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1.
The textile industry is one of the most rapidly developing industries in Turkey. It generates a large amount of wastewater, with corresponding concerns about pollution. The main sources of pollution in wastewater are the dyeing and finishing processes. The dyestuffs and polyvinyl alcohol (PVA) are the main refractory organics of concern in terms of meeting more stringent effluent standards of chemical oxygen demand (COD) and colour. In this study, wastewaters from textile dyeing factories in Bursa were characterised, and physical, chemical and biological treatability studies were carried out. In the physical and chemical studies, 60.80% COD, 80% suspended solids (SS) and 10.92% turbidity removal efficiencies were obtained. In the biological studies, 90% COD and 40% SS removal were obtained. The initial soluble inert COD of wastewater was determined by using comparison methods. The initial inert COD of wastewater and the microbial product concentration were determined as 37 mg/l and 13 mg/l, respectively.  相似文献   

2.
A detailed characterisation of the incoming wastewater and a performance evaluation were carried out for the domestic wastewater treatment plant of Erzincan City. Conventional characterisation results showed that Erzincan has a medium strength wastewater quality. Structural characterisation of the chemical oxygen demand (COD) indicated that the biodegradable fraction of the total COD was 64.7%. The soluble inert fraction was computed as 10.9% of the total COD. In Erzincan, an activated sludge plant provides secondary treatment using Carrousel treatment units. Because some operational problems, such as sludge bulking and foaming, have been experienced, and performance failures related to carbonaceous matter removal have been recorded many times, a new operational strategy suitable for this type of treatment plant was developed. In the new strategy, the sludge age was kept at 22 days, intermittent aeration was abandoned and replaced by continuous aeration, and the sludge recycle ratio was increased to 1.35 from 0.85. The developed operational strategy showed its merit in that previous operational problems largely disappeared and COD concentrations remained below the Turkish discharge limits of 100 mg/l and the NH4 removal rate was in the range 87–95%.  相似文献   

3.
Characterization and COD fractionation of domestic wastewaters   总被引:10,自引:0,他引:10  
Results of a comprehensive study are reported for wastewater characterization in relation to modelling and design of biological nutrient removal systems for the Metropolitan Area of Istanbul. Domestic sewage quality was experimentally assessed in terms of major polluting parameters. Size distribution and calculation of significant ratios such as BOD5:COD and COD:N were used to evaluate the merit of candidate physical, chemical and biological treatment alternatives. COD fractionation was effected to assess biological treatability and to yield the necessary process components to the recent modelling approaches.  相似文献   

4.
Lu J  Wang X  Shan B  Li X  Wang W 《Chemosphere》2006,62(2):322-331
This work was to give a comprehensive estimation for the chemical compositions contributable to COD of the produced water treatment system. For this purpose, the wastewater samples were collected from an onshore wastewater treatment plant. The chemical compositions of the wastewater were investigated, and the COD contributed by each component was estimated. The results showed that the COD levels of O&G and SS presented decreasing trends during the whole process and achieved total removal percentages of 95.1% and 62.3%, respectively. The final COD of organic acids and low-molecular-weight carbonyl compounds were respectively lowered to nearly 64% and 35% of their initial levels, and no regular trends were found for the COD of these chemicals during the whole treatment process. The COD of inorganic components presented minor variations at all sampling spots. The majority of COD was originated from O&G in raw wastewater. The COD contributed by O&G decreased greatly with continuous treatment and finally was lower than 17% of measured COD. At each sampling spot, the ratios of COD contributed by SS did not exceed 7.6% of measured COD. Other measured chemicals, including organic acids, carbonyl compounds, volatile phenols, reductive anions, metals and TDP were not the main sources of COD during the whole treatment process, and the ratio of COD was below 9% at each sampling spot. Most of the soluble components contributable to residual COD were still unknown after biological treatment, and the COD contributed by these components was greater than 57% of measured COD.  相似文献   

