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1.
间歇式活性污泥法处理味精工业废水的研究   总被引:8,自引:0,他引:8  
研究了间歇式活性污泥法处理味精工业废水的操作运作条件,实验结果表明,采用非限制曝气进水方式为宜;在进水时间为1h ,反应时间为6h,泥水比为1,污泥负荷<0.2kgCOD/kgMLSS,pH=6-7条件下运行,可高效降解废水中的有机物,COD的去除率达90%以上;废水中所含高浓度的硫酸盐对SBR处理系统无影响。  相似文献   

2.
间歇式活性污泥法处理含硫氨废水   总被引:1,自引:0,他引:1  
采用程序间歇式活性污泥法(简称 SBR 法)处理重油催化裂化汽提塔出水,取得了脱碳(降低 COD)、硝化(除氮)、反硝化(去除总氮)的良好效果。当废水 COD 为2000mg/L,容积负荷3.5kgCOD/m~3d,处理出水 COD 小于300mg/L 时,去除率在80%以上,适当降低进水负荷,可取得好的脱氨氮效果。废水氨氮为150~200mg/L,当容积负荷为2.0kgCOD/m~3d 时,处理水氨氮含量小于10mg/L,去除率90%以上。  相似文献   

3.
序列间歇式好氧活性污泥法处理生物制药废水研究   总被引:7,自引:0,他引:7  
本研究采用好氧SBR法处理生物制药废水。试验结果表明,废水中不需另加氮磷营养物质,当进水CODCr为911~3280mg/L时,在曝气16h条件下,出水CODCr在350mg/L以下,BOD5在80mg/L以下,SS在150mg/L以下,皆达到生物制药工业废水二级排放标准。本文还对好氧SBR法的有机物降解动力学过程进行了研究。  相似文献   

4.
循序间歇式活性污泥法处理漂油废水   总被引:7,自引:0,他引:7       下载免费PDF全文
采用循序间歇式活性污泥法处理某造漆厂的漂油废水。试验结果表明,稳定运行阶段,工艺的运行时序为:进水1h,厌氧搅拌4h,好氧10h,沉淀及排水各1h。进水COD为12.00~8200mg/L时,COD的去除率为80%以上,最高达96%。  相似文献   

5.
间歇式活性污泥法处理炼油厂碱渣污水   总被引:2,自引:0,他引:2  
对镇海石化总厂炼油厂碱渣污水的可生物降解性能进行了详细考察和模型试验,结果证实它是一种较易于生物氧化的污水,只要严格控制水中的含盐量(<30mg/L),反应器的容积负荷可达到2.0kg COD/m~3·d 或更高。对于此类废水,间歇式活性污泥法(SBR 技术)是一种有效的预处理手段。目前,本方法的中型试验正在进行中。  相似文献   

6.
运行温度对间歇式活性污泥法影响的研究   总被引:3,自引:0,他引:3  
  相似文献   

7.
间歇式与连续式活性污泥法处理特性比较   总被引:1,自引:0,他引:1  
对于处理中小型规模的城市污水、工业废水等,间歇式活性污泥法正在崭露头角.本文概要介绍了两种活性污泥法的水力性特研究结果.主要是以存在于污水中的有机物质氮和磷等为基质,在相同条件下,对两种处理法进行了一系列试验研究.其中包括有机物负荷及氮、磷的影响;处理活性和污泥的性质;污泥的增殖;硝化活性等.经分析比较,而得到以下结论:(1)间歇式活性污泥法可同时去除 BOD、氮和磷;(2)污泥沉降性能,间歇式比连续式好,且稳定;(3)污泥的生长率及污泥的比增殖速度,间歇式比连续式高;(4)污泥的硝化性,间歇式比连续式低.  相似文献   

8.
9.
分析间歇式活性污泥法(SBR)的特点及与传统法比较,和所需的基本条件及实际使用效果,提出间歇式活性污泥法(SBR)在处理我市的生活污水实际可操作性很强,供大家参考。  相似文献   

10.
间歇式活性污泥法处理啤酒废水   总被引:5,自引:1,他引:5  
王水生 《环境工程》1998,16(1):16-18
在实验研究基础上,成功地应用间歇式活性污泥法(以下简称SBR法)处理啤酒生产废水。实践证明该工艺具有总投资省、处理效果好,对废水水质适应性强、工艺稳定、能耗低等优点。  相似文献   

