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1.
厨余发酵液中含有丰富的VFA、乳酸等快速降解有机物,以及碳水化合物、蛋白质等慢速降解的有机物,利用厨余发酵液作为外增碳源强化生物脱氮的可行性。首先利用SBR处理投加厨余发酵液后的低C/N污水,经过40 d的培养,最终TN去除率稳定在85%左右,出水COD低于40 mg/L,说明厨余发酵液具有强化生物脱氮的能力;然后利用批式实验研究其在不同C/N条件下的反硝化规律,发现当C/N≤5.1时,出水出现了NO-2-N积累现象,C/N升高到最佳的6.5时,NO-2-N积累现象消失,反硝化速率为3.77 mg NO-3-N/(g VSS·h)。  相似文献   

2.
单级与二级BAF工艺除碳硝化效能的对比研究   总被引:1,自引:0,他引:1  
在总曝气量、HRT、水温、进水水质相同的条件下,对比研究了单级(BAF C/N)和二级曝气生物液池(BAF C+N)处理生活污水的除碳硝化效能。结果表明,将除碳和硝化分级有利于提高BAF工艺的处理效能。分级后,C柱较C/N柱具有更高的COD去除容积负荷,且出水COD浓度稳定低于50 mg/L;二级BAF工艺出水NH4+-N浓度由单级BAF的5~12 mg/L降至5 mg/L以下,且N柱在pH<6.3时依然能够进行硝化;N柱中下部具有较高的微生物活性,平均比耗氧速率为32 mg O2/(g VAS·h)。二级BAF中C柱的反冲洗周期和强度与单级BAF相同,而N柱的反冲洗周期则延长至5~7 d,能够降低反冲洗能耗和用水量。  相似文献   

3.
以乙酸钠作为碳源,给阴阳极外加2V的直流电压,考察了不同低C/N对连续运行的生物膜-电极反应器反硝化的影响。结果表明,当C/N从1.5∶1减少到0.8∶1时,生物膜-电极反应器NO-3-N去除率从99.5%下降至64.1%,出水NO-3-N的浓度从0.27mg/L增加到17.96mg/L,出水NO-2-N的浓度从0.24mg/L增加到2.6mg/L,出水NH+4-N浓度从4.93mg/L下降至3.35mg/L。当C/N为1.5∶1时,生物膜-电极反应器的自养反硝化率仅为8.0%,当C/N降至1∶1时,自养反硝化率增加至30.4%,然而,当C/N从1∶1进一步降低至0.8∶1时,自养反硝化率却从30.4%下降至21.8%。各C/N条件下,生物膜-电极反应器出水的SCOD浓度均高于对照生物膜反应器。生物膜-电极反应器的自养反硝化率与其出水pH呈正相关。  相似文献   

4.
为了提高低C/N(3.0~3.5)生活污水的脱氮除磷效率,对设置选择池和厌氧池的氧化沟工艺采用了微孔曝气加搅拌的实验方式和连续流间歇曝气的运行方式,通过对总循环周期(tc)、曝气率(fa)以及出水稳定性的分析讨论,得出TN负荷在0.02 kg N/kg MLSS·d下,控制氧化沟曝气时间与总停留时间比在40%左右时,能实现80%以上的除氮率和35%以上的除磷率.与连续曝气氧化沟相比,不仅出水水质更好,而且节省能量.  相似文献   

