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1.
采用电解-耦合类芬顿催化氧化技术对纺织印染行业废水进行深度处理,分别考察不同Fe/C比、溶液p H值、药剂投加量与反应时间对去除效果的影响,结果在p H值为3.5、Fe/C为1︰1、H_2O_2投加量为200mg/L、Fe SO_4投加量为200mg/L时,反应时间控制在20min,废水的COD去除率可达62.5%。  相似文献   

2.
以四川某气田压裂返排液为研究对象,采用破胶絮凝处理后进行氧化对比实验,氧化剂选用高锰酸钾、过硫酸钾、次氯酸钠、Fenton试剂。研究表明,絮凝实验最佳条件为氧化钙、硫酸铝和硫酸亚铁投加量分别为3,1,1 g/L。4种氧化方法的最佳实验条件为:高锰酸钾投加量0.5 g/L,pH值为4;过硫酸钾投加量0.25g/L,pH值为6;次氯酸钠投加量15 g/L,pH值为4;Fenton氧化方法pH值为3.5,双氧水投加量25 g/L,七水硫酸亚铁投加量10 g/L。出水COD_(Cr)最多可降至800 mg/L左右,最大COD_(Cr)去除率72.96%,处理效果良好,为后续处理创造了条件。  相似文献   

3.
试验针对某冷轧带钢公司的废乳化液,研究了聚合硫酸铁(PFS)、聚合氯化铝(PAC)、硫酸铁[Fe_2(SO_4)_3·7H_2O]、硫酸亚铁(FeSO_4·7H_2O)对废乳化液的混凝-上浮影响。实验结果表明,4种混凝剂对破乳效果均较好,综合考虑絮体状态、处理效果及成本,确定硫酸亚铁为本试验的最佳药剂。试验温度为实验季节水温,温度为20℃左右。最佳试验条件为:硫酸亚铁投加量为4 g/L,PAM投加量为0.04 g/L,pH=8,此时COD去除率为95.2%,油去除率为96.7%。  相似文献   

4.
研究了复合金属氧化物(LDO)用于处理垃圾渗滤液中氮的可行性,并与传统吸附剂粉末活性炭(PAC)进行了比较,考察了投加量、振荡速度、吸附时间、吸附温度、pH等因素对处理效果的影响。结果表明,当垃圾渗滤液中总氮浓度为561mg/L、LDO投加量为6g/L、振荡速度为170r/min、吸附时间为60min、温度为25℃、pH值为11时,LDO对总氮的吸附量最高,达到41mg/g。在相同条件下,LDO对总氮的吸附量是PAC的2.5—3.5倍。  相似文献   

5.
在实验室及中试条件下研究了臭氧-活性炭技术对石油微污染地下水的处理效果。通过石油类和高锰酸盐指数两个指标,考察了臭氧投加量、pH值、过滤速率等操作参数对污染物的去除效果。结果表明:臭氧投加量和活性炭过滤速率是最主要的影响因素,pH值对处理效果影响不显著。中试条件下适宜的臭氧投加量应为8mg/L左右,最佳过滤速率在10m/h附近。采用臭氧氧化与活性炭过滤组合工艺,当进水石油类浓度在1.5mg/L以下时,出水石油类低于0.3mg/L,高锰酸盐指数低于3.0mg/L。  相似文献   

6.
开展实验室模拟苯酚废水的二氧化钛光催化氧化实验。结果表明:在苯酚废水曝气量为0~3L/min的条件下,随着曝气量的增大,COD去除率先增大后减小;初始浓度不变,光照时间为1h的条件下, 调节pH值在3~11,苯酚废水COD去除率随着pH值的增大而减小,当pH值为11时, COD去除率又开始增 大,酸性条件比碱性条件下COD去除率高;随着二氧化钛投加量的增加,COD去除率增大,当二氧化钛投加量 为10g/L时,COD去除率反而降低,二氧化钛最佳投加量为3g/L;随着苯酚废水初始浓度由75mg/L增加至300mg/L,COD去除率由78.2%降低到58.1%;反应温度的改变对COD和TOC的去除率没有影响。  相似文献   

7.
絮凝- 电气浮法处理乳化油废水   总被引:2,自引:0,他引:2  
含乳化油废水由于表面活性剂的存在处理难度较大。通过絮凝——电气浮方法处理乳化油废水,确定絮凝及絮凝——电气浮所需的最佳絮凝剂用量;通过正交试验考察了pH值、电流密度、电极间距及气浮时间等操作参数的影响,得到絮凝一电气浮的最优操作条件为电流密度为20.83A/m^2,电极间距为1cm,pH值为7.4。在聚合硫酸铁投加量为50mg/L,电气浮30min时COD去除率可达95.2%。此方法对轴承厂废水的COD去除率可达75%,出水COD可降至91.9mg/L。结果表明用这种方法处理乳化油废水是可行的。  相似文献   

