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1.
以pH作为SBR法硝化过程模糊控制参数的基础研究   总被引:13,自引:0,他引:13  
为实现SBR法处理啤酒废水硝化时间的在线模糊控制,系统地研究了不同碱度类型和浓度对SBR法硝化过程中pH变化规律的影响,同时考察了DO和ORP的变化规律。结果表明,硝化过程中pH的变化可以分为下降型和上升型,下降型有ρ(HCO3^-)适量和不足两种情况,ρ(HCO3^-)适量时,pH在硝化结束时由下降转为上升;ρ(HCO3^-)不足时,pH在硝化结束时下降速率变小;根据pH这些变化特征控制硝化终点;下降型是最普遍的情形,上升型是ρ(HCO3^-)过分充足的情况,在硝化过程和硝化结束之间,pH一直呈现上升趋势,不能根据pH的变化来控制硝化时间,若ψ(曝气量)适宜,可以通过DO来判断硝化终点;上升型在实际中很少出现,pH以上变化规律不仅可以判断硝化时间,还可以判断硝化反应过程中ρ(HCO3^-)充足与否,在此基础上,建立了SBR法硝化时间的模糊控制规则。图7表1参16。  相似文献   

2.
为了实现前置反硝化工艺硝化反硝化反应的过程控制,系统地研究了硝化反硝化过程中DO、pH和ORP的变化规律,并考察了它们作为硝化反硝化过程控制参数的可行性.结果表明,pH值在缺氧区的变化分为下降型和上升型,从而指示系统反硝化反应进行的程度以及内循环回流量是否充足;缺氧区末端ORP值和硝酸氮浓度具有较好的相关性;好氧区第1格室的DO浓度可以指示进水氨氮负荷高低;pH值在好氧区的变化也可分为下降型和上升型,可指示系统硝化反应进行的程度、曝气量和碱度是否充足;好氧区末端ORP值与出水氨氮、硝酸氮浓度具有很好的相关性.在此基础上建立了硝化反硝化反应在线控制系统,从而实现曝气量、内循环回流量和外碳源投加量的在线控制,提高系统出水水质、降低运行费用.图7表1参8  相似文献   

3.
实时控制技术在污水生物处理中的研究进展   总被引:2,自引:0,他引:2  
针对目前污水处理厂采用固定时间控制策略所暴露出的问题,从污水生物处理反应机理上分析了溶解氮(DO),氧化还原电位(ORP)和pH值作为污水生物处理实时控制参数的可行性,得出污水处理过程中反应器内DO,ORP和pH的变化可以间接反应有机物降解和脱氮除磷过程,因此,在理论上可以应用DO,ORP和pH作为实时控制参数控制污水处理过程,综述了当前国内外应用DO,ORP和pH作为实时控制参数控制污水处理过程的研究进展,并分析了目前我国在此研究方向存在的问题,指出进一步加强对污水处理实时控制技术应用基础研究的必要性和紧迫性,并使其与智能控制技术相结合,最终实现污水处理自动化,参27  相似文献   

4.
以模拟生活污水为研究对象,控制SBR反应器内pH值在7.5~8.5的条件下,实现了短程硝化生物脱氮工艺,NO2--N/NOx--N的比率始终维持在90%以上,同时发现pH值和DO浓度变化特征曲线在短程硝化过程中具有良好的重现性。另外,保持DO浓度在0.5~1.0mg/L,硝化时间为5.5h,可较好的维持短程硝化生物脱氮过程,且经过1个月的运行硝化类型没有发生改变,亚硝酸盐积累率仍保持在90%以上。在此基础上,研究了系统对COD和NH4+-N浓度的抗冲击负荷能力。结果表明,该系统具有较强的抗冲击能力。  相似文献   

