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1.
PID技术是废水处理中提高氮、磷去除的技术。它通常由两个或三个相同的氧化沟组成,这些氧化沟周期性处于好氧、缺氧或沉淀等工作状态,一个工作周期4h。垃圾处理厂采用这一技术处理垃圾渗沥液,处理效果好,费用低。主要工艺参数为,污泥浓度3.0-5.5g/L、泥龄15-30d、污泥产率0.6-0.9kg(MLSS)/kg(BOD).d、反硝化速率26g(N)/kg(MLSS).d。  相似文献   

2.
本文在软性填料序批式生物膜法同步脱氮除磷工艺探讨研究的基础上,再加一缺氧段,以进行反硝化,进一步提高脱氮效率,并对内源脱氮及不同添加比时的外源脱氮进行了比较,确定了该法脱氮除磷的最佳工艺及相应的工艺参数。  相似文献   

3.
采用SBR工艺对广州地区城市污水进行了生物脱氮除磷实验研究。结果表明:在碳、氮、磷比例不合理的情况下,达到了既去除有机物又能脱氮除磷的效果。总停留时间控制在4.5~5.5h,污泥负荷为0.14~0.26kg BOD5/(kgMLSS·d)时,出水BOD5浓度在5.12~13.62mg/L,去除率达85%~93%;出水COD浓度在10.7~32.2mg/L,去除率达82%~88%;出水NH4—N浓度在2.83~9.83mg/L,去除率达53%~87%;出水TP浓度在0.1~0.45mg/L,去除率达85%~'99%。  相似文献   

4.
COD与DO对好氧颗粒污泥同步硝化反硝化脱氮的影响   总被引:27,自引:0,他引:27  
COD和DO浓度对好氧颗粒污泥的同步硝化反硝化反应有明显影响.COD浓度在400~1200mg/L范围内,好氧颗粒污泥去除COD的能力均在85%以上.颗粒污泥能吸附有机物,使废水中COD浓度快速下降.COD浓度小于800mg/L,好氧颗粒污泥具有良好的脱氮能力,氮去除率最高达85.3%.在溶氧浓度为1-4mg/L条件下,颗粒污泥对COD去除率均在90%以上.不同的溶氧浓度对氮的去除率有一定影响,在溶氧浓度3mg/L时,氮去除率最高,达83%.图7参7  相似文献   

5.
序批式生物膜法处理杂排水工艺探讨   总被引:6,自引:0,他引:6  
本文首次应用了软性填料序批式生物膜法工艺处理杂排水。试验证明,该工艺是行之有效的处理杂排水工艺。研究中确定了适合该工艺的最佳工艺参数,并对软性填料序批式生物膜法A/O工艺处理杂排水时脱氮、除磷等特点做了进一步探讨。  相似文献   

6.
比较了A/O法、A^2/O法和SBR法生物除磷工艺。结果表明,它们的除磷效果好;污染含磷量达6%以上、除磷系数达0.04左右,是常规好氧生物处理的3倍。在系统除磷系数相同的条件下,A^2/O法取好,是常规好氧法的3倍;SBR法次之,高速率A/O法因不能经反硝化作用脱氮,去氮效果与常规好氧法相同。  相似文献   

7.
厌氧-好氧生物除磷影响因素的控制   总被引:2,自引:0,他引:2  
李捷  熊必永  张杰 《生态环境》2004,13(4):506-507,511
采用厌氧-好氧生物除磷工艺,研究了两个关键因子--化学需氧量与磷的比值和污泥负荷对系统除磷效果的影响及其控制.结果表明,原污水中化学需氧量与磷的比值越高,厌氧放磷越多,越有利于除磷;厌氧放磷与厌氧吸收碳源呈正相关;并且,进水化学需氧量与磷的比值的变化对整个系统碳源污染物的去除效果不会产生明显的影响.试验发现,厌氧条件下聚磷菌贮存碳源的多寡并不完全依赖于高能磷酸键水解提供的能量,原污水中化学需氧量越多,越有利于厌氧碳源的贮存.若要达到好的除磷效果,系统的污泥负荷必须控制在0.21~0.5 kg/(kg·d)之间,且污泥负荷越高,除磷效果越佳.  相似文献   

