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排序方式: 共有283条查询结果,搜索用时 15 毫秒
1.
氨选择性催化还原 (NH3-SCR) 技术在焚烧烟气NOx减排控制中广泛应用。然而,目前广泛商业化使用的SCR催化剂价格昂贵且低温活性差。以价格低廉的天然锰矿粉 (MOP) 为载体,采用浸渍法制备了Cr和Mo负载改性MOP,在温度范围150~400 ℃,对比研究了MOP和负载改性MOP的脱硝和脱氨催化效率,并基于NH3-TPD-MS、FE-SEM-EDS、XRD和XPS对所制备的催化剂进行表征。结果表明:MOP具有较高的催化脱硝脱氨活性;Cr负载可大幅提升MOP的氨转化率,且对脱硝效率没有明显影响;Cr主要以无定形Cr2O3形式物理附着于MOP表面,Cr与Mn之间没有明显的相互作用。同时,Mo负载对MOP的氨催化转化也有明显促进作用,2%Mo负载仅轻微减少了MOP在150~250 ℃时的脱硝效率。在5%Mo改性MOP表面,酸性位点数量和NH3吸附能力显著提高,但Mo与K反应生成钾钼盐结晶,导致Mn4+和Oα的相对含量降低。该研究结果可为低温低尘尾部布设SCR的同时脱硝脱氨提供参考。 相似文献
2.
The AgCl/Al2O3 catalyst has potential for use in the selective catalytic reduction (SCR) of NOx. A compound hydrocarbon, following
oxygenation is used as a type of reducing agent. In this experiment, the AgCl/Al2O3 catalyst was produced by four different methods,
and the differences among their reduction catalysis of NOx were compared. Ethanol was used as a type of reducing agent. X-ray
diffraction analysis was performed to study the crystalline structure and scanning electron microscope and transmission electron
microscope (TEM) were applied to determine the microindentation. The results indicated that, in the range of 350–400°C, there was
no significant difference on the NOx reduction rate; however, there was dispersion at high and low temperature ranges. The size of the
AgCl particles was about 20–100 nm. 相似文献
3.
铁基催化剂的微波水热处理对其SCR脱硝性能的影响 总被引:1,自引:0,他引:1
利用微波对共沉淀制备的铁铈钛复合氧化物催化剂前驱体进行水热处理,探讨了微波水热处理对铁基催化剂低温SCR脱硝性能的优化;并对微波水热处理条件的影响进行了正交分析.结果表明:对铁基催化剂前驱体进行微波水热处理,可提高其低温SCR脱硝性能,使其脱硝温度窗口向低温偏移;且微波水热处理的低温优化效果与催化剂中Fe/Ti摩尔比密切相关,Fe/Ti摩尔比越小,微波水热处理的低温优化越强;微波加热方式和微波辐射时间会影响微波水热处理对铁基催化剂SCR脱硝性能的低温优化;在相同微波辐射时间条件下,当P30逐渐变为P80,微波水热处理对铁基催化剂低温SCR脱硝的促进作用降低;在P30条件下,微波辐射15min使铁基催化剂具有最佳低温SCR脱硝活性. 相似文献
4.
5.
Yanke Yu Jinxiu Wang Jinsheng Chen Xinjiang He Yujing Wang Kai Song Zongli Xie 《环境科学学报(英文版)》2016,28(9):100-108
The regeneration of commercial SCR(Selective Catalyst Reduction) catalysts deactivated by Pb and other elements was studied.The deactivated catalyst samples were prepared by chemical impregnation with mixed solution containing K_2SO_4,Na_2SO_4,CaSO_4,Pb(NO_3)_2and NH_4H_2PO_4.A novel method combining Ethylenediaminetetraacetic acid disodium salt(EDTA-2Na) and H_2SO_4solution(viz.catalysts treated by dilute EDTA-2Na and H_2SO_4 solution in sequence) was used to recover the activity of deactivated samples,and the effect was compared with single H_2SO_4,oxalic acid,acetic acid,EDTA or HNO_3 solutions.The surface structure,acidity and reducibility of samples were characterized by N_2adsorption–desorption,inductively coupled plasma optical emission spectrometer(ICP-OES),scanning electron microscopy(SEM),X-ray diffraction(XRD),X-ray fluorescence(XRF),H-2-temperature programmed section(H_2-TPR),NH3-temperature programmed desorption(NH3-TPD) and in situ DRIFTS.Impurities caused a decrease of specific surface area and surface reducibility,as well as Br?nsted acid sites,and therefore led to severe deactivation of the SCR catalyst.The use of an acid solution alone possibly eliminated the impurities on the deactivated catalyst to some extent,and also increased the specific surface area and Br?nsted acid sites and promoted the surface reducibility,thus recovered the activity partially.The combination of EDTA-2Na and H_2SO_4 could remove most of the impurities and improve the activity significantly.The removal of Pb should be an important factor for regeneration.Due to a high removal rate for Pb and other impurities,the combination of EDTA-2Na and H_2SO_4 solutions provided the best efficiency. 相似文献
6.
