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1.
煤半焦负载钠催化还原NO的研究   总被引:4,自引:0,他引:4  
在石英固定床反应器上研究了Na对NO 半焦反应在不同气氛下的催化作用。研究结果表明 ,Na对半焦还原NO的反应具有很强的催化作用 ;热处理温度升高 ,Na的催化作用减小 ;CO和O2 气氛有助于NO的催化还原 ,但随温度的升高CO和O2 的促进作用减弱 ;低温下 ,Na催化剂易于失活 ;Na对于NO 半焦反应的催化作用是通过氧化 /还原机理实现的。  相似文献   

2.
燃煤流化床钙基脱硫剂对NO转变率的影响及机理   总被引:2,自引:0,他引:2  
在φ150mm×1000mm流化床试验台上,温度区间840℃~960℃,研究了钙基脱硫剂品种、粒径和Ca/S比对NO转变率的影响.阐述了钙基脱硫剂使NO转变率增加机理试验发现,同等质量钙基脱硫剂使NO增加的次序为氧化钙、石灰石、方解石;Ca/S比越大,NO转变率越高;粒径为1~2mm时NO转变率最大,2~3mm时次之,0.2~1mm时最小.加入脱硫剂降低了HCl、HF、SO2的浓度,导致O、H、HO2浓度升高,CO的氧化反应加速,在床料、燃料灰催化作用下CO与NO的反应减慢,最终导致NO浓度升高.  相似文献   

3.
UV/H2O2液相氧化净化烟气中NO的实验研究   总被引:4,自引:0,他引:4  
采用UV/H2O2液相氧化技术净化气体中的NO,通过正交实验和单因素实验,研究了H2O2浓度、温度、初始pH值、NO浓度、光照条件、O2含量和气体流量等因素对NO去除率的影响.结果表明,UV/H2O2液相氧化体系对NO有良好的净化效果,可以获得80%左右的NO去除率, 温度、H2O2浓度和初始pH值对NO去除率具有不同程度的影响,温度和H2O2浓度对NO去除率影响较大.单因素实验结果表明, 当H2O2浓度为0.2 mol/L、初始pH值为6~7时NO去除率较高;溶液中H2O2浓度过高或过低、溶液过酸或过碱均会抑制·OH的产生而不利于NO的去除;净化NO的最佳反应温度为40 ℃,低于一般湿法脱硝温度(50 ℃);NO的去除率随紫外光辐射强度和O2含量的增加而升高;同时,NO的去除也受气液传质面积和气液传质系数的控制.  相似文献   

4.
含铁物质对燃煤污染特性的影响   总被引:5,自引:0,他引:5  
利用DTA-TG-DTG设备实验研究了FeCl3、FeCl2和Fe2O3等含铁物质对燃煤污染特性的影响.结果表明:实验所用的几种含铁化合物均能够改变燃煤污染物的排放规律,但不同种类的含铁物质对燃煤污染特性影响机理不同,所取得的污染物减排效果也不同.在煤燃烧以及煤中S与N向SO2及NO转化的过程中,FeCl3既起到催化剂的作用,同时又起吸收剂的作用.FeCl3催化作用表现在降低了SO2和NO生成反应的表观活化能,使SO2和NO能够在较低温度时迅速形成,加快了SO2和NO生成反应的速率.FeCl3的催化效果与S在煤中的存在形态有关.FeCl3的吸收作用表现在FeCl3本身能够参与SO2的吸收反应生成FeSO4或Fe2(SO4)3.此外,FeCl3还能够改变CO的排放特性,即能够改变煤的燃烧特性.FeCl2对烟气中SO2、NO和CO排放特性的影响与FeCl3相似,但影响效果比FeCl23略差.Fe2O3也能够降低烟气中SO2和NO的体积分数,但Fe2O4只是吸收剂,对SO2和NO的生成过程没有催化作用.Fe2O3对CO排放特性的影响不大.  相似文献   

5.
Al2O3为载体的催化剂净化贫燃汽车尾气研究   总被引:2,自引:0,他引:2  
在富氧条件下,考察了C3H6和C2H5OH在Ag/Al2O3、In/Al2O3、Sn/Al2O3、Co/Al2O3、Pt/Al2O3和Ag/Al2O3+Pt/Al2O3组合催化剂上选择性还原NO的性能.结果表明,Ag/Al2O3具有最高的NO还原活性.在负载型过渡金属氧化物催化剂上,会生成显著量的CO,其HC和CO氧化转化温度也远远高于Pt/Al2O3催化剂.串联组合Ag/Al2O3+Pt/Al2O3催化剂可显著拓宽活性温度范围,促进HC和CO氧化,降低N2O和CH3CHO生成量.  相似文献   

