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1.
研究了用V2O5/TiO2催化剂同时脱除烟气中的SO2和NO,考察了H2还原温度及其它反应条件对SO2和NO脱除率的影响。结果表明,经H2还原后所制得的V2O5/TiO2催化剂可以提高脱硫脱硝活性,最佳还原温度为700℃;在450~500℃的烟气温度范围内,该催化剂有较佳的脱硫脱硝活性;在相同反应温度下,空速越大,SO2和NO的脱除率越低;烟气中的氧气可大大提高V2O5/TiO2的脱硫脱硝活性,且氧气体积含量在5%~10%范围内变化时,对SO2和NO脱除率的影响较小。  相似文献   

2.
V2O5-WO3/TiO2脱硝催化剂的制备及其性能   总被引:10,自引:0,他引:10  
对选择性催化还原脱硝用催化剂V2O5-WO3/TiO2的制备工艺进行了实验研究.采用溶胶-凝胶法制得TiO2凝胶,对凝胶进行不同条件下的干燥和煅烧处理,然后通过浸渍法在TiO2上依次负载WO3和V2O5,最终得到V2O5-WO3/TiO2催化剂.结果表明,TiO2凝胶的处理温度对催化剂结构和脱除NO的性能有一定的影响,TiO2凝胶干燥温度为105 ℃时制得的催化剂活性较高,在实验条件下NO脱除率最高可达98.3%.  相似文献   

3.
Ce-Mn/TiO2催化剂选择性催化还原NO的低温活性及抗毒化性能   总被引:2,自引:1,他引:2  
刘炜  童志权  罗婕 《环境科学学报》2006,26(8):1240-1245
用浸渍法制备了Ce-Mn/TiO2催化剂,考察了其在O2存在条件下选择性催化还原(SCR)NO的活性和抗SO2及H2O毒化的性能.结果表明,反应温度、空间速度、NO进口浓度和NH3/NO摩尔比对NO转化率的影响较小;在120℃的低温条件下,该催化剂显示了良好的催化活性,NO的转化率始终保持在95%以上.该催化剂有良好的同时抗SO2和H2O毒化能力.  相似文献   

4.
Mn-Ce-Fe/TiO2低温催化还原NO的性能   总被引:15,自引:4,他引:11  
寻洲  童华  黄妍  童志权 《环境科学学报》2008,28(9):1733-1738
采用浸渍法制备了Mn-Ce-Fe/TiO2.研究了其组分配比、焙烧温度等制备条件和NO进口浓度、空速、O2含量、NH3/NO摩尔比等操作条件对Mn-Ce-Fe/TiO2 NH3低温还原NO活性的影响,并探讨了H2O、SO2对Mn-Ce-Fe/Ti O2活性的影响.结果表明,Mn:Fe:Ce摩尔比为5:2:4、500℃下焙烧的Mn-Ce-Fe/TiO2在无H2O、SO2,NO体积分数为0.1%,空速为5000h~,反应温度为130℃、O2含量为6%、NH3/NO摩尔比为1.1的条件下,NO转化率接近98%,Fe的加入大大提高了催化剂的单独抗水和同时抗硫抗水性能,130℃下,体积分数10%的H2O对该催化剂的活性基本没有影响,转化率保持在96%以上;通硫、水后的400min内,活性仅下降3%.单独通人S02时,该催化剂中毒程度较深.该催化剂有望应用于基本不含SO2的燃气锅炉烟气和不含SO2的硝酸尾气等NO,工业废气的低温脱硝.  相似文献   

5.
Mn-Ce-Co/TiO2催化剂低温脱硝活性研究   总被引:4,自引:4,他引:0  
以纳米TiO2为载体,通过浸渍法制备一系列改性Mn-Ce/TiO2脱硝催化剂.通过实验考察不同元素组分催化剂的脱硝活性,同时探讨金属氧化物掺杂对提高催化剂低温脱硝活性的机理.活性测试结果显示,Co掺杂能最有效地提高Mn-Ce/TiO2催化剂在低温段的SCR脱硝活性,在n(Co):n(TiO2)=0.08~0.10、体积空速为35100h-1的条件下,催化剂在120℃时就能达到80%以上的NO去除率,140℃左右时的NO去除率接近100%.BET、XRD、TPR、TPD等表征测试结果表明,Co掺杂可改进Mn-Ce/TiO2催化剂的物化特性,增加催化剂表面的活性酸位点及活性氧数量,提高催化剂的氧化还原能力,从而提高Mn-Ce/TiO2催化剂低温SCR脱硝活性.  相似文献   

