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1.
啤酒厂排放废水中COD与BOD5的相关性分析   总被引:2,自引:0,他引:2  
唐韵雯 《四川环境》1996,15(1):63-67
本文针对BOD5测定时间长,对突发性污染事故无法及时提供监测数据的缺点,采用最小二乘法,找出COD与BOD5之间的回归方程式,应易测的COD值,较快地估测废水中的BOD5值。  相似文献   

2.
臭氧氧化法处理印染废水   总被引:11,自引:1,他引:10  
本实验通过印染废水处理装置的建立,研究了臭氧处理印染废水的消耗量与废水COD值变化、废水色度去除率的关系,,以及不同pH值的印染废水和臭氧处理时间的关系。实验结果表明:经过处理后废水的COD却除率为339%,色度去除率为999%。  相似文献   

3.
水解酸化对感光胶片废水生化反应动力学系数的影响   总被引:1,自引:1,他引:0  
采用水解酸化工艺可有效地提高工业废水中难生物降解有机物的可生化性,为后续好氧生化处理创造有利条件。本试验在对感光胶片废水采用水解酸化-活性污泥法工艺和常规活性污泥法进行平行对照试验的基础上,从生化反应动力学系数的角度研究水解酸化过程对好氧生化反应的影响。研究结果表明:经水解酸化处理后,在该废水的BOD5/CODCr比值从046-048提高至054-056的同时,后续活性污泥系统的动力学半速度数Ks从常规活性污泥法的459毫克/升下降至103毫克/升,最大比降解速度K从30/日上升至50/日,可用于表征该工业废水可生化性和后续好氧化物处理效果改善和提高的程度。  相似文献   

4.
本试验采用UASB—接触氧化工艺对沤麻废水的处理进行了研究,系统启动两个月后达到稳定的处理效果,厌氧段进水COD浓度为700mg/1,有机负荷为9.25kgCOD/m3·d,停留时间为24小时,COD去除率可达到89.3%,好氧段接触氧化池的有机负荷为2.IkgCOD/m3·d,处理时间为10小时,整个系统总的COD去除率可达到97%,该工艺是处理高浓度沤麻废水行之有效的方法。  相似文献   

5.
缩短污水BOD_5测试时间的方法肖建寅(珠海市政管理处,珠海519015)生物化学需氧量(BiochemicalOxygenDe-mand,简称BOD)是指由于水中好氧微生物的繁殖或呼吸作用,水中有机物分解时所消耗的溶解氧的量,通常规定为20C时5天...  相似文献   

6.
为了快速监测油田废水中的化学需氧量CODCr,因此采用TL-1(A)型污水CODCr速测仪进行加热催化消解,然后再用分光光度比色法测定CODCr,实验中进行了方法的准确度、精确度及Cl-影响实验,并与标准的重铬酸钾法进行了对比实验,结果说明分光光度法简单快速、重现性较好、准确度较高,对同一产品的测定结果与重铬酸钾法非常一致。因此,本方法可用于油田废水中的CODCr监测。  相似文献   

7.
利用煮茧废水培养钝顶螺旋藻的初步研究   总被引:4,自引:0,他引:4  
本文对缫丝厂煮茧废水和Zarrrouk培养基的主要营养成份进行了分析比较,筛选出了适合钝顶螺旋藻(Spirulinaplatensis)在煮茧废水中生长繁殖的培养基和与之相适应的驯化藻种。经室外150升煮茧废水扩大培养,干藻生物量可达16.03克/米 ̄2·天,粗蛋白含量达58.6%,含有17种氨基酸。比用Zarrouk培养基培养的螺旋藻产量提高15.78%,成本减少80%以上。培养后的煮茧废水COD和BOD_5浓度低于我国污水综合排放标准。研究结果表明:采用本实验室筛选的煮茧废水培养基和驯化藻种,在煮茧废水中大量培养螺旋藻,实现废水资源化是可行的,具有明显的经济效益和环境效益。  相似文献   

