首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到18条相似文献,搜索用时 109 毫秒
1.
微波-Fenton对沼液中抗生素和激素的高级氧化   总被引:2,自引:1,他引:1  
采用微波强化Fenton氧化处理系统,研究H2O2浓度、Fe2+浓度、初始pH、微波辐射时间和微波辐射功率对沼液中喹乙醇、土霉素、四环素及金霉素降解效果的影响.结果发现,采用微波强化Fenton氧化降解沼液中抗生素与激素的最优条件是:H2O2浓度为40 mg/L、Fe2+浓度为12 mg/L、初始pH为4、微波辐射时间为2 min、微波辐射功率为中火(445W),沼液中喹乙醇、土霉素、四环素、金霉素和COD的去除率分别达到67%、93%、91%、88%和46%.在水浴条件下,与单独微波辐射和单独Fenton相比,微波强化Fenton氧化有明显的优越性.  相似文献   

2.
微波强化氧化处理垃圾渗滤液工艺研究   总被引:3,自引:1,他引:2  
考察了最优作用方式下单独微波、单独氧化剂以及两者的结合工艺对垃圾渗滤液的处理效果。单独微波工艺在功率为700 W,辐射10 min,COD、氨氮、磷和色度去除率分别为37.66%、96.14%、40%和80%,BOD5/COD由0.16增加到0.43。渗滤液先微波再氧化,氨氮去除率增加显著,节省了氧化剂用量。微波后渗滤液在pH=5,T=50℃,NaClO=24 mL/L时COD、氨氮、磷和色度去除率分别为98.63%、99.67%、97.25%和98%,BOD5/COD=0.8。总处理效率:微波-NaClO微波-Fenton微波-KMnO4微波-H2O2,微波-Fenton处理效率低于微波-NaClO主要取决微波后滤液中小表观分子质量增加导致氧化剂的混凝作用减弱,其次受反应后pH值变化的影响。  相似文献   

3.
针对垃圾渗滤液污染物浓度高、可生化性差等特点,采用准好氧矿化垃圾反应床+超声/芬顿联用技术对垃圾渗滤液进行预处理。准好氧矿化垃圾床处理后渗滤液中COD、氨氮、总磷、色度的去除率分别为80%、85%、92%和85%。通过单因素实验和正交实验,确定了超声/Fenton法最佳工艺条件。经该组合工艺后,渗滤液中COD、氨氮、总磷和色度的最高去除率分别可达96%、86%、94%和95%,且出水无臭,颜色为淡黄色,BOD5/COD从0.16增至0.35左右,可生化性基本满足后续生物处理需要,且COD、总磷这2个指标达到《生活垃圾填埋场污染控制标准》(GB16889—2008)规定的排放标准。  相似文献   

4.
在Ti(Ⅳ)和过氧化氢存在条件下,考察了臭氧化酸性苯乙酮溶液、硝基苯溶液和垃圾渗滤液(浙江衢州某垃圾填埋场)的预处理效能。结果表明,在pH2.86条件下,单独臭氧化处理对苯乙酮、硝基苯和垃圾渗滤液的COD去除率分别为10.1%、44%和28.6%。BOD,/COD值分别从原来的0.039、0.060和0.085提高到了0.130、0.158和0.174,仍属生化难降解废水。当体系加入Ti(Ⅳ)后,臭氧化苯乙酮和硝基苯的COD去除率分别达到了75.5%和65%,BOD;/COD则提高到了0.679和0.314,可生化性提升明显。对于垃圾渗滤液,只有当体系加入Ti(Ⅳ)和H22后,臭氧化COD的去除率达到66.6%,BOD、/COD提高至0.425。上述结果对酸性难降解废水的处理实际意义非常突出。  相似文献   

5.
三维电极-好氧生物法联合处理酸性染料废水模拟研究   总被引:1,自引:0,他引:1  
采用电解-好氧生物法联合处理酸性大红G模拟废水,三维电解反应器填料为活性炭与玻璃珠混合物,平板电极材料为石墨,通过正交实验确定的最佳实验条件为:电解时间150min,活性炭/玻璃珠体积比为2:1,槽电压20V、pH为5、Na2SO4投加量1.5g/L,进水初始浓度2000mg/L。此时COD去除率及色度去除率分别可达49.78%和81.45%,废水BOD,/COD由0.12提高到0.42。电解后的废水采用生物接触氧化法处理12h后,出水COD为48mg/L,色度120倍,达到综合污水排放二级标准。  相似文献   

6.
ABR-SBR法处理草浆造纸中段废水试验研究   总被引:7,自引:0,他引:7  
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—0.25增加到0.4—0.5;SBR最佳HRT为8h,单独运行,COD去除率65%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   

7.
研究采用水解酸化+CAST工艺,对盐酸金霉素生产废水进行二级处理。试验结果表明,在进水COD质量浓度高达6000mg/L左右、氨氮质量浓度高达2200mg/L的情况下,系统出水COD浓度为350mg/L,去除率达94%以上;氨氮出水质量浓度为400mg/L,去除率达到81%,取得了较好的去除效果。  相似文献   

