首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到18条相似文献,搜索用时 171 毫秒
1.
碳氮磷比例失调城市污水的同步脱氮除磷   总被引:6,自引:0,他引:6  
为解决现行同步脱氮除磷工艺处理南方地区碳、氮、磷比例失调城市污水中,因C/N、C/P偏低,碳源不足而降低脱氮除磷效率的难题,试验以碳源偏低的广州市城市污水为研究对象,采用厌氧/好氧交替运行的SBR系统,通过对厌氧、好氧时段的合理调控,在无需额外添加碳源的条件下,有机物、氨氮、总氮和总磷的平均去除率分别可达90%、72%、41%和99%,不仅能使有机物和氮的出水指标达到国家排放标准,而且总磷出水浓度能达0.5mg/L以下。通过进一步分析同步高效脱氮除磷的影响因素和控制条件,得出合理污泥龄的控制是实现同步脱氮除磷的关键,厌氧/好氧交替运行的方式不仅强化了磷的释放和吸收,而且降低了碳源偏低和硝酸盐对同步脱氮除磷影响的结论。  相似文献   

2.
以人工配水为研究对象,采用厌氧/好氧/缺氧/好氧交替运行的序批式反应器,研究了(AO)2SBR系统同步脱氮除磷的效果,并结合批式实验讨论了同步脱氮除磷的反应机理。研究结果表明,该系统以厌氧1.5 h、好氧1 h、缺氧3h、好氧0.5 h的方式运行,在DO=2.5 mg/L,SRT=15 d的条件下,具有良好的脱氮除磷效果,配水中的总氮、总磷、COD和总有机碳的去除率分别为96.26%、99.87%、90.46%和85.57%。批式实验表明,合成的内碳源越多,氨氮的硝化越充分,反硝化除磷越多。  相似文献   

3.
针对低C/N城市污水脱氮除磷因碳源不足存在能耗、药耗高以及脱氮除磷效率低等问题,开发一体式短程硝化/厌氧氨氧化(PN/A)耦合强化生物除磷工艺(EBPR),以降低碳源消耗和能耗、提高脱氮除磷效率,从而实现高效低耗减污降碳。通过构建悬浮污泥和生物膜共存的混合系统,采用厌氧-好氧运行模式以及间歇曝气,考察短程硝化/厌氧氨氧化与强化生物除磷过程的耦合效果。结果表明,反应器能长期稳定运行,出水总无机氮(TIN)质量浓度稳定低于4 mg·L-1,溶解态磷(DP)质量浓度约0.2 mg·L-1,TIN平均去除率大于90%,DP的平均去除率大于85%,平均脱氮负荷为53 mg·(g·d)-1,强化间歇曝气能够在系统内实现NOB抑制,亚硝氮积累率可达60%以上,甚至100%。控制悬浮污泥好氧污泥龄为3.5 d,NOB由悬浮污泥向填料转移。由于生物膜传质受限,系统的亚硝氮积累率并未受到影响。该系统内厌氧氨氧化活性提高了5倍,厌氧氨氧化菌以Candidatus Brocadia为主,相对丰度为1.1%,较主流条件下提高了2.75倍。本研究结...  相似文献   

4.
为了提高低碳源污水脱氮除磷的效率,在传统SBR的基础上,通过改变SBR的运行方式和结构,构建了厌氧、好氧和缺氧在同一反应器中不同部位同时进行的反硝化除磷双泥系统。探究SBR工艺新的运行方式下的反硝化除磷脱氮效能,实验表明,在最佳运行工况下,即厌氧(进出水)30 min→上部好氧90 min(下部厌氧90 min)→缺氧50 min→沉淀10 min,系统对COD、氨氮、总氮和总磷的去除率分别达到94%、82.08%、76.78%和95.47%,出水能达到国家污水综合排放一级A标准(GB18918-2002)。  相似文献   

5.
A-A2/O工艺是预缺氧/厌氧/缺氧/好氧组成的生物脱氮除磷工艺,广州市某污水处理厂采用该工艺处理城市污水,具有同时去除有机物、脱氮除磷能力,但是TN去除率较低。分析了其TN去除率低的原因,并提出相应措施。该水厂针对本厂水质特征以及影响工艺脱氮性能的主要因素,优化了工艺控制参数,提高了TN去除率和TN达标保证率。  相似文献   

