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1.
以TiO2为载体,采用共沉淀法制备了3种双金属催化剂(Co-Mn/TiO2、Ce-Mn/TiO2和Nb-Mn/TiO2),与低温等离子体(NTP)协同对氯苯进行降解,并通过XRD、SEM、TEM、BET、XPS、H2-TPR和O2-TPD手段表征其物化性质,以阐明不同催化剂对氯苯的等离子体催化降解差异.结果显示,与单独的NTP相比,双金属催化剂耦合NTP可显著提高氯苯的降解效率和矿化率,减少有毒副产物的产生.Co-Mn/TiO2的催化活性优于Ce-Mn/TiO2和Nb-Mn/TiO2,在氯苯初始浓度为300 mg·m-3,气体停留时间为2 s,放电电压为15 kV的工况条件下,Co-Mn/TiO2耦合的NTP系统对氯苯的降解效率和CO2选择性分别达78.14%和51.02%,其O3的排放浓度为211 mg·m-3.表征结果也验证了以上结论,3种催化剂的金属氧化物均在TiO2表面高度分散,催化剂的比表面积为51~64 m2·g-1.Co-Mn/TiO2催化剂表面的高Mn4+/Mn3+比和Oads含量呈现出更多的氧空位,增大了氧迁徙率,因而表现出最高的催化活性和催化氧化性能.研究表明,双金属锰基催化剂耦合NTP降解氯苯具有很好的应用前景.  相似文献   

2.
钙钛矿LaMnO3负载贵金属在催化氧化碳烟中的作用   总被引:1,自引:1,他引:0  
采用共沉淀法制备钙钛矿LaMnO3,并用浸渍法在LaMnO3上负载不同的贵金属得到系列催化剂.利用程序升温氧化反应对催化剂催化氧化碳烟的性能进行了测试.程序升温还原(H2-TPR)、BET、XRD、SEM和FT-IR等表征手段对催化剂进行了表征.结果表明,当Pd的负载量在0.5%时,催化剂Pd/LaMnO3的催化性能最好,和单独的LaMnO3相比,最高燃烧速率温度降低了40℃.当负载量较小和较多时,碳烟起燃温度反而会比LaMnO3高.在5种贵金属负载的催化剂中,其中Pd催化性能最好,依次为Au、Ru、Pt和 Rh.TPR测试表明贵金属的负载有助于钙钛矿中Mn4+的还原,对高温时Mn3+的还原作用不大.XRD衍射角向低角度出现了少许偏移,显示负载在表面的贵金属部分进入钙钛矿LaMnO3的晶格结构中,使其晶粒增大;BET和SEM结果表明催化剂在反应后出现了轻微团聚现象.IR图谱显示反应前后,主要特征红外吸收带没有明显变化, 表明催化剂具有较好的结构稳定性.适量的贵金属在钙钛矿LaMnO3上负载,能够有效地提高催化燃烧碳烟的活性.  相似文献   

3.
张晓  胡春  张丽丽  石宝友 《环境科学学报》2020,40(11):3895-3904
采用醇助水热法制备了新型生物质炭修饰的α-FeOOH类芬顿催化剂(BC-FeOOH),并通过扫描电子显微镜(SEM)、透射电子显微镜(TEM)、X射线衍射(XRD)、傅里叶变换红外光谱(FTIR)对催化剂进行了表征,证明生物质炭(BC)成功引入到α-FeOOH中.以罗丹明B(RhB)为目标污染物,考察了BC修饰量、催化剂及H2O2投加量对其催化效率的影响.结果表明,BC的引入可以极大地提高FeOOH的类芬顿催化性能.在pH中性、催化剂投加量0.6 g·L-1、H2O2初始浓度10 mmol·L-1的条件下,BC-FeOOH(22.2% BC)对RhB的降解率可达到90%,重复利用5次活性仍可保持在80%左右,且铁离子溶出浓度仅为0.08 mg·L-1.进一步通过ESR在不同体系中的测试结果表明,BC的引入不仅可促进H2O2有效还原分解产生更多的羟基自由基(·OH),而且增强了催化剂与污染物RhB的相互作用,促使污染物失电子氧化降解,从而提高了FeOOH的催化活性及催化稳定性.  相似文献   

