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1.
作为钝感炸药的重要成分,DNAN(2,4-二硝基茴香醚)可以在炸药合成中替代TNT。随着对含DNAN废水的关注增多,发展了几种处理含DNAN废水的方法。其中,UV/H2O2氧化被证明是一种很有效的处理废水中DNAN的方法。本研究开展了DNAN降解的一系列批处理实验,研究碳酸根、初始pH和H2O2剂量对DNAN降解过程的影响。分别采用DI水(去离子水)和自来水配置与含DNAN废水相同浓度的DNAN溶液进行处理,比较和分析DNAN的降解过程和影响因素。结果显示:DI水溶液中DNAN的降解速率要快于自来水溶液,表明碳酸根和初始pH会影响DNAN的降解过程。配置溶液中DNAN的降解速率快于含DNAN废水中DNAN的降解速率,因为废水其他有机物的存在会与DNAN形成竞争。DNAN废水中的氮都被UV/H2O2氧化为硝态氮,表明该方法是处理污水中DNAN的有效技术。另外,溶液中的碳酸根、初始pH、H2O2剂量和其他有机物成分都会影响DNAN的降解过程。研究结果为DNAN废水处理的最优降解条件确定提供理论支撑。  相似文献   

2.
纳米四氧化三铁对2,4-D的脱氯降解   总被引:4,自引:4,他引:4  
方国东  司友斌 《环境科学》2010,31(6):1499-1505
采用纳米四氧化三铁(Fe3O4)降解水溶液中的2,4-二氯苯氧乙酸(2,4-D),考察了2,4-D初始浓度、纳米Fe3O4投加量、溶液pH和温度等因素对2,4-D降解率的影响.结果表明,纳米Fe3O4对2,4-D有显著的降解效果,初始浓度为10 mg/L的2,4-D, 48 h内降解率可达48%.纳米Fe3O4对2,4-D的降解是一个还原脱氯过程,反应体系中氯离子浓度随2,4-D浓度降低而升高.LC/MS分析表明,2,4-D降解的主要产物是苯酚,其他中间产物是2,4-二氯苯酚(2,4-DCP)、4-氯苯酚(4-CP)和2-氯苯酚(2-CP).溶液中2,4-D的降解符合准一级反应动力学,产物4-CP、2,4-DCP和苯酚的反应速率常数K分别为0.0043、0.0026和0.0032 h -1.环境条件对降解效率有显著影响,2,4-D初始浓度在0~10 mg/L、纳米Fe3O4投加量0~300 mg/L的范围内,2,4-D降解率随初始浓度和纳米Fe3O4投加量的增加而增大;pH对2,4-D的脱氯降解有显著影响,在pH为3.0时,纳米Fe3O4对2,4-D的还原脱氯效果最好;温度升高,可以提高脱氯反应速率.  相似文献   

3.
二甲基砷作为甲基砷的主要种类之一,主要由含砷废水的排放和农药滥用进入环境水体,进而严重威胁着人类的健康.通过改进电芬顿反应中Fe~(2+)的投加方式,构建了以铁棒为感应阳极、RuO_2/Ti网为阳极、2个活性炭纤维为双阴极的感应电芬顿体系.为探究感应电芬顿体系对二甲基砷的降解效果与机理,考察了反应过程中初始pH、电流密度、反应物初始浓度等因素对二甲基砷去除效果的影响.结果表明,在初始pH值为3,电流密度为2 m A·cm~(-2),二甲基砷初始浓度为5 mg·L~(-1)的最佳条件下,经感应电芬顿反应240 min后,二甲基砷去除率高达94.4%.在此体系中,感应铁电极不断释放的Fe~(2+)与阴极产生的H_2O_2发生电芬顿反应产生羟基自由基将二甲基砷降解为一甲基砷、As(Ⅲ)和As(V),同时,铁离子水解生成的铁的羟基络合物将二甲基砷、一甲基砷、As(III)和As(V)吸附在其表面,从而达到二甲基砷的高效去除.  相似文献   