8.
氨氮废水的厌氧氨氧化生物脱氮研究   总被引:1,自引:0,他引:1  
利用从厌氧污泥中筛选和驯化的厌氧氨氧化(Anammox)菌直接启动UASB反应器,通过缩短水力停留时间(HRT)提高系统运行负荷,探讨水力停留时间对模拟废水脱氮性能的影响。结果表明,(1)富含Anammox菌的颗粒污泥能够快速启动反应器(只需14d)。(2)连续91d的HRT测试期间,系统具有良好的脱氮性能,且随着HRT的缩短,系统的脱氮效率具有波动上升的特点。NH4+-N、NO2--N和TN(总氮)的平均去除率超过70.0%。(3)系统总氮容积负荷(TNLR)和总氮去除负荷(TNRR)最大值(以N计)分别为2.04kg·m-3·d-1和1.56kg·m-3·d-1。(4)系统能够比较好的遵循Anammox生物脱氮的理论途径:NH4+-N、NO2--N的去除速率与NO3--N的生成速率的比例为1?1.15?0.22,与其相应理论值(1?1.32?0.26)非常接近。  相似文献   

9.
考察了不同进水有机物浓度下厌氧/好氧序批式移动床生物膜反应器(SBMBBR)污染物去除特性,实验结果表明,SBMBBR能够实现低碳源污水中氮和磷的同步去除,在进水TN和TP浓度分别为116.7 mg.L-1和11.5 mg.L-1、COD浓度为456 mg.L-1的条件下,TN和TP去除率分别达到94.3%和92.2%以上.反应器除磷是基于常规生物除磷和反硝化除磷过程实现的,脱氮主要是基于好氧段发生的同时硝化反硝化(SND)作用而完成.由于生物膜内部存在的DO扩散梯度,在好氧阶段混合液DO浓度不断提高的条件下反应器内具有良好SND反应的发生.进水COD浓度由149 mg.L-1提高至456 mg.L-1的过程中,反应器硝化效果不变,反硝化和除磷效果改善.反应器在好氧阶段pH值基本维持在7.0—7.1之间,为各类菌群的生长创造了条件.碱度变化较pH值更能反映硝化和反硝化反应发生的程度.反应器中微生物相丰富,生物膜以丝状菌为骨架,其上附着大量的球状菌和杆状菌,而悬浮活性污泥中丝状菌较少,形成了由细菌、真菌到原生动物和后生动物的复杂的生态体系,为系统取得稳定的污水处理效果提供了有效的保证.  相似文献   

10.
从活性污泥中筛选的1株具有高效反硝化能力的聚磷菌B8应用于水平潜流人工湿地中进行强化去除总氮和总磷试验,同时分析并对比了菌剂强化潜流湿地系统和未投菌潜流湿地系统的功能菌数量变化规律.采用常绿植物构建2套相同的水平潜流湿地尾水处理模拟生态系统.结果表明,连续投加14 d B8菌液于水平潜流湿地后,在停止投菌后运行89 d内,投菌湿地系统平均脱氮率为70.1%,未投菌湿地系统平均脱氮率为50.2%;在停止投菌后运行19 d内,投菌湿地系统平均除磷率为63.1%,未投菌湿地系统平均除磷率为45.9%.经过4个月的跟踪运行,基于高通量454测序对湿地微生物群落结构及相关生物学信息对比分析,表明投加外菌源B8会引起潜流湿地内部微生物物种数量减少、微生物均匀度下降和湿地基质微生物群落多样性下降.通过湿地进水总氮浓度对投菌湿地系统和未投菌湿地系统脱氮率影响线性拟合分析表明,投菌湿地在不同氮负荷条件下脱氮效果显著优于未投菌湿地,证实投加B8菌可以有效强化水平潜流湿地的脱氮能力.  相似文献   

11.
• Fungi enable the constant UASB operation even at OLR of 25.0 kg/(m3×d). • The COD removal of 85.9% and methane production of 5.6 m3/(m3×d) are achieved. • Fungi inhibit VFAs accumulation and favor EPS generation and sludge granulation. • Fungi enrich methanogenic archaea and promote methanogenic pathways. Anaerobic digestion is widely applied in organic wastewater treatment coupled with bioenergy production, and how to stabilize its work at the high organic loading rate (OLR) remains a challenge. Herein, we proposed a new strategy to address this issue via involving the synergetic role of the Aspergillus sydowii 8L-9-F02 immobilized beads (AEBs). A long-term (210-day) continuous-mode operation indicated that the upflow anaerobic sludge bed (UASB) reactor (R1, with AEBs added) could achieve the OLR as high as 25.0 kg/(m3×d), whereas the control reactor (R0, with AEBs free) could only tolerate the maximum OLR of 13.3 kg/(m3×d). Remarkably, much higher COD removal (85.9% vs 23.9%) and methane production (5.4 m3/(m3×d) vs 2.2 m3/(m3×d)) were achieved in R1 than R0 at the OLR of 25.0 kg/(m3×d). Such favorable effect results from the facts that fungi inhibit VFAs accumulation, favor the pH stabilization, promote the generation of more extracellular polymeric substance, and enhance the sludge granulation and settleability. Moreover, fungi may enhance the secretion of acetyl-coenzyme A, a key compound in converting organic matters to CO2. In addition, fungi are favorable to enrich methanogenic archaea even at high OLR, improving the activity of acetate kinase and coenzyme F420 for more efficient methanogenic pathway. This work may shed new light on how to achieve higher OLR and methane production in anaerobic digestion of wastewater.  相似文献   

