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1.
负载型金催化剂用于室温下CO的消除   总被引:4,自引:0,他引:4  
从催化活性、抗潮湿、抗硫中毒、稳定性等方面考察了负载型金催化剂对于CO氧化反应的性能。筛选出的2-3催化剂可在-22℃下完全消除CO,并且在催化活性、抗潮湿、抗硫中毒、稳定性等方面具有现行催化剂无法比拟的优点。  相似文献   

2.
汽车排气净化催化剂的研究   总被引:5,自引:0,他引:5  
研究了CuO/r-Al2O3催化剂对正已烷的氧化活性及CuO负载量对活性的影响;通过CO-流动法技术考察了在CuO/r-Al2O3上添加稀土CeO2在贫氧和富氧条件下对CO的氧化活性。结果表明稀土CeO2的添加提高了催化剂在贫氧条件下的氧化活性;该催化剂台架试验结果亦表明,催化剂具有较好的一氧化碳(CO)和烃类(HC)的氧化能力。  相似文献   

3.
载银TiO2半导体催化剂对印染废水的光降解研究   总被引:28,自引:0,他引:28  
以新型载银TiO2为催化剂,采用高压汞灯为光源对实际印染废水进行了光催化降解的研究。研究结果表明,用新型载银催化剂(简称TSA)对印染废水和精炼废水进行深度处理的效果比用TiO2为好。在光照120分钟条件下,用TSA催化剂对印染和精炼废水生化处理出水进行光催化降解,废水的CODcr去除率分别达到75.3%和83.4%,比同样光降解条件下用单一TiO2催化剂时废水的CODcr去除率提高22.9%和2  相似文献   

4.
共存离子对硫酸盐还原菌(SRB)处理含铬废水的影响研究   总被引:9,自引:0,他引:9  
报道了用硫酸盐还原菌(SRB)处理含铬(VI)废水时,共存离子Sr^2+,Cd^2+,Zn^2+,UO^2+2,Ag^+和Cl^-,SO2-4,CO^2-3,SiF^2-6,EDTA柠檬酸根等存在的时的影响,在铬(VI)为50μg/mL,菌量一定的条件下,铬的去除率可达85%以上,共存离子与铬(VI)的摩尔比为4时影响较为显著,Cd^2+和Ag^+使铬的去除量降低,UO^2+2,Sr^2+,Zn^  相似文献   

5.
运用微反技术考察了CrOX负载型催化剂对CO+O2和CO+NO反应的催化活性。研究了微量Pd加和CrOX基双组元催化剂对上述反应的催化活性,中间产物N2O生成和N2生成的影响。  相似文献   

6.
研究了ZSM-5分子筛负载Pt、Pd催化剂对CH4还原NO催化反应的性能。实现表明,Pt催化剂在300-50℃温度下,显示出较高的反应活性和N2选择性,d和Pt-Pd催化剂在400-500℃温度下具有较好的反应性能。其活性选择性大小次序为:Pt〉Pt-Pd〉Pd。用铂氨络离子制备的催化剂反应性能优于用氯铂酸制备的催化剂。  相似文献   

7.
原位络合的超临界萃取技术开辟了超临界二氧化碳(SC-CO2)萃取金属离子的新途径。本文综述国外有关SC-CO2萃取环境样品中金属离子的原理、流程、应用及影响因素等方面的研究进展,并相信随着研究工作的不断深入,更加理想的络合剂和SC-CO2携带剂的发现,必将使SC-CO2萃取金属离子的技术在环境样品中痕量金属离子的前处理和分析以及有害金属离子的处理等方面的应用前景更为广阔  相似文献   

8.
H-酸的催化湿式氧化反应过程研究   总被引:9,自引:0,他引:9  
湿式氧化(WAO)和催化湿式氧化(CWAO)都能有效地处理染料中间体--H-酸。所有的H-酸在5min内均被支除和形成一些中间产物。在不同反应时间段测定了pH值及阴、阳离子和小分子有机酸等中间产物。分析表明,pH值与COD的去除及有机酸的产生有密切的联系,H-酸被氧化成NH4^+、SO4^2-、HCOOH和CH2COOH。WAO法的瓜速率慢而且氧化乙酸困难。而CWAO法的反应速率不但快而且能有效地  相似文献   

9.
染色废水吸附混凝效应研究   总被引:27,自引:0,他引:27  
用自制的酸性膨润土用无机混凝剂Al2(SO4)3联用处理含酸性红3B,弱酸橙GS和弱酸艳绿5G等染料的合成废水,以CDOCR去除率和脱色率来表征吸附的处理效果,结果表明,酸性膨润土和酸性膨润土-硫酸铝两种吸收混凝剂的废水处理效果无明显差异,其效率与染料种类有关,处理含5G绿废水的效果优于含GS橙和3B红废水。  相似文献   