4.
为了解零价铁(Fe0)修复污染地下水中微量2,4-二硝基甲苯 (2,4-DNT)还原规律,采用序批试验,考察地下水中常见阴离子(Cl-,NO3-和PO43-)及重金属Cr(Ⅵ)对Fe0还原2,4-DNT能力的影响,并分析了Fe0还原2,4-DNT的中间产物和最终产物.结果表明:Cl-与NO3-均能显著提高2,4-DNT的还原降解率,当反应进行120 min时,溶液中c(Cl-)由0 mmol/L增加到1 mmol/L,Fe0对2,4-DNT的还原降解率由31.4%增加到97.2%;溶液中c(NO3-)由0 mmol/L增加到1 mmol/L,还原降解率由31.4%增加到78.9%;PO43-则表现为明显的抑制作用,当反应进行120 min时,溶液中c(PO43-)由0 mmol/L增加到1 mmol/L,还原降解率由31.4%降至2.1%.Cr(Ⅵ)能与2,4-DNT竞争Fe0提供的活性电子,当ρ〔Cr(Ⅵ)〕为20 mg/L时,Cr(Ⅵ)对Fe0还原2,4-DNT能力的抑制作用显著.Fe0还原2,4-DNT的中间产物为4-氨基-2硝基甲苯(4A2NT)和2-氨基-4硝基甲苯(2A4NT),最终产物为2,4-二氨基甲苯(2,4-DAT).因此,在地下水硝基苯类污染物零价铁修复实践中,应考虑地下水中离子组分对反应过程的影响;2,4-DNT的还原最终产物为2,4-DAT,无法进一步降解,需后续处理.   相似文献   

5.
N,N-Dimethyldithiocarbamate (DMDTC) is a typical precursor of N-nitrosodimethylamine (NDMA). Based on separate hydrolysis, sorption and biodegradation studies of DMDTC, a laboratory-scale anaerobic-anoxic-oxic (AAO) system was established to investigate the removal mechanism of DMDTC in this nutrient removal biological treatment system. DMDTC hydrolyzed easily in water solution under either acidic conditions or strong alkaline conditions, and dimethylamine (DMA) was the main hydrolysate. Under anaerobic, anoxic or oxic conditions, DMDTC was biodegraded and completely mineralized. Furthermore, DMA was the main intermediate in DMDTC biodegradation. In the AAO system, the optimal conditions for both nutrient and DMDTC removal were hydraulic retention time 8 hr, sludge retention time 20 day, mixed-liquor return ratio 3:1 and sludge return ratio 1:1. Under these conditions, the removal efficiency of DMDTC reached 99.5%; the removal efficiencies of chemical organic demand, ammonium nitrogen, total nitrogen and total phosphorus were 90%, 98%, 81% and 93%, respectively. Biodegradation is the dominant mechanism for DMDTC removal in the AAO system, which was elucidated as consisting of two steps: first, DMDTC is transformed to DMA in the anaerobic and anoxic units, and then DMA is mineralized to CO2 and NH3 in the anoxic and oxic units. The mineralization of DMDTC in the biological treatment system can effectively avoid the formation of NDMA during subsequent disinfection processes.  相似文献   

6.
尚晓玲  李咏梅 《环境科学》2012,33(5):1604-1608
为了考察城市污水回用时氯消毒过程中NDMA的形成,以2套生物脱氮实验装置厌氧/缺氧/好氧(A/A/O)和缺氧/好氧(A/O)的二沉池出水为对象,研究了氯胺消毒过程中氯胺剂量、pH、NO2--N和NO3--N浓度对N-亚硝基二甲胺(NDMA)形成的影响.结果表明,二沉池出水中仍然含有微量的NDMA前体物,导致了氯胺消毒过程中NDMA的形成,而且NDMA的浓度会随氯胺浓度的增加呈线性增加;在中性或稍偏碱性(pH 7~8)的条件下,NDMA生成量最大;二沉池出水中NO2--N和NO3--N的浓度对NDMA的含量皆不会产生明显影响.  相似文献   