5.
常温SBR厌氧-好氧反应器的短程硝化   总被引:2,自引:0,他引:2  
短程硝化-反硝化是污水节能脱氮新技术之一,其关键在于实现短程硝化,而水温是控制短程硝化的主要因素。在生活污水氨氮浓度小于100mg/L的水质条件下,采用SBR厌氧-好氧反应器进行了常温短程硝化试验研究。研究结果表明,水温14.5℃~16.5℃的条件下,在好氧段可以实现短程硝化,亚硝化率达到了94.9%。亚硝化的程度还与曝气时间的长短有关,曝气时间短时,可以将氨氧化控制在亚硝化阶段,积累大量的亚硝酸盐,但是氨转化率比较低;曝气时间延长,氨氮去除率增加,同时部分亚硝酸氮会被进一步氧化成硝酸氮。该研究结果打破了只有在中高温条件下才能实现短程硝化的普遍看法,从而为在常温下实现短程硝化提供了新的依据。  相似文献   

6.
分别研究了SBR法,水解酸化预处理及工艺组合对餐饮油脂废水的处理效果,确定了最佳处理工艺.同时,实验考察了曝气时间、污泥沉降比、溶解氧等因素与处理效果的关系,从而确定最佳的反应条件.结果表明,在曝气时间为2 h、SV为30%、DO为3 mg.L-1的条件下,SBR工艺处理餐饮油脂废水中COD、动植物油脂的平均去除率分别达到91.2%、82.5%;经水解酸化预处理,出水COD、动植物油脂平均浓度分别为1062.90 mg.L-1、50.66 mg.L-1,去除率均值分别为36.9%、83.5%;经水解酸化+SBR组合工艺处理后,废水出水COD平均浓度为93.66 mg.L-1,去除率高达94.8%,出水动植物油脂浓度为4.9 mg.L-1,去除率为98.25%.  相似文献   

7.
邯郸西污水厂处理工艺的优化控制   总被引:1,自引:0,他引:1  
由于实际进水水质与设计值有偏差,造成采用改良氧化沟工艺的邯郸市西污水处理厂,运行管理困难且费用较高。针对该厂的实际运行情况,探讨了曝气系统的溶解氧(DO)、混合液污泥浓度(MLSS)、泥龄等运行参数的控制问题,并对各参数进行了分析、优化调整。结果显示:该厂好氧区出水DO控制在2.5~3.5 mg/L,缺氧区DO控制在0.3~0.7 mg/L时,可保证良好的除磷效果;将MLSS控制在5000 mg/L左右,并通过排泥将泥龄控制在16~19 d时,氧化沟系统可在最低运行能耗下获得最优硝化、脱氮效果;避免过多的硝酸盐随回流污泥进入厌氧选择池也是该系统工艺控制的关键,适宜的进水BOD5/TN比值以及稳定可靠的反硝化控制,可进一步提高该系统的处理效果,尤其是脱氮效果。  相似文献   

8.
氯仿作为抑制剂对沉积物-水系统中氮转化的影响   总被引:2,自引:0,他引:2  
卢少勇  金相灿  郭建宁  盛利 《生态环境》2006,15(6):1133-1137
氯仿是土壤的营养物释放实验中常用的微生物活性抑制剂。文章探讨了在滇池沉积物-自配水系统中投加氯仿后系统中上覆水的氮质量浓度变化(上覆水初始质量浓度:总氮15.0mg·L-1,氨氮7.5mg·L-1,硝氮7.5mg·L-1)以及沉积物中的硝化和反硝化活性的变化。结果表明,实验过程中上覆水的总氮、氨氮和有机氮的质量浓度升高,硝氮的质量浓度降低,加氯仿组和未加氯仿组的总氮分别升高35.9%和46.9%。这是因为实验过程中硝化速率降低而反硝化速率升高导致的。加抑制剂组的上覆水中的总氮和氨氮质量浓度总体上高,硝氮和有机氮总体上低,说明氯仿对硝化反应的抑制作用持续到第816h,在最初和后期抑制作用更显著。加氯仿组的pH值明显高于未加氯仿组,DO质量浓度稍高于未加氯仿组。实验结束后,加氯仿组的沉积物的硝化速率和反硝化速率略低于未加氯仿组的。氯仿在沉积物-水系统中起到一定的抑制作用,使沉积物的硝化速率和反硝化速率均降低,但是硝化反硝化活性并未彻底地被抑制;而且抑制具有一定的时效性。  相似文献   