6.
SO2对Mn-Cu-Ce/TiO2低温选择催化还原NO的影响   总被引:2,自引:1,他引:1  
研究了SO2对Mn-Cu-Ce/TiO2选择催化还原 NO 的影响,并采用傅立叶变换红外光谱、x射线衍射光谱及暂态响应技术对Mn-Cu-Ce/TiO2催化剂的SO2中毒机理进行了探讨.结果表明,SO2 可强吸附在Mn-Cu-Ce/TiO2表面的 CuO 活性位上.并生成 CuSO4,由于 CuSO4 在低温时对SCR 反应有抑制作用,因而,催化剂的活性下降;暂态响应实验结果表明,Mn-Cu-Ce/TiO2催化剂上的SCR反应主要遵循 Langmuir-Hinshelwood机理.通过对催化剂进行硫酸化或 NO 预吸附,可以消除SO2对 Mn-Cu-Ce/TiO2的毒害作用.  相似文献   

7.
Fe-MnOx-CeO2/ZrO2低温催化还原NO性能研究   总被引:2,自引:2,他引:0  
刘荣  杨志琴 《环境科学》2012,33(6):1964-1970
以纳米ZrO2为载体,用浸渍法制备出Fe-MnOx-CeO2/ZrO2催化剂,考察了活性组分配比和助剂负载量对催化剂低温NH3选择性催化还原NO活性的影响,并对催化剂进行了XRD、SEM、EDS和BET表征;探讨了温度、H2O和SO2对Fe-MnOx-CeO2/ZrO2催化剂低温下NH3选择性催化还原NO的影响,结果表明,无SO2和H2O条件下,8%Fe-10%MnOx-CeO2/ZrO2催化剂具有良好的催化活性和稳定性.120℃时,催化剂的脱硝效率为85.23%,当温度升至180℃时,脱硝效率可达到92.0%.SO2和H2O共存条件下,催化剂易失活,采用傅立叶变换红外光谱对各反应阶段的催化剂进行了表征,对其失活机制进行深入研究,结果表明,催化剂失活的主要原因是催化剂表面硫酸铵盐的沉积和催化剂本身活性成分的硫酸盐化.  相似文献   

8.
MnOx/TiO2-ZrO2催化剂的制备及低温催化还原NO的研究   总被引:1,自引:0,他引:1  
采用共沉淀法制备了TiO2-ZrO2复合氧化物,以其为载体采用等体积浸渍法制备了不同负载量的MnOx/Ti02-Zr02催化剂.低温下以NH3为还原剂考察了催化剂选择性催化还原(SCR)NO的活性.借助N2吸附、XRD、热重-差示扫描量热法(TG-DSC)对催化剂进行微观表征和分析.结果表明,负载量为5%时,生成的MnO2高度分散,NO的转化率较高;负载量为10%和15%时,出现MnO2晶相,NO的转化率有所下降.120-240℃、体积空速为10000 h-1的条件下,3种负载量的催化剂上NO转化率均大于90%.  相似文献   

9.
采用了等体积浸渍法制备二氧化钛负载钒氧化物催化剂(V2O5/TiO2),研究了V2O5负载量、反应温度、烟气流量、氨氮比以及运行时间各因素对NH3选择性催化还原NO反应(SCR)效率的影响.研究结果表明:经过500℃温度下煅烧,烟气流量为200ml/min,负载量为7wt%的V2O5/TiO2催化剂,在400℃温度下反应,NO脱除率可达70.5%.  相似文献   

10.
在低温选择性催化还原(SCR)反应条件下考察了烟气残余SO2对Mn/TiO2和Mn-Ce/TiO2催化剂选择性催化还原活性的影响,同时对SO2的影响机理进行了探讨.结果发现,Mn/TiO2催化剂在SO2反应气氛中失活很快,硫铵盐的沉积和活性组分的硫酸化是催化剂失活的重要原因;Ce的加入可以有效地抑制催化剂活性组分的硫酸化,同时还能降低硫酸盐在催化剂表面的稳定性,从而可以提高催化剂的抗硫性.  相似文献   

