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1.
采用水热法制备不同比例Ni改性稀土尾矿催化剂,通过XRD、BET、H2-TPR、NH3-TPD和XPS等表征手段分析Ni改性对催化剂性能的影响.结果表明,Ni改性可明显提升稀土尾矿催化剂NOx转化率,6%Ni/稀土尾矿催化剂的NOx转化率在300℃时达到85%,N2选择性在250~300℃的温度范围内可达到76%以上.改性后催化剂中生成了分散性较好的Ni Fe2O4物质,比表面积增至75.12m2/g,催化剂的酸性位点增加,有利于催化剂表面吸附更多的氨气,Ni离子起到传递电子的作用,使得Fe2+转化为Fe3+,Fe元素化学价态升高,铁离子最外层电子的不稳定性增加,氧化能力增强,有助于催化剂表面氨吸附物种的活化,有利于脱硝反应的进行.  相似文献   

2.
采用HCl调控负载型钒磷氧(VPO/TiO2)催化剂的表面酸性,用于研究VPO/TiO2催化剂的NH3-SCR脱硝性能.结果表明:在HCl/V物质的量比为3~5:1范围内,催化剂的脱硝活性最高,当反应温度达到200℃时脱硝效率接近100%.表征结果表明:HCl的添加能提高催化剂的结晶度,HCl的调控使得VPO/TiO2催化剂的比表面积略有增加.同时,也使得VPO/TiO2催化剂中活性组分V4+的量从38%逐渐升高至46%,提高了催化剂的氧化还原性能.此外,不同HCl/V物质的量比的催化剂中化学吸附氧的相对含量随着HCl加入量的增加而提高.吡啶红外测试结果显示:HCl能影响催化剂酸性位点,HCl/V物质的量比=5的催化剂Lewis酸含量最高,总酸量为0.84×10-4mol/g.数据拟合进一步表明,所有VPO/TiO2催化剂的低温脱硝活性均与弱Lewis酸量呈正相关(相关系数>0.9),与活性测试相吻合.  相似文献   

3.
采用球磨混合方法,将催化剂以m(Cu/SAPO-34):m(VW/TiO2)为1:1的比例制得干混样品SAPO-Ti。利用固定床实验台架研究了混合催化剂的NH3-SCR脱硝性能及其抗硫性能。采用 XRD、BET、SEM、H2-TPR、NH3-TPD和in-situ DRIFT对材料进行表征,结果显示,球磨混合样品SAPO-Ti同时具有2种催化剂的晶体结构,且酸量增加,中温活性提高。表面形貌研究表明,VW/TiO2催化剂覆盖在Cu/SAPO-34催化剂表面,对Cu/SAPO-34催化剂起到保护作用;原位红外结果显示,Cu/SAPO-34催化剂硫中毒失活主要是在Cu活性位上形成硫酸盐物种,导致活性位减少,脱硝效率下降,而SAPO-Ti表面形成硫酸盐的数量减少,抗硫性能提高,主要是由于表面VW/TiO2催化剂具有良好的抗硫性,保护内部Cu2+活性位,以保持高效中温脱硝性能。  相似文献   

4.
采用浸渍法制备了一系列CuO-MOx/TiO2 (M=W,Zr,La)催化剂用于NH3选择性催化氧化(NH3-SCO),同时探究了SO2中毒对NH3氧化性能的影响.结果表明,过渡金属氧化物的添加使Cu/TiO2催化剂NH3转化率降低,但显著提高N2选择性.其中,W03具有最好的促进效果,在300℃下催化剂N2选择性提高了36%.通过H2-TPR和NH3-TPD表征发现,WO3的添加增加了Cu/TiO2催化剂表面酸性位点的数量,促进NH3的吸附,但降低催化剂氧化还原性能,抑制NH3氧化为NOx.经SO2中毒处理后,CuO-MOx/TiO2催化剂N2选择性进...  相似文献   

5.
为了开发高活性、高抗性的低温NH_3选择性催化还原(NH_3-SCR)催化剂,介绍了4种主要低温脱硝催化剂(贵金属、分子筛、炭基材料和过渡金属氧化物)脱硝活性以及抗硫抗水性能的研究成果,分析了基于原位红外和密度泛函方法的低温脱硝研究。分析认为:由一种或多种金属材料组合的NH_3-SCR催化剂一般具有良好的低温活性,但抗硫、抗水性能有待进一步提升;催化剂的表面酸性酸量特性和活性位点暴露数量与抗硫抗水性能密切相关,脱硝机理有助于分析SO_2和水蒸气对脱硝过程的影响机制。  相似文献   