8.
根据粉煤灰的吸附机制,通过试验研究,为粉煤灰吸附工程提供了设计参数,同时也为探明COD、BOD5及色度在粉煤灰中的降解转化规律提供了借鉴依据。  相似文献   

9.
用分光光度法测定水中化学需氧量CODCr,通过正交试验选择氧化的最佳选择。试验结果表明对CODCr值为50~1000mg/L的水样:氧化剂K2Cr2O7用量为0.20~0.40mol/L,催化剂Ag2SO4用量为10g/LH2SO4,消解时间10min,加热温度180℃。用CODCr为138mg/L的质控标样进行验证试验,其绝对误差为0.5~3.0mg/L。与标准方法相比用分光光度法测定CODCr具有分析误差小,省时、省力,节约药剂的特点。  相似文献   

10.
本文主要对真丝染色综合废水A/O处理中所产生的污泥进行无污泥化生物处理的研究,并把技术运用在日处理900t/d的综合废水生化处理装置上,设施经四年连续运行表明:出水pH=7. 36,SS=48mg/1,CODcr=95mg/1,BOD5=38mg/1,NH3-N=18 .8mg/1,出水水质指标全部达到国家规定的排放标准,该技术不仅解决了污泥的难治理问题,而且利用生物技术彻底解决了污泥的二次污染问题,还节约了可观的运行费用和投资费用,并提高了A/O的处理效果。  相似文献   

11.
This study focuses on a lab-scale rotating biological contactor (RBC) treating vegetable oil wastewater with high BOD and COD. The fabricated RBC was checked for efficiency in degrading polluted wastewater under different operating conditions. The maximum removal efficiencies for BOD and COD were 95.75% and 89%, respectively. This high removal percentage was obtained with 30% submergence of 10 discs rotating at 8 rpm. For the first time, bio-kinetic models were applied to the experimental results for vegetable oil wastewater. The best fit was obtained with the modified Stover-Kincannon and Grau model. The saturation constant (Ks) values were 1.872 and 3.024 g/L/d for BOD and COD, respectively, for the modified Stover-Kincannon and Grau model. For the Grau second-order model, the saturation constant was 1.416 and 3.744 g/L/d for BOD and COD, respectively. The predicted effluent BOD and COD values of the modified Stover–Kincannon model fitted almost exactly with the experimental values. This clearly predicts that this model can be best used to predict effluent BOD and COD concentration in a Rotating Biological contactor treating vegetable oil wastewater. The kinetic parameters determined in this study can be used to improve the design and operation of continuous mode RBC systems.  相似文献   

12.
微生物菌剂在酿酒废水处理中的应用研究   总被引:6,自引:1,他引:5  
采用厌氧-好氧工艺,结合微生物菌剂对酿酒废水进行了处理研究。进水CODCr浓度可达到8,456.3-22,442.0mg/L,BOD55,040.0-9.557.1mg/L,pH3-4,可不调pH,采用微生物菌剂接种可启动厌氧反应器,COD有机负荷最高达到10.2gCOD/Ld,COD去除率稳定在91-95%,BOD去除率90-94%,出水pH6.6-7.1,出水CODCr在2,000mg/L以下,BOD5800mg/L以下。厌氧污泥可全部颗粒化。好氧处理系统中接种微生物菌剂,曝气10-12小时,可保证出水中CODCr在230mg/L以下,甚至直接达到国家一级排放标准。微生物菌剂的应用是取得该处理效果的关键。  相似文献   

13.
采用将脱硫废液与炼油废水按比例混合之后对其进行处理的方法,通过批式试验,考查混合废液的BOD5/COD指标及其COD、NH3-N、S2-的去除率。筛选合适的混合液配比,分别对500︰1和800︰1的混合废液进行了模型试验,分析了COD去除效果。结果表明:800︰1的混合废液在10d之后,出水COD为134mg/L,达到了《污水综合排放标准》(GB8978—1996)二级标准要求。最终确定炼油废水与脱硫废液混合的合适比例应不低于800︰1。  相似文献   