5.
吕利平  李航  庞飞  张欣 《环境工程学报》2020,14(6):1529-1536
采用好氧/缺氧交替运行模式处理低C/N城市污水,考察了低温环境下启动短程硝化反硝化的可行性,重点研究了好氧池区域Ⅰ、区域Ⅱ、区域Ⅲ溶解氧分布对短程硝化反硝化脱氮效果的影响。结果表明,采用好氧/缺氧交替运行模式,对好氧池溶解氧进行分区优化后,在低温环境下启动短程硝化反硝化具有可行性。在所采用的7种工况中,较为优化的工况是区域Ⅰ、区域Ⅱ、区域Ⅲ,溶解氧分别为0.8~1.2、0.5、1.2~1.8 mg·L~(-1),该工况下亚硝态氮累积率稳定在78%以上,出水总氮去除率在73%左右。相比短程硝化反硝化启动前,去除率提高了19.4%,氨氮浓度低于0.60 mg·L~(-1),出水氮素指标显著优于GB 18918-2002一级A排放标准,出水COD去除率为86.9%~94.9%,出水总磷浓度低于0.15 mg·L~(-1),可控性仍然较强。对于已启动短程硝化反硝化的A/O工艺处理低C/N城市污水,全年可节约碳源投加资金97×10~4元左右,节约电费42×10~4元左右,有效实现了成本与水质的双赢。以上结果可为短程硝化反硝化工艺的工程推广提供参考。  相似文献   

6.
碳氮磷比例失调城市污水的同步脱氮除磷   总被引:1,自引:0,他引:1  
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0.5 mg/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   

7.
采用中试规模(1.8 m3/d)的缺氧-好氧膜生物反应器(A/O MBR)对城市污水处理回用进行了试验研究.试验结果表明,该工艺处理效果优良,系统对COD、氨氮、浊度、总氮、总磷去除率较高,COD、氨氮出水浓度分别为7~39 mg/L、0~1.31 mg/L.出水水质优于城市杂用水水质标准(GB/T18920-2002).  相似文献   

8.
硫/石灰石自养反硝化处理低碳高氮城市污水的工艺   总被引:1,自引:0,他引:1  
利用水泥+沙子的胶凝骨架材料作为生物反应器填料骨架,通过胶凝粘附1∶1配比的硫粉和石灰石粉的方法制备自养反硝化填料,在自行设计的自制硫/石灰石填料自养反硝化系统中,考察了该工艺对以低C/N为特性且含低氨氮高总氮的城市污水处理厂二级处理出水的脱氮性能,并优化了主要工艺参数。结果表明,在进水总氮为40.92 mg/L,COD为38.92 mg/L,C∶TN∶NH+4-N=8.6∶9∶1的条件下,系统最优水力停留时间为3.2 h,系统最优初始pH值为7,最适反硝化温度为32.8℃,TN去除率为90%~92%。比传统按1∶1体积比例投加硫磺与石灰的反应器在处理时间方面缩短60%以上,去除效率也大有提高。  相似文献   

9.
采用UASB中试(100 m3/d)对生活污水处理进行了研究。试验结果表明,采用此系统处理生活污水,出水水质良好。COD的去除率在52%~83%,出水的COD值<100 mg/L以下,SS的去除率在95%左右,UASB处理生活污水的最佳停留时间为6 h。产气率在0.1 m3/d。不管停留时间在10 h、5 h,出水的氨氮、乙酸值比进水的高;钙、镁、总氮、总磷、硫酸根和硝酸根离子出水值比进水值低。  相似文献   

10.
将耐盐脱氮复合菌剂投加到序批式生物反应器中,构建生物强化高盐废水处理系统(SBR1),以未投加复合菌剂系统(SBR2)作为对照,分析典型周期中氮素和溶解氧的变化趋势以及盐度冲击对脱氮效果的影响.实验表明,在曝气时间为6h时,生物强化系统脱氮率可稳定在96%以上,出水总氮浓度为3.8 mg/L左右.反应中始终无硝氮、亚硝氮积累,生物强化系统具有同步硝化好氧反硝化能力.当受到5%和7%较高盐度冲击时,生物强化系统表现出优于对照系统的抗盐度冲击能力,能够快速恢复原有活性,且出水总氮低于15 mg/L;当受到0%盐度的淡水冲击时,对照系统中耐盐污泥失活且无法恢复,而生物强化系统只需投加少量(3%)耐盐脱氮复合菌剂,即可快速恢复活性,出水总氮低于15 mg/L.本研究能够为生物强化高盐废水脱氮系统的构建和运行提供技术支持.  相似文献   