7.
为解决纳米零价金属在水中暴露出的极易聚集与氧化的问题,本研究使用铜作为纳米零价铁(NZVI)的复合金属,制得纳米Fe/Cu双金属,并用羧甲基纤维素钠(CMC)对其包覆改性.使用扫描电子显微镜、X射线衍射以及氮气吸附/脱附等温线对改性前后的双金属进行表征.结果表明,改性之后的材料具有更大的尺寸以及比表面积,且抗氧化性得到显著增强.材料的沉降实验以及对2,4-二氯苯酚(2,4-DCP)降解实验的结果揭示,CMC的包覆比对改性后双金属的分散性与反应活性影响较大.当包覆比为80%时,双金属的分散稳定性最强,释放的活性位点个数最多,表现为最高的反应活性.此时脱氯效率达到90.3%,且脱氯过程和产物发生明显改变.  相似文献   

8.
利用间歇反应器考察了非那西丁(PNT)、吉非罗齐(GFZ)、咖啡因(CAF)、双氯芬酸(DCF)和胆固醇(CH)5种医药类污染物分别在厌氧、缺氧及好氧条件下的吸附与降解特性,并通过动力学拟合深入考察目标物的降解速率及所符合的反应级数.研究表明,PNT在4 h内就能得到100%的降解,GFZ与CH能通过吸附与降解得到部分或全部去除.好氧条件下目标物的泥水分配系数kp值与降解速率均高于缺氧与厌氧条件,好氧条件下CAF的去除率达到99%以上.5种目标物除PNT外都有不同程度的吸附,目标物的污泥吸附能力为CHDCFGFZCAF;动力学拟合结果表明,生物降解动力学一级反应速率PNTCAF,二级反应速率CHGFZ;DCF几乎不能被生物降解,但符合二级吸附动力学模型,其平衡吸附量最高可达总投加量的71%.  相似文献   

9.
采用缺氧/好氧膜生物反应器(A/O MBR)工艺处理生活污水,试运行了5种不同的工况以确定最佳工艺参数,利用变性凝胶梯度电泳(DGGE)技术研究缺氧池和好氧池(MBR)中细菌群落结构,分析出水水质与细菌种群多样性的关系.结果表明A/O MBR在水力停留时间(HRT)为12 h,污泥停留时间(SRT)为10 d,硝化液回流比为300%,污泥回流比为100%的条件下,对COD、氨氮、总氮有稳定良好的去除,平均去除率分别为96.4%、99.1%、75.8%;系统运行过程中,缺氧池和好氧池中菌群结构发生较大变化,同一工况下两池菌群的相似性通常大于50%,但缺氧池菌群多样性随工况变换而波动较大,好氧池菌群多样性随运行时间而逐渐丰富;缺氧池菌群多样性指数与反硝化效率成正相关关系.  相似文献   

10.
活性炭催化过氧化氢去除荧光增白剂   总被引:1,自引:1,他引:0  
刘海龙  张忠民  赵霞  焦茹媛 《环境科学》2014,35(6):2201-2208
研究了活性炭(activated carbon,AC)吸附、改性活性炭(activated carbon modified,ACM)吸附、过氧化氢(H2O2)氧化、AC催化H2O2等方法对水体中荧光增白剂VBL的处理效果,并通过自由基俘获剂叔丁醇、催化过程气体分析等探讨了AC催化H2O2分解VBL的机制.结果表明,经硝酸铁[Fe(NO3)3]改性过的ACM对VBL的吸附去除率高于未改性的AC.活性炭催化H2O2对VBL的去除效果明显,但未改性AC催化去除率高于ACM.60 min时,AC催化氧化去除率即可达到95%以上,而ACM仅为58%.叔丁醇的加入降低了AC和ACM催化氧化对VBL的去除率,表明AC催化H2O2氧化能促进H2O2形成羟基自由基(·OH)和原子氧参与反应.AC催化H2O2分解及释放气体分析表明,AC能催化H2O2形成氧气并放热,且ACM明显快于AC.结合催化H2O2去除VBL效率的结果分析,ACM催化反应时活性中间物(自由基和原子氧等)产生速率快于AC,活性中间物自身消耗形成氧气,而不是用于分解VBL.催化反应中活性中间产物的形成速率与反应物供给速率的不匹配可能是导致ACM催化效果弱于AC的重要原因.  相似文献   