4.
采用水热合成法成功制备出MnFe2O4磁性纳米棒(s-MnFe2O4),并考察了商品化的Fe3O4、MnFe2O4和合成的s-MnFe2O4纳米棒这3种磁性纳米颗粒作为非均相Fenton催化剂降解水中四环素抗生素的性能.同时,采用X射线衍射(XRD)、透射电镜(TEM)、N2吸附-脱附、振动样品磁强计(VSM)及X射线光电子能谱(XPS)等技术对催化剂的理化性质进行了表征.非均相Fenton催化降解四环素的结果表明,s-MnFe2O4具有最高的催化活性,反应180 min,四环素的去除率可以达到87.6%,TOC的去除率达到47.5%.自由基捕获试验证实了羟基自由基(·OH)是非均相Fenton氧化过程中的主要活性物种.s-MnFe2O4磁性纳米棒的高催化活性归因于其表面拥有较高含量的Mn3+和Fe2+物种,它们的存在能加速界面电子的转移效率,从而促进·OH的生成.合成的s-MnFe2O4催化剂具有良好的稳定性,循环使用6次,四环素的去除率仅从87.6%降低到80.2%,且氧化过程中活性组分的流失很少.  相似文献   

5.
活性炭-Fenton组合法去除水中PAEs的研究   总被引:2,自引:1,他引:1  
孙大贵  陶长元  刘作华  杜军  刘仁龙 《环境科学》2007,28(12):2734-2739
采用活性炭-Fenton组合方法催化氧化去除水中的邻苯二甲酸酯(PAEs),研究了H2O2、Fe2+-、H2O2/Fe2+-及活性炭的用量、pH值、反应时间以及PAEs的初始浓度等对水中PAEs去除率的影响.结果表明,在Fenton试剂与活性炭的协同作用下,对PAEs具有较好的去除效果.PAEs水溶液(DMP、DEP、DBP、DOP各为12 mg·L-1),经活性炭-Fenton法处理15 h后,PAEs的平均去除率可达到99.1%.  相似文献   

6.
铁促双电极电化学氧化处理丙烯腈生产废水的研究   总被引:1,自引:0,他引:1  
褚衍洋  张钦辉  钱翌  白卯娟 《环境科学》2009,30(7):1949-1954
采用钛基二氧化锡(Ti/SnO2)和金属铁构成组合阳极,并以石墨为阴极,研究了铁促双电极电化学氧化处理丙烯腈生产废水的效果及反应过程的相关规律.结果表明,与传统电化学氧化相比,采用组合阳极的双电极氧化过程获得了更高的有机物去除率并提高了电流效率.在相同电压下,当不外加H2O2时,COD去除率比采用传统电化学氧化提高11.0%~13.8%,电流效率提高8.0%~15.0%,而当外加H2O2浓度为2 200 mg·L-1,且电压为4.0V时,COD去除率达74.6%, TOC去除率达67.9%.随着外加H2O2浓度的增加,COD和TOC去除率增加.反应初始阶段H2O2浓度较高而Fe2+浓度很低,随反应时间延长H2O2浓度迅速下降而Fe2+浓度则逐渐升高.反应过程中H2O2与Fe2+浓度变化速率与电压密切相关. H2O2初始浓度一定的情况下,阳极通电时间对电流效率影响显著.双电极电化学氧化对丙烯腈生产废水色度也具有良好的去除作用.铁促双电极电化学氧化为有机废水的处理提供了一个新的选择.  相似文献   