6.
黄立维  松田仁树 《环境科学》2006,27(10):1941-1945
采用非热等离子体结合催化或现场化学吸收的2种方法来去除气流中的NOx.结果表明,非热等离子体结合催化,反应器内的CuO催化剂能有效地促进NO的还原反应;相对于催化还原NO而言,脉冲电晕作用下能有效地降低NO催化还原的反应温度.当催化剂为CuO,脉冲电压为18kV,反应温度为200℃,还原剂为1%CO及NO进口浓度为719 mg/m3条件下,NO的去除率达到了100%.非热等离子体结合现场化学吸收方法,是一种在常温下从气流中净化氮氧化物的有效方法,NO的去除率远远高于反应器内没有吸收剂的情况.可以认为反应器内的Ca(OH)2吸收剂通过与NO的氧化产物NO2或NO3的吸收反应促进了NO的去除.当反应器内有Ca(OH)2吸收剂存在时,在脉冲电压为18kV,O2浓度为2%及NO进口浓度为1 050 mg/m3条件下,NO的去除率达到了100%.  相似文献   

7.
CeO2-La2O3/γ-Al2O3稀土氧化物混合物催化还原SO2的实验研究   总被引:4,自引:0,他引:4  
在La2O3 中加入变价稀土氧化物CeO2,组成一种稀土氧化物的混合物,以这种混合物作为CO还原SO2的催化剂.采用连续流动固定床反应器,在反应气体SO2和CO按SO2∶CO = 1∶3,载流气体为N2,气体流量为1000 mL/min的条件下,实验研究了该催化剂的活化过程以及温度和反应物浓度配比对活化反应的影响,用XRD和XPS对反应前后催化剂进行了表征,分析了相结构的变化.结果表明:CeO2和La2O3 2种稀土氧化物的混合物,在CO还原SO2的催化反应中,活化温度比单个的CeO2或La2O3氧化物下降了50℃~100℃,而且具有更高的活性.这可能是CeO2和La2O3氧化物之间存在着某种协同作用所致.  相似文献   

8.
SO2对CoH-ZSM-5催化CH4还原NO催化性能的影响   总被引:1,自引:1,他引:0  
研究了富氧条件下SO2对CoH-ZSM-5上CH4选择还原NO(CH4-SCR)的影响,应用SO2-TPSR,NO+(O2)-TPD等方法研究了产生中毒的原因并定量研究了被毒化的活性位.反应在773 K进行时,加入体积分数78×10-6SO2,NO的转化率由72%逐渐降低并稳定在58%,提高反应温度至823 K,NO稳定转化率上升至62%.同时加入2.5  相似文献   

9.
新型低温Fe/AC脱硫剂的研究   总被引:2,自引:0,他引:2  
将活性焦担载氧化铁制得Fe/AC脱硫剂用于烟气脱硫,在最经济的烟气脱硫温度窗口(120℃~250℃)显示出高的脱硫活性.考察操作条件对其脱硫活性的影响,并借助EXAFS和TPD表征技术对其内在原因进行探讨.Fe/AC脱硫剂在排烟温度下用于脱硫,其活性明显优于活性焦和纯Fe2O3,且载体炭无氧化烧损.Fe/AC吸硫后形成2种含硫物质:H2SO4和Fe2(SO4)3,H2O和O2的存在可增加Fe/AC对SO2的吸附硫容.由高比表面活性焦制得的Fe/AC有更高的脱硫活性,这源于活性组分Fe2O3在其上良好的分散性.Fe/AC用于脱硫应在适宜空速[(800L/(kg·h)]下操作.  相似文献   