11.
CeO2–TiO2composite supports with different Ce/Ti molar ratios were prepared by a homogeneous precipitation method, and V2O5–WO3/CeO2–TiO2catalysts for the selective catalytic reduction(SCR) of NOx with NH3 were prepared by an incipient-wetness impregnation method. These catalysts were characterized by means of BET, XRD, UV–Vis,Raman and XPS techniques. The results showed that the catalytic activity of V2O5–WO3/TiO2 was greatly enhanced by Ce doping(molar ratio of Ce/Ti = 1/10) in the TiO2 support.The catalysts that were predominantly anatase TiO2 showed better catalytic performance than the catalysts that were predominantly fluorite CeO2. The Ce additive could enhance the surface adsorbed oxygen and accelerate the SCR reaction. The effects of O2 concentration, ratio of NH3/NO, space velocity and SO2 on the catalytic activity were also investigated. The presence of oxygen played an important role in NO reduction. The optimal ratio of NH3/NO was 1/1 and the catalyst had good resistance to SO2 poisoning.  相似文献   

12.
Fe203 particle catalysts were experimentally studied in the low temperature selective catalytic reduction (SCR) of NO with NH3. The effects of reaction temperature, oxygen concentration, [NH3]/[NO] molar ratio and residence time on SCR activity were studied. It was found that Fe203 catalysts had high activity for the SCR of NO with NH3 in a broad temperature range of 150-270℃, and more than 95% NO conversion was obtained at 180℃ when the molar ratio [NH3]/[NO] = 1, the residence time was 0.48 seconds and 02 volume fraction was 3%. In addition, the effect of SO2 on SCR catalytic activity was also investigated at the temperature of 180℃. The results showed that deactivation of the Fe2O3 particles occurred due to the presence of SO2 and the NO conversion decreased from 99.2% to 58% in 240 min, since SO2 gradually decreased the catalytic activity of the catalysts. In addition, X-ray diffraction, Thermogravimetric analysis and Fourier transform infrared spectroscopy were used to characterize the fresh and deactivated Fe2O3 catalysts. The results showed that the deactivation caused by SO2 was due to the formation of metal sulfates and ammonium sulfates on the catalyst surface during the de-NO reaction, which could cause pore plugging and result in suppression of the catalytic activity.  相似文献   

13.
Ce-ZrO2 is a widely used three-way catalyst support.Because of the large surface area and excellent redox quality,Ce-ZrO2 may have potential application in selective catalytic reduction(SCR) systems.In the present work,Ce-ZrO2 was introduced into a low-temperature SCR system and CeO2 and ZrO2 supports were also introduced to make a contrastive study.Mn/CeO2,Mn/ZrO2 and Mn/Ce-ZrO2 were prepared by impregnating these supports with Mn(NO3)2 solution,and have been characterized by N2-BET,XRD,TPR,TPD,XPS,FT-IR and TG.The activity and resistance to SO2 and H2O of the catalysts were investigated.Mn/Ce-ZrO2 and Mn/CeO2 were proved to have better low-temperature activities than Mn/ZrO2,and yielded 98.6% and 96.8% NO conversion at 180°C,respectively.This is mainly because Mn/Ce-ZrO2 and Mn/CeO2 had higher dispersion of manganese oxides,better redox properties and more weakly adsorbed oxygen species than Mn/ZrO2.In addition,Mn/Ce-ZrO2 showed a good resistance to SO2 and H2O and presented 87.1% NO conversion,even under SO2 and H2O treatment for 6 hours,and the activity of Mn/Ce-ZrO2 was almost restored to its original level after cutting off the injection of SO2 and H2O.This was due to the weak water absorption and weak sulfation process on the surface of the catalyst.  相似文献   