5.
This study examines the feasibility of coupling a Catalytic Wet Air Oxidation (CWAO), with activated carbon (AC) as catalyst, and an aerobic biological treatment to treat a high-strength o-cresol wastewater. Two goals are pursued: (a) To determine the effect of the main AC/CWAO intermediates on the activated sludge of a municipal WasteWater Treatment Plant (WWTP) and (b) To demonstrate the feasibility of coupling the AC/CWAO effluent as a part of the influent of a municipal WWTP. In a previous study, a high-strength o-cresol wastewater was treated by AC/CWAO aiming to establish the distribution of intermediates and the biodegradability enhancement. In this work, the biodegradability, toxicity and inhibition of the most relevant intermediates detected in the AC/CWAO effluent were determined by respirometry. Also, the results of a pilot scale municipal WWTP study for an integrated AC/CWAO-aerobic biological treatment of this effluent are presented. The biodegradation parameters (i.e. maximum oxygen uptake rate and oxygen consumption) of main AC/CWAO intermediates allowed the classification of the intermediates into readily biodegradable, inert or toxic/inhibitory compounds. This detailed study, allowed to understand the biodegradability enhancement exhibited by an AC/CWAO effluent and to achieve a successful strategy for coupling the AC/CWAO step with an aerobic biological treatment for a high-strength o-cresol wastewater. Using 30%, as COD, of AC/CWAO effluent in the inlet to the pilot scale WWTP, the integrated AC/CWAO-biological treatment achieved a 98% of total COD removal and, particularly, a 91% of AC/CWAO effluent COD removal without any undesirable effect on the biomass.  相似文献   

6.
采用两级SBR工艺(TSSBR)处理COD与氮浓度较高的工业废水,SBR1去除有机物,SBR2主要进行硝化反硝化。TSSBR与传统SBR工艺相比,COD降解速率和硝化反应速率明显提高,COD去除率由84%提高到93%,2种工艺的反硝化速率没有明显差别。在原水COD浓度较高的情况下,TSSBR可有效克服高COD浓度对硝化反应的抑制,硝化反应速率是传统SBR的2倍。对于COD和氮浓度较高的工业废水,TSSBR明显优于传统SBR,是一种理想的处理工艺。  相似文献   

7.
两级SBR与传统SBR工艺的对比研究   总被引:2,自引:0,他引:2  
用两级SBR工艺(TSSBR)处理COD与氮浓度较高的工业废水,SBR1去除有机物,SBR2主要进行硝化反硝化。TSSBR与传统SBR工艺相比,COD降解速率和硝化反应速率明显提高,COD去除率由84%提高到93%,2种工艺的反硝化速率没有明显差别。在原水COD浓度较高的情况下,TSSBR可有效克服高COD浓度对硝化反应的抑制,硝化反应速率是传统SBR的2倍。对于COD和氮浓度较高的工业废水,TSSBR明显优于传统SBR,是一种理想的处理工艺。  相似文献   

8.
In this study, a detailed wastewater profile and treatability studies of Demirtas Organized Industrial District (OID) were undertaken on a pilot-scale. The industrial categorisation of Demirtas OID was determined, and the wastewater characterisations of each industrial sector were analysed and the flow-rates were measured. The results were used to design a wastewater treatment plant for Demirtas OID. Pilot-scale chemical and biological treatability studies were carried out. The steady-state performance of the pilot-scale treatment system in removing chemical oxygen demand (COD) and suspended solids (SS) was studied for a period of three months. The removal efficiencies obtained in this study were 42% of COD and 67% of SS in the chemical treatment, and 84% of COD and 25% of SS in the biological treatment. The overall removal efficiency of the pilot-scale system was 91% COD and 75% SS. The pilot-scale study showed that the wastewater from Demirtas OID could be treated with biological and chemical methods, and the treated wastewater met the Regulation of Discharge Standards of Turkey. The significance of this study is that it is the first such system in Turkey to be tested on a pilot scale.  相似文献   

9.
废水COD 4种物化表征方法的比较与评估   总被引:1,自引:1,他引:0  
为了确定废水COD组分表征的物化分析方法,对0.1μm滤膜过滤、0.45μm滤膜过滤、絮凝和絮凝+0.45μm滤膜过滤4种方法进行了实验比较和评估。结果表明:某些材料的滤膜会因"COD溶出"而影响表征结果;4种方法分离废水的重现性都很好,相互没有明显区别;物化分离对废水快速可生物降解COD(SS)没有影响,但4种方法得到的处理液中可生物降解COD仍含降解速率明显不同的组分,其中SS仅占35%~45%。因此,物化方法不能合理表征SS;絮凝+0.45μm滤膜过滤速度快、干扰少、分离机理与活性污泥系统类似,更适用于废水溶解性惰性COD组分(SI)表征。  相似文献   