6.
叶飞  刘荣  管昊  贡湘君  季凌晨 《环境科学》2015,36(3):1092-1097
以纳米m-ZrO2为载体,用浸渍法制备出MnOx-CeO2/m-ZrO2催化剂,考察反应温度、活性组分负载量对催化剂NH3-SCR脱硝活性影响,探讨催化剂表面织构特征,分析催化剂脱硝活性机制.结果表明,在低温脱硝温度范围,提高反应温度、增加活性组分负载量,有利于催化剂脱硝效率的增加.110℃时,2.5%MnOx-CeO2/m-ZrO2脱硝效率为55.5%,15%MnOxCeO2/m-ZrO2脱硝效率达93.5%.XRD、BET、XPS、H2-TPR表征结果表明,催化剂表面具有良好的氧化还原能力,表面织构对脱硝反应有利.NH3-TPD测试显示,MnOx-CeO2/m-ZrO2催化剂的脱硝反应机制为:NH3吸附在催化剂表面的Lewis酸性位和Brnsted酸性位上,通过反应生成相应中间产物NH2NO或NH4NO2,中间产物进一步分解最终转变为N2和H2O;催化剂总脱硝反应效率中,在Lewis酸性位上的脱硝反应占比较大.  相似文献   

7.
以稻壳基活性炭(DAC)为载体,利用等体积浸渍法制备了DAC负载Mn、Ce氧化物的Mn-Ce/DAC脱硝催化剂,并用于氨法SCR反应.采用N2吸附、X射线衍射(XRD)、X射线光电子能谱(XPS)和程序升温吸附脱附(TPR/TPD)等手段对催化剂的物理化学性能进行了表征.结果发现与商业木屑基活性炭负载Mn、Ce氧化物催化剂(Mn-Ce/MAC)相比,Mn-Ce/DAC具有更高的Ce3+/Ce4+比率、表面化学吸附氧含量以及表面Brønsted酸性位点,这与其优良的低温SCR活性及抗硫抗水性能直接相关.原位红外光谱结果显示在含硫气氛中Mn-Ce/DAC表面的硫酸盐含量明显低于Mn-Ce/MAC,表明前者具有优良抗硫性能.  相似文献   

8.
选取煤基飞灰作为催化剂载体,分别以Cr2O3和CuO、Mn2O3为主活性组分和助活性组分,采用超声辅助浸渍法制备Cr8Cu2Mnx/FA催化剂并进行SCR脱硝实验。分析了Mn掺杂量对Cr基催化剂脱硝活性和抗水性的影响,通过BET、XRD、TPD、TPR、XPS等手段对催化剂的理化性质进行表征。结果表明:Mn的添加可以拓宽Cr基催化剂的脱硝活性温度窗,促使Cr8Cu2Mnx/FA催化剂在200~350℃温度区间内的脱硝效率达到100%,且具有良好的抗水性;适当添加Mn可以提高催化剂表面酸性、氧化还原能力及表面吸附氧含量,拓宽催化剂的脱硝温度窗并促进活性金属组分中铬、铜的电子转移(Cr5+→Cr3+→Cr2+,Cu+→Cu2+)。  相似文献   

9.
We first present preparation of MnOx–CeO_2–Al_2O_3 catalysts with varying Mn contents through a self-propagating high-temperature synthesis(SHS) method, and studied the application of these catalysts to the selective catalytic reduction of NOxwith NH3(NH_3-SCR).Using the catalyst with 18 wt.% Mn(18 MnCe1Al2), 100% NO conversion was achieved at 200°C and a gas hourly space velocity of 15384 hr-1, and the high-efficiency SCR temperature window, where NO conversion is greater than 90%, was widened to a temperature range of 150–300°C. 18 MnCe1Al2 showed great resistance to SO_2(100 ppm)and H_2O(5%) at 200°C. The catalysts were characterized using X-ray diffraction, X-ray photoelectron spectroscopy, Brunauer–Emmett–Teller(BET) analysis, scanning electron microscopy, Fourier transform infrared spectroscopy, and H_2 temperature programmed reduction. The characterization results showed that the surface atomic concentration of Mn increased with increasing Mn content, which led to synergism between Mn and Ce and improved the activity in the SCR reaction. 18 MnCe1Al2 has an extensive pore structure,with a BET surface area of approximately 135.4 m~2/g, a pore volume of approximately 0.16 cm~3/g, and an average pore diameter of approximately 4.6 nm. The SCR reaction on 18 MnCe1Al2 mainly followed the Eley-Rideal mechanism. The performances of the MnOx–CeO_2–Al_2O_3 catalysts were good, and because of the simplicity of the preparation process,the SHS method is applicable to their industrial-scale manufacture.  相似文献   