11.
The performance of an innovative membrane bioreactor (MBR) process using anoxic phosphorus uptake with nitrification and denitrification for the treatment of municipal wastewater with respect to operational performance and effluent quality is addressed in this paper. The system was operated at steady-state conditions with a synthetic acetate-based wastewater at a hydraulic retention time (HRT) of 12 hours and on degritted municipal wastewater at a total system HRT of 6 hours. The MBR system was able to achieve 99% biochemical oxygen demand (BOD), chemical oxygen demand (COD), and ammonia-nitrogen (NH4(+)-N); 98% total Kjeldahl nitrogen (TKN); and 97% phosphorus removal, producing effluent BOD, COD, NH4+-N, TKN, nitrate-nitrogen, nitrite-nitrogen, and phosphate-phosphorus of <3, 14, 0.2, 0.26, 5.8, 0.21, and <0.01 mg/L, respectively, at the 6-hour HRT. The comparison of the synthetic and municipal wastewater run is presented in this paper. Steady-state mass balance on municipal wastewater was performed to reveal some key features of the modified MBR system.  相似文献   

12.
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   

13.
为了控制污水脱氮中N2O排放,在不同曝气强度下研究了好氧硝化段同时硝化反硝化(SND)系统的N2O排放特性,并采用PCR—DGGE技术分析微生物群落特征。结果发现,随着曝气强度的增强,系统总氮去除率下降,但脱氮中N2O—N所占比例则上升,实验中从低到高3个曝气强度下,总氮去除率分别为80.01%、65.28%和58.62%,脱氮中N2O—N所占的比例为1.89%、7.84%和9.20%。PCR—DGGE分析显示,和低曝气强度下相比中、高曝气强度下系统微生物群落发生明显变化,但中曝气强度和高曝气强度下系统微生物群落表现出较高相似性。这表明,不同曝气强度下系统N2O排放受到氮素转化和微生物群落变化的影响。适宜曝气强度不仅提高总氮去除率,还可有效控制N2O排放。  相似文献   

14.
低C/N比水产养殖废水生物脱氮实验研究   总被引:5,自引:1,他引:4  
随着短程硝化-反硝化理论研究的发展,在低C/N比条件下,实现污水的生物脱氮处理已成为可能。为此,设计了水产养殖用水的三级生物膜短程硝化-反硝化处理工艺,并对该工艺在去除模拟水产养殖废水主要污染物的作用进行了初步研究。研究结果表明,在进水pH值7.5~8.5,温度为28~32℃,溶解氧为0.5~1 mg/L,游离氨浓度为5~10 mg/L的条件下,模拟废水的COD、NH4+-N和TN的平均去除率分别达到94.4%、91.6%和70.1%;并且低C/N比对出水氨氮NH4+-N的去除率影响不大,NO2--N的平均浓度控制在5.2 mg/L以下,低于鱼类的耐受浓度。表明该短程硝化-反硝化工艺设计,可用于低C/N比水产养殖废水主要污染物的生物处理,尤其是可消除NO2--N对水产养殖的潜在威胁,基本达到养鱼回用标准。  相似文献   

15.
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   

16.
A2/O工艺中的反硝化除磷   总被引:7,自引:2,他引:5  
A2/O工艺是一种最简单的同步脱氮除磷工艺,但由于其系统中固有的基质竞争和污泥龄等矛盾,在实际应用中特别是处理低C/N比污水时脱氮除磷效率较低.反硝化除磷工艺作为近年来颇受关注的污水生物处理新技术.由于在脱氮除磷过程中可以在碳源利用上耦合,可从一定程度上缓解A2/O工艺中的基质竞争矛盾,使得其在处理低C/N比污水时也能实现较高的脱氮除磷效率.就反硝化除磷的技术原理,结合其在A2/O工艺中的最新研究成果及其控制策略,对A2/O工艺中的反硝化除磷的实现、维持及影响因素进行了分析和探讨,并对其发展方向进行了展望.  相似文献   

