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1.
兼氧接触工艺处理造纸中段废水中间试验的研究   总被引:1,自引:0,他引:1  
采用中试规律的兼氧接触工艺处理造纸中段废水,当处理水量为4.8m^3/d,水力停留时间3~4h,气水比3:1,进水PH8~9.5,平均COD浓度为1641.6mg/l,BOD5516.1mg/l,SS688.4mg/l的条件下,处理后出水pH7.5左右,平均COD浓度为1059.8mg/l,去除率34.9%,BOD5246.5mg/l,去除率52.1%,SS161.9mg/l,去除率为77.1%。  相似文献   

2.
研究了厌氧-好氧生物工艺处理汰头废水的效果。在常温条件下,厌氧反应器在进水PH值为6.4左右,平均COD浓度2400mg/l,处理水量为88m^3/d,水力滞留时间为2.3d条件下,COD去除率为78%,出水PH7.1。兼氧-好氧反应器在处理水量200m^3/d,进水PH7.7,水力停留时间10-12h,进水COD浓度645mg/l情况下,出水COD浓度为95mg/l,COD去除率达85%,可达标  相似文献   

3.
加压生物接触氧化法处理增塑剂生产废水试验研究   总被引:7,自引:0,他引:7  
主要介绍了采用加压生物接触氧化法处理增塑剂废水。在停留时间为22h,压力为0.4MPa,水中溶解氧保持5mg/L左右时,进水CODCR为11700mg/L,BOD5为6873mg/L,出水CODCr去除率为89%,BOD5去除率为96%。为增塑剂废水治理工程设计提供了重要参数。  相似文献   

4.
本文设计开发了一种新型的一体化沟系统,对其进行了清水模拟试验和污水处理试验。清水试验结果表明,这种一体化氧化沟内沉淀池具有良好的固液分离特性,当水力停留时间大于12小时,沟内SS在2-5g/l时,出水SS均小于50mg/l,出水SS相对于沟内SS的去除率大于98%。污水试验结果表明,系统有较强的去除有机物的能力,当水力停留时间为21小时时,COD去除率可达80%以上,BOD5去除率在90%以上。出  相似文献   

5.
水解酸化——好氧工艺处理混合化工废水   总被引:2,自引:0,他引:2  
对某化工开发区混合化工废水进行预处理,物化出水采用厌氧水解--好氧活性污泥法坦 步处理。研究了水力停留时间、有机负荷、容积负荷对处理效率的影响。结果表明,当上流工厌氧滤池进水COD浓度为700-900mg/L,经水解酸化--好氧处理后出水COD去除率达60%以上,色度、SS、BOD去除率分别为85%以上,50 ̄60%、95%左右。经混凝沉淀、Fenton试剂进一步处理,COD、色度可下降为124m  相似文献   

6.
应用SBR法、PAC-SBR法,微电解-SBR法对印染废水进行了对比处理试验研究。试验结果表明:微电解-SBR法处理效果优于其它两种方法,当进水COD=1000~1600mg/L,色度=200~800倍,BOD5=250~400mg/L时.COD去除率在85%左右,BOD5去除率和脱色率均在90%以上,出水达到排放标准。  相似文献   

7.
SBR法处理化学药物制剂废水   总被引:2,自引:1,他引:1  
采用 SHR法处理化学药物制剂废水. 调节 pH至7.5,进水 CODcr 224~1530 mm/L,曝气10 h, CODcr容积负荷达2.58kg/m~3·d,CODcr的去除率高达94.2%,处理后出水CODcr<100mg/L,达到综合排放标准(GB897-96)一级标准。CODcr容积负荷至3.84 kg/m~3·d, CODcr去除率仍>85.9%。  相似文献   

8.
Fe^2+—H2O2氧化法处理氨基J酸工业废水的研究   总被引:13,自引:0,他引:13  
用Fe^2+-H2O2氧化法处理氨基J酸工业废水。结果表明,当溶液pH=1-3,H2O2和Fe^2+用量分别为H2O2:Fe^2+10:1,H2O2:CODCr=2g:g时,J酸废水的CODCr去除率达66.7%,氨基去除率达68.4%。处理后的废水BOD5/CODCr=0.5,已达到生化处理的要求。该法可作为氨基J酸废水的预处理方法。  相似文献   