10.
考察了5%H2/Ar还原再生丙烷催化还原NOx中硫中毒Cu-Ir/H-ZSM-5催化剂的工艺参数影响,采用N2吸附、X射线衍射、X射线光电子能谱和氢气程序升温还原等手段研究了催化剂再生行为的构效关系.结果表明,硫中毒Cu-Ir/H-ZSM-5催化剂由于CuSO4的生成导致催化剂活性位损失,比表面积、微孔面积和孔体积的减小.H2还原再生的最佳工艺参数为再生温度500℃和再生气体用量42.8L/g催化剂,再生催化剂的活性可恢复到新鲜催化剂的95%.在最佳再生条件(500℃和42.857L/g催化剂)下,再生催化剂表面CuSO4含量最低(0.4%),且再生催化剂的比表面积、微孔面积和孔体积较失活催化剂有较大提高.  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.
The influence of the various preparation methods of Cu-SAPO-34 nanocatalysts on the selective catalytic reduction of NO with NH3 under excess oxygen was studied. Cu-SAPO-34 nanocatalysts were prepared by using four techniques: conventional impregnation (IM), ultrasound-enhanced impregnation (UIM), conventional deposition precipitation (DP) using NaOH and homogeneous deposition precipitation (HDP) using urea. These catalysts were characterized in detail by various techniques such as N2-sorption, XRD, TEM, H2-TPR, NH3-TPD and XPS to understand the catalyst structure, the nature and the dispersed state of the copper species, and the acid sites for NH3 adsorption. All of the nanocatalysts showed high activities for NO removal. However, the activities were different and followed the sequence of Cu-SAPO-34 (UIM) > Cu-SAPO-34 (HDP) > Cu-SAPO-34 (IM) > Cu-SAPO-34 (DP). Based on the obtained results, it was concluded that the NO conversion on Cu-SAPO-34 nanocatalysts was mainly related to the high reducibility of the isolated Cu2 + ions and CuO species, the number of the acid sites and the dispersion of CuO species on SAPO-34.  相似文献   

13.
凌微  黄碧纯 《环境科学学报》2019,39(4):1095-1104
采用改进的溶胶-凝胶法制备一系列MnO_x/SAPO-34催化剂,考察了各制备参数对催化剂的结构及其低温氨选择性催化还原(NH_3-SCR)脱硝性能的影响,并通过X射线衍射、N_2吸附-脱附、透射电镜、X射线光电子能谱、NH_3程序升温脱附等手段对催化剂进行表征.结果表明,当制备参数为n(乙醇)/n(Mn)=15,n(H_2O)/n(Mn)=20,n(柠檬酸)/n(Mn)=1,Mn负载量为15%(质量分数),催化剂焙烧温度为350℃时,制备的高分散15%-MnO_x/SAPO-34-350℃催化剂具有最佳的低温SCR活性,在空速为45000 h~(-1)的条件下,且反应温度在120~240℃范围时均保持90%以上的NO转化率和接近100%的N_2选择性.MnO_x纳米颗粒高度分散在SAPO-34载体表面,平均粒径约为5.46 nm,纳米颗粒的表面效应使得该催化剂具备较大的比表面积,暴露出大量的活性位点和高活性的MnO_2(110)晶面,同时,高Mn~(4+)比例和更多的化学吸附氧以及适宜的表面酸强度和酸量也是15%-MnO_x/SAPO-34-350℃催化剂呈现最佳低温SCR活性的重要原因.  相似文献   

14.
Selective catalytic reduction technology using NH3 as a reducing agent(NH3-SCR) is an effective control method to remove nitrogen oxides. TiO2-supported vanadium oxide catalysts with different levels of Ce and Sb modification were prepared by an impregnation method and were characterized by X-ray diffractometer(XRD), Brunauer–Emmett–Teller(BET), Transmission electron microscopy(TEM), Fourier transform infrared spectroscopy(FT-IR), UV–Vis diffuse reflectance spectroscopy(UV–Vis DRS), Raman and Hydrogen temperature-programmed reduction(H2-TPR). The catalytic activities of V5 CexS by/TiO2 catalysts for denitration were investigated in a fixed bed flow microreactor. The results showed that cerium, vanadium and antimony oxide as the active components were well dispersed on TiO2, and the catalysts exhibited a large number of d–d electronic transitions, which were helpful to strengthen SCR reactivity. The V5 CexS by/TiO2 catalysts exhibited a good low temperature NH3-SCR catalytic activity. In the temperature range of 210 to 400℃, the V5 CexS by/TiO2 catalysts gave NO conversion rates above 90%. For the best V5Ce35Sb2/TiO2 catalyst, at a reaction temperature of 210℃, the NO conversion rate had already reached 90%. The catalysts had different catalytic activity with different Ce loadings. With the increase of Ce loading, the NO conversion rate also increased.  相似文献   