8.
DNT废水因其成分复杂、毒性大、难降解、对环境污染严重等特点,成为废水处理中的一个难题。本试验研究了难以生物降解DNT生产废水Fenton氧化处理效果,考查了各影响因子最佳工艺条件。结果表明,在pH值为2;FeSO4.7H2O投加量为200mg/L;H2O2投加量为2mL/L;反应时间为1h的条件下,Fenton氧化工艺COD去除率为47.76%,DNT去除率为87.37%左右。  相似文献   

9.
本文中根据林化废水特征确定使用"混凝气浮-膜生物反应处理器"的工艺进行处理。工程中硫酸铝的投加量为40mg/L,PAM的投加量为3mg/L,在废水pH值为7~8时进水COD、SS、OIL为279mg/L、20mg/L、26mg/L,进行混凝气浮后,出水的COD、SS、OIL浓度依次为135mg/L、9.6mg/L、9.5mg/L,去除率分别达到了52%、50%、64%。膜生物反应系统的调试,以污泥接种的方式进行污泥培养驯化。初期以面粉作为营养源清水培养污泥,按照7天左右的周期按每次30m3/d的污水进水量逐渐增加污水的比例,直到完全进水,调试驯化期污泥浓度控制在2500~3000mg/L。正常运转中污泥浓度可达到5000mg/L左右,出水水质COD、SS、OIL浓度分别达到30mg/L、6mg/L、3mg/L,符合处理目标要求。  相似文献   

10.
选取诺氟沙星为目标污染物,以介孔氧化铁为催化剂,催化过氧化氢降解水中微量有机污染物,设计正交实验并利用SPSS软件进行数据分析,分别讨论了pH、H_2O_2初始浓度、诺氟沙星初始浓度以及催化剂投加量对降解率的影响,并得到选定因素水平范围内的最优化反应条件:初始p H为7,初始H_2O_2浓度100 m M,初始诺氟沙星浓度2 mg/L,催化剂投加量0.7 g/L。最优化反应条件下,120 min诺氟沙星的降解率达到99%。通过SPPS方差分析可得,各因素影响大小的排序为诺氟沙星初始浓度催化剂投加量初始pH初始H_2O_2浓度。  相似文献   

11.
对微电解后废水初始pH、外加Fe2+、H2O2浓度、处理时间对色度及CODCr去除率的影响进行研究。实验结果表明随着pH的增加,色度和CODCr的去除率均呈现先增加后降低的趋势,在pH值等于4时,处理效果最好。外加Fe2+,H2O2和反应时间对废水CODCr和色度去除率的影响类似于pH的影响,获得的H2O2最佳投加量4 mL/L,FeSO4.7H2O为1.5g/L,最佳处理时间60min。在优化实验条件下,CODCr和色度的去除率稳定在80%和84%附近。  相似文献   

12.
利用由O2和Fenton试剂组成的类Fenton系统处理对氨基苯磺酸废水,取得了很好的降解效果.当FeSO4(10g/L)投加量为1.2mL、H2O2(3%)投加量为3mL时,COD去除率可达到70%.  相似文献   

13.
采用Fenton试剂氧化降解含油废水中的聚丙烯酰胺,研究了H2O2用量、催化剂种类及用量对降解聚丙烯酰胺效果的影响。结果表明,H2O2用量为聚丙烯酰胺的20%为宜;CuCl2具有和FeSO4、Fe(NO3)3、FeCl3相近的催化效果,并且可以作为一种在较高pH值条件下应用的催化剂;在优选条件下该氧化体系可以使聚丙烯酰胺黏度大大降低。  相似文献   

14.
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   

15.
低渗透油田压裂废水处理技术实验研究   总被引:2,自引:2,他引:0  
通过低渗透油田压裂废水处理系列实验,研究了降黏预处理-Fe/C微电解-絮凝处理技术,有效地降低了废水的COD,考察H2O2、pH、Fe/C比例、Fe/C加量、Ca(OH)2加量及反应时间等影响因素。结果表明此实验的优化工艺条件为:H2O2加量0.5%、pH为1、Fe/C比例1∶1、Fe/C加量5g/L、Ca(OH)2加量3g/L、反应时间120min。  相似文献   