10.
掺杂La或Si对Ag/Al2O3催化剂热稳定性和脱NO活性的影响   总被引:27,自引:0,他引:27  
利用 BET比表面测定和 X-射线衍射技术考察了掺杂 La或 Si的 Ag/Al2O3催化剂的热稳定性 ,并研究了富氧条件下 ,丙烯在这些催化剂上选择性还原 NO的活性 .结果表明 ,掺杂 La或 Si能抑制 Al2O3相变 ,使 γ-Al2O3完全转化为 α-Al2O3的温度升至 1100℃以上 .相应地 ,延缓催化剂比表面下降 ,从活性角度来看 ,当焙烧温度为 1100℃时 ,与掺杂 La或 Si相比 ,不掺杂 La或 Si的 Ag/Al2O3催化剂活性要低得多 ;当焙烧温度低于 1000℃时 ,掺杂少量 La(2 % La2O3)对 Ag/Al2O3催化剂活性影响不大 ,但是 ,掺杂 Si(2%或 8% SiO2)或较高含量 La(8% La2O3)会导致催化剂活性降低 .综合考虑热稳定性和富氧条件下的 NO还原活性 ,认为掺杂较低含量 La(2% La2O3)的 Ag/Al2O3催化剂性能最佳 .  相似文献   

11.
碱土金属钙沉积对Mn-Ce/TiO2低温SCR催化剂脱硝性能的影响   总被引:1,自引:1,他引:0  
周爱奕  毛华峰  盛重义  谭月  杨柳 《环境科学》2014,35(12):4745-4751
本研究采用浸渍法分别制备CaCl2、CaCO3和CaSO4这3种钙盐前驱体沉积的Mn-Ce/TiO2催化剂,通过分析催化剂活性与催化剂理化特性之间的关系,考察碱土金属钙沉积对Mn-Ce/TiO2低温SCR催化剂脱硝性能的影响.结果表明,钙的加入会导致催化剂中毒,且不同钙前驱体掺杂对催化剂中毒效应不同.CaCO3的沉积对Mn-Ce/TiO2催化剂脱硝效率的影响最小,而CaCl2沉积对催化剂活性抑制作用最为强烈.通过比表面积测试(BET)、X射线光电子能谱(XPS)、X射线晶体衍射(XRD)、程序升温脱附(TPD)等方法对不同催化剂进行表征发现,催化剂的晶型变化、孔道结构破坏、表面活性元素及酸性点位的减少是催化剂中毒的主要原因.  相似文献   

12.
Experiments were conducted in a fixed-bed reactor that contained a commercial catalyst, V2O5–WO3/TiO2, to investigate mercury oxidation in the presence of NO and O2. Mercury oxidation was improved by NO, and the efficiency was increased by simultaneously adding NO and O2. With NO and O2 pretreatment at 350°C, the catalyst exhibited higher catalytic activity for Hg0 oxidation, whereas NO pretreatment did not exert a noticeable effect. Decreasing the reaction temperature boosted the performance of the catalyst treated with NO and O2. Although NO promoted Hg0 oxidation at the very beginning, excessive NO counteracted this effect. The results show that NO plays different roles in Hg0 oxidation; NO in the gaseous phase may directly react with the adsorbed Hg0, but excessive NO hinders Hg0 adsorption. The adsorbed NO was converted into active nitrogen species (e.g., NO2) with oxygen, which facilitated the adsorption and oxidation of Hg0. Hg0 was oxidized by NO mainly by the Eley–Rideal mechanism. The Hg0 temperature-programmed desorption experiment showed that weakly adsorbed mercury species were converted to strongly bound ones in the presence of NO and O2.  相似文献   

13.
The catalysts of iron-doped Mn-Ce/TiO 2(Fe-Mn-Ce/TiO 2) prepared by sol-gel method were investigated for low temperature selective catalytic reduction(SCR) of NO with NH 3.It was found that the NO conversion over Fe-Mn-Ce/TiO 2 was obviously improved after iron doping compared with that over Mn-Ce/TiO 2.Fe-Mn-Ce/TiO 2 with the molar ratio of Fe/Ti = 0.1 exhibited the highest activity.The results showed that 96.8% NO conversion was obtained over Fe(0.1)-Mn-Ce/TiO 2 at 180°C at a space velocity of 50,000 hr 1.Fe-Mn-Ce/TiO 2 exhibited much higher resistance to H 2 O and SO 2 than that of Mn-Ce/TiO 2.The properties of the catalysts were characterized using X-ray diffraction(XRD),N 2 adsorption,temperature programmed desorption(NH 3-TPD and NOx-TPD),and Xray photoelectron spectroscopy(XPS) techniques.BET,NH3-TPD and NOx-TPD results showed that the specific surface area and NH3 and NOx adsorption capacity of the catalysts increased with iron doping.It was known from XPS analysis that iron valence state on the surface of the catalysts were in Fe3+ state.The doping of iron enhanced the dispersion and oxidation state of Mn and Ce on the surface of the catalysts.The oxygen concentrations on the surface of the catalysts were found to increase after iron doping.Fe-Mn-Ce/TiO2 represented a promising catalyst for low temperature SCR of NO with NH3 in the presence of H2 O and SO2.  相似文献   