7.
分别以Zn(CH3COO)2·2H2O、Mn(CH3COO)3·2H2O和Co(CH3COO)2·4H2O为锌源、锰源和钴源,采用溶胶-凝胶自燃烧法成功制备了ZnMnxCo2-xO4x=0~2)复合物,并用X射线衍射和X射线光电子能谱对其进行表征.同时,还研究了Mn/Co物质的量比、催化剂用量及PMS用量对目标污染物降解的影响.结果表明,该复合物可催化活化过一硫酸钾(PMS)降解有机污染物,当催化剂中x=0.8,催化剂投加量为0.2 g·L-1,PMS用量为0.4 mmol·L-1(0.25 g·L-1)时,20 μmol·L-1(10 mg·L-1)罗丹明B(RhB)可在15 min内完全降解.ZnMn0.8Co1.2O4的高催化活性主要归功于Mn3+和Co2+的协同效应.将ZnMnxCo2-xO4-PMS体系用于亚甲基蓝、结晶紫、金橙、双酚A、4-氯酚等其他污染物的降解,也取得了较好的效果.基于电子自旋共振ESR和自由基猝灭实验的结果,可以推测该反应体系中活性物种为硫酸根自由基和羟基自由基.  相似文献   

8.
采用溶胶凝胶法制备了镧掺杂的铜锰镧铈催化剂,研究了其对对二甲苯的催化性能.通过BET、SEM、H2-TPR、XRD和XPS等对不同元素比例的催化剂进行表征,探讨了催化剂结构和性能的关系;同时,研究了不同影响因素(初始浓度、空速、O2含量和混合物)对其催化氧化性能的影响;最后,利用FT-IR、XRD和 GC-MS对降解产物进行分析,探究了其催化降解对二甲苯的机理.结果表明,La掺杂增加了催化剂的比表面积和孔体积,以及表面氧含量,抑制了晶体形成,增强了催化活性.Cu-Mn-La-Ce(1:2:1:1)催化剂性能最好,在初始浓度为600 mg·m-3,空速为15000 h-1,20% O2的条件下,其T90为230 ℃.对二甲苯的降解率随着初始浓度、空速的增加而降低,随着O2含量的增加而增加.气流中混入苯提高了对二甲苯的降解率.对二甲苯催化反应后催化剂表面的 O—H、C=O、C—H和金属—氧键都相应减少,降解中间产物主要为对甲基苯甲醛和对甲基苯甲酸.降解反应涉及MVK机理,对二甲苯先氧化成对甲基苯甲醛,再氧化成对甲基苯甲酸,最终生成CO2、H2O.  相似文献   

9.
铁铜双金属有机骨架MIL-101(Fe,Cu)活化双氧水降解染料性能   总被引:1,自引:0,他引:1  
梁贺  刘锐平  安晓强  刘会娟 《环境科学》2020,41(10):4607-4614
针对非均相芬顿传质效率低和Fe(Ⅲ)Fe(Ⅱ)转化慢导致活性低等问题,采用溶剂热法制备铁铜双金属有机骨架材料[MIL-101(Fe,Cu)],并研究了材料界面性质、催化降解染料(亚甲基蓝)性能以及活化催化机制.结果表明,MIL-101(Fe,Cu)晶体结构完整且呈三维八面体形状;比表面积和平均孔径分别为667.2 m2 ·g-1和1.9 nm,可充分暴露反应活性位点.MIL-101(Fe,Cu)在广谱pH范围可活化H2 O2高效降解亚甲基蓝.当pH=5、反应20 min,MIL-101(Fe,Cu)/H2 O2对20 mg ·L-1亚甲基蓝的去除率为100%,较MIL-101(Fe)/H2O2和单独H2 O2分别提高43.1%和88.9%.自由基猝灭实验与反应前后铁和铜价态变化结果表明,羟基自由基(·OH)是MIL-101(Fe,Cu)/H2 O2催化降解亚甲基蓝的主要活性物种;Cu(Ⅱ)掺杂引入新的活性位点,且Cu(Ⅱ)/Cu(Ⅰ)循环和Fe(Ⅲ)/Fe(Ⅱ)循环可协同产生·OH,进而提高催化效率.MIL-101(Fe,Cu)作为新型非均相类芬顿催化剂,无需复杂pH调节即可获得良好催化效果,在工业废水处理上具有较好地应用前景.  相似文献   