14.
富氧条件下SnO2/Al2O3催化剂上丙烯选择性还原NOx的研究   总被引:4,自引:2,他引:2  
考察了分别用浸渍法、共沉淀法和溶胶-凝胶法制备的SnO2/Al2O3催化剂上丙烯选择性还原NOx的催化活性,发现制备方法与Sn的负载量对其活性有重要影响.溶胶-凝胶法制备的SnO2/Al2O3催化剂活性最高,Sn的最佳负载量为5%.与浸渍法和共沉淀法制备的5%SnO2/Al2O3催化剂相比,溶胶-凝胶法制备的5%SnO2/Al2O3催化剂受水蒸汽的抑制作用较弱,并且在水和SO2共存的条件下活性最高.此外,反应气中丙烯及氧气浓度的增加有利于NOx转化率的提高.  相似文献   

15.
The selective catalytic reduction(SCR) activities of the MoO_3 doped V/WTi catalysts prepared by the incipient wetness impregnation method at low temperature were investigated.The results showed that the addition of MoO_3 could enhance the NO_ xconversion at low temperature and the best SCR activity was obtained when the dosage of MoO_3 reached5 wt.%. The NH3-TPD and DRIFTS experiments indicated that the addition of MoO_3 changed the type and number of acid sites on the surface of catalysts and reaction activities of acid sites were altered at the same time. The redox capacity and amount of active oxygen species got improved for V3Mo5/WTi catalyst, which could be confirmed by the H_2-TPR and transient response experiments. Water vapor inhibited the NO_xconversion at low temperature. Deposition of ammonium sulfate or bisulfate might be main reason for the loss of catalytic activity in the presence of SO_2 at low temperature. Choosing the suitable NH_3/NO ratio and elevation of reaction temperature both could weaken the influence of SO_2 on the SCR activity of the V3Mo5/WTi catalyst. Thermal treatment of the deactivated catalyst at350°C could get the low temperature activity recovered. The decrease of GHSV improved the de NO_x efficiency at low temperature and we speculated that the rational technological process and operation parameters could contribute to the application of this kind of catalysts in real industrial environment.  相似文献   

16.
采用共沉淀法合成了TiO_2及TiO_2-Fe_2O_3载体,并对硫酸氢铵与上述载体之间的相互作用及硫酸氢铵的具体分解行为进行了研究.结果表明,催化剂载体表面含硫官能团主要以双齿硫酸盐的形式存在,含氮官能团以铵根离子的形式存在.当硫酸氢铵沉积于催化剂载体表面时,由于硫酸根离子具有较强的电负性,Ti原子及Fe原子处于电子缺失状态.对于TiO_2载体,硫酸根离子主要与Ti原子相连;而对于TiO_2-Fe_2O_3载体,Ti原子及Fe原子均为硫酸根离子主要的附着位点.采用热分析方法及原位红外对硫酸氢铵在TiO_2及TiO_2-Fe_2O_3载体表面的分解行为进行了研究,发现铁氧化物的添加显著促进了硫酸氢铵在低温区间内的分解行为;与铵根离子相比,硫酸根离子具有更高的热稳定性.催化剂稳定性测试结果表明,铁氧化物的添加显著提高了低温抗硫抗水性能,为实现低温SCR技术的工业应用提供了理论基础.  相似文献   

17.
采用等体积浸渍法制备了锰氧化物负载凹凸棒石(MnOx/PG)低温SCR催化剂,通过SO2暂态响应、程序升温表面反应(TPSR)等实验技术研究了烟气中SO2对催化剂SCR脱硝活性的影响行为.采用程序升温脱附(TPD)、BET比表面及孔径分布测定、XPS等表征技术对催化剂硫中毒的机理及化学本质进行了深入分析.结果表明,低温下烟气中SO2对MnOx/PG催化剂的SCR脱硝活性存在显著的抑制作用,催化剂中毒主要由烟气中SO2的催化氧化引起.一方面SO2氧化为SO3后与NH3及H2O竞争反应形成复杂的硫酸铵盐堵塞催化剂孔道,另一方面与活性组分MnO2结合形成MnSO4使得部分活性组分形态发生变迁.其中硫酸铵盐的形成可通过适当的热处理得以去除,而MnSO4则不可恢复,但催化剂SCR活性却显著增加,表明MnSO4的形成不是催化剂失活的主要因素.吸附态的硫可显著增加催化剂表面酸性,因此对SCR活性有促进作用.催化剂失活主要机理为:由气相SO2的连续氧化并与NH3相结合形成硫酸铵盐,并且在低温下难以分解,以致堵塞催化剂活性中心.  相似文献   