11.
SBR法处理氯丁橡胶生产废水的研究   总被引:5,自引:0,他引:5  
采用SBR法对氯丁橡胶生产废水进行了处理,研究了不同充水时间、反应时间、沉淀时间、闲置时间和曝气方式对处理效果的影响.结果表明,当进水CODCr为1020 mg·L-1左右,最佳的充水时间为1h、反应时间为4 h、沉淀时间为2 h、排水时间为0.5 h、闲置时间为0 h、曝气采用非限量曝气,出水CODCr达100mg·L-1以下,CODCr去除率达90%以上.  相似文献   

12.
采用序批式生物反应器(SBR)处理模拟氨氮废水,考察了SBR体系中硝化过程中氮组分和溶解氧变化规律,并对硝化动力学进行了研究.结果表明,在低溶解氧下,体系出现亚硝态氮积累;在序批式反应体系中的硝化反应呈现三阶段,即零级反应段、混合反应段和一级反应段,其硝化特性符合Monod动力学方程;根据SBR实现选择性硝化过程控制方法,实现了SBR选择性亚硝化启动,该体系氨氮出水1 mg·L~(-1),氨氮负荷达0.45 kg·kg~(-1)·d~(-1)(以每kg MLSS中的NH_4~+-N量(kg)计),亚硝态氮累积率达95%左右.  相似文献   

13.
针对分散养猪冲洗水间歇产生的特点,采用间歇式厌氧折流板反应器(ABR,装置B)对其进行处理,考察COD负荷、冲洗次数、进水时间和温度对处理性能的影响,并与连续运行ABR(装置A)进行对比。结果表明:与进水COD相比,装置B对进水量更敏感,且其能承受的COD负荷较装置A低,但在平均COD负荷分别为1.03、2.06、1.39和1.82 kg/(m3·d)时,对应的COD平均去除率分别为76.2%、77.3%、86.0%和85.4%;增加冲洗次数至每天2次,有利于提升装置B的处理能力;延长进水时间至2 h,对装置B的处理性能没有影响;低温严重影响ABR的性能,温度降至15 ℃以下时,装置B对COD的平均去除率由17 ℃时的75.8%降至60.0%。  相似文献   

14.
A lab-scale intermittently aerated sequencing batch reactor(IASBR)was applied to treat anaerobically digested swine wastewater(ADSW)to explore the removal characteristics of veterinary antibiotics.The removal rates of 11 veterinary antibiotics in the reactor were investigated under different chemical organic demand(COD)volumetric loadings,solid retention times(SRT)and ratios of COD to total nitrogen(TN)or COD/TN.Both sludge sorption and biodegradation were found to be the major contributors to the removal of veterinary antibiotics.Mass balance analysis revealed that greater than 60%of antibiotics in the influent were biodegraded in the IASBR,whereas averagely 24%were adsorbed by sludge under the condition that sludge sorption gradually reached its equilibrium.Results showed that the removal of antibiotics was greatly influenced by chemical oxygen demand(COD)volumetric loadings,which could achieve up to 85.1%±1.4%at 0.17±0.041 kg COD/m-3/day,while dropped to 75.9%±1.3%and 49.3%±12.1%when COD volumetric loading increased to 0.65±0.032 and1.07±0.073 kg COD/m-3/day,respectively.Tetracyclines,the dominant antibiotics in ADSW,were removed by 87.9%in total at the lowest COD loading,of which 30.4%were contributed by sludge sorption and 57.5%by biodegradation,respectively.In contrast,sulfonamides were removed about 96.2%,almost by biodegradation.Long SRT seemed to have little obvious impact on antibiotics removal,while a shorter SRT of 30–40 day could reduce the accumulated amount of antibiotics and the balanced antibiotics sorption capacity of sludge.Influent COD/TN ratio was found not a key impact factor for veterinary antibiotics removal in this work.  相似文献   

15.
焦化废水含有毒物质多,生物降解性能差,对环境危害大。实验采用厌氧水解(酸化)-好氧(高效复合菌+活性污泥)工艺处理焦化废水,进水COD、BOD5浓度分别为:698.13mg/l、232.0mg/l,经12h厌氧水解、18h好氧曝气后出水COD、BOD,浓度分别为136.93mg/1、39.3mg/l,NH3一N的去除率为68.37%。出水COD、BOD,满足《污水综合排放标准》(GB8978-96)中的排放要求。  相似文献   