6.
以合成废水为研究对象,分别以丙酸钠、乙酸钠/丙酸钠(1∶2碳/碳)、乙酸钠和葡萄糖为外加碳源,建立同步脱氮除磷的静置/好氧/缺氧序批式反应器(SOA-SBR)。通过比较长期运行过程中各反应器的脱氮除磷效果,考察不同碳源对静置/好氧/缺氧SBR脱氮除磷性能的影响,并通过分析典型周期内氮、磷元素及微生物体内储能物质的变化,探究其影响机理。结果表明,丙酸钠为碳源时SBR能获得96%的最佳除磷效果以及78.3%的总氮去除率;乙酸钠为单一碳源时可取得92.3%的除磷率和93.7%的总氮去除率;而混合碳源对于氮、磷的去除能力介于丙酸钠和乙酸钠之间;葡萄糖为单一碳源时系统对于磷和总氮的去除率仅26%和36.7%。丙酸钠和乙酸钠均能取得良好的同步脱氮除磷效果,但乙酸钠对总氮去除能力更佳。通过分析典型周期中内聚物含量变化表明,微生物体内聚羟基脂肪酸酯(PHA)和糖原质含量的变化与系统反硝化能力和溶解性正磷酸盐(SOP)去除效果呈正相关性。  相似文献   

7.
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   

8.
UniFed SBR工艺除磷脱氮机理研究   总被引:2,自引:1,他引:2  
采用UniFed SBR工艺试验装置处理实际生活污水,确定了出水不受进水扰动影响的合适排水比.当将进水/排水时间固定为2 h,排水比不高于41.67%时,可以实现进水与出水的分离,保证良好的出水水质.通过试验分析了UniFed SBR工艺的除磷脱氮机理在于:进水/排水阶段在反应池底部先后发生了反硝化作用和厌氧释磷反应,后续曝气阶段发生硝化作用和好氧吸磷,因此通过该工艺,可实现同步除磷脱氮.  相似文献   

9.
A-A2/O工艺是预缺氧/厌氧/缺氧/好氧组成的生物脱氮除磷工艺,广州市某污水处理厂采用该工艺处理城市污水,具有同时去除有机物、脱氮除磷能力,但是TN去除率较低。分析了其TN去除率低的原因,并提出相应措施。该水厂针对本厂水质特征以及影响工艺脱氮性能的主要因素,优化了工艺控制参数,提高了TN去除率和TN达标保证率。  相似文献   

10.
通过对生物倍增工艺处理市政污水的沿程污染物降解规律的考察表明,工艺对有机物的去除效果显著,COD和BOD5出水分别为47.80 mg/L和19.80 mg/L;氨氮去除率可达100%。发现厌氧区提前发生反硝化并一定程度上影响系统除磷效果;通过对各主要影响因素进行分析,认为低碳源的进水条件是影响系统同步脱氮除磷效果的关键因素;提出在进水口直接添加碳源以及分点进水的碳源分配+辅助化学除磷的方式可强化氮磷去除效果。  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.
魏臻  胡勇有  方平 《环境工程学报》2012,6(7):2123-2128
采用水解-生物陶粒移动床(BCMBBR)-混凝沉淀组合工艺处理南方低浓度、低碳高氨氮生活污水(COD 110~140 mg/L、C/N 4~5),开展中试研究。结果表明,BCMBBR 20 d成功挂膜,快速启动;在水温25~29℃,HRT 8 h,气水比5∶1,混合液回流比150%,无混凝沉淀下运行,COD、SS和NH4+-N的平均去除率均在81%以上,TN平均去除率大于47%,而TP去除率较低;后接PAC+PAM强化混凝沉淀后运行,有效提高了TP去除率,出水TP在0.5 mg/L以下,稳定达到(GB18918-2002)一级A标准。曝气强度不同相应BCMBBR中的微生物相(微生物种类和数量)也不同,可根据微生物相来指导曝气强度的调节,实现BCMBBR的高效运行。该组合工艺处理废水运行的直接成本为0.24元/m3,是一种适合南方低浓度、低碳高氨氮生活污水的经济高效处理工艺。  相似文献   