18.
TiO2 supports doped with different amounts of Si were prepared by a sol-gel method, and 1 wt% vanadia (V2O5) loaded on Si-doped TiO2 was obtained by an impregnation method. The mole ratio of Si/Ti was 0.2, NOx conversion exceeds 94% at 300℃ and GHSV of 41,324 hr-1 , which is about 20% higher than pure V2O5/TiO2 . The catalysts were characterized by XRD, BET, TEM, FT-IR, NH3-TPD, XPS, H2-TPR, Raman and in situ DRIFTS. The results of FT-IR and XPS indicated that Si was doped into the TiO2 lattice successfully and a solid solution was obtained. V2O5 active component could be dispersed well on the support with the increasing of surface area of the catalyst, which was confirmed by Raman and XRD results. Above all, the numbers of acid sites (especially the Br nsted-acid) and oxidation properties were enhanced for Si-doped V2O5/TiO2 catalysts, which improved the deNOx catalytic activity.  相似文献   

19.
This study introduced TiO2-pillared clays (TiO2-PILC) as a support for the catalytic oxidation of NO and analyzed the performance of chromium oxides as the active site of the oxidation process. Cr-based catalysts were prepared by a wet impregnation method. It was found that the 10 wt.% chromium doping on the support achieved the best catalytic activity. At 350℃, the NO conversion was 61% under conditions of GHSV = 23600 hr^-l. The BET data showed that the support particles had a mesoporous structure. Hz-TPR showed that Cr(10)TiP (10 wt.% Cr doping on TiO2-PILC) clearly exhibited a smooth single peak. EPR and XPS were used to elucidate the oxidation process. During the NO + O2 adsorption, the intensity of evolution of superoxide ions (O2^-) increased. The content of Cr^3+ on the surface of the used catalyst was 40.37%, but when the used catalyst continued adsorbing NO, the Cr^3+ increased to 50.28%. Additionally, Oα/Oβ increased markedly through the oxidation process. The NO conversion decreased when SO2 was added into the system, but when the SO2 was removed, the catalytic activity recovered almost up to the initial level. FT-IR spectra did not show a distinct characteristic peak of SO4^2-.  相似文献   

20.
二氧化硫(SO_2)是一种常见的大气污染物,目前关于SO_2对木本植物的毒害作用及相关机制并不清楚.本文以木本植物胡杨的愈伤细胞为材料,研究SO_2衍生物对胡杨细胞的致死效应,以及过氧化氢(H_2O_2)与一氧化氮(NO)在SO_2诱导胡杨细胞死亡中的信号调节作用.研究发现:SO_2衍生物处理(1~5 mmol·L-1)可诱发胡杨细胞死亡,且SO_2衍生物浓度越大、处理时间越长,细胞死亡率越高.2 mmol·L-1SO_2衍生物处理胡杨细胞后,胞内H_2O_2和NO水平显著升高,且H_2O_2水平的升高先于NO.一定浓度的外源H_2O_2或NO供体SNP能够提高SO_2胁迫下胡杨细胞的死亡率;而使用H_2O_2清除剂CAT和ASA、NO清除剂c PTIO、NO合成抑制剂钨酸钠后,SO_2诱导的细胞死亡率明显降低.进一步实验发现,外源H_2O_2可以提高SO_2胁迫下胡杨细胞的硝酸还原酶(NR)活性,促进胞内NO产生;而利用CAT和ASA清除H_2O_2后,细胞NR活性和NO产生均受到明显抑制.此外,SO_2胁迫下,外源SNP能够抑制抗氧化酶(CAT和APX)活性,增加胡杨细胞内的H_2O_2水平,而一定浓度的c PTIO和钨酸钠均可提高CAT和APX活性,降低胞内H_2O_2水平.结果表明:SO_2胁迫下,胡杨细胞快速产生的H_2O_2能够激活硝酸还原酶活性,促进NO生成,同时NO能够通过抑制抗氧化酶活性而提高H_2O_2水平.H_2O_2与NO互作调控SO_2诱导的胡杨细胞死亡.  相似文献   

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