14.
To clarify the effect of coking dust, sintering dust and fly ash on the activity of activated carbon for various industrial flue gas desulfurization and denitrification, the coupling mechanism of the mixed activated carbon and dust was investigated to provide theoretical reference for the stable operation. The results show that coking dust had 34% desulfurization efficiency and 10% denitrification efficiency; correspondingly, sintering dust and fly ash had no obvious desulfurization and denitrification activities. For the mixture of activated carbon and dust, the coking dust reduced the desulfurization and denitrification efficiencies by blocking the pores of activated carbon, and its inhibiting effect on activated carbon was larger than its own desulfurization and denitrification activity. The sintering dust also reduced the desulfurization efficiency on the activated carbon while enhancing the denitrification efficiency. Fly ash blocked the pores of activated carbon and reduced its reaction activity. The reaction activity of coking dust mainly came from the surface functional groups, similar to that of activated carbon. The reaction activity of sintering dust mainly came from the oxidative property of Fe2O3, which oxidized NO to NO2 and promoted the fast selectively catalytic reduction (SCR) of NO to form N2. Sintering dust was activated by the joint action of activated carbon, and both had a coupling function. Sintering dust enhanced the adsorption and oxidation of NO, and activated carbon further promoted the reduction of NOx by NH3; thus, the denitrification efficiency increased by 5%-7% on the activated carbon.  相似文献   

15.
SO2对Ag/Al2O3催化剂上CH3OH还原NO性能的影响   总被引:1,自引:0,他引:1  
用溶胶-凝胶混合法制备了Ag负载量为5%的Ag/A12O3催化剂.研究了富氧条件下,SO2对CH3OH在催化剂上还原NO性能的影响.结果表明,反应气不含SO2和H2O时,NO还原活性温度较低,有显著量N2O生成,这被归因为反应过程中,部分氧化态Ag被还原为金属Ag.添加SO2或同时添加SO2和H2相似文献   

16.
The reaction mechanisms of selective catalytic reduction (SCR) of nitric oxide (NO) by methane (CH4) over solid superacid-based catalysts were proposed and testified by DRIFTS studies on transient reaction as well as by kinetic models. Catalysts derived from different supports would lead to different reaction pathways, and the acidity of solid superacid played an important role in determining the reaction mechanisms and the catalytic activities. Higher ratios of Br?nsted acid sites to Lewis acid sites would lead to stronger oxidation of methane and then could facilitate the step of methane activation. Strong Br?nsted acid sites would not necessarily lead to better catalytic performance, however, since the active surface NOy species and the corresponding reaction routes were determined by the overall acidity strength of the support. The reaction routes where NO2 moiety was engaged as an important intermediate involved moderate oxidation of methane, the rate of which could determine the overall activity. The reaction involving NO moiety was likely to be determined by the step of reduction of NO. Therefore, to enhance the SCR activity of solid superacid catalysts, reactions between appropriate couples of active NOy species and activated hydrocarbon intermediates should be realized by modification of the support acidity.  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.
文章使用固定床反应器在350℃~850℃范围内对氧化铁催化甲烷脱硝进行了实验研究。研究结果发现在有2%氧气存在条件下,氧化铁催化甲烷脱硝的效果最高只有20%,而且在350℃~750℃范围的氧化铁催化甲烷脱硝反应机理与850℃时的脱硝反应机理并不相同。在高温的850℃~950℃范围无氧气条件下,NOx转化率随着温度升高而单调增加,随CH4/NO摩尔比的增加而升高,氧化铁催化甲烷脱硝的最佳效果可以达到将近100%。通过进一步分析发现高温850℃~950℃无氧气条件下的脱硝反应机理是在催化剂表面进行了氧化还原反应,即首先发生了CH4与Fe2O3的气固反应,将Fe2O3还原为Fe3O4,而后Fe3O4再与NO反应将其还原为N2。  相似文献   

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