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1.
综述了近年来催化分解N2O金属氧化物催化剂的研究进展,主要包括单组分金属氧化物、尖晶石型氧化物、类水滑石氧化物、(类)钙钛矿型氧化物、负载型金属氧化物等.介绍和总结了各类催化剂的结构特点及催化活性,并展望了N2O分解催化剂的未来研究方向.  相似文献   

2.
对近年来N2O分解反应催化剂的研究进行了综述,包括离子交换分子筛、过渡金属氧化物、负载型贵金属等催化剂.对于离子交换分子筛催化剂而言,分子筛骨架结构、交换离子类型、制备方法均对催化剂的活性有一定影响.在过渡金属氧化物催化剂中,Co-A1、Co-Mn-A1等类水滑石衍生复合氧化物的比表面积和催化活性均较高,在其表面添加适量的碱金属或碱土金属助剂可进一步提高催化活性.在贵金属催化剂中,还原型载体负载的催化剂活性较高.Co基复合氧化物负载Au催化剂有望成为实用型的N2O低温分解催化剂.  相似文献   

3.
低碳烃选择性催化还原NOx的研究进展   总被引:1,自引:0,他引:1  
对报道较多的以低碳烃作为还原荆,选择性催化还原NO的研究进展进行了综述,重点介绍了离子交换分子筛类催化剂、金属与金属氧化物的研究状况,分析了存在问题及今后的研究重点,简要介绍了固体超强酸类催化荆。  相似文献   

4.
秦聪丽  傅吉全 《化工环保》2016,36(3):312-316
采用银杏叶和桑叶提取液制备了改性类Fenton反应催化剂并进行了表征分析,研究了溶液初始p H、反应温度、催化剂加入量、甲基橙初始质量浓度等因素对甲基橙降解率的影响,同时考察了催化剂的重复使用效果。表征结果表明:制备出的催化剂为Fe_2O_3和Fe OOH的混合物;桑叶改性催化剂的粒径分布较银杏叶改性催化剂均匀,粒径较小,比表面积较大。实验结果表明:在初始p H为6.23、反应温度60℃、催化剂用量1 g/L、甲基橙初始质量浓度100 mg/L的条件下,银杏叶改性催化剂的甲基橙降解率为99.40%,桑叶改性催化剂的甲基橙降解率为99.96%;碱性条件下,甲基橙降解率仍接近100%,扩宽了反应的p H适用范围,为碱性条件下处理偶氮染料提供了新思路;催化剂重复使用6次之后,甲基橙降解率仍可达到99%。根据反应前后溶液的紫外-可见吸收光谱,初步探讨了降解机理。  相似文献   

5.
以稀土元素(简称稀土)用量较大的废FCC催化剂和废汽车尾气净化催化剂为研究对象,分析总结了两类废催化剂中稀土的成分和回收方法。从废催化剂中回收稀土普遍采用先浸出、后分离提纯的方法。浸出普遍采用无机酸(多为盐酸),分离方法包括溶剂萃取法、化学沉淀法等,最后经焙烧得到稀土氧化物。为从废催化剂中高效回收稀土,可着重考察新浸出机制的引入、分离方式的选择、分离试剂的应用,以及浸出和分离条件的优化,从而为实现工业化回收提供技术支持。  相似文献   

6.
介绍了Ls-811-2催化剂的研制及在克劳斯硫磺回收装置上的工业应用,实践证明,此催化剂的活性已达到国内外同类催化剂的水平,并具有生产工艺流程简单、无三废污染、原料易得及成本较低等特点。此催化剂的开发,为生产硫磺回收催化剂开辟了新的原料路线及制备方法。  相似文献   

7.
以靛蓝为目标污染物,采用稀土元素Pr辅助的类Fenton试剂氧化法处理模拟染料废水。制备了双金属氧化物催化剂Fe2-xPrxO3,考察了催化剂中n(Pr)∶n(Fe)、催化剂加入量、初始靛蓝质量浓度、H2O2加入量、废水pH对废水脱色效果的影响。实验结果表明:Pr在很大程度上提高了类Fenton反应的效率,废水脱色率得到显著提高;在n(Pr)∶n(Fe)=1∶5、初始靛蓝质量浓度为30 mg/L、催化剂加入量为500 mg/L、H2O2加入量为40 mL/L、废水pH为3的最佳工艺条件下,反应50 min时废水脱色率达到92.78%。  相似文献   

