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 共查询到19条相似文献,搜索用时 250 毫秒
1.
采用多级冷冻法处理含油废水。实验结果表明:在初始废水中COD和ρ(NH3-N)分别为36 400 mg/L和73 mg/L的条件下,经过8级冷冻处理,COD和ρ(NH3-N)分别降至430 mg/L和2 mg/L,去除率分别可达98.82%和97.72%;在相同COD的条件下,ρ(NH3-N)较高时,COD去除率较高,由此可见无机盐离子(如NH4+)的存在有利于有机物的去除。  相似文献   

2.
采用ENSBR-BDAR-BCOR工艺处理某化纤公司高含氮己内酰胺生产废水,在污泥负荷为0.15~0.28g/(g·d)、进水COD不高于6200mg/L、NH3-N质量浓度不高于560mg/L的情况下,出水COD不高于150mg/L、NH3-N质量浓度不高于20mg/L,COD和NH3-N的去除率分别达到98%和96%,系统可同时除碳脱氮。  相似文献   

3.
采用含固定化微生物的曝气生物滤池(G-BAF)处理炼油厂高浓度废水。当G-BAF池进水COD为298~11 278 mg/L时,出水COD为33.0~94.3 mg/L,COD平均去除率为97%;当G-BAF池进水ρ(NH_3-N)为12.1~188.0 mg/L时,出水ρ(NH_3-N)为0.9~49.4 mg/L,NH_3-N平均去除率为83%。经G-BAF处理后出水水质完全达到GB8978—1996《污水综合排放标准》第二类污染物的二级排放标准。  相似文献   

4.
以钛涂钌电极为阳极、自制蒽醌修饰石墨毡电极为阴极,对头孢合成废水(COD=25 000~30 000 mg/L、ρ(NH3-N)=850~1 300 mg/L、色度为2 300~2 680度)进行了电化学氧化预处理,优化了电解条件,并对电化学体系的动力学和稳定性进行了分析。实验结果表明:蒽醌的存在可改善电化学氧化降解效果;在电解时间50 min、电流密度0.14 A/cm2、Na2SO4浓度0.1 mol/L、极板间距2 cm、初始废水p H 7.0的条件下,废水的COD、色度、NH3-N的去除率分别可达45.3%,66.9%,33.6%;BOD5/COD由处理前的0.27增至0.40,可生化性得到改善;COD、色度、NH3-N的电化学氧化降解过程均近似符合一级动力学方程;且该电化学体系的应用稳定性良好。  相似文献   

5.
冷冻固定化硝化菌去除废水中氨氮的研究   总被引:4,自引:0,他引:4  
采用聚乙烯醇(PVA)循环冷冻法制备固定化硝化菌颗粒,经活化后在颗粒填充率为9%的三相流化床中进行氨氮废水处理试验。处理低浓度氨氮有机废水(NH3-N质量浓度为75mg/L.COD约为400mg/L,水力停留时间为4h)时,NH3-N去除率约为90%,COD、TIN的去除率可达82%和60%左右;处理高浓度氨氮废水(NH3-N质量浓度450~500mg/L,水力停留时间为20h)时,NH3-N去除率在98%以上,氨氧化产物中NO2^--N质量分数在95%以上,为亚硝酸盐反硝化提供了有利条件。用该法制成的硝化菌颗粒寿命在3个月以上。  相似文献   

6.
MBR—NF处理印染废水   总被引:2,自引:2,他引:0  
采用MBR—纳滤(MBR—NF)组合工艺处理印染废水。运行结果表明:MBR出水的COD、ρ(NH3-N)和TN分别为94,0.93,8.88mg/L,COD、NH3-N和TN的平均去除率分别为87%、95.8%和70.2%,出水水质满足GB4287—92《纺织染整工业水污染物排放标准》中的一级标准;再经NF处理后出水COD、色度、ρ(总Fe)、ρ(总Mn)和pH分别为11~30mg/L、2.3~7.4倍、0.065~0.095mg/L、0mg/L和8.06~8.21,水质可满足印染工艺回用要求。  相似文献   