江苏省环保专项资金一般根据专家经验对项目核定后进行事前补助,事后开展针对项目财务支出的合规性评价,但忽视了专家核定补助金额是否合理。根据近3年江苏省燃煤发电机组SCR脱硝工艺典型项目审计报告,分析了项目审计核定支出额与专家核定支出额的规模(100 MW级及以下、300 MW级、600 MW级及以上)差异、区域(苏南、苏中、苏北)差异及其影响因素,发现100 MW级及以下机组环保资金审计核定支出额显著高于专家核定补助额,在剔除100 MW级及以下机组后,苏南地区项目环保资金审计核定支出额显著高于专家核定补助额,基于此提出了项目补助费用校正优化建议,为环保资金科学分配、提高财政资金支出效率提供了理论依据。 相似文献
7.
Sulfur poisoning of V_2O_5/BaSO_4–TiO_2(VBT),V_2O_5/WO_3–TiO_2(VWT) and V_2O_5/BaSO_4–WO_3–TiO_2(VBWT) catalysts was performed in wet air at 350℃ for 3 hr,and activities for the selective catalytic reduction of NO_x with NH_3 were evaluated for 200–500℃.The VBT catalyst showed higher NO_x conversions after sulfur poisoning than the other two catalysts.The introduction of barium sulfate contributed to strong acid sites for the as-received catalyst,and eliminated the redox cycle of active vanadium oxide to some extent,which resulted in a certain loss of activity.Readily decomposable sulfate species formed on VBT-S instead of inactive sulfates on VWT-S.These decomposable sulfates increased the number of strong acid sites significantly.Some sulfate species escaped during catalyst preparation and barium sulfate was reproduced during sulfur poisoning,which protects vanadia from sulfur oxide attachment to a great extent.Consequently,the VBT catalyst exhibited the best resistance to sulfur poisoning. 相似文献
8.
9.
利用废气中本身含有的CO催化还原烟气中的NOx,可以实现以废治废。采用TiO2纳米管负载CeO2,制备CeO2/TiO2纳米管催化剂,并对其进行了SEM表征及影响因素实验。实验结果表明:在n(Ce)∶n(Ti)=3∶7、焙烧温度500 ℃、焙烧时间3 h时制备的CeO2/TiO2纳米管催化剂形貌较好,表面颗粒分布相对均匀;反应温度400~600 ℃时NO脱除率达98%;该催化剂具有一定的抗氧性能;当n(SO2)∶n(NO)=(1∶2)~(2∶1)时,NO脱除率仍然在95%以上。 相似文献
10.
Hang Seok Choi Seock Joon Kim Kwan Tae Kim 《Journal of Material Cycles and Waste Management》2008,10(1):1-6
The mixing characteristics of a passive scalar in the turbulent flow of a selective catalytic reduction process were numerically
and experimentally investigated, focusing especially on an injection nozzle with multiple holes for the reducing agent. The
multihole injection nozzle studied has six holes that are perpendicular to the ambient flue gas flow and are located near
the tip of the nozzle. Large eddy simulation was applied to the turbulent flow and mixing fields to elucidate the mixing mechanism
of the proposed nozzle compared with the single-hole nozzle that is commonly used in the conventional selective catalytic
reduction process. From the results, there exist broader regions of higher turbulent intensities for the multihole nozzle
than for the conventional single-hole nozzle. These regions are well matched with the positions of high vorticity in the near
upstream region of the jet flow issuing from the multiple holes of the nozzle. Consequently, the high turbulent intensities
and vorticity magnitudes lead to intensified mixing between the flue gas and the reducing agent. Hence, the most suitable
molar ratio between NOx and the reducing agent for the catalytic reaction can be easily obtained within a shorter physical
mixing length as a result of the enhanced scalar mixing. Finally, the numerical results were applied to a trial design version
of a multihole nozzle, and this nozzle was experimentally tested to confirm its mixing performance. 相似文献