8.
刘腾  邱兆富  杨骥  曹礼梅  张巍 《化工环保》2015,35(2):159-164
根据我国每年的石油消费量估算了当年的废炼油催化剂产生量,预测2015年我国废炼油催化剂的产生量将达到2.07×105 t。介绍了废炼油催化剂的主要成分、含量与危害,分别论述了废流化催化裂化催化剂、废催化加氢催化剂和废催化重整催化剂的处理和利用方法,指出废炼油催化剂的再生及资源化和无害化应是未来的重点研究方向。  相似文献   

9.
介绍了Ls-811-2催化剂的研制及在克劳斯硫磺回收装置上的工业应用。实践证明,此催化剂的活性已达到国内外同类催化剂的水平,并具有生产工艺流程简单、无三废污染,原料易得及成本较低等特点。此催化剂的开发,为生产硫磺回收催化剂开辟了新的原料路线及制备方法。  相似文献   

10.
刘晓琛  赵琪  陈泉源  唐聪  卢钧  姚远 《化工环保》2019,39(3):255-261
分别以天然含铁矿物黄铜矿、磁铁矿、磁黄铁矿为催化剂,构建了UV-异相类Fenton体系处理实际印染废水生化出水,确定了最优反应条件,并对反应机理进行了初步探讨。实验结果表明:最佳条件下,以黄铜矿、磁铁矿、磁黄铁矿为催化剂的3种异相UV-类Fenton体系对废水的COD去除率分别可达58.83%、57.41%和60.57%,UV254去除率均大于94%;3种天然矿物在重复使用5次后对废水COD的去除率仍保持在50%以上,光催化活性稳定;该体系产生·OH的途径主要有催化剂表面的Fe(Ⅱ)催化H_2O_2分解、H_2O_2光解、溶出的Fe~(2+)催化H_2O_2分解3种,以前两种方式为主。  相似文献   

11.
The present work deals with the application of biotechnology for the mobilization of metals from different solid wastes: end of life industrial catalysts, heavy metal contaminated marine sediments and fluorescent powders coming from a cathode ray tube glass recycling process. Performed experiments were aimed at assessing the performance of acidophilic chemoautotrophic Fe/S-oxidizing bacteria for such different solid matrices, also focusing on the effect of solid concentration and of different substrata. The achieved results have evidenced that metal solubilization seems to be strongly influenced by the metal speciation and partitioning in the solid matrix. No biological effect was observed for Ni, Zn, As, Cr mobilization from marine sediments (34%, 44%, 15%, 10% yields, respectively) due to metal partitioning. On the other hand, for spent refinery catalysts (Ni, V, Mo extractions of 83%, 90% and 40%, respectively) and fluorescent powders (Zn and Y extraction of 55% and 70%, respectively), the improvement in metal extraction observed in the presence of a microbial activity confirms the key role of Fe/S oxidizing bacteria and ferrous iron. A negative effect of solid concentration was in general observed on bioleaching performances, due to the toxicity of dissolved metals and/or to the solid organic component.  相似文献   

12.
催化湿式氧化中多相非贵金属催化剂的研究进展   总被引:3,自引:1,他引:3  
催化湿式氧化(CWAO)法是一种利用溶解氧去除废水中高毒性、难降解污染物的新型水处理技术。在催化湿式氧化中应用的催化剂有贵金属催化剂和非贵金属催化剂两种。在零附加值的废水处理过程中,使用非贵金属催化剂替代贵金属催化剂,在经济上更具有优势。对近年来用于催化湿式氧化废水处理过程中的多相非贵金属催化剂进行了综述。  相似文献   

13.
陈飞飞  王光辉  李伟  杨锋 《化工环保》2012,32(3):277-281
采用共沉淀法合成了镁铝水滑石并将其在不同温度下煅烧得到复合金属氧化物。将两者作为催化剂用于醇解聚对苯二甲酸乙二醇酯(PET)反应中。实验结果表明:复合金属氧化物的催化活性明显高于其前体,最佳煅烧温度为500℃;在催化剂与PET质量比为1.0%、醇解反应时间为50 min时,产物对苯二甲酸乙二醇酯(BHET)的产率可达到81%。镁铝水滑石煅烧后得到的复合金属氧化物是一种高效、环境友好型醇解PET催化剂,可以替代目前常用的均相催化剂。  相似文献   

14.
低温SCR技术可减少由高温和高尘引起的SCR催化剂的磨损、堵塞等。通过综述各类低温脱硝催化剂的研究现状,着重介绍了金属氧化物催化剂的制备方法以及载体、活性中心对脱硝率的影响和相关脱硝机理,总结了低温脱硝技术存在的问题并阐明了后续的发展方向。  相似文献   