10.
以有机染料罗丹明B为目标污染物,利用光电芬顿方法对其进行降解研究。研究汇总考察了芬顿试剂(二价铁盐、双氧水)的用量及比例、初始pH值、电流强度等对罗丹明B降解效果的影响。实验结果表明:芬顿试剂H2O2?/?Fe2+的最佳物质的量比为1∶1,Fe2+浓度降低或H2O2浓度升高,罗丹明B降解效果增强;罗丹明B在pH=3.0的酸性体系中降解效果最好;电流强度为0.005 A时,罗丹明B降解效果好且耗能最低。在H2O2?/?Fe2+物质的量比为1∶1、电流为0.005 A、初始pH=3.0、H2O2初始浓度为1.0 mM条件下,以350 nm紫外光照射的光电芬顿反应降解初始浓度为0.1 mM的罗丹明B溶液,处理10 min后罗丹明B去除效率可达99%以上。  相似文献   

11.
Energy-saving and efficient monolithic catalysts are hotspots of catalytic purification of industrial gaseous pollutants. Here, we have developed an electrothermal catalytic mode, in which the ignition temperature required for the reaction is provided by Joule heat generated when the current flows through the catalyst. In this paper, Mn/NiAl/NF, Mn/NiFe/NF and Mn/NF metal-based monolithic catalysts were prepared using nickel foam (NF) as the carrier for thermal and electrothermal catalysis of n-heptane. The results indicated that Mn-based monolithic catalysts exhibit high activity in thermal and electrothermal catalysis. Mn/NiFe/NF achieve conversion of n-heptane more than 99% in electrothermal catalysis under a direct-current (DC) power of 6 W, and energy-saving is 54% compared with thermal catalysis. In addition, the results indicated that the introduction of NiAl (or NiFe) greatly enhanced the catalytic activity of Mn/NF, which attributed to the higher specific surface area, Mn3+/Mn4+, Ni3+/Ni2+, adsorbed oxygen species (Oads)/lattice oxygen species (Olatt), redox performance of the catalyst. Electrothermal catalytic activity was significantly higher than thermal catalytic activity before complete conversion, which may be related to electronic effects. Besides, Mn/NiFe/NF has good cyclic and long-term stability in electrothermal catalysis. This paper provided a theoretical basis for applying electrothermal catalysis in the field of VOCs elimination.  相似文献   

12.
Pd/TiO2对水体中2,4-二氯酚的催化加氢脱氯研究   总被引:2,自引:2,他引:0  
分别采用沉淀-沉积法和浸渍法合成了Pd/TiO2催化剂,采用透射电镜(TEM)、X射线衍射(XRD)和电感耦合等离子体发射光谱(ICP-AES)对材料进行了表征,并对2,4-二氯酚的催化加氢脱氯反应进行了研究.结果表明,2种方法制备的催化剂在加氢脱氯反应中均具有较好的效果,沉淀-沉积法制备的催化剂活性更高,当反应物初始浓度为3.11 mmol.L-1,pH为12,催化剂用量为50 mg时,45 min内2,4-二氯酚可以完成脱氯过程.酸性条件有利于反应的进行.当催化剂用量在15~80 mg时,反应初活性没有明显变化,因此催化反应过程不受传质阻力的影响.当反应物初始浓度在0.62~3.11 mmol.L-1时反应初活性随浓度的提高显著增加,但进一步增加反应物的浓度时初活性没有明显提高,因此2,4-二氯酚在催化剂上的加氢脱氯行为符合Langmuir-Hinshelwood模型,表明2,4-二氯酚的加氢脱氯受表面吸附所控制.  相似文献   