8.
竹制填料生物接触氧化工艺处理污染河水   总被引:1,自引:0,他引:1  
针对受污染的湖溪河水质特征,以传统弹性塑料填料做对比,研究以竹球和竹丝为填料的生物接触氧化工艺,考察填料的挂膜时间、生物量和污水处理效果;确定连续曝气和间歇曝气时反应器的最优运行工况:连续曝气时为HRT:7.5h,DO=3mg/L;间歇曝气时为厌氧1.2h、好氧6.3h交替运行。实验结果表明,与弹性塑料填料相比,竹制填料挂膜速度快,竹球填料的水处理效果最好;连续曝气最优工况下竹球填料反应器中COD、TN、NH3-N和TP的平均去除率分别为66.7%、47.9%、57.1%和30.6%;间歇曝气最优工况下竹球填料反应器中COD、TN、NH3-N和TP的平均去除率分别64.08%、39.95%、60.7%和54.68%;竹制填料可替代传统的塑料填料作为生物接触氧化工艺的载体填料。  相似文献   

9.
黄姜废水的铁炭微电解-混凝预处理研究   总被引:13,自引:0,他引:13  
研究了高浓度黄姜废水的铁炭微电解-混凝工艺,结果表明,在进水pH4.0、停留时间为40min且有曝气条件下,COD去除率达到64.70%,色度去除率为72.22%,废水的BOD/COD值可由0.29提高到0.56,有利于废水的后续生化处理。  相似文献   

10.
采用高锰酸钾预氧化-缺氧/好氧生物铁法处理维生素B1厂乙酰嘧啶生产段实际废水,实验结果表明该组合工艺对嘧啶生产废水具有良好的处理效果:预氧化将嘧啶废水中大分子难降解乙酰嘧啶几乎全部转化为具有饱和碳氢键的小分子有机物,使乙酰嘧啶去除率达90%以上,且COD去除率在40%以上,BOD5/COD由0.17~0.23提高至0.35~0.44。通过与后续A/O生物铁工艺相结合,使COD、TN和氨氮总去除率分别达到93.3%、81.7%和78.6%,出水pH为6.6~7.5。  相似文献   

11.
The anaerobic activities in swine slurry storage and treatment generate biogas containing gaseous ammonia component which is a chemical agent that can cause adverse environmental impacts when released to the atmosphere. The aim of this pilot plant study was to remove ammonia from biogas generated in a covered lagoon, using a sulfuric acid wet scrubber. The data showed that, on average, the biogas contained 43.7 ppm of ammonia and its concentration was found to be exponentially related to the air temperature inside the lagoon. When the air temperature rose to 35°C and the biogas ammonia concentration reached 90 ppm, the mass transfer of ammonia/ammonium from the deeper liquid body to the interface between the air and liquid became a limiting factor. The biogas velocity was critical in affecting ammonia removal efficiency of the wet scrubber. A biogas flow velocity of 8 to 12 mm s?1 was recommended to achieve a removal efficiency of greater than 60%. Stepwise regression revealed that the biogas velocity and air temperature, not the inlet ammonia concentration in biogas, affected the ammonia removal efficiency. Overall, when 73 g L?1 (or 0.75 M) sulfuric acid solution was used as the scrubber solution, removal efficiencies varied from 0% to 100% with an average of 55% over a 40‐d measurement period. Mass balance calculation based on ammonium–nitrogen concentration in final scrubber liquid showed that about 21.3 g of ammonia was collected from a total volume of 1169 m3 of biogas, while the scrubber solution should still maintain its ammonia absorbing ability until its concentration reaches up to 1 M. These results showed promising use of sulfuric acid wet scrubber for ammonia removal in the digester biogas.  相似文献   

12.
Attempts were made in this study to examine the effectiveness of sequencing batch reactor (SBR) for the treatment of beverage industrial wastewater. The SBR was operated at three different organic loading rates (OLRs): 2, 1.7 and 1.1 kg COD/m3 d. Results of continuous long-term operation showed that by decreasing OLR from 2 to 1.7 kg COD/m3 day, the removal efficiency was increased from 95.5 to 99.3% for COD, from 95.3 to 98.1% for BOD and from 87 to 97.7% for TSS. While further decreasing of the OLR to 1.1 kg COD/m3 day, there is no significant adverse effect on organics removal. Also, residual total nitrogen (TN) concentration decreased by decreasing the OLR. However, increasing the OLRs exerted a slightly negative effect on the removal of total phosphorous. On the other hand, the experimental data indicated that the substrate utilization kinetic followed Monod's kinetics model approximately. The maximum specific substrate utilization rate (micro(max), half velocity coefficient (Ks), growth yield coefficient (Y) and decay coefficient (Kd) were 2.94 d(-1), 15.22 mg/L, 0.2384 g VSS/g COD and 0.2019 h(-1), respectively.  相似文献   