10.
本文对采用电化学方法去除SO2/NOx废气这一新的研究方法进行了综述,在用酞花青钴(CoPc)修饰的碳气体扩散电极上,SO2在空气中的体积百分数在20%以下时可以完全被氧化为硫酸,以连二硫酸盐(S2O4^2-4)作还原剂,Fe^2+-EDTA作络合剂时,NO可以90%以上的程度还原为NH^+4与NH2(SO3H)等低价含氮化合物,产物中未见N2、N2O与NO2等气体,氧化产物SO^2-3(或HSO  相似文献   

11.
An analytical method, using supercritical fluid extraction (SFE), was assessed for residue analysis of the insecticides fipronil, acrinathrin and pyridaben and the fungicide kresoxim-methyl in melons. Extraction conditions were optimized on glass beads, as inert material, evaluating different pressures, temperatures, and CO(2) volumes. Also, the extractability of pesticides from hydromatrix and anhydrous magnesium sulfate was evaluated. Both adsorbents were evaluated for the preparation of SFE-spiked melon samples. Extractions of fortified samples were done using 20 mL of CO(2), 300 atm, and 50 degrees C. Different extraction conditions, including the addition of water and methanol as a static modifier, were used to assess the extractability of these pesticides, and the addition of methanol was demonstrated to improve the extraction of all the studied pesticides.  相似文献   

12.
The use of both oxygenated fuels in carbon monoxide (CO) nonattainment areas and reformulated gasoline in ozone nonattainment areas has been mandated by the 1990 Clean Air Act Amendments. Methanol has been proposed as an alternative fuel for CO nonattainment areas. Its use will potentially increase indoor methanol inhalation exposure resulting from the evaporation of methanol vapor from methanol-fueled vehicles parked in residential garages. Indoor air concentrations of methanol, benzene, and toluene were measured in a residential home with an attached garage. The effects of vehicle emission control devices (charcoal canister hose connection); home heating, ventilation, and air conditioning (HVAC) fans; ambient air, garage, and fuel tank temperatures; and wind speed were examined. The disconnection of the charcoal canister hose, which simulates a spent evaporative emission control device, resulted in elevated benzene, toluene, and methanol concentrations in the garage and attached home. Higher fuel tank temperatures resulted in higher benzene and toluene concentrations in the garage, but not methanol. The concentrations for all compounds in the garage and concentrations of benzene and toluene in the adjacent room were lower when the HVAC fan was on than when it was off, while the concentrations of all three compounds in the rest of the house were higher, although these differences were not statistically significant. Thus, the portion of the population that parks cars in garages attached to homes will experience increased methanol exposures if methanol is used as an automotive fuel.  相似文献   

13.
The photocatalytic destruction of methanol, formaline (mixture of formaldehyde, methanol and water) and formaline wastes from the preservation of vertinarian physiologic samples has been attempted by two different processes, at high concentrations of reagents and by dossification of reagents, varying pH in both. Experiment evolution has been monitored by measuring the organic matter such as TOC and formaldehyde concentrations [H2CO]. Also, methanol and methanol-formaldehyde interactions with the TiO2 surface have been analysed by FTIR spectroscopy. Results indicate that at high concentrations the catalyst surfacial alterations given by methoxy, formates or carbonates, according to the pH of the sample can profoundly affect catalyst behaviour. It has been established that reagent dossification is advantageous for enhancing photonic efficiency as it minimizes the adsorbate presence that hampers the photocatalytic process.  相似文献   

14.
During the past decade, there has been increasing global concern over the rise of anthropogenic CO2 emission into the Earth’s atmosphere (J Air Waste Manage Assoc 53:645–715, 2003). The utilization of CO2 to produce any valuable product is need of the hour. The production of syngas from CO2 and CH4 seems to be one of the promising alternatives in terms of industrial utilization, as it offers several advantages: (a) mitigation of CO2, (b) transformation of natural gas and CO2 into valuable syngas, and (c) producing syngas with H2/CO ratio 1 which may further be used for the production of valuable petrochemicals (J Air Waste Manage Assoc 53:645–715, 2003). A conceptual design for the production of synthesis gas by dry reforming of methane is presented here. An economic assessment of this process with an integrated methanol production section as a case was conceptualized and compared with the conventional steam methane reforming route to produce methanol. The economic study indicated that dry reforming of natural gas/methane is a competitive process with lower operating and capital costs in comparison with steam reforming assuming negligible cost of CO2 import.  相似文献   

15.
Automated Supercritical Fluid Extraction (SFE), using CO2, was tested and optimised for routine analysis of hydrocarbons (THC), polychlorinated biphenyls (PCB) and polycyclic aromatic hydrocarbons (PAH) in marine sediments. The aim of the exercise was to reduce the amount of solvents used and to reduce the manual handling time for each sample. The sediments contained elemental sulphur, which was removed during the extraction step using activated Cu. Similar recoveries and reproducibility where found for THC when conventional solvent extractions and SFE where compared. Modifying the CO2 with methanol was necessary to obtain extraction recoveries similar to conventional extraction methods for PCB and PAH.  相似文献   

