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1.
采用微波激发Kr/I2混合气体产生的206 nm准分子紫外光降解水相含N-杂环化合物,考察了206 nm准分子光直接光解模拟喹啉和吲哚废水的效果.结果表明,初始浓度为20 mg.L-1的吲哚溶液,光照80 min时去除率达62.0%,150 min时TOC去除达50.7%.光照时间、初始浓度和溶液的pH值对喹啉的降解有一定的影响.相同条件下,喹啉的去除率和TOC损失率都明显低于吲哚.光解后的溶液经旋转蒸发提取,顶空注射进入气相色谱/质谱联用仪(GC/MS)定性分析,结果表明,光照下喹啉发生开环降解,生成了甲苯、二甲苯、酸、醛和酯类化合物,而吲哚降解过程中发生了聚合反应.最后,根据中间产物,推断了206 nm准分子光源光解喹啉和吲哚的机制.  相似文献   

2.
研究了厌氧反硝化产甲烷体系中,典型含氮杂环化合物喹啉、吲哚作为共基质碳源,厌氧生物对二者的降解特性,及群落分析.结果表明:在共基质条件下,喹啉的存在对吲哚的生物降解有抑制作用,且抑制随喹啉浓度的升高而升高;吲哚的存在对喹啉的生物降解有促进作用,但吲哚浓度过高(150mg/L)抑制了喹啉的降解;喹啉、吲哚共基质时,二者的降解都遵循零级反应动力学;通过GC-MS分析,喹啉的主要中间代谢产物分别为2(1H)喹诺酮与8-羟基-2(1H)喹诺酮;吲哚的主要代谢产物为2-吲哚酮与靛红;通过高通量测序对共基质体系的微生物群落进行分析,发现厌氧功能菌群得到富集,细菌菌门以变形菌门Proteobacteria为主,菌纲以Gammaproteobacteria和Betaproteobacteria为主,菌属以Acinetobacter,Candidimonas,Azospira,和Desulfomicrobium为主.  相似文献   

3.
吲哚是一种典型的氮杂环芳烃污染物,在焦化废水和畜牧废水中大量存在.本研究从近海泥沙中分离纯化得到一株高效吲哚降解菌DCX,经16S rRNA基因序列比对分析,鉴定其为普罗维登斯菌属(Providencia sp.).该菌株能够以吲哚为唯一碳源,在28 h内将100 mg·L~(-1)吲哚完全降解.液相色谱/飞行时间-质谱联用(LC/TOF-MS)的结果表明,靛蓝、靛红、靛红酸及邻氨基苯甲酸是菌株DCX降解吲哚过程中的中间产物.此外,本研究中发现,外加营养物质可以促进菌株DCX降解吲哚,特别是加入酵母浸粉后,反应体系中会产生大量靛蓝.利用表面响应法确定菌株DCX转化吲哚合成靛蓝的最优条件为:吲哚207.49 mg·L~(-1),酵母浸粉2.9 g·L-1,接菌量4.23%(V/V),并且在最优条件下,靛蓝产率达到最高(9.90%),比初始条件提高了4.38倍.  相似文献   

4.
戴启洲  马文姣  沈宏  陈浚  陈建孟 《环境科学》2012,33(7):2410-2418
采用电沉积法制备了新型稀土和氟树脂共掺杂二氧化铅电极,并用于声电氧化体系处理扑热息痛(APAP)废水.结果表明,采用稀土掺杂电极后,APAP的去除效率及矿化效率大幅度增加,显示出催化效率的显著提升.工艺因素作用规律结果表明,Ce-PTFE共掺杂PbO2电极在电解质14.2 g.L-1、功率为49.58 W.cm-2、频率50 Hz、pH为3、电流密度为71.43 mA.cm-2的条件下去除APAP效果最佳.反应进行2 h后,500 mg.L-1APAP去除率为92.20%,COD和TOC的去除率分别为79.95%和58.04%,电流效率高达45.83%.结合GC-MS、HPLC、IC等分析手段,检测到了主要中间产物包括苯醌,苯甲酸、乙酸、顺丁烯二酸,乙二酸、甲酸等,推测了APAP的可能降解途径.  相似文献   