17.
In this study, a cascade of anoxic and oxic fluidized bed biofilm reactors system was carried out to treat synthetic municipal wastewater. The parameters of the influent flow rates and C/N ratios were discussed. System performance was acceptable for chemical oxygen demand (COD), ammonia, and total nitrogen removal. A decrease of ammonia and total nitrogen removal efficiencies, however, was observed when the influent flow rates increased to 5.04 and 6.12 1 h(-1). Total nitrogen removal decreased at the influent C/N ratio of 3:1. The measured ratios of COD reduction in the anoxic column to nitrogen removal through nitrification-denitrification were 3.7, 3.5, 3.3, and 3.1 g COD/g(-1) N on average when the influent C/N ratios changed from 6:1 to 3:1. The observed sludge yield (Yobs) was 0.169 g VSS g COD(-1) because of perfect denitrification in the anoxic column and the relatively long solids retention time.  相似文献   

18.
The nitrogen-removal performances of three full-scale piggery wastewater treatment plants, with different organic and nitrogen loads, at the capacity ranges of 95 to 130 m3/d, were compared in this study. Plants 1 and 2 can be characterized as the modification of anoxic-aerobic operating systems, while an anaerobic and anoxic-aerobic system was used in plant 3. The influent piggery wastewater concentration for plant 1 was relatively lower, but with higher organic and nitrogen loads, resulting in higher chemical oxygen demand (COD) and ammonium-nitrogen in effluent. Plant 2 was operated with strong piggery wastewater, resulting in a higher operating temperature. The high temperature could inhibit the nitrifying activity in plant 2. Although plant 3 was operated with a higher influent total COD-to-total Kjeldahl nitrogen ratio (TCOD:TKN), an additional external carbon source was required to polish the final effluent to remove nitrogen. Influent COD in plant 3 was used in the anaerobic-anoxic reactor for both methane (CH4) production and denitrification. Based on various mass balances, including caloric, COD, and alkalinity, the key elements for the successful nitrogen removal from the piggery waste were reactor temperature (less than 35degrees C), influent TCOD:TKN (greater than 6), and alkalinity-to-TKN ratio (greater than 3).  相似文献   

19.
Treatment of domestic wastewater by an hydroponic NFT system   总被引:11,自引:0,他引:11  
The objectives in this work were to investigate a conceptual layout for an inexpensive and simple system that would treat primary municipal wastewater to discharge standards. A commercial hydroponic system was adapted for this study and the wastewater was used to irrigate Datura innoxia plants. Influent and effluent samples were collected once a month for six months and analysed to determine the various parameters relating to the water quality. The legal discharge levels for total suspended, biochemical oxygen demand and chemical oxygen demand were reached with the plant system after 24 h of wastewater treatment. Total nitrogen and total phosphorus reduction were also obtained. NH4(+)-N was reduced by 93% with nitrification proving to be the predominant removal process. Significant nitrification occurred when the BOD5 level dropped 45 mg/l. Similar results were obtained for six months although the sewage composition varied widely. D. innoxia develops and uses the wastewater as the unique nutritive source.  相似文献   

20.
Chu L  Wang J 《Chemosphere》2011,83(1):63-68
This paper presents a comparison between two different materials used as carriers: inert polyurethane (PU) foam and biodegradable polymer polycaprolactone (PCL) particles for the removal of organics and nitrogen from wastewater with a low C/N ratio using moving bed biofilm reactors. The results, during a monitoring period of four months, showed that TOC and ammonium removal efficiency was higher in reactor 2 filled with PU carriers than in reactor 1 filled with PCL carriers (90% and 65% in the former, compared with 72% and 56% in the latter at an hydraulic retention time of 14 h). Reactor 1 showed good behavior in terms of total nitrogen removal as the biodegradable polymer was an effective substrate providing reducing power for denitrification. From three-dimensional excitation-emission matrix analysis, it was shown that the effluent from reactor 1 contained mainly protein-like and soluble microbial product-like substances.  相似文献   

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