16.
Experiments were conducted on a four-cylinder direct-injection diesel engine with part of the engine load taken up by fumigation methanol injected into the air intake of each cylinder to investigate the regulated and unregulated gaseous emissions and particulate emission of the engine under five engine loads at an engine speed of 1920 rev min?1. The fumigation methanol was injected to top up 10%, 20% and 30% of the engine load under different engine operating conditions.The experimental results show that at low engine loads, the brake thermal efficiency (BTE) decreases with increase in fumigation methanol; but at high engine loads, the BTE is not significantly affected by fumigation methanol. The fumigation methanol results in significant increase in hydrocarbon (HC), carbon monoxide (CO) and nitrogen dioxide (NO2) emissions, but decrease in nitrogen oxides (NOx). For the unregulated gaseous emissions, unburned methanol, formaldehyde and BTX (benzene, toluene and xylene) emissions increase but ethyne, ethene and 1,3-butadiene emissions decrease. Particulate mass and number concentrations also decrease with increase in fumigation methanol. A diesel oxidation catalyst (DOC) is found to reduce significantly most of the pollutants, including the air toxics, when the exhaust gas temperature is sufficiently high.  相似文献   

17.
王君雅  羊莹  宁平 《环境工程学报》2018,12(12):3379-3388
为进一步提高LDH基材料的CO2吸附性能以及吸-脱循环稳定性能,采用浸渍法将碱金属硝酸盐负载在LDH基材料上,分别探究了Mg/Al比、合成pH、碱金属硝酸盐种类和负载量等对其CO2吸附性能的影响。结果表明,当LDH中Mg/Al比例为20,合成pH为10,负载30% Li0.3Na0.18K0.52NO3后,在最佳煅烧温度500 ℃,最佳吸附温度260 ℃的条件下,其 CO2吸附量最大可达到4.64 mmol·g?1。另外,该材料在经历了10个吸-脱附循环过程后,表现出较好的循环稳定性能。通过分析可知,碱金属硝酸盐没有参与CO2吸附反应,碱金属硝酸盐的负载对LDH的CO2吸附性能有极大地促进作用。  相似文献   

18.
Experiments were carried out on a diesel engine operating on Euro V diesel fuel, pure biodiesel and biodiesel blended with methanol. The blended fuels contain 5%, 10% and 15% by volume of methanol. Experiments were conducted under five engine loads at a steady speed of 1800 rev min−1 to assess the performance and the emissions of the engine associated with the application of the different fuels. The results indicate an increase of brake specific fuel consumption and brake thermal efficiency when the diesel engine was operated with biodiesel and the blended fuels, compared with the diesel fuel. The blended fuels could lead to higher CO and HC emissions than biodiesel, higher CO emission but lower HC emission than the diesel fuel. There are simultaneous reductions of NOx and PM to a level below those of the diesel fuel. Regarding the unregulated emissions, compared with the diesel fuel, the blended fuels generate higher formaldehyde, acetaldehyde and unburned methanol emissions, lower 1,3-butadiene and benzene emissions, while the toluene and xylene emissions not significantly different.  相似文献   

19.
A method for a photochemically induced mineralization of CCl4 is described in which use is made of reductive radicals. The UVC-photolysis (254 nm) of H2O2 added to aqueous solutions of CCl4 is leading to the homolysis of the oxidant yielding hydroxyl radicals (HO) that subsequently react with added methanol to generate hydroxymethyl radicals (CH2OH). The latter radicals initiate mineralization of CCl4 by reductive C-Cl bond splitting. CHCl3, C2Cl4 and C2Cl6 were found as reaction intermediates, but are quantitatively depleted in a parallel oxidative reaction manifold leading to mineralization. Carbon dioxide radical anion, CO2(-), an intermediate in the mineralization pathway of methanol, is also shown to initiate the mineralization of CCl4 by reductive dechlorination. A reaction mechanism is proposed and validated with computer simulations of all the experimental results.  相似文献   

20.
本文论述了火电厂排放CO_2的分离回收和固定技术的研究开发现状,下述从火电厂排气分离回收CO_2的方法:(1)胺液吸收,(2)物理吸附,(3)膜分离,(4)O_2/CO_2燃烧及下述回收CO_2的固定方法:(1)物理固定(深海处置,EOR),(2)化学固定(CO_2有机合成),(3)生物固定(培养藻类),在技术上是可行的。但目前这些技术还处在基础试验阶段,离实用还有一段距离。今后应在现有的基础上继续试验研究,开拓思路,加强国际合作,争取在技术的实用性和经济性方面有所突破。  相似文献   

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