9.
曝气复氧对富营养化水体底泥氮磷释放的影响   总被引:24,自引:0,他引:24  
采用实验室模拟,研究了曝气复氧对富营养化水体底泥氮磷释放的影响,结果表明,①溶解氧是影响底泥氮磷释放的重要因素,厌氧状态会加速底泥氮磷的释放。②正常条件下曝气复氧可以有效的控制底泥总磷的释放;曝气条件下高pH值无法控制底泥总磷的释放,搅动会对底泥总磷的释放产生轻微的影响,上覆水总磷浓度较高时底泥会发生吸磷现象,而温度则影响较小。③正常条件下曝气复氧可以控制比较封闭水体底泥氨氮的释放;曝气条件下温度对底泥氨氮和总氮的释放影响较大,即温度越高,抑制氨氮和总氮的释放效果越好,且低温会导致底泥氨氮和总氮的大量释放;曝气条件下搅动导致底泥释放更多的氨氮和总氮。  相似文献   

10.
应用A/O工艺处理低C/N比的生活污水,SRT维持在15d左右,水温控制在21-25℃,pH值在7.2-7.6之间,污泥浓度为2500-4500mg·l-1,通过控制溶解氧(DO)浓度实现了亚硝酸氮积累、消失和重现.维持较低的DO浓度(≤0.7mg·l-1)可使亚硝酸氮积累现象重现.在两次试验的比较中,亚硝酸氮积累破坏的愈彻底相应恢复的过程就愈漫长.在长期较低的DO浓度条件下,亚硝酸菌充分利用了有限的溶解氧,在与丝状菌竞争DO中占到优势,因此,污泥沉淀性能很好,没有产生严重污泥膨胀.同时分析了pH值、游离氨(FA)浓度、温度等对亚硝酸氮积累的影响,DO是影响亚硝酸氮积累的关键因素.  相似文献   

11.
The objectives of this study were to establish an on-line controlling system for nitrogen and phosphorus removal synchronously of municipal wastewater in a sequencing batch reactor (SBR). The SBR for municipal wastewater treatment was operated in sequences: filling, anaerobic, oxic, anoxic, oxic, settling and discharge. The reactor was equipped with on-line monitoring sensors for dissolved oxygen (DO), oxidation-reduction potential (ORP) and pH. The variation of DO, ORP and pH is relevant to each phase of biological process for nitrogen and phosphorus removal in this SBR. The characteristic points of DO, ORP and pH can be used to judge and control the stages of process that include: phosphate release by the turning points of ORP and pH; nitrification by the ammonia valley of pH and ammonia elbows of DO and ORP; denitrification by the nitrate knee of ORP and nitrate apex of pH; phosphate uptake by the turning point of pH; and residual organic carbon oxidation by the carbon elbows of DO and ORP. The controlling system can operate automatically for nitrogen and phosphorus efficiently removal.  相似文献   

12.
Low dissolved oxygen (DO) is an energy-saving condition in activated sludge process. To investigate the possible application of limited filamentous bulking (LFB) in sequencing batch reactor (SBR), two lab-scale SBRs were used to treat synthetic domestic wastewater and real municipal wastewater, respectively. The results showed that prolonging low DO aeration duration and setting pre-anoxic (anaerobic) phase were effective strategies to induce and inhibit filamentous sludge bulking, respectively. According to the sludge settleability, LFB could be maintained steadily by adjusting operation patterns. Filamentous bacteria content and sludge volume index (SVI) were likely correlated. SVI fluctuated dramatically within a few cycles when around 200 mL·g-1, where altering operation pattern could change sludge settleability in spite of the unstable status of activated sludge system. Energy consumption by aeration reduced under low DO LFB condition, whereas the nitrification performance deteriorated. However, short-cut nitrification and simultaneous nitrification denitrification (SND) were prone to take place under such conditions. When the cycle time kept constant, the anoxic (anaerobic) to aerobic time ratio was determining factor to the SND efficiency. Similarity keeping aerobic time as constant, the variation trends of SND efficiency and specific SND rate were uniform. SBR is a promising reactor to apply the LFB process in practice.  相似文献   