13.
An upflow anaerobic sludge blanket (UASB)-anoxicaerobic system was used for treatment of tomato and bean processing wastewater. At various hydraulic retention times, ranging from 0.7 to 5 days, excellent removal of chemical oxygen demand (COD), biochemical oxygen demand (BOD), total suspended solids (TSS), ammonia-nitrogen (NH4-N), and total Kjeldahl nitrogen was achieved with final effluent BOD/TSS/NH4N concentrations of less than 15/15/1 mg/L. Biogas yield in the UASB reactor varied from 0.33 to 0.44 m3/kgCODremoved. The kinetics of anaerobic treatment were investigated. The yield coefficient was 0.03 gVSS/gCOD; maximum specific growth rate was 0.24 day(-1); Monod half velocity constant was 135 mgCOD/L; and specific substrate utilization rate was 3.25 gCOD/gVSS x d. Nitrification and denitrification kinetics were studied in batch experiments, and the rates were comparable with those in the continuous flow system.  相似文献   

14.
The capacity to reach lower bounds for extraction of pollutants from wastewater by four floating aquatic macrophytes--water hyacinth (Eichhornia crassipes), water lettuce (Pistia stratiotes), salvinia (Salvinia rotundifolia), and water primroses (Ludvigia palustris)--is investigated. It is shown that the following lower bounds can be established for wastewater purification with water hyacinth: biochemical oxygen demand (BOD), 1.3 mg/L; chemical oxygen demand (COD), 11.3 mg/L; total suspended solids (TSS), 0.5 mg/L; turbidity, 0.7 NTU; ammonia, 0.2 mg/L; and phosphorus, 1.4 mg/L. Also, the following lower bounds can be established for wastewater purification with water lettuce: BOD, 1.8 mg/L; COD, 12.5 mg/L; TSS, 0.5 mg/L; turbidity, 0.9 NTU; ammonia, 0.2 mg/L; and phosphorus, 1.6 mg/L. These lower bounds were reached in 11- to 17-day experiments that were performed on diluted wastewater with reduced initial contents of the tested water quality indicators. As expected, water hyacinth exhibited the highest rates and levels of pollutant removal, thereby producing the best lower bounds of the water quality indicators. Given the initially low levels, BOD was further reduced by 86.3%, COD by 66.6%, ammonia by 97.8%, and phosphorus by 65.0% after 11 days of a batch experiment. The capacity of water plants to purify dilute wastewater streams opens new options for their application in the water treatment industry.  相似文献   

15.
采用竹炭-微生物联合法,考察了竹炭用量、菌液用量、进水氨氮浓度、pH、DO、HRT等因素对氨氮废水处理效果的影响;同时采用对比实验,初步探讨了竹炭-微生物联合法处理沼液的作用机理。结果表明,竹炭-微生物法去除沼液氨氮的最优条件推荐为:竹炭用量30 g/L,微生物活性液用量3%,pH 7.0~8.0,DO为2 mg/L,HRT为48 h。竹炭-微生物法对沼液氨氮的去除过程可用一级反应动力学模型C=272.56e-0.0148描述,其去除效果来源于竹炭吸附和生物降解的协同作用,协同程度为48.45%。  相似文献   

16.
水深对表面流人工湿地污染河水处理系统运行效果的影响   总被引:4,自引:0,他引:4  
基于中试系统一年的连续运行监测,研究了水深对芦苇表面流人工湿地污染河水处理系统的影响。结果表明,水深对表面流人工湿地污染河水处理系统运行效果有很大影响,在进水COD、氨氮、总氮和总磷等分别为36±4.46、0.92±0.47、6.27±2.01和0.13±0.05 mg/L条件下,水深50 cm时处理效果最好,COD、氨氮、总氮和总磷去除率分别达到42.75%、58.42%、56.94%和43.24%。综合污染物去除效果和人工湿地建设工程量,芦苇表面流人工湿地的水深宜采用50 cm。人工湿地系统中植物光合生理和溶解氧等研究表明,水深主要通过影响植物生长和溶解氧等而影响人工湿地的水质净化效果。  相似文献   

17.
采用Fenton试剂催化氧化和氨吹脱法对苯唑醇生产废水的处理进行了研究。实验结果表明 ,此方法对废水的CODCr和氨氮具有良好的去除效果 ,平均去除率分别达到 73 .5 %和 95 %以上。处理后废水的BOD5 CODCr>0 .45 ,其可生化性良好。该技术具有能耗低、操作简便等优点  相似文献   

18.
The long-term operational stability (159 d) in removal of organics and ammonia from synthetic wastewater was investigated. The experiment was carried out in two identical plug flow membrane bioreactors (MBR) (each with a submerged A4 Kubota membrane) operated under aerobic conditions. The vacuum distillate of a crude oil fraction in the emulsified state, which was used to model the petroleum pollutants, was added into the feed medium. The performance of biological treatment was evaluated by physicochemical analyses such as nitrogen forms, COD, and BOD. Additionally, monitoring of PAHs in the wastewaters was performed using HPLC-diode array detector. Moreover, the community structure of bacteria was analyzed by polymerase chain reaction-denaturing gradient gel electrophoresis. The MBR treatment was very effective with reduction by more than 90% of COD and Total Organic Carbon. Nearly complete removal of petroleum originated non-polar micropollutants was observed. The influence of the highest dosage of petroleum pollutants (1000 μLL(-1)) on the bacterial community was noted.  相似文献   

设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号