11.
Sulfonamides (SAs) are one of the most widely used antibiotics and their residuals in the environment could cause some negative environmental issues. Advanced oxidation such as Fenton-like reaction has been widely applied in the treatment of SAs polluted water. Degradation rates of 95%-99.7% were achieved in this work for the tested 8 SAs, including sulfisomidine, sulfameter (SME), phthalylsulfathiazole, sulfamethoxypyridazine, sulfamonomethoxine, sulfisoxazole, sulfachloropyridazine, and sulfadimethoxine, in the Fe3O4/peroxodisulfate (PDS) oxidation system after the optimization of PDS concentration and pH. Meanwhile, it was found that a lot of unknown oxidation products were formed, which brought up the uncertainty of health risks to the environment, and the identification of these unknown products was critical. Therefore, SME was selected as the model compound, from which the oxidation products were never elucidated, to identify these intermediates/products. With liquid chromatography-high resolution tandem mass spectrometry (LC-HRMS/MS), 10 new products were identified, in which 2-amino-5-methoxypyrimidine (AMP) was confirmed by its standard. The investigation of the oxidation process of SME indicated that most of the products were not stable and the degradation pathways were very complicated as multiple reactions, such as oxidation of the amino group, SO2 extrusion, and potential cross-reaction occurred simultaneously. Though most of the products were not verified due to the lack of standards, our results could be helpful in the evaluation of the treatment performance of SAs containing wastewater.  相似文献   

12.
Accumulation of heavy metals from various oxides with adsorbed cadmium by wetland plant Phragmites australis was studied to evaluate the fate of heavy metals in the sediment of constructed wetlands. Hoagland solution was used as nutrition supply, and single metal oxide with adsorbed cadmium was applied as contaminant to study the accumulation characteristics of cadmium and the substrate metals by P. australis. After 45-d treatment, the bioaccumulation degree in root followed the order: Al(OH)3 > Al2O3 > Fe3O4 > MnO2 > FeOOH. Heavy metals absorbed by P. australis were largely immobilized by the roots with little translocation to aboveground parts.  相似文献   

13.
铜绿微囊藻胞内DOM光降解及其对芘结合能力的影响   总被引:1,自引:0,他引:1  
利用紫外可见吸收光谱法及荧光光谱法研究有氧和缺氧条件下紫外线A波段(UV-A)辐照对铜绿微囊藻(Microcystis aeruginosa)胞内溶解性有机质(IDOM)(M. aeruginosa-IDOM)光降解行为,并考察光降解对其与芘结合能力的影响.结果表明,M. aeruginosa-IDOM经6d光降解后,有氧组中溶解性有机碳(DOC)浓度及其吸收系数a355降解幅度均高于缺氧组.有氧及缺氧状态下M. aeruginosa-IDOM光降解过程中吸光度比值E2/E3(250nm/365nm)变化相似,但254nm处比紫外吸收值(SUVA254)变化不同.激发–发射三维荧光光谱法(EEMs)结合平行因子(PARAFAC)分析,结果显示, M. aeruginosa-IDOM中类蛋白C1、长波激发类腐殖质C2及短波激发类腐殖质C3荧光强度在两种光降解条件下变化趋势不同. M. aeruginosa-IDOM光降解过程符合一级降解动力学特征的参数,在有氧组中降解半衰期均短于缺氧组.此外,光降解过程中,有氧组M. aeruginosa-IDOM与芘结合能力降低,但缺氧组M. aeruginosa-IDOM与芘结合能力先下降后增加.  相似文献   

