情况进行了对比。结果表明,新工艺可以有效提高SBR反应器的容积利用率;采用30%的污泥回流比进行污泥转移,新工艺的处理能力比传统SBR工艺提高近1/2,除磷效率从46%提升至85%。出水各项水质指标均能达到国家排放标准的要求。  相似文献   

13.
为了研究非稳定状态下生物除磷的特点,采用序批式间歇反应器(SBR),通过不同的进水方式(连续进水和瞬时进水),系统地考察了进水体积、NOX-N、限制曝气等因素对除磷过程的影响。结果表明,在温度为(23±0.5)℃、pH为7.0~8.0时,厌氧搅拌期连续进水的比释磷量(单位质量污泥(以MLSS计)的释磷量(以PO43-P计))比瞬时进水时高出42.11%。在运行条件相似的情况下,厌氧搅拌期的比释磷量与每周期进水体积无关。相对于连续进水,瞬时进水更有助于促进微生物利用有机底物进行自身的生长。限制曝气对连续进水和瞬时进水的释磷过程都存在明显的影响,在DO小于0.1mg/L的情况下,2者的比释磷量相对非限制曝气时分别降低了57.14%和55.56%。在连续进水时,NOX-N的反硝化结束伴随着释磷速率的突然升高。利用贮存作用并不能每次都成功地抑制丝状菌污泥膨胀。  相似文献   

14.
A pilot-scale soil washing process, patented by BioTrol, Inc., was demonstrated on soil contaminated by wood treating waste, primarily pentachlorophenol (PCP) and creosote-derived polynuclear aromatic hydrocarbons (PAHs). Although soil washing was the main object of this demonstration, the treatment train that was evaluated included two other BioTrol technologies for treatment of waste streams from the soil washer. The three technologies were: ? The BioTrol Soil Washer (BSW)—a volume reduction process, which uses water to separate contaminated soil fractions from the bulk of the soil.

? The BioTrol Aqueous Treatment System (BATS)—a biological water treatment process.

? The Slurry Bioreactor (SBR)—a BioTrol biological slurry treatment process conducted in an EIMCO BIOLIFTtm reactor.

The sandy soil at the site, consisting of less than 10 percent of fines, was well suited for treatment by soil washing. The soil washer was evaluated in two tests on soil samples containing 130 ppm and 680 ppm of PCP, respectively.

The BSW successfully separated the feed soil (dry weight basis) into 83 percent of washed soil, 10 percent of woody residues, and 7 percent of fines. The washed soil retained about 10 percent of the feed soil contamination while 90 percent of the feed soil contamination was contained within the woody residues, fines, and process water.

The soil washer achieved up to 89 percent removal of PCP and 88 percent of total PAHs, based on the difference between their levels in the as-is (wet) feed soil and the washed soil. PCP concentrations of 14 ppm and 87ppm in the washed soil were achieved from PCP concentrations of 130 ppm and 680ppm in the feed soil. Concentrations of total PAHs were reduced from 247 ppm to 42 ppm and 404 ppm to 48 ppm, respectively, in the two tests.

The BATS degraded up to 94 percent of PCP in the process water from soil washing. PAH removal could not be determined due to low influent concentrations.

The SBR achieved over 90 percent removals of PCP and 70 to 90 percent removals of PAHs from the slurry of contaminated fines from soil washing. However, steady state operation was not achieved during the single test and the results were variable.

Cost of a commercial-scale soil washing, assuming use of all three technologies, was estimated to be $168 per ton of soil treated. Incineration of woody material accounts for 76 percent of the cost.  相似文献   

15.
为了实现脉冲SBR深度脱氮的实时控制,以某污水处理厂市政污水为处理对象,考察了脉冲SBR在深度脱氮过程中pH及ORP的变化规律.试验结果表明,pH及ORP的变化规律与脉冲SBR有机物去除、硝化与反硝化过程存在较好的相关关系.可以根据pH和ORP变化曲线上的特征点对脉冲SBR进行实时控制.并考察了污水C/N(COD/NH4 -N)对pH及ORP的变化规律的影响.在硝化过程中,C/N对pH及ORP曲线变化点的出现没有影响;在反硝化过程中,应结合pH值"硝酸盐峰"和ORP"硝酸盐膝"来判断低C/N污水反硝化的终点.在该试验中,出水TN低于2 mg/L,TN去除率可达到96%以上.  相似文献   

16.
改进倒置A2/O工艺处理生活污水试验研究   总被引:1,自引:0,他引:1  
王琪  刘年丰  张杰  丁峰 《环境污染与防治》2007,29(5):361-362,381
对倒置A2/O工艺进行了缺氧池生物挂膜实验,结果表明,在化粪池出水COD有一定波动情况下,缺氧池COD去除率不仅较高且较稳定,有利于后续硝化反应的进行,提高系统的脱氮效果.同时研究了C/N在缺氧池中对脱氮效果的影响,C/N(质量比)  相似文献   