7.
采用微电解—Fenton试剂氧化—A/O组合工艺处理高浓度制药废水。实验结果表明:经微电解—Fenton试剂氧化工艺预处理后,COD去除率可达50%~60%,BOD5/COD提高到0.3以上;预处理后的废水与清洗废水和生活污水混合,采用生化法进一步处理,出水COD小于100 mg/L,BOD5小于20 mg/L,ρ(NH3-N)小于50 mg/L,SS小于70 mg/L,满足GB 8978—1996《污水综合排放标准》中的三级排放标准。  相似文献   

8.
采用特异性移动床生物膜反应器(SMBBR)和厌氧生物滤池(AF)组合工艺处理高氨氮农药废水。考察了HRT、pH和DO等工艺条件对SMBBR-AF-SMBBR组合工艺运行稳定期COD和氨氮去除率的影响。试验结果表明,在进水COD为2 408~7 440 mg/L、ρ(NH_4~+-N)为160.21~433.84 mg/L、TN为208.27~537.65 mg/L、HRT为8d、pH为8.0、DO为4 mg/L的条件下,处理后出水平均COD为342 mg/L,COD去除率达92.3%;ρ(NH_4~+-N)小于4.0mg/L,氨氮平均去除率为89.2%;TN小于50 mg/L,平均TN去除达83.0%。出水各指标均优于原A2O工艺出水。  相似文献   

9.
陈昕 《化工环保》2014,34(2):128-132
采用加入淀粉的短程硝化-反硝化一体化技术处理低碳含NH3-N催化剂废水。通过中试确定了适宜的工艺参数,并在工业化装置上进行了验证。试验结果表明:在DO为0.5 mg/L左右、淀粉加入量为0.25 kg/ m3、HRT=30 h的条件下,短程硝化-反硝化一体化技术具有较好的处理效果,NH3-N去除率大于97%,且具有较强的抗冲击负荷的能力; 出水的COD<100 mg/L,ρ(NH3-N)<10 mg/L,达到GB 8978—1996《污水综合排放标准》的一级排放标准。工业化装置的运行费用以NH3-N计为2.3 元/kg、以废水计为4.6 元/t。该法适用于中低浓度(ρ(NH3-N)<300 mg/L)废水的处理。  相似文献   

10.
从炼油废水活性污泥中筛选出一株具有异养硝化-好氧反硝化能力的菌株WY6。对筛选菌株进行了生理生化实验和菌种鉴定,考察了碳源种类、培养基的m(C)∶m(N)、培养温度、初始p H及接种量对菌株硝化性能的影响;并对其NH3-N去除性能进行了考察。经鉴定,该菌为鲍曼不动杆菌,适宜的培养条件为:以丁二酸钠为碳源、培养温度30℃、初始p H 9.0、m(C)∶m(N)=10、接种量2.0%。在此条件下培养20 h,可将NH3-N质量浓度由245.46 mg/L降至9.71 mg/L,平均NH3-N去除速率为11.79 mg/(L·h)。WY6菌可在32 h内将实际炼油废水的NH3-N质量浓度由初始时的73.74 mg/L降至1.15 mg/L,NH3-N去除率达98.4%,表现出良好的应用前景。  相似文献   

11.
赵鹏  莫魁  卢姝 《化工环保》2012,32(2):164-167
针对某炼油厂的废水场二沉池出水,先后采用曝气生物滤池和超滤工艺进行深度处理.试验结果表明,在曝气生物滤池中投加专性微生物菌种、曝气生物滤池HRT为2h、COD去除负荷为0.36 kg/( m3·d)、超滤膜通量为50L/(m2·h)的条件下,出水中的ρ(油)为0.8 mg/L、COD为57 mg/L、ρ(氨氮)为0.2 mg/L.出水水质达到Q/SH0104-2007《炼化企业节水减排考核指标与回用水质控制指标》,可回用于循环水的补水.  相似文献   