10.
2-萘酚生产废水具有COD高、BOD/COD值低和生物毒件高的特点,采用FOP-EGSB-MBR组合工艺对其模拟废水进行处理工艺的研究.结果表明:废水经Fenton氧化处理后,可将出水BOD/COD值从0.01提高至0.67;再经过厌氧和好氧处理后,出水COD为100 mg/L以下;该组合上艺总的COD去除去可达99%,且运行性能稳定,效果可靠.  相似文献   

11.
VFAs、TOC及COD作为生物除磷能力指标的探讨   总被引:3,自引:0,他引:3  
在实际生活污水的处理中,研究了通过A/O运行模式对生物除磷过程中磷的变化情况及在厌氧释磷过程中COD、TOC与VFAs变化之间的关系。结果表明,在厌氧释磷过程中VFAs的变化更能准确地反映系统内释磷进程,实际生活污水中能直接用于磷释放的有机物含量占COD的13.33%,并且释放1 mg P所需VFAs为1.401 mg,此值明显低于前期研究结果。通过对COD、TOC和VFAs 3种组分的分析,可将实际生活污水中的有机底物分为3类:易生物降解含碳有机物、难降解的含碳有机物和水中存在的无机性还原物质,含量分别占COD的13.33%、31.7%和54.97%,其中只有13.33%的含量对生物释磷有直接作用,并可对实际生活污水除磷有指导意义。  相似文献   

12.
偶氮二异庚腈的生产过程中产生大量的废水,其有机物和氨氮含量高,生化性差.为解决其处理达标问题,采用氨氮吹脱-上流式厌氧污泥床(UASB)-A/O- NaOCl强氧化-接触氧化的组合工艺对其进行了试验研究.结果表明,该工艺对COD、氨氮的去除率分别达到99%、98%以上.并在此试验研究的基础上,投资建设了一个污水处理站,采用氨氮吹脱-UASB-A/O-二级好氧-NaOCl强氧化-接触氧化-气浮池的组合工艺,经过一年多的运行,出水水质稳定,对COD、氨氮的去除率分别为99%、98%以上,出水水质达到《污水综合排放标准》(GB 8978-1996)的一级标准.  相似文献   

13.
Fenton氧化-生化组合工艺处理染料中间体废水   总被引:9,自引:4,他引:9  
针对染料中间体废水具有COD高、BOD5/COD低和具有生物毒性的特性,采用Fenton氧化-水解酸化-好氧组合工艺进行染料中间体生产废水的处理试验,试验结果表明:废水经Fenton氧化及水解酸化工序后,废水的BOD5/COD值由0.03升高至0.48,经好氧生化工序处理后的出水COD和BOD5浓度分别达122.6 mg/L和54.6 mg/L,符合《污水综合排放标准》(GB8978-1996)二级标准,该组合工艺COD总去除率达94%.  相似文献   

14.
研究了UV/Fenton技术对高浓度金属清洗乳化油废水的处理效果,考察了亚铁与双氧水浓度、pH、反应时间和搅拌对COD去除效果的影响。实验结果表明,UV/Fenton技术对高浓度乳化油废水(COD平均浓度为35 000 mg/L)具有较高的去除效果,最佳工艺条件为:亚铁与双氧水浓度分别为2 400 mg/L和6 000 mg/L,pH为3,经过2 h反应,COD可降低至1 050 mg/L,去除率为97%。搅拌会降低COD的去除率。研究表明,UV/Fenton技术对高浓度乳化油废水具有很好的降解效果,且药品消耗较低,为目前此类高浓度有机废水的处理提供了技术参考。  相似文献   

15.
利用高压甥片法制备了一种新型PbO2电极,采用X衍射(XRD)、扫描电镜(SEM)等手段对电极性能进行表征,并研究了其用于处理难降解染料废水(以中性枣红为例)的降解效果.结果表明.该电极不仅具有较高的电催化活性,而且还有很好的抗腐蚀性能,适合含高盐度废水的预处理.通过与普通石墨电极的对比研究发现,该电极在染料脱色和去除COD方面都有明显的优势.在此基础上,提出了新型PbO2电极降解有机物的作用机制.  相似文献   