14.
Summary This study is carried out to propose an appropriate treatment technology for wastewater discharged from a flavor production factory. Industrial wastewater discharged from this factory ranges between 50–70 m3/d with an average value of 60 m3/d. The major source of pollution in this factory is due to cleaning of the vessels therefore the treatment has been carried out on the end-of pipe wastewater. The wastewater is characterized by high values of COD, BOD, TSS and Oil and grease 4646, 2298, 1790 and 626 mg/l respectively. Primary sedimentation of the wastewater for four hours reduced the COD, BOD, TSS and Oil and grease by 43, 47, 80 and 74%, respectively. For the treatment of the produced wastewater, the biological treatment process such as activated sludge, rotating biological contactor (RBC), up-flow anaerobic sludge bed reactor (UASB) have been selected. The results from each treatment process proved to be efficient for the treatment of such wastewater. The treated wastewater characteristics are in compliance with the Egyptian law which regulates the discharge of industrial wastewater to the sewerage system. The RBC was selected and installed by the factory as it has the advantage of low operating and maintenance costs. The factory RBC performance was monitored; characteristics of the treated effluent in terms of oil and grease, COD, BOD and TSS were 27, 362, 139 and 95 mg/l, respectively.  相似文献   

15.
Photocatalytic degradation of organic wastes with nanosized titanium dioxide particles has been studied for a long time in order to offer an appropriate method for wastewater treatment, but its practical application is greatly limited by the slow process. In this work, an electrochemically assisted TiO2 photocatalytic system was set-up by combining a TiO2 photocatalytic cell with a three-electrode potentiostatic unit. The composite system revealed high photocatalytic activity towards organic wastes mineralization. After continuous treatment for 0.5 h, the maximum absorption of rhodamine 6G (R-6G) was reduced by more than 90%; chemical oxygen demand (COD) and biochemical oxygen demand (BOD5) of textile dye wastewater (TDW) were decreased by 93.9 and 88.7%, respectively. The biodegradability of TDW was also improved because the COD/BOD5 ratio decreased from 2.1 to 1.2. All these results indicated that the composite system could be used for effective organic wastes mineralization or as a feasible detoxification and color removal pretreatment stage for biological post treatment.  相似文献   

16.
用超声气浮—BAF组合工艺处理油田稠油污水   总被引:2,自引:1,他引:2  
利用超声气浮处理机对稠油油田污水进行的室内试验研究结果表明,超声气浮工艺对污水中COD的去除效果不明显,去除率只有23.0%。但是,经超声气浮处理后,污水的可生化性明显得到改善,BOD5/CODcr值由0.18上升到0.31,这为稠油污水的二级生化处理创造了条件。稠油污水经超声气浮-BAF组合工艺处理后,出水水质可达到国家GB8978-1996一级标准的水质要求。  相似文献   

17.
Within a few years all domestic wastewater effluents in the United States will be subjected to a minimum of a properly operated primary and secondary treatment process. This implies a very high degree of removal of the more readily biologically degradable material as measured by the BOD test. This practice will to a large degree negate the value of the BOD test as a pollution parameter. Organic carbon appears to be a more suitable means for determining the strength of a wastewater or for controlling the operation of physical and chemical treatment processes. Studies were conducted to determine the effect of time of passage on the ratio of organic carbon to BOD, COD and carbohydrate. The ratio was found to vary with both time and the state of the sample. The carbon content was reduced to a lesser degree than the other parameters. Organic carbon content appears to correlate better with COD than with BOD. The efficiency of a chemical precipitation process can be determined on the basis of organic carbon removal.  相似文献   

18.
混凝沉降-生物膜法处理制革废水   总被引:8,自引:0,他引:8  
郑新萍 《环境技术》2004,22(4):18-19,22
采用混凝沉降-生物膜法处理蓝湿牛皮制革废水。工程实践证明:该法对废水COD和BOD的去除率可达94%以上,且对废水的脱色效果良好,是一种合理有效的处理皮革废水工艺路线。  相似文献   