15.
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   

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.
采用溶胶凝胶法制备了Mn-Ce/TiO2催化剂,以NH3为还原剂,通过程序升温反应考察其选择性催化还原NO的催化性能.同时,着重探讨了焙烧温度、焙烧时间、活性物质负载量及Mn、Ce负载比例对催化剂结构和性能的影响,并用BET、XRD等对催化剂进行了表征.结果表明,活性组分负载量由0增至20%时,NO转化率随着负载量的增加而提高,当(Mn+Ce)质量分数为20%,催化剂活性最高,此后随着活性组分负载量的增加,NO转化率明显下降;Mn与Ce的负载比例为0.85∶0.15时,催化剂比表面积最大,为112.31m2·g-1;焙烧温度500℃时催化剂晶相均为TiO2锐钛矿型结构,焙烧温度升高至600℃,催化剂晶相为TiO2锐钛矿型和金红石型混合结构,且催化剂比表面积急剧减小;焙烧时间对催化剂晶相结构影响不大,焙烧时间为5h时,Mn-Ce/TiO2的脱硝性能最好.  相似文献   

18.
Carbon-modified titanium dioxide(TiO2) was prepared by a sol-gel method using tetrabutyl titanate as precursor, with calcination at various temperatures, and tested for the photocatalytic oxidation(PCO) of gaseous NH3 under visible and UV light. The test results showed that no samples had visible light activity, while the TiO2 calcined at 400℃ had the best UV light activity among the series of catalysts, and was even much better than the commercial catalyst P25. The catalysts were then characterized by X-ray diffractometry, Brunauer-Emmett-Teller adsorption analysis, Raman spectroscopy, thermogravimetry/differential scanning calorimetry coupled with mass spectrometry, ultraviolet-visible diffuse reflectance spectra, photoluminescence spectroscopy and in situ diffuse reflectance infrared Fourier transform spectroscopy. It was shown that the carbon species residuals on the catalyst surfaces induced the visible light adsorption of the samples calcined in the low temperature range( 300℃). However, the surface acid sites played a determining role in the PCO of NH3 under visible and UV light over the series of catalysts. Although the samples calcined at low temperatures had very high SSA, good crystallinity, strong visible light absorption and also low PL emission intensity, they showed very low PCO activity due to their very low number of acid sites for NH3 adsorption and activation. The TiO2 sample calcined at 400℃ contained the highest number of acid sites among the series of catalysts, therefore showing the highest performance for the PCO of NH3 under UV light.  相似文献   

19.
以高暴露(001)面锐钛矿TiO2为载体,使用3种不同溶剂(甲醇、乙二醇和丙三醇)水热负载CeO2,进而以CeO2-TiO2为载体采用硼氢化钠还原法负载Cu,合成Cu/CeO2-TiO2催化剂用于催化CO2加氢制甲醇.XRD、SEM、BET、ICP-OES、XPS、H2-TPR、EPR和CO2-TPD等表征表明,以 甲醇/水为混合溶剂合成的CeO2-TiO2(CT-M)载体中CeO2粒径较小、Ce3+浓度较高,更有利于Cu的负载与分散,形成紧密接触的三相界面;其负载Cu的催化剂CCT-M经焙烧、还原后形成的CuCeTi三相界面相互作用更强,可产生更多的表面Ce3+、氧空位和体相Ti3+,表面Ce3+、氧空位和体相Ti3+等缺陷有利于CO2的吸附活化,较小粒径的Cu则可加速氢解离,因此,CCT-M具有更多的CO2加氢反应活性位点,表现出最优的CO2加氢产甲醇活性.  相似文献   

20.
利用自制气溶胶反应器研究了NO_x和/或NH_3气氛下SO_2在高岭土表面的非均相转化过程,应用扫描电镜(SEM)对高岭土颗粒物形貌进行了表征.结果表明:高岭土颗粒表面的SO_2非均相转化致使其成分和形貌产生了较大变化.相同实验条件下,SO_2转化的协同作用程度由高到低依次为NH_3、NO_x/NH_3和NO_x气氛,相对湿度40%、有光照条件下,SO_2转化量增幅最高可分别达125%、75%和50%.所有气氛下,协同作用在无光照时在高相对湿度(40%~70%)区间更为突出,有光照时其显著性则体现在低相对湿度(20%~40%)区间.SO_2、NO_x、NH_3三者共存时,在高岭土颗粒表面发生的非均相反应过程既有协同作用又存在竞争反应.  相似文献   

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