17.
采用厌氧 缺氧SBR反应器对以硝酸盐作为电子受体的反硝化除磷过程进行了研究。结果表明 ,反硝化聚磷菌完全可以在厌氧 缺氧交替运行条件下得到富集。稳定运行的厌氧 缺氧SBR反应器的反硝化除磷效率 >90 % ,出水磷浓度 <1mg L。进水COD浓度对反硝化除磷的效率影响很大 ,在COD浓度 <180mg L时 ,进水COD浓度越高 ,除磷效率也就越高。较高浓度的进水COD浓度将导致有剩余的COD进入缺氧段 ,对反硝化吸磷构成不利影响。污泥龄为 16d时 ,厌氧 缺氧SBR反应器取得稳定和理想的反硝化除磷效果。污泥龄减少到 8d ,由于反硝化聚磷菌的流失导致反硝化除磷效率的下降。当污泥龄恢复到 16d时 ,经过一段时间的运行 ,反硝化聚磷菌重新得到富集 ,除磷效率恢复到 90 %以上。  相似文献   

18.
Wu CY  Peng YZ  Wang RD  Zhou YX 《Chemosphere》2012,86(8):767-773
The granulation of activated sludge was investigated using two parallel sequencing batch reactors (SBRs) operated in biological nitrogen and phosphorus removal conditions though the reactor configuration and operating parameters did not favor the granulation. Granules were not observed when the SBR was operated in biological nitrogen removal period for 30 d. However, aerobic granules were formed naturally without the increase of aeration intensity when enhanced biological phosphorus removal (EBPR) was achieved. It can be detected that plenty of positive charged particles were formed with the release of phosphorus during the anaerobic period of EBPR. The size of the particles was about 5-20 μm and their highest positive ζ potential was about 73 mV. These positive charged particles can stimulate the granulation. Based on the experimental results, a hypothesis was proposed to interpret the granulation process of activated sludge in the EBPR process in SBR. Dense and compact subgranules were formed stimulated by the positive charged particles. The subgranules grew gradually by collision, adhesion and attached growth of bacteria. Finally, the extrusion and shear of hydrodynamic shear force would help the maturation of granules. Aerobic granular SBR showed excellent biological phosphorus removal ability. The average phosphorus removal efficiency was over 95% and the phosphorus in the effluent was below 0.50 mg L−1 during the operation.  相似文献   

19.
Phosphate removal and recovery with a synthetic hydrotalcite as an adsorbent   总被引:13,自引:0,他引:13  
Phosphate removal is important to control eutrophication and an ion exchange process is one of several treatment processes for this purpose. Hydrotalcite compounds (HTALs) are useful as adsorbents for phosphate removal because of their ion exchange properties. In this study, the adsorption properties of a granular synthetic HTAL for phosphate and the method of regeneration of the granular HTAL were examined. The adsorption isotherm of the granular HTAL was approximated by a modified Langmuir type, and the maximum adsorption capacity was 47.3 mg P g(-1), which corresponded to the content of HTAL in the granular one. Phosphate adsorbed on the HTAL was effectively desorbed with alkaline NaCl solutions and the HTAL was regenerated with 25 w/v% MgCl(2) solution. The regenerated HTAL could be reused repeatedly for the phosphate removal. Phosphate in the exhausted desorption solution was recovered as a precipitate of calcium phosphate by addition of CaCl(2), and the residual exhausted desorption solution could be also reused after supplying NaOH. The results suggest the possibility of an effective system for phosphate removal and recovery, which includes the following processes: adsorption, desorption, recovery of phosphate, and regeneration of the HTAL and the desorption solution.  相似文献   

20.
硝酸盐浓度及投加方式对反硝化除磷的影响   总被引:29,自引:0,他引:29  
采用SBR反应器,详细研究了硝酸盐浓度及其投加方式对反硝化除磷过程的影响。结果表明,缺氧环境下的反硝化吸磷速率与作为电子受体的硝酸盐浓度有很大的关系,硝酸盐浓度越高.吸磷速率越快。当硝酸盐浓度较低.不足以氧化反硝化聚磷菌细胞内的PHB从而导致体系反硝化除磷效率的下降。相同浓度的硝酸盐,采用流加的方式可以获得比一次性投加更高的反硝化吸磷速率。缺氧环境下,反硝化脱氮量与磷的吸收量成良好的线性关系.借助于反硝化聚磷菌,反硝化脱氮与除磷可在一种环境中完成,有效解决了废水中COD不足的问题.同时达到了节省能源和降低污泥产量的目的。  相似文献   

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