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91.
92.
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
93.
催化裂化废水连续萃取脱酚研究 总被引:2,自引:0,他引:2
选用焦化粗柴油为萃取剂,在转盘萃取搭连续试验装置中,对催化裂化含酚废水进行脱酚预处理。结果表明,用焦化粗柴油做萃取剂,进水pH值为80~90不加调节;油水比(体积比)17∶1~21∶1;转盘转数1100r/min,酚萃取脱除率达到85%以上。萃取后的粗柴油依据现有工艺而进行加氢精制,不需进行再生等后处理。整个萃取工艺简单易行,能满足预处理的要求 相似文献
94.
IntroductionAs a promising advanced oxidation technology for watertreatment ,catalytic ozonation has received great attentionforthe efficient degradation of organic compoundsinrecent years(Legube , 1999) . Some studies showed that homogeneousand heterogen… 相似文献
95.
邹国斌 《安全.健康和环境》2005,5(6):40-42
阐述了H2S对设备的腐蚀机理,具体分析了催化裂化装置MIP-CGP技术改造后硫分布的新情况,从选材、工艺防腐、表面防腐、焊接质量控制和检测技术等方面提出了防硫化氢腐蚀的对策措施. 相似文献
96.
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
97.
采用浸渍法制备Cu-Mn-Ce/堇青石蜂窝催化剂,于微波催化燃烧装置中考察其对甲苯废气的催化活性与稳定性,并对固定床温度进行了测试分析.研究表明,微波加热下床层温度分布均匀,甲苯的最佳反应温度在230~270℃之间.当停留时间大于9.7s且床层温度高于270℃时,甲苯的降解率大于90%.铜锰铈单金属氧化物及其复合氧化物尖晶石是主要的活性组分,甲苯在其表面上进行准一级反应而被催化氧化.高温对催化剂结构有影响,但重复性试验证实了催化剂的高活性和良好的稳定性.本文为微波催化燃烧技术治理VOCs废气的中试研究及下一步的实际应用提供了理论支持. 相似文献
98.
《环境科学学报(英文版)》2023,35(3):388-400
Removing large concentrations of organic pollutants from water efficiently and quickly under visible light is essential to developing photocatalytic technology and improving solar energy efficiency. This study used a simple hydrothermal method to prepare a non-metallic, S-doped NaTaO3 (S-NTO) photocatalyst, which was then loaded onto biochar (BC) to form a S-NTO/BC composite photocatalyst. After uniform loading onto BC, the S-NTO particles transformed from cubic to spherical. The photogenerated electron-hole pair recombination probability of the composite photocatalyst was significantly lower than those of the NTO particles. The light absorption range of the catalyst was effectively widened from 310 nm UV region to visible region. In addition, a dual-effect catalytic system was constructed by introducing peroxymonosulfate (PMS) into the environment of the pollution to be degraded. The Rhodamine B, Methyl Orange, Acid Orange 7, tetracycline, and ciprofloxacin degradation efficiency at 40 mg/L reached 99.6%, 99.2%, 84.5%, 67.1%, and 70.7%, respectively, after irradiation by a 40 W lamps for 90 min. The high-efficiency visible-light catalytic activity of the dual-effect catalytic system was attributed to doping with non-metallic sulfur and loading of catalysts onto BC. The development of this dual-effect catalytic system provides new ideas for quickly and efficiently solving the problem of high-concentration organic pollution in aqueous environments, rationally and fully utilizing solar energy, and expanding the application of photocatalytic technology to practice. 相似文献
99.
《环境科学学报(英文版)》2023,35(2):491-504
Ce1-xZrxO2 composite oxides (molar, x = 0-1.0, interval of 0.2) were prepared by a cetyltrimethylammonium bromide-assisted precipitation method. The enhancement of silver-species modification and catalytic mechanism of adsorption-transformation-desorption process were investigated over the Ag-impregnated catalysts for low-temperature selective catalytic oxidation of ammonia (NH3-SCO). The optimal 5 wt.% Ag/Ce0.6Zr0.4O2 catalyst presented good NH3-SCO performance with >90% NH3 conversion at temperature (T) ≥ 250°C and 89% N2 selectivity. Despite the irregular block shape and underdeveloped specific surface area (∼60 m2/g), the naked and Ag-modified Ce0.6Zr0.4O2 solid solution still obtained highly dispersed distribution of surface elements analyzed by scanning electron microscope-energy dispersive spectrometer (SEM-EDS) (mapping), N2 adsorption-desorption test and X-ray diffraction (XRD). H2 temperature programmed reduction (H2-TPR) and X-ray photoelectron spectroscopy (XPS) results indicated that Ag-modification enhanced the mobility and activation of oxygen-species leading to a promotion on CeO2 reducibility and synergistic Ag0/Ag+ and Ce4+/Ce3+ redox cycles. Besides, Ag+/Ag2O clusters could facilitate the formation of surface oxygen vacancies that was beneficial to the adsorption and activation of ammonia. NH3-temperature programmed desorption (NH3-TPD) showed more adsorption-desorption capacity to ammonia were provided by physical, weak- and medium-strong acid sites. Diffused reflectance infrared Fourier transform spectroscopy (DRIFTS) experiments revealed the activation of ammonia might be the control step of NH3-SCO procedure, during which NH3 dehydrogenation derived from NHx-species and also internal selective catalytic reduction (i-SCR) reactions were proposed. 相似文献
100.
乙醇汽油车尾气中除了传统汽油车的三大常规污染物(CO、NO