16.
水解酸化-SBR工艺处理印染废水的研究   总被引:16,自引:0,他引:16  
用水解酸化-SBR工艺处理印染废水的实验结果表明,出水COD平均为102mg/L,COD去除率平均为89.9%,色度去除率平均为70%.在实际工程中应用水解酸化(A)-好氧(O)-SBR工艺处理印染废水,出水COD平均为67mg/L,COD去除率平均为81.5%,色度去除率平均为66.7%.表明以水解酸化为预处理手段可有效提高印染废水的可生化性,提高整个工艺的COD去除率.  相似文献   

17.
The production of N2O during nitrogen removal from real domestic wastewater was investigated in a lab-scale aerobic-anoxic sequencing batch reactor with a working volume of 14 L. The results showed that the total N2O-N production reached higher than 1.87 mg/L, and up to 4% of removed nitrogen was converted into N20. In addition, N20 led to a much higher greenhouse effect than CO2 during aerobic reaction phase, this proved that N2O production could not be neglected. The N2O-N production during nitrification was 1.85mg/L, whereas, during denitrification, no N2O was produced, nitrification was the main source of N2O production during nitrogen removal. Furthermore, during denitrification, the dissolved N2O at the end of aeration was found to be further reduced to N2. Denitrification thus had the potential of controlling N2O production.  相似文献   

18.
采用水解酸化-SBR工艺,对浓缩果汁生产废水处理进行了试验研究,结果表明:当进水COD浓度为3500~5000mg/L,pH为6.5~7.5,在水解酸化池水力停留时间为8h,SBR反应池MLSS浓度3500~4000mg/L,进水15min,曝气7h,沉淀1h,出水15min的条件下,出水COD去除率保持在97%以E,SS去除率达93%以上。且以水解酸化作为预处理单元可去除果汁废水中的SS达78%以上,为后续SBR工艺的稳定运行创造有利条件,提高组合工艺的整体效果。  相似文献   

19.
The cultivation of aerobic granules in sequencing batch reactor for the biodegradation of p-cresol was studied. The reactor was started with 100 mg/L of p-cresol. Aerobic granules first appeared within one month of start up. The granules were large and strong and had a compact structure. The diameter of stable granules was in the range of 1-5 mm. The integrity coefficient and granules density was found to be 96% and 1046 kg/m3, respectively. The settling velocity of granules was found to be in the range of 2× 10-2-6× 10-2 m/sec. The aerobic granules were able to degrade p-cresol upto 800 mg/L at a removal efficiency of 88%. Specific p-cresol degradation rate in aerobic granules followed Haldane model for substrate inhibition. High specific p-cresol degradation rate up to 0.96 g p-cresol/(g VSS. day) were sustained upto p-cresol concentration of 400 mg/L. Higher removal efficiency, good settling characteristics of aerobic granules, makes sequencing batch reactor suitable for enhancing the microorganism potential for biodegradation of inhibitory compounds.  相似文献   

20.
pH值对SBR单级好氧生物除磷的影响   总被引:3,自引:2,他引:3       下载免费PDF全文
在2个序批式反应器(R1、R2)中,以合成废水为对象,研究了不同pH值(R1:pH 8±0.2; R2:pH 7±0.2)对单级好氧生物除磷的影响;并通过比较周期中主要储能物质的变化,探讨了产生不同除磷效果的原因.结果表明,R1与R2均具有较高除磷性能, R1与R2中的平均去除率分别为94.9%,83.5%,pH值对SBR单级好氧生物除磷有一定的影响.导致R1具有较高除磷性能的原因是其对聚磷的依赖程度更大.好氧段R1糖原积累量低于R2(R1为1.42mmol/g, R2为1.55mmol/g),但降解量却高于R2(分别为1.41,1.19mmol/g);静置期,R1中糖原无明显变化,R2中则观察到明显的糖原降解.R1与R2均有明显的释磷现象, R1释磷量高于R2(释磷量分别为9.65,7.33mg/L).整个周期中,R1中PHA 无明显变化,而R2中则在好氧段有少量减少,静置期有少量上升.  相似文献   

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