19.
Combined chemical and biological oxidation of penicillin formulation effluent   总被引:12,自引:0,他引:12  
Antibiotic formulation effluent is well known for its important contribution to environmental pollution due to its fluctuating and recalcitrant nature. In the present study, the chemical treatability of penicillin formulation effluent (average filtered COD(o)=830 mg/l; average soluble COD(o)=615 mg/l; pH(o)=6.9) bearing the active substances penicillin Amoxicillin Trihydrate (C(16)H(19)N(3)O(5)S.3H(2)O) and the beta-lactamase inhibitor Potassium Clavulanate (C(8)H(8)KNO(5)) has been investigated. For this purpose, the penicillin formulation effluent was subjected to ozonation (applied ozone dose=2500 mg/(lxh)) at varying pH (2.5-12.0) and O(3)+H(2)O(2) (perozonation) at different initial H(2)O(2) concentrations (=2-40 mM) and pH 10.5. According to the experimental results, the overall Chemical Oxygen Demand (COD) removal efficiency varied between 10 and 56% for ozonation and 30% (no H(2)O(2)) and 83% (20 mM H(2)O(2)) for the O(3)+H(2)O(2) process. The addition of H(2)O(2) improved the COD removal rates considerably even at the lowest studied H(2)O(2) concentration. An optimum H(2)O(2) concentration of 20 mM existed at which the highest COD removal efficiency and abatement kinetics were obtained. The ozone absorption rate ranged between 53% (ozonation) and 68% (perozonation). An ozone input of 800 mg/l in 20 min was sufficient to achieve the highest BOD(5)/COD (biodegradability) ratio (=0.45) and BOD(5) value (109 mg/l) for the pre-treated penicillin formulation effluent. After the establishment of optimum ozonation and perozonation conditions, mixtures of synthetic domestic wastewater+raw, ozonated and perozonated penicillin formulation effluent were subjected to biological activated sludge treatment at a food-to-microorganisms (F/M) ratio of 0.23 mg COD/(mg MLSSxd), using a consortium of acclimated microorganisms. COD removal efficiencies of the activated sludge process were 71, 81 and 72% for pharmaceutical wastewater containing synthetic domestic wastewater mixed with either raw, ozonated or perozonated formulation effluent, respectively. The ultimate COD value obtained after 24-h biotreatment of the synthetic domestic wastewater+pre-ozonated formulation effluent mixture was around 100 mg/l instead of 180 mg/l which was the final COD obtained for the wastewater mixture containing raw formulation effluent, indicating that pre-ozonation at least partially removed the non-biodegradable COD fraction of the formulation effluent.  相似文献   

20.
Treatment of low-strength soluble wastewater (COD approximately 500 mg/L) was studied using an eight chambered anaerobic baffled reactor (ABR). At pseudo steady-state (PSS), the average total and soluble COD values (COD(T) and COD(S)) at 8h hydraulic retention time (HRT) were found to be around 50 and 40 mg/L, respectively, while at 10h HRT average COD(T) and COD(S) values were of the order of 47 and 37 mg/L, respectively. COD and BOD (3 day, 27 degrees C) removal averaged more than 90%. Effluent conformed to Indian standards laid down for BOD (less than 30 mg/L). Reactor effluent characteristics exhibited very low values of standard deviation indicating excellent reactor stability at PSS in terms of effluent characteristics. Based on mass balance calculations, more than 60% of raw wastewater COD was estimated to be recovered as CH(4) in the gas phase. Compartment-wise profiles indicated that most of the BOD and COD got reduced in the initial compartments only. Sudden drop in pH (7.8-6.7) and formation of volatile fatty acids (VFA) (53-85 mg/L) were observed in the first compartment due to acidogenesis and acetogenesis. The pH increased and VFA concentration decreased longitudinally down the reactor. Residence time distribution (RTD) studies revealed that the flow pattern in the ABR was neither completely plug-flow nor perfectly mixed. Observations from scanning electron micrographs (SEM) suggest that distinct phase separation takes place in an ABR.  相似文献   

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