14.
使用羧甲基纤维素钠(CMC)对纳米零价铁(NZVI)改性,并将铜(Cu)作为复合金属,制得改性纳米Fe/Cu双金属.同时采用模拟反应柱模拟可渗透反应墙(PRB)去除地下水中2,4-二氯苯酚(2,4-DCP)的反应过程.改性前后材料的表征以及沉降实验结果表明,改性后的材料有更强分散性.通过考察污染物浓度、材料投加量、Cu的负载率、pH值、流量等因素对降解2,4-DCP的影响,结果表明:反应过程符合一级动力学模型,较低的pH值与较小的流速以及10%的Cu负载率有利于2,4-DCP脱氯,过多的材料投加量和过高的初始2,4-DCP浓度不利于其脱氯.  相似文献   

15.
限量曝气进水时间对硝化颗粒污泥的影响特性研究   总被引:1,自引:1,他引:0  
缺氧-好氧环境的交替循环对氨氧化细菌和亚硝酸盐氧化细菌具有重要影响.本研究通过逐渐增加限量曝气进水时间(从10 min至120 min)延长缺氧时段,考察柱形SBR中硝化颗粒污泥对不同缺氧-好氧环境交替循环的响应特性.整个研究过程中,硝化颗粒污泥保持着稳定的颗粒特征,粒径大于0.8 mm的颗粒污泥占总污泥量的质量分数始终在95%以上,颗粒平均沉降速率维持在125~130 m·h-1之间.尽管缺氧时段不断延长,但NH+4-N去除率和NO-2-N累积率分别稳定在(60±5)%、(85±5)%;此外,在每个周期的曝气反应时段,NH+4-N的去除速率以及NO-2-N和NO-3-N的累积速率分别保持在90mg·(L·h)-1、70 mg·(L·h)-1和15 mg·(L·h)-1左右.以上结果表明,限量进水时间的延长及其所造成的不同时间跨度的缺氧环境对硝化颗粒污泥没有较为显著的影响.  相似文献   

16.
A full-scale plant using anaerobic, anoxic and oxic processes (A1/A2/O), along with a pilot-scale membrane bioreactor (MBR), nanofiltration (NF) and reverse osmosis (RO) integrated system developed by Shanghai Baosteel Chemical Co. Ltd., was investigated to treat coking wastewater for industrial reuse over a period of one year. The removals reached 82.5% (COD), 89.6% (BOD), 99.8% (ammonium nitrogen), 99.9% (phenol), 44.6% (total cyanide (T-CN)), 99.7% (thiocyanide (SCN-)) and 8.9% (fluoride), during the A1/A2/O biological treatment stage, and all parameters were further reduced by over 96.0%, except for fluoride (86.4%), in the final discharge effluent from the currently operating plant. The pilot-scale MBR process reduced the turbidity to less than 0.65 NTU, and most of the toxic organic compounds were degraded or intercepted by the A1/A2/O followed MBR processes. In addition, parameters including COD, T-CN, total nitrogen, fluoride, chloride ion, hardness and conductivity were significantly reduced by the NF-RO system to a level suitable for industrial reuse, with a total water production ratio of 70.7%. However, the concentrates from the NF and RO units were highly polluted and should be disposed of properly or further treated before being discharged.  相似文献   