12.
采用循环式复合水解酸化—CASS—絮凝沉淀组合工艺处理江苏省某化工园区污水厂的实际废水(COD260~815 mg/L、ρ(氨氮)19.15~40.41 mg/L、TN 22.51~50.66 mg/L、TP 0.79~3.21 mg/L),考察了污染物浓度的沿程变化,评价了各工段对主要污染物的去除效果。实验结果表明,组合工艺对废水有着较好的处理效果,平均COD、氨氮、TN、TP的去除率分别高达83.29%、95.34%、61.29%、82.70%,平均出水COD、ρ(氨氮)、TN、TP分别为56.2,1.27,14.34,0.33 mg/L,出水水质接近GB 18918—2002《城镇污水处理厂污染物排放标准》的一级A标准。  相似文献   

13.
Treatment of municipal solid waste (MSW) landfill leachate generally results in low percentages of nutrient removal due to the high concentration and accumulation of refractory compounds. For this reason, individual physical, chemical and biological processes have been used for the treatment of raw landfill leachate and sometimes for the mixture of domestic wastewater and landfill leachate. In this work, the possibility of treating landfill leachate was tested in a bench-scale pilot plant by a two-step method combining adsorption and coagulation-flocculation. Zeolite synthesized from coal fly ash, a by-product of coal-fired power stations, was used in this study both as a decantation aid reagent and as an adsorbent of COD and NH4-N. The coagulation-flocculation step was performed by the use of aluminium sulphate and a polyelectrolyte (ACTIPOL A-401). The leachate was collected directly from a storage unit of the organic fraction of MSW, before it was composted. For this reason the raw leachate was diluted before treatment. The sludge was recirculated to enhance the removal efficiency of nutrients as well as to optimize flocculant saving and to decrease sludge production. The results showed that it is possible to remove 43%, 53% and 82% of COD, NH4-N, and suspended solids, respectively. Therefore, this method may be an alternative for ammonium removal, as well as a suitable pre- or post-treatment step, in combination with other processes in order to meet regulatory limits.  相似文献   

14.
Ozonation, combined with the Fenton process (O(3)/H(2)O(2)/Fe(2+)), was used to treat matured landfill leachate. The effectiveness of the Fenton molar ratio, Fenton concentration, pH variance, and reaction time were evaluated under optimum operational conditions. The optimum removal values of chemical oxygen demand (COD), color, and NH(3)-N were found to be 65%, 98%, and 12%, respectively, for 90 min of ozonation using a Fenton molar ratio of 1 at a Fenton concentration of 0.05 mol L(-1) (1700 mg/L) H(2)O(2) and 0.05 mol L(-1) (2800 mg/L) Fe(2+) at pH 7. The maximum removal of NH(3)-N was 19% at 150 min. The ozone consumption for COD removal was 0.63 kg O(3)/kg COD. To evaluate the effectiveness, the results obtained in the treatment of stabilized leachate were compared with those obtained from other treatment processes, such as ozone alone, Fenton reaction alone, as well as combined Fenton and ozone. The combined method (i.e., O(3)/H(2)O(2)/Fe(2+)) achieved higher removal efficiencies for COD, color, and NH(3)-N compared with other studied applications.  相似文献   

15.
采用混凝—热固化联合空气吹脱法处理高浓度水性油墨废水。混凝—热固化法处理高浓度水性油墨废水的优化工艺条件为混凝剂NS-1投加量7.36 g/L,热固化温度75 ℃,热固化时间30 min,在此条件下COD去除率达91.00%,色度去除率达99.00%。空气吹脱法处理混凝—热固化出水,初始ρ(氨氮)对氨氮去除率影响较小;气液比增大、废水pH升高、吹脱次数增加、废水温度升高均能提高氨氮去除率。在废水初始ρ(氨氮)为1 406.25 mg/L、气液比为2 667、废水pH为11.50、废水温度为25 ℃、连续吹脱4次的条件下,氨氮去除率达95.34%。  相似文献   