13.
Three perovskite-type catalysts prepared by citric acid method are applied to remove phenol from gas streams with the total flow rate of 300 mL/min, corresponding to a GHSV of10,000/hr. LaMnO_3 catalyst is first prepared and further partially substituted with Sr and Cu to prepare La_(0.8)Sr_(0.2)MnO_3 and La_(0.8)Sr_(0.2)Mn_(0.8)Cu_(0.2)O_3, and catalytic activities and fundamental characteristics of these three catalysts are compared. The results show that phenol removal efficiency achieved with La_(0.8)Sr_(0.2)Mn_(0.8)Cu_(0.2)O_3 reaches 100% with the operating temperature of 200°C and the rate of mineralization at 300°C is up to 100%, while the phenol removal efficiencies achieved with La_(0.8)Sr_(0.2)MnO_3 and LaMnO_3 are up to 100% with the operating temperature of 300°C and 400°C, respectively. X-ray photoelectron spectroscopy(XPS) analysis shows that the addition of Sr and Cu increases the lattice oxygen of La_(0.8)Sr_(0.2)Mn_(0.8)Cu_(0.2)O_3, and further increases mobility or availability of lattice oxygen. The results indicate that La_(0.8)Sr_(0.2)Mn_(0.8)Cu_(0.2)O_3 has the best activity for phenol removal among three catalysts prepared and the catalytic activity of phenol oxidation is enhanced by the introduction of Sr and Cu into LaMnO_3. Apparent activation energy of 48 k J/mol is calculated by Mars–Van Krevelen Model for phenol oxidation with La_(0.8)Sr_(0.2)Mn_(0.8)Cu_(0.2)O_3 as catalyst.  相似文献   

14.
采用柠檬酸络合法制备了Mn/(Mn+Ce)原子比为0.4的MnO_x-CeO_2复合氧化物,使其分别在有和无脉冲介质阻挡放电条件下,多次催化氧化碳烟.采用XRD、BET、Raman和XPS对新制备未反应过的和各次反应后的MnO_x-CeO_2进行表征.结果发现,在初次反应中,脉冲介质阻挡放电对反应具有强化作用,使MnO_x-CeO_2具备更好的活性.在放电和无放电2种条件下,催化剂第2次反应的活性均较第1次有所降低,且放电条件下降幅更大,而在第3次反应时催化剂活性在两种条件下均保持稳定状态.以上现象原因为,初次反应,两种条件下高温使MnO_x-CeO_2中Mn-Ce-O固溶体发生相分离,部分Mn析出生成了Mn_3O_4;未引入放电时催化剂表面发生不可逆还原的Mn~(4+)量更少,且拥有更多Ce~(3+)并产生了本征氧空位及更多的表面氧;放电的引入,加剧了初次反应时MnO_x-CeO_2表面Mn~(4+)向Mn~(3+)和Mn~(2+)的转化,使其具备更高的活性,但也抑制了Mn~(4+)的恢复,降低了催化剂的活性.在随后的反应中,有无放电催化剂均保持了稳定.脉冲介质阻挡放电对MnO_x-CeO_2反应的关键因素Mn~(4+)、本征氧空位和表面氧产生了重要影响,这种影响在初次反应时并不可逆,进而减弱了放电对反应的强化作用,该现象不可忽视,值得进一步研究.  相似文献   

15.
Three groups of cobalt mixed oxide catalysts(Mg/Zn-Co, Mg/Zn-Ce-C, K/Na-Mg/Zn-Ce-Co)were prepared by sol-gel or impregnation methods. The synergistic effects of transition metal, rare earth metal and alkali metal on cobalt mixed catalysts for nitrous oxide(N2O)decomposing to N2 and O2were investigated. The experimental results revealed that the catalytic activity for N2 O decomposition was promoted as Co2+was replaced partially by Zn2+/Mg2+, moreover, the characterization analysis by XRD and XPS showed that Zn2+/Mg2+replaced Co2+successfully into the spinel structure of Co3O4 and promoted significantly the catalytic activity. Especially, the addition of CeO2 and K2O/Na2O decreased the binding energy and resulted in an increase in the density of the electron cloud around Co and an improvement of the catalytic activity. Of the investigated cobalt mixed catalysts, the best catalytic activity was shown by 2% K-Zn0.5-Ce0.05-Co catalyst.  相似文献   