16.
以某污水厂的高氯低COD生化出水为研究对象,探讨了硫酸汞加入量、K2Cr2O7溶液浓度、反应酸度、取水样量等参数对COD测定的影响,探讨消除该厂Cl-干扰最简单有效方法,结果表明:控制硫酸汞与氯离子比为15∶1(质量比)、K2Cr2O7浓度为0.18 mol/L、水样稀释0.75倍、Ag2SO4-H2SO4加入量为28mL,皆可有效减少氯离子的干扰。该方法相对氯气校正法,操作简单、准确可靠。  相似文献   

17.
H2O2/Fe^2+氧化偶合混凝法处理干膜废水的研究   总被引:1,自引:0,他引:1  
马前  李义久  李树平  倪亚明 《四川环境》2001,20(1):13-15,20
本文研究了H2O2/Fe^2+氧化偶合混凝法处理印刷电路板厂干膜废水。讨论了包括过氧化氢浓度、亚铁离子浓度、pH值、时间和混凝pH值等影响因素,试验结果表明,当过氧化氢浓度为457.0mg/L、铁离子浓度为400mg/L、氧化pH值4.0、反温度为40℃、反应时间180min时,COD去除率达84.7%,出水的水质达到排放标准。  相似文献   

18.
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   

19.
The occurrence of significant amounts of biocidal finishing agents in the environment as a consequence of intensive textile finishing activities has become a subject of major public health concern and scientific interest only recently. In the present study, the treatment efficiency of selected, well-known advanced oxidation processes (Fenton, Photo-Fenton, TiO(2)/UV-A, TiO(2)/UV-A/H(2)O(2)) and ozone was compared for the degradation and detoxification of a commercial textile biocide formulation containing a 2,4,4'-trichloro-2'-hydroxydiphenyl ether as the active ingredient. The aqueous biocide solution was prepared to mimic typical effluent originating from the antimicrobial finishing operation (BOD(5,o) < or =5 mg/L; COD(o)=200 mg/L; DOC(o) (dissolved organic carbon)=58 mg/L; AOX(o) (adsorbable organic halogens)=48 mg/L; LC(50,o) (lethal concentration causing 50% death or immobilization in Daphnia magna)=8% v/v). Ozonation experiments were conducted at different ozone doses (500-900 mg/h) and initial pH (7-12) to assess the effect of ozonation on degradation (COD, DOC removal), dearomatization (UV(280) and UV(254) abatement), dechlorination (AOX removal) and detoxification (changes in LC(50)). For the Fenton experiments, the effect of varying ferrous iron catalyst concentrations and UV-A light irradiation (the Photo-Fenton process) was examined. In the heterogenous photocatalytic experiments, Degussa P25-type TiO(2) was used as the catalyst and the effect of reaction pH (3, 7 and 12) and H(2)O(2) addition on the photocatalytic treatment efficiency was examined. Although in the photochemical (i.e. Photo-Fenton, TiO(2)/UV-A and TiO(2)/UV-A/H(2)O(2)) experiments appreciably higher COD and DOC removal efficiencies were obtained, ozonation appeared to be equally effective to achieve dearomatization (UV(280) abatement) at all studied reaction pH. During ozonation of the textile biocide effluent, AOX abatement proceeded significantly faster than dearomatization and was complete after 20 min ozonation (267 mg O(3)). On the other hand, for complete detoxification, ozonation had to be continued for at least 30 min (corresponding to 400mg O(3)). Effective AOX and acute toxicity removal was also obtained after heterogeneous photocatalytic treatment (TiO(2)/UV-A and TiO(2)/UV-A/H(2)O(2)). The Fenton-based treatment experiments and particularly the dark Fenton reaction resulted in relatively poor degradation, dearomatization, AOX and acute toxicity removals.  相似文献   

20.
HPA/ZnFe2O4-TiO2光催化剂的制备及对马拉硫磷的可见光降解   总被引:3,自引:0,他引:3  
董轶茹 《四川环境》2009,28(3):14-18
以纳米TiO2载体,利用浸渍法制备了HPA/ZnFe2O4-TiO2光催化剂。对制备的催化剂进行了XRD、BET、TEM和UV-vis DRS表征。结果表明,催化剂样品均为锐钛矿相且ZnFe2O4很好地分散在载体表面,HPA/ZnFe2O4-TiO2光催化荆的平均粒径为10nm且在380-670nm均有强的光响应;反应最佳的HPA浓度为O.08molfL,最佳的ZnFe2O4负载量为1%。考察了HPA溶液初始浓度、ZnFe2O4负载量、溶液初始pH值、H2O2用量、催化剂用量对催化剂活性的影响。在溶液初始pH=13,H2O2=6mmol/L,催化剂用量为2g/L的最优条件下,光照反应进行100min后,马拉硫磷的降解率可达87%;重复4次后马拉硫磷的降解率仍可以达到67%。  相似文献   

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