5.
BDD和PbO2电极电化学氧化苯并三氮唑的对比研究   总被引:1,自引:1,他引:0  
伍娟丽  张佳维  王婷  倪晋仁 《环境科学》2015,36(7):2540-2546
分别构建了以掺硼金刚石膜电极(BDD)和二氧化铅电极(Pb O2)为阳极的电化学体系,对比考察了两种电极对难降解有机污染物苯并三氮唑(BTA)的降解及体系的矿化效果,并从电极产生羟基自由基(·OH)的数量与形态角度深入探讨了影响电极矿化能力大小的内在因素.结果表明:1BDD和Pb O2电极均对BTA有较好的降解效果,电解12 h后BTA去除率分别为99.48%和98.36%,但BDD电极的矿化能力明显强于Pb O2电极,电解12 h后矿化率分别为87.69%和35.96%;2BDD体系阳极·OH产生速率和阴极H2产生速率均低于Pb O2体系,即表面活性位点数量少于Pb O2电极,因此·OH数量不是决定矿化能力大小的关键;3BDD电极表面吸附氧活性更强,结合能(532.37e V)大于Pb O2(530.74e V),且表面吸附层更薄,产生的·OH形态更自由,是决定其具有更大矿化能力的关键因素.  相似文献   

6.
通过零价铁(ZVI)预厌氧与微生物燃料电池(MFC)的协同作用,研究其对单一基质碳源吲哚的降解特性、MFC产电性能及群落分析.结果表明:ZVI(4 g·L-1)的预厌氧可明显促进吲哚(250 mg·L-1)在MFC体系中的降解;其中吲哚与TOC在96 h内的降解率分别为97.17%和89.50%,且吲哚的降解符合一级反应动力学模型;体系中MFC最大输出电压和功率密度可达600 mV和439.55 mW·m-2;通过LC-MS分析,吲哚在协同体系中的主要中间代谢产物为靛红和水杨酸.高通量测序结果表明,ZVI预厌氧体系的引入有利于MFC体系中梭菌(Clostridium sensu stricto)、链霉菌(Streptomyces sp.)、热单胞菌(Thermomonas)的富集与吲哚的厌氧降解;同时促进假单胞菌(Pseudomonas)和梭菌等在代谢过程中的电子转移,提高了MFC的产电性能.  相似文献   

7.
以吲哚为燃料的微生物燃料电池降解和产电特性   总被引:4,自引:1,他引:3       下载免费PDF全文
以铁氰化钾为电子受体,在两极阴阳室内使用碳毛刷纤维为电极材料构建了循环式微生物燃料电池(MFC),研究了以吲哚为单一燃料和吲哚+葡萄糖为混合燃料条件下MFC的产电特性以及对吲哚和COD的去除效果.结果表明,以1000mg/L葡萄糖+250mg/L吲哚为混合燃料时,MFC的最高电压和最大功率密度分别为660mV和51.2W/m3(阳极),MFC运行10h对吲哚和COD的去除率分别为100%和89.5%;分别以250,500mg/L吲哚为单一燃料时,MFC的平均最高电压分别为115,118mV,最大功率密度分别为2.1,2.3W/m3(阳极).在MFC中,250,500mg/L吲哚被完全降解的时间分别为6,30h.MFC能够利用吲哚为燃料,在实现高效降解吲哚的同时对外产生电能,可用于处理含有毒且难降解有机物的焦化工业废水.  相似文献   

8.
在好氧条件下,以吲哚作为唯一碳源和能源,从处理焦化废水的活性污泥中分离得到一株细菌,编号CX-YD-XH.研究了该菌在好氧条件下对吲哚的降解性能及环境因素对吲哚降解影响.结果表明,菌种CX-YD-XH对吲哚具有较高的降解性能,去除效率可达85%.弱碱条件有利于吲哚的降解;20~35℃范围内均可有效降解吲哚,但温度为35℃时降解较快;振荡速度对最终去除效率没有明显影响,但适当振荡速度(60 r/min)可有效提高降解速率;在适当的菌种浓度和底物浓度水平上,吲哚具有较高的降解效率.  相似文献   