9.
生化法处理煤气废水   总被引:10,自引:0,他引:10  
采用A/O工艺处理煤气废水的研究结果表明,该工艺能同时去除煤气废水中的有机物和氨氮,在试验确定的条件下,该工艺对煤气废水中的CODcr去除率达91.0%,BOD5去除率达99.1%,NH3-N去除率达99.2%,TN去除率达94.7%。  相似文献   

10.
SBR工艺处理制革废水的初探   总被引:5,自引:0,他引:5  
SBR工艺具有许多优点。现有活性污泥处理工艺经适当调整,采用SBR工艺对制革废水的处理进行了试验,实践表明,SBR曝气池CODCR的去除率可达到70%以上。并探讨了如何进一步提高CODCR的去除率。  相似文献   

11.
BACKGROUND: Dye wastewater is one of the main pollution sources of water bodies in China. Conventional biological processes are relatively ineffective for color removal, the development of alternative treatment methods will become important. Our subjective was that of introducing a new biotreatment technology which combined a facultative biofilm reactor (FBR) with an aerobic reactor (AR) to treat a dye wastewater. The efficiencies of color and chemical oxygen demand (COD) removal and the mechanism of dye degradation were investigated. METHODS: The anthraquinone acid dye (acid blue BRLL) concentration, organic loading rate (OLR) and hydraulic retention time (HRT) were varied in the experiments to evaluate the treatment efficiency and process stability. The biodegradation products were detected by infrared (IR) and high performance liquid chromatography and mass spectrometry (HPLC-MS). RESULTS AND DISCUSSION: The results demonstrated that the facultative biofilm process was more effective for decolorization than the anaerobic stage of an anaerobic-aerobic process. Most color removal occurred in the facultative reaction (maximum to 88.5%) and the BOD (biochemical oxygen demand): COD of the FBR effluent increased by 82.2%, thus improving the biodegradability of dyes for further aerobic treatment. The dye concentration, OLR and HRT will be the factors affecting decolorization. Color removal efficiency falls as the influent dye concentration increases, but rises with increased HRT. The infrared and HPLC-MS analyses of the effluents of FBR and AR reveal that the dye parent compound was degraded in each reactor during the process. CONCLUSION: The Facultative-aerobic (F-A) system can effectively remove both color and COD from the dye wastewater. The FBR played an essential role in the process. The average overall color and COD in the system were removed by more than 93.9% and 97.1%, respectively, at an OLR of 1.1 kg COD m(-3) d(-1) and at the HRT of 18-20 hours in the FBR and 4-5 hours in the AR. The color removal mechanism in each reactor was not only a sort of biosorption on the floc materials, but even more an effect of biodegradation, especially in the facultative process. Recommendation and Outlook. In applying the F-A system to treat a dye wastewater, the control of facultative processes and the set up of appropriate operation conditions appear to be critical factors. Also, it is suggested a moderate COD loading rate and about a 24-hour HRT will favor the F-A system.  相似文献   

12.
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   

13.
2种人工湿地的水力停留时间及净化效果   总被引:2,自引:0,他引:2  
以复合垂直流人工湿地(IVCW)和水平潜流人工湿地(HSCW)为研究对象,研究了2种湿地运行的季节性最佳水力停留时间(HRT)参数,并监测了2种湿地在最佳HRT参数下运行时对污水的净化效果。结果显示:(1)在IVCW中,最佳HRT在春、秋季为8~10 h;夏季为6 h;冬季为12 h。在HSCW中,最佳HRT在春、秋季为10~12 h;夏季为6~8h;冬季为24~36 h。(2)2种湿地对COD的去除率均无显著的季节性差异;湿地进水中NH4+-N/TN比值与TN去除率显著负相关;不同季节下IVCW对TN的去除效果均高于HSCW。(3)水温对TN、TP去除率的影响在IVCW中比HSCW中的明显;水温高时,2种湿地中的TN去除率较高,IVCW中的TP去除率也较高,但HSCW中的TP去除率则较低,它们间均未达到显著的相关性。  相似文献   

14.
针对草浆造纸中段废水 ,进行了ABR、SBR及ABR SBR组合处理工艺的研究 ,结果表明 :ABR的HRT为 6h时 ,废水可生化性由 0 2— 0 2 5增加到 0 4— 0 5 ;SBR最佳HRT为 8h ,单独运行 ,COD去除率 6 5 %左右 ;ABR SBR组合工艺中SBR处理效果明显提高 ,COD去除率达 80 %左右 ,且组合工艺处理效果好 ,COD和BOD5去除率达 90 %左右 ,抗冲击负荷能力强。  相似文献   