12.
• PN-A was start-up under low inoculation amount and a higher NRR was achieved. • PN-anammox system was successfully restored by aggressive sludge discharge. • Increase in granular sludge was the important factor to rapid recovery. • Enrichment of AOB and AnAOB in granular sludge favors the stable operation. Partial nitritation (PN)-anaerobic ammonium oxidation (anammox) is a promising pathway for the biological treatment of wastewater. However, the destruction of the system caused by excessive accumulation of nitrate in long-term operation remains a challenge. In this study, PN-anammox was initialized with low inoculation quantity in an air-lift reactor. The nitrogen removal rate of 0.71 kgN/(m3·d) was obtained, which was far higher than the seed sludge (0.3 kgN/(m3·d)). Thereafter, excess nitrate build-up was observed under low-loading conditions, and recovery strategies for the PN-anammox system were investigated. Experimental results suggest that increasing the nitrogen loading rate as well as the concentration of free ammonium failed to effectively suppress the nitrite oxidation bacteria (NOB) after the PN-anammox system was disrupted. Afterwards, effluent back-flow was added into the reactor to control the up-flow velocity. As a result, an aggressive discharge of sludge that promoted the synergetic growth of functional bacteria was achieved, leading to the successful restoration of the PN-anammox system. The partial nitritation and anammox activity were in balance, and an increase in nitrogen removal rate up to 1.07 kgN/(m3·d) was obtained with a nitrogen removal efficiency of 82.4% after recovery. Besides, the proportion of granular sludge (over 200 mm) increased from 33.67% to 82.82%. Ammonium oxidation bacteria (AOB) along with anammox bacteria were enriched in the granular sludge during the recovery period, which was crucial for the recovery and stable operation of the PN-anammox system.  相似文献   

13.
污泥干化芦苇床中积存污泥的氮磷变化规律   总被引:1,自引:0,他引:1  
污泥干化芦苇床是近年发展起来的新型污泥处理技术,为探明污泥干化芦苇床中积存污泥的氮磷变化特征,进行为期3 a的试验研究.试验设3个单元:Ⅰ单元为对照(传统干化床),未种植植物;Ⅱ和Ⅲ单元种植芦苇(污泥干化芦苇床).Ⅰ和Ⅱ单元底部设通气装置.前2 a为负荷期,植物生长期进泥,冰封期闲置;第3年为污泥自然稳定期.试验结果表明,Ⅱ和Ⅲ单元对污泥中TN和TP的去除效果优于Ⅰ单元,其TN去除率分别为56.3%、53.2%和47.9%,TP去除率分别为18.8%、19.2%和10.3%.填料层设置通气结构有利于污泥中氮素的转化和去除,但对除磷无明显影响.至第3年末(11月),Ⅰ、Ⅱ和Ⅲ单元积存污泥TN、TP平均含量分别为37.0、31.0、33.2和7.00、6.33、6.30g·kg-1.  相似文献   

14.
Based on the anoxic/oxic (A/O) step feed process, a modified University of Cape Town (UCT) step feed process was developed by adding an anaerobic zone and adjusting sludge return pipeline. Performance evaluation of these two types of processes was investigated by optimizing operational parameters, such as the anaerobic/anoxic/oxic volumes, internal recycle ratios, and sludge retention times, for removal of chemical oxygen demanding (COD), nitrogen, and phosphorus. Results showed high removal efficiencies of COD of (85.0±1.7)%, ammonium of (99.7±0.2)%, total nitrogen (TN) of (85.5±1.7)%, phosphorus of (95.1±3.3)%, as well as excellent sludge settleability with average sludge volume index of (83.7±9.5) L·mg-1 in the modified UCT process. Moreover, (61.5±6.0)% of influent COD was efficiently involved in denitrification or phosphorus release process. As much as 35.3% of TN was eliminated through simultaneous nitrification and denitrification process in aerobic zones. In addition, the presence of denitrifying phosphorus accumulating organisms (DNPAOs), accounting for approximately 39.2% of PAOs, was also greatly beneficial to the nitrogen and phosphorus removal. Consequently, the modified UCT step feed process was more attractive for the wastewater treatment plant, because it had extremely competitive advantages such as higher nutrient removal efficiencies, lower energy and dosages consumption, excellent settling sludge and operational assurance.  相似文献   