9.
等离子喷涂法制备了钛基亚氧化钛电极(Ti/Ti_4O_7),以该电极为阳极,研究了电化学氧化法对水中美托洛尔的去除效果.考察了电流密度(5~25 mA·cm~(-2))、极板间距(5~25 mm)和初始浓度(3~50 mg·L~(-1))对美托洛尔电化学降解效率的影响;分析美托洛尔电化学降解过程中溶液总有机碳(TOC)和毒性的变化,鉴别反应中间产物并计算其毒性.研究表明:Ti/Ti_4O_7阳极电化学降解美托洛尔反应符合一级反应动力学规律(R20.95),降解效率随电流密度的增大而增大,随极板间距和初始浓度的增大而减小;TOC去除率在反应40 min后可达56.5%;反应过程中产生了质合比为266、250、223和207的中间产物,造成美托洛尔溶液的生物毒性在电化学反应过程中先升高后下降.  相似文献   

10.
采用金刚石薄膜(BDD)电极电化学降解高浓度的二硝基重氮酚废水,在实验过程中,对BDD电极处理高浓度二硝基重氮酚废水的处理,考察了电流密度、电解质的种类和浓度对处理效果的影响。结果表明:BDD电极降解二硝基重氮酚废水中的有机类物质有明显效果。在电流密度为20 mA/cm2时,电解效果明显,电流效率高;使用KCl为电解质时,电解效果显著,并且对电极寿命无影响;当电解质KCl质量浓度为2.0 g/L时,电解效果最优。  相似文献   

11.
The anodic oxidation of aqueous solutions containing dimethyl phthalate (DMP) up to 125 mg/L with sodium sulfate (Na2SO4) as supporting electrolyte within the pH range 2.0–10.0 was studied using a one-compartment batch reactor employing a boron-doped diamond (BDD) as anode. Electrolyses were carried out at constant current density (1.5–4.5 mA/cm2). Complete mineralization was always achieved owing to the great concentration of hydroxyl radical (.OH) generated at the BDD surface. The e ects of pH, apparent current density and initial DMP concentration on the degradation rate of DMP, the specific charge required for its total mineralization and mineralization current e ciency were investigated systematically. The mineralization rate of DMP was found to be pH-independent and to increase with increasing applied current density. Results indicated that this electrochemical process was subjected, at least partially, to the mass transfer of organics onto the BDD surface. Kinetic analysis of the temporal change of DMP concentration during electrolysis determined by High Performance Liquid Chromatography (HPLC) revealed that DMP decay under all tested conditions followed a pseudo first-order reaction. Aromatic intermediates and generated carboxylic acids were identified by Gas Chromatography- Mass Spectrometry (GC-MS) and a general pathway for the electrochemical incineration of DMP on BDD was proposed.  相似文献   

12.
掺硼金刚石(BDD)电极在电化学氧化难生物降解性废水时具有电化学性能良好、处理效果好等特点,因而受到广泛关注.本试验采用BDD电极电化学氧化榨菜废水,并考察了稀释比、初始pH值、电流密度、极板间距等参数对COD、氨氮(NH3-N)去除率的影响.试验结果表明:在稀释比为1∶2、电流密度50 mA·cm-2、未调节pH值、极板间距为15 mm的最优工况下,COD、NH3-N去除率分别为96.9%、100%.COD去除率满足线性方程y=0.435t(R2=0.9899),NH3-N去除率满足多项式拟合方程y=0.53+0.936t+0.031t2-3.46×10-4t3(R2=0.9956).研究表明,BDD电极电化学氧化榨菜废水是一种有效的高级氧化工艺.  相似文献   

13.
为发展废水中双酚A(BPA)的处理技术和保护水环境安全,采用“电沉积-热分解”法制备负载多壁碳纳米管(MWCNTs)的多孔Ti/SnO2-Sb-Ni电极,研究了电极对BPA的去除能力、动力学特征和矿化效率,初步分析了BPA的降解途径.结果表明,当浸渍液中n(Sn)∶n(Sb)∶n(Ni)为100∶10∶1、ρ(MWCNTs)为0.8g·L-1时,制备的电极对BPA的去除效果最好;负载MWCNTs使得电极表面的晶体尺寸更小,可增大电极的比表面积,为电催化反应提供更多的活性位点,进而提高电极的电催化效率.当c(Na2SO4)为10mmol·L-1、反应液初始pH为5和电流密度为50 mA·cm-2时,对50 mg·L-1的BPA降解60 min时去除效率达到99.76%;去除过程符合一级反应动力学方程,速率常数为0.096 min-1;电解120 min时,TOC去除率达到67.01%.采用液相色谱-串联质谱分析法(...  相似文献   