15.
A membrane enhanced biological phosphorus removal (MEBPR) process was studied to determine the impact of hydraulic retention time (HRT) and solids retention time (SRT) on the removal of chemical oxygen demand (COD), nitrogen, and phosphorus from municipal wastewater. The MEBPR process was capable of delivering complete nitrification independent of the prevailing operating conditions, whereas a significant improvement in COD removal efficiency was observed at longer SRTs. In the absence of carbon-limiting conditions, the MEBPR process was able to achieve low phosphorus concentrations in the effluent at increasingly higher hydraulic loads, with the lowest HRT being 5 hours. The MEBPR process was also able to maintain optimal phosphorus removal when the SRT was increased from 12 to 20 days. However, at higher suspended solids concentrations, a substantial increase was observed in carbon utilization per unit mass of phosphorus removed from the influent. These results offer critical insights to the application of membrane technology for biological nutrient removal systems.  相似文献   

16.
对厌氧滤池反应器处理难降解印染废水进行中试研究。结果表明,厌氧滤池反应器水力停留时间(HRT)在8.1~14.6 h之间,进水COD浓度波动较大(500~1 000 mg/L)时,对COD平均去除率为20%。印染废水的BOD5/COD由0.23提高到0.35,废水可生化性明显改善。印染废水中硫酸根浓度略有下降,去除浓度为70 mg/L左右。厌氧滤池进出水颜色明显变化,由紫红色变为蓝黑色,紫外可见光谱分析表明废水中的有机物结构发生变化。  相似文献   

17.
外循环式UASB反应器处理槟榔废水   总被引:1,自引:0,他引:1  
在中温(35±2℃)条件下,利用外循环式UASB反应器处理中高有机浓度的槟榔加工废水,并着重探讨了水力停留时间(HRT)对厌氧消化的影响。研究表明,当反应器稳定运行,水力停留时间为1 d,进水COD浓度5 000 mg/L左右,容积负荷在2.53-5.25 kg COD/(m3·d)时,COD去除率在38%以上,出水COD〈3 000 mg/L,平均产气率为0.41 m3/kg COD;若水力停留时间延长至4 d,容积负荷为1.26-1.30 kg COD/(m3·d),COD去除率可以达到79%,出水COD〈1 200 mg/L,出水可生化性下降,BOD5/COD平均为0.28,实验取得了良好的处理效果,为利用厌氧技术处理槟榔加工废水提供了设计依据。  相似文献   

18.
根据广州从化市玮思工业园排放的综合污水的特点,设计了生物接触氧化—复合人工湿地组合工艺对其进行处理,考察了该工艺运行一年来对COD、BOD5、TP、NH4+ -N、TN的去除效果.结果表明,该组合工艺对工业园区综合污水中的COD、BOD5、TP、NH4+ -N和TN都有较好的去除效果,出水COD、BOD5、TP、NH4+ -N、TN的平均去除率分别为86.07%、74.91%、60.73%、89.62%、46.01%;该组合工艺对各污染物的去除效果明显优于单一的生物接触氧化池和单一的复合人工湿地的去除效果,生物接触氧化池对COD、BOD5和NH4+ -N的去除贡献较大,但对TP和TN的去除能力有限;采用该组合工艺处理工业园区综合污水,具有运行费用低、处理效果好、操作方便、管理简单、景观效果良好等优点.  相似文献   

19.
通过在垂直流模拟人工土柱上种植不同的花卉植物,研究了垂直流花卉人工湿地对污水COD、BOD5、TN和TP的净化效果的影响。结果表明,所选用的5种陆生花卉,甚至鲜切花卉对化粪池污水有比较好的净化效果,它们对BOD5的去除率可达到92.04%以上,对TP的去除率甚至可达到97.77%以上。而且种植花卉植物的人工湿地出水水质要好于不种植物的对照湿地系统。  相似文献   

20.
采用悬浮填料移动床工艺处理苏州河支流河水 ,试验结果表明 ,填料填充率为 5 0 % ,水力停留时间为 1h ,进水CODCr44— 2 32mg/L ,BOD519— 10 1mg/L时 ,出水CODCr34.1mg/L ,BOD59.1mg/L。在适宜的水温条件下 ,进水氨氮≤30mg/L ,水力停留时间为 1.5h ,亦能取得较好的氨氮去除效果  相似文献   

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