15.
The catalytic upgrading pyrolysis of pine sawdust was performed at 500 °C with various metal oxides to improve the quality of the bio-oil. The aim of this study was to investigate the potential of the metal oxides instead of traditional zeolites for catalytic upgrading pyrolysis with the analysis of Gas Chromatograph/Mass Spectrometer. In this study, the used catalysts were Calcium-oxide, Magnesium oxide, Titanium dioxide, and Zeolite (Si/Al?=?80). The influence of catalysts on products yields and compositions were investigated. Most metal oxides can enhance the bio-gas with the bio-oil yields decreased. The metal oxides led to a decrease of Acids, Aldehydes, Ketones and an increase of Furfural, Cresols, Catechols in Furans and Phenolics. Among the catalysts, the MgO catalysts was the most effective to convert the high molecular into lights ones (6.65% Cresols) with yield of 20.48% for Furfural. The deoxygenation reaction in bio-oil was suggested to convert oxygenated compounds into the low molecular weight of the materials (6.39% Guaiacols). Thus, the used metal oxides can improve the quality of bio-oil by decreasing undesirable compounds as well as increasing the desirable compounds with low oxygen contents via deoxygenation reaction.  相似文献   

16.
低温选择性催化还原(SCR)技术具有很高的脱硝效率。概述了低温SCR金属氧化物催化剂的制备方法和性能,分析了催化剂的失活原因和再生方法,探讨了催化反应的机理,并介绍了低温SCR技术在工业烟气脱硝中的应用案例。SCR催化剂未来的发展不仅要以低温下的高活性和高选择性为主要目的,还要考虑到催化剂的抗失活性能(如抗硫性和抗水稳定性)和操作温度范围,使其可广泛应用于不同的工况中,以满足我国日益提高的环保要求。  相似文献   

17.
Bioleaching of spent lithium ion secondary batteries, containing LiCoO2, was attempted in this investigation. The present study was carried out using chemolithotrophic and acidophilic bacteria Acidithiobacillus ferrooxidans, which utilized elemental sulfur and ferrous ion as the energy source to produce metabolites like sulfuric acids and ferric ion in the leaching medium. These metabolites helped dissolve metals from spent batteries. Bio-dissolution of cobalt was found to be faster than lithium. The effect of initial Fe(II) concentration, initial pH and solid/liquid (w/v) ratio during bioleaching of spent battery wastes were studied in detail. Higher Fe(II) concentration showed a decrease in dissolution due co-precipitation of Fe(III) with the metals in the residues. The higher solid/liquid ratio (w/v) also affected the metal dissolution by arresting the cell growth due to increased metal concentration in the waste sample. An EDXA mapping was carried out to compare the solubility of both cobalt and lithium, and the slow dissolution rate was clearly found from the figures.  相似文献   

18.
Catalytic cracking of high-density polyethylene (HDPE) over fluid catalytic cracking (FCC) catalysts (1:6 ratio) was carried out using a laboratory fluidized bed reactor operating at 450 degrees C. Two fresh and two steam deactivated commercial FCC catalysts with different levels of rare earth oxide (REO) were compared as well as two used FCC catalysts (E-Cats) with different levels of metal poisoning. Also, inert microspheres (MS3) were used as a fluidizing agent to compare with thermal cracking process at BP pilot plant at Grangemouth, Scotland, which used sand as its fluidizing agent. The results of HDPE degradation in terms of yield of volatile hydrocarbon product are fresh FCC catalysts>steamed FCC catalysts approximately used FCC catalysts. The thermal cracking process using MS3 showed that at 450 degrees C, the product distribution gave 46 wt% wax, 14% hydrocarbon gases, 8% gasoline, 0.1% coke and 32% nonvolatile product. In general, the product yields from HDPE cracking showed that the level of metal contamination (nickel and vanadium) did not affect the product stream generated from polymer cracking. This study gives promising results as an alternative technique for the cracking and recycling of polymer waste.  相似文献   

19.
石静  陈丹  沈华瑶 《化工环保》2012,40(2):118-124
催化氧化技术可以有效处理挥发性有机物(VOCs)。综述了双金属催化剂催化氧化去除VOCs的研究进展,重点论述Ag、Au和Cu基双金属催化剂催化去除VOCs的最新研究进展,从制备方法、粒子分散度、形貌、负载量、载体结构和表面修饰等方面讨论了催化氧化VOCs性能和催化剂结构之间的关系。指出:双金属催化剂制备调控可以有效提高金属活性粒子在载体表面的分散度进而增强双金属间协同作用,最终提高VOCs催化反应活性。  相似文献   

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