16.
杂色云芝处理高浓度味精废水初探   总被引:1,自引:0,他引:1  
研究了杂色云芝对等电提取谷氨酸后浓缩废母液处理效果,考察了浓缩废母液的不同百分比浓度和初始pH对杂色云芝脱色率、COD去除率及菌体生物量的影响,同时还考察了杂色云芝处理废母液后pH的变化情况。研究结果表明,利用杂色云芝处理高浓度味精废水,不仅可去除COD而且有脱色效果。生产的菌丝体还可进一步作为动物饲料,投资少、成本低、不会产生二次污染,还可带来一定的经济效益。对不同百分比浓度的味精废水试验发现,30%浓度的味精废水处理效果最好,COD去除率为49.26%,脱色率为56.67%,菌体干重为5.8g/L。味精废水的初始pH对处理效果有一定的影响,初始pH为5.0时,最高COD去除率为50.12%,最大脱色率为55.8%。  相似文献   

17.
研究了序批式水解酸化 厌氧 好氧生物处理工艺对NF合成制药废水的处理。由于NF制药废水中含有大量有毒有机化合物 ,在生物处理过程中这些有毒物质会抑制活性污泥的活性 ,因此需经过适当稀释原水以达到处理单元可接受的毒性范围。采用BODTrack快速测定了不同原水稀释条件下活性污泥呼吸曲线第一段斜率的变化 ,结果表明 ,当原水稀释 2 0倍以上后 ,对活性污泥的活性没有明显的抑制。通过批量实验 ,优化了工艺的运行条件 ,并进行了小试的连续运行。采用本工艺可以达到NF制药废水COD的稳定高效去除 ,结果显示 ,COD的去除率可达 76 %。  相似文献   

18.
针对神经节苷脂生产废水蛋白质含量高的特点,研究了等电点沉淀或混凝沉降预处理、厌氧好氧生物处理、化学沉淀和类Fenton氧化后处理组合工艺处理神经节苷脂生产废水的技术。结果表明,神经节苷脂生产废水的等电点在pH=2.2左右,通过等电点沉淀可去除30%以上的COD,但等电点时蛋白质的沉淀速度非常慢;用聚合硫酸铁对神经节苷脂生产废水进行混凝预处理的最适工艺条件是:pH=7~7.5,聚合硫酸铁用量=500~750 mg/L。在优化条件下,混凝预处理可以使神经节苷脂生产废水的COD从27 000 mg/L左右降到13 000 mg/L左右。混凝预处理后的神经节苷脂生产废水经48 h厌氧和84 h好氧生物处理,COD值进一步下降到600 mg/L左右。然后向每升生化出水中加入2~3 mmol Fe3+,通过化学沉淀作用除去其中的磷酸盐,过量的Fe3+作为后续类Fenton氧化的催化剂。当H2O2(30%)用量为2~3 mL/L时,最终出水的COD值可以达到国家一级排放标准。  相似文献   

19.
垃圾渗滤液中的氨氮对微生物活性的抑制作用   总被引:69,自引:1,他引:69  
研究了合成废水和垃圾滤渗滤中氨氮对活性污泥微生物活性的抑制作用。当合成废水的氨氮浓度从50mg/L依次成倍递增至800mg/L时,脱氢酶活性由11.04μgTF/mgMLSS下降至4.22,此时COD的去除率相应由95.1%降低到79.1%。  相似文献   

20.
微生物制剂与玄武岩纤维联用处理城市废水   总被引:1,自引:0,他引:1  
为了探索一种新型的去除水体中有机物的工艺,以模拟城市废水为研究对象,研究不同工况条件下,复合微生物制剂、组合双环玄武岩纤维填料以及复合微生物制剂与组合双环玄武岩纤维填料结合对模拟城市废水中COD的去除情况。实验结果表明,复合微生物制剂与组合双环玄武岩纤维填料结合在曝气的情况下对COD的去除能力较高。在复合微生物制剂与组合双环玄武岩纤维填料结合的条件下,对COD浓度为500 mg/L左右的模拟城市废水的去除效率可达 97.22%;影响模拟城市废水中COD去除效果的各因素的主次顺序依次为反应时间>曝气时间>投加量=pH;得出最佳工况参数是:复合微生物制剂的投加量为0.05 g/L,曝气时间为72 h,反应时间为96 h,pH为7。  相似文献   

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