16.
The performance of a moving-bed biofilm reactor (MBBR) system with an anaerobic-aerobic arrangement was investigated to treat landfill leachate for simultaneous removal of COD and ammonium. It was found that the anaerobic MBBR played a major role in COD removal due to methanogenesis, and the aerobic MBBR acted as COD-polishing and ammonium removal step. The contribution of the anaerobic MBBR to total COD removal efficiency reached 91% at an organic loading rate (OLR) of 4.08 kgCOD/(m3d), and gradually decreased to 86% when feed OLR was increased to 15.70 kgCOD/(m3d). Because of the complementary function of the aerobic reactor, the total COD removal efficiency of the system had a slight decrease from 94% to 92% even though the feed OLR was increased from 4.08 to 15.70 kgCOD/(m3d). Hydraulic retention time (HRT) had a significant effect on NH+4-N removal; more than 97% of the total NH+4-N removal efficiency could be achieved when the HRT of the aerobic MBBR was more than 1.25 days. The anaerobic-aerobic system had a strong tolerance to shock loading. A decrease in COD removal efficiency of only 7% was observed when the OLR was increased by four times and shock duration was 24 h, and the system could recover the original removal efficiency in 3 days. The average sludge yield of the anaerobic reactor was estimated to be 0.0538 gVSS/gCOD rem.  相似文献   

17.
随着我国经济快速发展及城市化水平提升,城市生活垃圾产量越来越大,焚烧逐渐成为城市生活垃圾处理的主要方式.但焚烧会产生大量的垃圾焚烧飞灰(以下简称飞灰),飞灰属于危险废物.论述了飞灰的来源、成分、特性及危害,介绍了飞灰的处理处置技术:水泥固化技术、化学药剂稳定化技术、熔融固化技术、水热稳定化技术和水泥窑协同处理技术,并分...  相似文献   

18.
预处理-超滤-反渗透工艺深度处理炼油厂污水   总被引:1,自引:0,他引:1       下载免费PDF全文
陈永强  龚小芝  李铭 《化工环保》2013,33(2):140-143
采用预处理-超滤-反渗透工艺深度处理某炼油厂污水场的二沉池出水。预处理单元出水COD为40mg/L,ρ(NH3-N)为1mg/L,SS为6.3mg/L,能够满足超滤-反渗透系统的进水要求。超滤单元进水压力在0.04~0.08MPa波动,反渗透单元进水压力在0.92~1.12MPa波动,运行均稳定,化学清洗周期均可超过一个月。预处理-超滤-反渗透工艺产水回用于二级脱盐装置脱盐水补水的成本为每吨产水2.04元,低于企业现有的新鲜水每吨3.45元的费用。该优质产水取代新鲜水回用,每年可为企业节约100多万元。  相似文献   

19.
为了解决高浓度焦化废水不经稀释无法直接处理的问题,将HENGJIE高效混合菌制剂和粉末活性炭加入O1AO2废水处理系统中,进行焦化废水的中试试验。试验结果表明,该方法可对未经稀释的高浓度焦化废水直接进行处理,且系统启动快,菌种对污染物的降解效率较高。在O1段水力停留时间为20h、A段水力停留时间为35h、O2段水力停留时间为25h的条件下,经过20d的连续运行后,使进水COD由5435.7mg/L(平均值)降至出水COD369.3mg/L(平均值),COD去除率为93.17%;使进水中NH3-N平均质量浓度由67.80mg/L降至出水中NH3-N平均质量浓度1.04mg/L,NH3-N去除率为98.18%,废水色度为100~200。除废水COD与色度外,其他检测项目均可达到废水一级排放标准。  相似文献   

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