13.
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   

14.
Patel A  Zhu J  Nakhla G 《Chemosphere》2006,65(7):1103-1112
In this study, the performance of the circulating fluidized bed bioreactor (CFBB) with anoxic and aerobic beds and employing lava rock as a carrier media for the simultaneous removal of carbon, nitrogen and phosphorus from municipal wastewater at an empty bed contact time (EBCT) of 0.82 h was discussed. The CFBB was operated without and with bioparticles' recirculation between the anoxic and aerobic bed for 260 and 110 d respectively. Without particles' recirculation, the CFBB was able to achieve carbon (C), total nitrogen (N) and phosphorous (P) removal efficiencies of 94%, 80% and 65% respectively, whereas with bioparticles' recirculation, 91%, 78% and 85% removals of C, N and P were achieved. The CFBB was operated at long sludge retention time (SRT) of 45-50 d, and achieved a sludge yield of 0.12-0.135 g VSS g COD(-1). A dynamic stress study of the CFBB was carried out at varying feed flow rates and influent ammonia concentrations to determine response to shock loadings. The CFBB responded favourably in terms of TSS and COD removal to quadrupling of the feed flow rate. However, nitrification was more sensitive to hydraulic shock loadings than to doubling of influent nitrogen loading.  相似文献   

15.
污泥回流比对厌氧/好氧工艺除磷效果影响的研究   总被引:1,自引:0,他引:1  
以长距离输送的合流制污水为进水,考察不同污泥回流比下厌氧/好氧(A/O)工艺对COD、N、P的去除效果,深入研究污泥回流比对生物除P代谢过程的影响.结果表明,污泥回流比对COD及NH+4-N的去除没有明显影响,但对TN、TP、PO3-4-P的去除影响较大.随着污泥回流比的增大,聚磷菌(PAO)的厌氧释P量逐渐减小,P的去除率逐渐降低.减小污泥回流比,可延长A/O工艺厌氧池实际HRT,增加PAO在厌氧池可有效利用的碳源,使PAO在厌氧池充分释P,从而提高除P效率.  相似文献   

16.
A six-stage membrane bioreactor (MBR) pilot plant was operated to determine and demonstrate the capability of this process to produce a low-nutrient effluent, consistent with the nutrient reduction goals for the Chesapeake Bay. Biological nitrogen removal was accomplished using a multistage configuration with an initial anoxic zone (using the carbon in the influent wastewater), an aerobic zone (where nitrification occurred), a downstream anoxic zone (where methanol was added as a carbon source), and the aerated submerged membrane zone. The capability to reliably reduce effluent total nitrogen to less than 3 mg/L as nitrogen (N) was demonstrated. A combination of biological (using an initial anaerobic zone) and chemical (using alum) phosphorus removal was used to achieve effluent total phosphate concentrations reliably less than 0.1 mg/L as phosphorus (P) and as low as 0.03 mg/L as P. Alum addition also appeared to enhance the filtration characteristics of the MBR sludge and to reduce membrane fouling. Aeration of the submerged membranes results in thickened sludge with a high dissolved oxygen concentration (approaching saturation), which can be recycled to the main aeration zone rather than to an anoxic or anaerobic zone to optimize biological nutrient removal. Biological nutrient removal was characterized using the International Water Association Activated Sludge Model No. 2d. The stoichiometry of chemical phosphorus removal was also consistent with conventional theory and experience. The characteristics of the solids produced in the MBR were compared with those of a parallel full-scale conventional biological nitrogen removal process and were generally found to be similar. These results provide valuable insight to the design and operating characteristics of MBRs intended to produce effluents with very low nutrient concentrations.  相似文献   

17.
在分析传统A2/O工艺缺陷的基础上,提出了一种改进型A2/O工艺。为了防止回流污泥中的硝酸盐进入厌氧区,在传统A2/O工艺的厌氧区后面增加一个体积较小的缺氧选择池,回流污泥进入缺氧选择池,并进行反硝化消耗回流污泥中的硝酸盐;同时,在缺氧区通过反硝化除磷实现"一碳两用"。结果表明,改进型A2/O工艺有较好的脱氮除磷效果,在COD为298mg/L、TN为55mg/L左右、TP为7mg/L左右时,系统对COD、TN、TP的平均去除率分别为88.44%、77%、95%。  相似文献   

18.
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   

设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号