17.
川西南阿什及尔期地层中的全岩REE分配模式显示 ,含有浮游笔石和小型无铰纲腕足类的黑色页岩具有较低的Ce异常值 (0 .6 2~ 0 .74) ,而含有底栖三叶虫、有铰纲腕足类和藻类的非黑色页岩则具有较高的Ce异常值 (0 .92~ 1.30 )。Ce与其他元素的相关分析进一步揭示 ,Ce与Fe的相关性最好 (r =0 .85 ) ,与P的相关性次之 (r =0 .6 1) ,与Al的相关性较差 (r =0 .2 9) ,而与Mn和Ca几乎不相关 (r =0 .14,r =- 0 .0 2 )。实际观察可能表明 ,研究区底层水体在氧化和碱性条件下 ,Ce氧化为Ce4 + 并进入Fe的氢氧化物和磷酸盐的晶格中 ,或者被吸附到它们的表面 ,造成Ce在氧化水体中呈现负异常而在同期氧化沉积物中呈现正异常或负异常不明显 ;相反 ,在还原和酸性条件下 ,Ce在水体中以 +3价状态富集 ,引起Ce在同期缺氧沉积物中呈现明显负异常。作为古海水氧化还原指示的全岩Ce异常 ,通常限定于解释远洋细粒沉积物的沉积环境。我们的研究结果说明 ,移去化石骨骼 (通常是磷酸盐化石骨骼 )的浅海细粒沉积物同样可以用于全岩REE分析 ,以获得可靠的能够指示古海水氧化还原条件变化的Ce异常  相似文献   

18.
研究TiO2纤维光催化降解DMF水溶液的结果表明:氧化剂增强了TiO2纤维对DMF的降解能力,在其它反应条件相同情况下,O3/TiO2(F)对DMF降解率是air/TiO2(F)和H2O2/TiO2(F)的1.5倍左右,且降解速率提高2倍左右,COD分析表明DMF几乎完全矿化.同时实验过程中确定了DMF光催化降解中间产物仲胺的存在.以二甲胺为仲胺代表物进行光催化降解研究表明,中间产物仲胺的迅速降解是O3增强TiO2纤维降解效应的主要因素.  相似文献   

19.
Anoxic gas recirculation system was applied to control the membrane fouling in pilot-scale 4-stage anoxic membrane bioreactor(MBR). In the anaerobic-anoxic-anoxic-aerobic flow scheme,hydrophilic polytetrafluoroethylene(PTFE) membrane(0.2 μm, 7.2 m2/module) was submerged in the second anoxic zone. During 8 months operation, the average flux of the membrane was 21.3L/(m2·hr). Chemical cleaning of the membrane was conducted only once with sodium hydroxide and sodium hypochlorite. Dissolved oxygen(DO) concentration in the second anoxic zone was maintained with an average of 0.19 ± 0.05 mg/L. Gas chromatography analysis showed that the headspace gas in the second anoxic reactor was mainly consisted of N2(93.0% ± 2.5%), O2(3.8% ± 0.6%), and CO2(3.0% ± 0.5%), where the saturation DO concentration in liquid phase was 1.57 mg/L. Atmospheric O2 content(20.5% ± 0.8%) was significantly reduced in the anoxic gas. The average pH in the reactor was 7.2 ± 0.4. As a result, the recirculation of the anoxic gas was successfully applied to control the membrane fouling in the anoxic MBR.  相似文献   

20.
基于零价铁的双金属体系对六氯苯还原脱氯研究   总被引:1,自引:2,他引:1  
利用Ag、Pb和Cu作为催化金属与微米级铁粉制成不同的双金属体系还原脱氯六氯苯(hexachlorobenzene,HCB),探讨不同催化金属种类、不同双金属添加量以及不同离子强度3种因素对HCB脱氯效率的影响,并剖析双金属催化条件下HCB的脱氯规律.结果表明,微米级铁粉对HCB几乎无还原脱氯效果,添加Ag、Pb和Cu对HCB均具有良好的催化脱氯能力,当Ag/Fe、Pb/Fe和Cu/Fe的最佳比例分别为0.2%、0.5%和1%时,反应2 h后HCB的脱氯率分别达到93.5%、88.5%和49.6%;同时,由于催化金属均匀附着在零价铁表面可以形成更多的微型原电池,故增加双金属投加量可有效提高HCB脱氯速率,0.1 g Pb/Fe对HCB脱氯率为38.3%,而0.8 g Pb/Fe对HCB脱氯率可达到88.6%;另外,离子强度增大对HCB的脱氯也有一定促进作用,在Na2SO4浓度分别为0、0.05和0.5 mol·L-1的3个反应器中,反应2 h后HCB脱氯率分别达到93.5%、98.0%和98.9%.  相似文献   

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