13.
Since eutrophication has become increasingly severe in China, nitrogen and phosphorous have been the concern of wastewater treatment, especially nitrogen removal. The stabilization of the intelligent control system and nitrogen removal efficiency were investigated in a pilot-scale aerobic-anoxic sequencing batch reactor (SBR) with a treatment capacity of 60 m3/d. Characteristic points on the profiles of dissolved oxygen (DO), pH, and oxidation reduction potential (ORP) could exactly reflect the process of nitrification and denitrification. Using the intelligent control system not only could save energy, but also could achieve advanced nitrogen removal. Applying the control strategy water quality of the effluent could stably meet the national first discharge standard during experiment of 10 months. Even at low temperature (t = 13°C), chemical oxygen demand (COD) and total nitrogen (TN) in the effluent were under 50 and 5 mg/L, respectively.  相似文献   

14.
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   

15.
The feasibility of pH and oxidation reduction potential (ORP) as on-line control parameters to advance nitrogen removal in pulsed sequencing batch reactors (SBR) was evaluated. The pulsed SBR, a novel operational mode of SBR, was utilized to treat real municipal wastewater accompanied with adding ethanol as external carbon source. It was observed that the bending-point (apex and knee) of pH and ORP profiles can be used to control denitrification process at a low influent C/N ratio while dpH/dt can be used to control the nitrification and denitrification process at a high influent C/N ratio. The experimental results demonstrated that the effluent total nitrogen can be reduced to lower than 2 mg/L, and the average total nitrogen (TN) removal efficiency was higher than 98% by using real-time controll strategy.  相似文献   

16.
To investigate the nitrogen transport and conversion inside activated sludge flocs, micro-profiles of O2, NH4+, NO2, NO3, and pH were measured under different operating conditions. The flocs were obtained from a laboratory-scale sequencing batch reactor. Nitrification, as observed from interfacial ammonium and nitrate fluxes, was higher at pH 8.5, than at pH 6.5 and 7.5. At pH 8.5, heterotrophic bacteria used less oxygen than nitrifying bacteria, whereas at lower pH heterotrophic activity dominated. When the ratio of C to N was decreased from 20 to 10, the ammonium uptake increased. When dissolved oxygen (DO) concentration in the bulk liquid was decreased from 4 to 2 mg·L-1, nitrification decreased, and only 25% of the DO influx into the flocs was used for nitrification. This study indicated that nitrifying bacteria became more competitive at a higher DO concentration, a higher pH value (approximately 8.5) and a lower C/N.  相似文献   

17.
低溶解氧条件下生物脱氮研究中的新现象   总被引:24,自引:1,他引:24  
活性污泥法中 ,曝气主要起供氧和扰动混合的作用 ,曝气提供的氧被微生物用来氧化有机物并合成细胞 .反应器中的溶解氧 (DO)浓度是重要的运行参数 ,曝气池中DO偏低 ,好氧微生物不能正常生长和代谢 ;DO过高 ,不仅能耗增加 ,而且细菌的活力也会降低 .一般要求曝气池中DO不低于 2mgL-1的水平 ,但在实践中常常会出现曝气强度过高的情况 .因而有必要通过有效手段将DO控制在适当的水平 ,既不影响微生物的正常生长和有机物的去除 ,同时又避免过多能耗 .传统观点认为 ,低DO条件会促进丝状菌生长 ,破坏污泥絮体的沉降性能 ;使胞外多聚物的产生量…  相似文献   

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