15.
Simultaneous nitrification and denitrification (SND), which is more economical compared with the traditional method for nitrogen removal, is studied in this paper. In order to find the suitable conditions of this process, a mixed flow activated sludge system under low oxygen concentration is investigated, and some key control parameters are examined for nitrogen removal from synthetic wastewater. The results show that SND is accessible when oxygen concentration is 0.3–0.8 mg/L. The nitrogen removal rate can be obtained up to 66.7% with solids retention time (SRT) of 45 d, C/N value of 10, and F/M ratio of 0.1 g COD/(g MLSS·d). Theoretical analysis indicates that SND is a physical phenomenon and governed by oxygen diffusion in flocs.  相似文献   

16.
木屑生物膜处理H2S气体研究   总被引:4,自引:1,他引:4  
采用木屑为载体固定微生物处理含H2S废气.微生物经活性污泥驯化得到.结果表明:木屑为载体固定微生物小需要长时间的挂膜时间.生物滤池启动后的48h内进气浓度迅速提高到641mg/m^3,H2S的去除率达到了100%.实验测定了不同容积负荷下H2S的处理率,当容积负荷为360g(H2S)/(m^3d)时,H2S气体的去除率可以稳定在97.4%以上.最后采用Michaelis-Menten关系式对H2S的去除速率进行了宏观动力学分析,计算得出半饱和因子Ks为242.75mg/m^3,最大表观去除率Vm为833.33g(H2S)/(m^3d).图5表2参8  相似文献   

17.
18.
Conventional biological removal of nitrogen and phosphorus is usually limited due to the lack of biodegradable carbon source, therefore, new methods are needed. In this study, a new alternative consisting of enhanced biological phosphorus removal (EBPR) followed by partial nitritationanammox (PN/A), is proposed to enhance nutrients removal from municipal wastewater. Research was carried out in a laboratory-scale system of combined two sequencing batch reactors (SBRs). In SBR1, phosphorus removal was achieved under an alternating anaerobic-aerobic condition and ammonium concentration stayed the same since nitrifiers were washed out from the reactor under short sludge retention time of 2–3 d. The remaining ammonium was further treated in SBR2 where PN/A was established by inoculation. A maximum of nitrogen removal rate of 0.12 kg N?m–3?d–1 was finally achieved. During the stable period, effluent concentrations of total phosphorus and total nitrogen were 0.25 and 10.8 mg?L–1, respectively. This study suggests EBPR-PN/A process is feasible to enhance nutrients removal from municipal wastewater of low influent carbon source.
  相似文献   

19.
采用A/O-MBR法处理某经济区市政污水,对其进、出水的水质进行连续监测,考察系统稳定性和处理效果。结果表明,在水力停留时间12小时,污泥龄30天,回流比75%,好氧段DO浓度1.3~8.5 mg/L的条件下,系统对COD、氨氮、总氮、总磷的平均去除率分别为92.04%、93.66%、78.04%、91.06%。反硝化...  相似文献   

20.
猪场废水厌氧消化过程中的除磷效果   总被引:6,自引:0,他引:6  
采用序批式半连续厌氧消化试验方法,研究猪场废水厌氧消化过程中磷的去除情况。结果表明,水力停留时间(HRT)为1、3、6和9 d的厌氧反应器平均除磷率分别为65.0%、81.1%、82.7%和83.0%,而COD平均去除率分别为54.5%、82.3%、87.0%和85.9%。厌氧反应器除磷能力随沼气产量的增加而增加,说明厌氧反应器中磷的去除与产甲烷过程密切相关。对厌氧消化前后的污泥进行浸提后发现,厌氧消化过程中,化学反应生成磷酸盐沉淀的除磷作用十分显著,污泥中正磷酸盐,与铁结合的磷化合物(Fe-RP),还原可溶性磷,与钙、镁离子结合的磷化合物(Ca-RP、Mg-RP)以及无机或有机聚合磷增加量分别为0.027 8~0.101 5、0.013 5~0.081 0、0.2165~0.430 5、23.4~54.8和7.2~21.5 mg.g-1;且总体而言,HRT越长,污泥中与不同金属结合的磷增加量就越大。从HRT、磷和有机物的去除效果以及沼气产气速率3个方面综合考虑,猪场废水厌氧消化反应器的HRT控制在3 d为宜。  相似文献   

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