14.
A novel visible light-active photocatalyst formulation(NdT/OP) was obtained by supporting N-doped TiO_2(NdT) particles on up-conversion luminescent organic phosphors(OP). The photocatalytic activity of such catalysts was evaluated for the mineralization process of spiramycin in aqueous solution. The effect of NdT loading in the range 15–60 wt.% on bulk and surface characteristics of NdT/OP catalysts was investigated by several chemicophysical characterization techniques. The photocatalytic performance of NdT/OP catalysts in the removal of spyramicin from aqueous solution was assessed through photocatalytic tests under visible light irradiation. Total organic carbon(TOC) of aqueous solution,and CO and CO_2 gas concentrations evolved during the photodegradation were analyzed. A dramatic enhancement of photocatalytic activity of the photostructured visible active NdT/OP catalysts,compared to NdT catalyst,was observed. Only CO_2 was detected in gas-phase during visible light irradiation,proving that the photocatalytic process is effective in the mineralization of spiramycin,reaching very high values of TOC removal. The photocatalyst NdT/OP at 30 wt.% of NdT loading showed the highest photocatalytic activity(58%of TOC removed after 180 min irradiation against only 31% removal after 300 min of irradiation of NdT). We attribute this enhanced activity to the high effectiveness in the utilization of visible light through improved light harvesting and exploiting. OP particles act as "photoactive support",able to be excited by the external visible light irradiation,and reissue luminescence of wavelength suitable to promote NdT photomineralization activity.  相似文献   

15.
采用铁刨花-Fenton-絮凝工艺处理染料生产废水,考察了不同Fe~(2+)与H_2O_2摩尔比(1∶3~1∶15)、铁刨花反应时间(2~5h)、Fenton氧化反应时间(20~80 min)下可吸附性有机卤代物(AOX)、色度和总有机碳(TOC)的去除效果.结果表明,AOX、色度和TOC去除率随Fe~(2+)与H_2O_2摩尔比的降低先升高后减少,随铁刨花和Fenton反应时间的增加而持续升高.最优化条件为Fe~(2+)与H_2O_2摩尔比1∶8、铁刨花反应时间4 h和Fenton反应时间60 min,该条件下AOX、色度和TOC的去除率分别为94.2%、93.7%和27.2%.比较实验结果表明,铁刨花-Fenton-絮凝组合工艺对废水AOX、色度和TOC的去除效果远优于铁刨花处理、Fenton氧化、絮凝沉淀的单个技术或两两技术组合效果.GC-MS分析表明,废水中的有机卤代物和苯胺类污染物得到高效去除,此外硝基苯类、苯酚类、苯甲醛类、醚类、腈类和杂环化合物等有毒有害物质也均得到高效去除.叔丁醇捕获·OH实验表明·OH在Fenton反应中的主导作用.  相似文献   

16.
Electrochemical degradation of 2,4-dichlorophenol (2,4-DCP) in aqueous solution was investigated over Ti/SnO2-Sb anode. The factors influencing the degradation rate, such as applied current density (2-40 mA/cm2), pH (3-11) and initial concentration (5-200 mg/L) were evaluated. The degradation of 2,4-DCP followed apparent pseudo first-order kinetics. The degradation ratio on Ti/SnO2-Sb anode attained > 99.9% after 20 min of electrolysis at initial 5-200 mg/L concentrations at a constant current density of 30 mA/cm2 with a 10 mmol/L sodium sulphate (Na2SO4) supporting electrolyte solution. The results showed that 2,4-DCP (100 mg/L) degradation and total organic carbon (TOC) removal ratio achieved 99.9% and 92.8%, respectively, at the optimal conditions after 30 min electrolysis. Under this condition, the degradation rate constant (k) and the degradation half-life (t1/2) were 0.21 min-1 and (2.8±0.2) min, respectively. Mainly carboxylic acids (propanoic acid, maleic acid, propanedioic acid, acetic acid and oxalic acid) were detected as intermediates. The energy efficiencies for 2,4-DCP degradation (5-200 mg/L) with Ti/SnO2-Sb anode ranged from 0.672 to 1.602 g/kWh. The Ti/SnO2-Sb anode with a high activity to rapid organic oxidation could be employed to degrade chlorophenols, particularly 2,4-DCP in wastewater.  相似文献   

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