16.
Rod-like, hexagonal and fiber-like SBA-15 mesoporous silicas were synthesized to support MnO_x for toluene oxidation. This study showed that the morphology of the supports greatly influenced the catalytic activity in toluene oxidation. MnO_x supported on rod-like SBA-15(R-SBA-15) displayed the best catalytic activity and the conversion at 230°C reached more than 90%, which was higher than the other two catalysts. MnO_x species consisted of coexisting MnO_2 and Mn_2O_3 on the three kinds of SBA-15 samples. Large amounts of Mn_2O_3 species were formed on the surface and high oxygen mobility was obtained on MnO_x supported on R-SBA-15, according to the H_2 temperature programmed reduction(H_2-TPR)and X-ray photoelectron spectroscopy(XPS) results. The Mn/R-SBA-15 catalyst with greater amounts of Mn_2O_3 species possessed a large amount of surface lattice oxygen, which accelerated the catalytic reaction rate. Therefore, the surface lattice oxygen and high oxygen mobility were critical factors on the catalytic activity of the Mn/R-SBA-15 catalyst.  相似文献   

17.
Series of Fe/Cu-SSZ-13 catalysts with different Fe loading content were synthesized by simple one-pot strategy. The obtained catalysts were subjected to selective catalytic reduction (SCR) of NOx with NH3 and were characterized by various techniques. The results show that Fe0.63/Cu1.50-SSZ-13 catalyst with proper Fe content exhibits excellent catalytic activity with widest operation temperature window from 160 to 580°C, excellent hydrothermal stability as well as good resistance to sulfur poisoning when compared with Cu-SSZ-13, signifying its great potential for practical applications. Further characterizations reveal that the synthesized Fe/Cu-SSZ-13 catalysts present typical chabazite (CHA) structure with good crystallinity, while isolated Cu2+ and monomeric Fe3+ are revealed as the predominant copper and iron species. At low temperatures, isolated Cu2+ species act as primary active sites for SCR reaction, while monomeric Fe3+ species provide sufficient active sites for sustain the SCR activity at high temperature. Moreover, Fe over doping would lead to the damage of zeolite structure, destruction of isolated Cu2+ site, as well as the formation of highly oxidizing Fe2O3, thus causing deterioration of catalytic performances.  相似文献   

18.
方雪慧  赵洁  舒莉  高永  叶招莲 《环境科学》2015,36(6):2010-2018
采用4种不同波长的准分子光源(Xe Cl*、Kr Cl*、Xe Br*和Kr Br*)降解气相的乙酸乙酯.对比了外加3种负载型光催化剂(有机膜负载Ti O2、有机膜负载石墨烯和纱网负载Ti O2)条件下乙酸乙酯的去除率,考察了光源类型、辐射功率和气体初始浓度对去除率的影响.同时,测定了不同光源的辐射光谱和辐射功率,计算了不同反应条件下的光子效率.结果表明,乙酸乙酯去除率按Kr Br*Kr Cl*Xe Cl*Xe Br*依次降低,而Xe Cl*和Kr Br*光源降解乙酸乙酯气体可以得到较高的光子效率;有机膜负载Ti O2比不加催化剂时乙酸乙酯去除率和光子效率都有所提高,但提高幅度不大.气体流速和乙酸乙酯初始浓度升高,光子效率升高.采用Kr Br*准分子灯直接光解乙酸乙酯,实验条件为:辐射功率0.76 W,乙酸乙酯初始浓度946mg·m-3,气体流速600 m L·min-1,光子效率为5.63%.  相似文献   

19.
采用电晕放电与液相络合催化协同同时去除烟气中SO2和NO,电压、水流量、乙二胺合钴浓度、pH、SO2和NO初始浓度以及气流量对同时去除SO2和NO效率的影响进行了实验研究.结果表明:NO去除率随着放电电压、水流量、乙二胺合钴浓度、pH的增加而增加,而随SO2和NO初始浓度、烟气流量的增大而减小;SO2去除率也随放电电压,水流量的增加而增加,随烟气流量的增加而下降,但溶液pH,SO2和NO初始浓度和乙二胺合钴浓度对其影响很小.溶液中加入Mn2+和尿素能分别增强SO2和NO的去除效果.最佳条件为:电压25 kV、水流量80 L·h-1,乙二胺合钴浓度0.02 mol·L-1,烟气流量1.0 m3·h-1、尿素浓度0.02 mol·L-1,Mn2+浓度为0.02 mol·L-1时,NO和SO2去除率分别可达68%和94%,对应能量消耗分别为22.2 g·k Wh-1和75.2 g·k Wh-1.  相似文献   

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