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1.
IntroductionRcccntl}'.researchinterestinhctcrogcllcotlscatal\'ticCOZh\'drogcnationhasfocusedontileproductionofh}'drocarbonsl1~-if.Asfortheformationoflightolefins.afo\'papershat'cbccllptlblishcdlit>l.Ho\\c\cr.tileprodllctionoflightolcfillsf'ronlCOZh}'droge…  相似文献   

2.
IntroductionItilasbeenshot'-nthattileadditionofMnOpromotertoFocatal}stcanresultinaremarkableimprovementinthesclectivit}'to11ghtalkenesforCOh}!drogenationll'l.Ho-c'cvcr.thecadetofMnOonCH4formationandCOconversionisvery'ambigUouslltolMoreover.MnOpromotergrca…  相似文献   

3.
The activity and the selectivity to light alkenes of silicalite-2 (Si-2) zeolite supported F'e catalyst tor CO hydrogenation can he improved obviously with the addition of K2O and MnO promoters. The results of CO hydrogenation, CO-TPD, CO/H2-TPSR, C2H4/H2-TPSR and C2H4/H2 pulse reaction over K-Fe-MnO/Si-2 catalysts clearly show that the K2O additive into Fe-MnO/Si-2 catalyst leads to a remarkable increase in both the capacity and strength of the strong CO ad-species that will produce much more |Cad| via their disproportionation at higher temperatures. This results in an increase in the CO conversion and the selectivity to light olefins, and a decrease in CH4 formation. Moreover, K2O can suppress the disproportionate of C2H4 that occurs during the reaction as a side-reaction Meanwhile, the MnO promoter mainly prohibits the hydrogenation of C2H4 and C3H6, which is favorable to enhancing the selectivity to C2H4 and C3H6 and decreasing the formation of C2H6, and C3H8. It is also of interest that MnO has har  相似文献   

4.
lntroductionInordcrtoselcctivcl}'produccIightoIcfinsfroms}'ngas.thcbinderusedforimprovingthecatal}'ststrcngthshouldbcfavorabIcforprimary'formingofligl1tolcfinsfroms}ngasandforprohibitingsidereactionsoflightoIcfi.sIll.lthasbccnshownthattheundesirablcstrengthofsilicalitc-2zcolitccanbcimprovcdb}addingbindcrs.Hot`ycver.thcadditionofthcbinder`"illcauscsomcchangcsinthcph}'sical-chcmicalstatcofthecatal}ticactivemetalas``cllasitscatal}ticbcha.io,ll'2I.InourprcviouspaperTiO2wasprovedtobcadcsirablcbi…  相似文献   

5.
The performance of the K-Fe-MnO/Si-2 catalyst for the production of light olefins via Co hydrogenation changes obviously with the addition of binders. The results of CO hydrogenation. TPR, Mossbauer spectra CI0TPF, CO/H2-TPSR and C2H4/H2-TPSR are employed to investigate the effects of various binders on the physical-chemical states and catalytic behaviors of K-Fe-MnO/Si-2 catalyst to produce light olefins via syngas, TiO2 can promote the reduction of Fe and strengthen the adsorption of CO resulting in raising olefin selectivity. Other binders such as Al2O3, SiO2, MgO, once added into the catalyst, may cause formation of inorganic salts between FeO and Binders leading to a decrease of Fe reduction and a loss of olefin selectivity for CO hydrogenation. Especially, For K-Fe-MnO/Si-2 catalyst with Al2O3 binder directly, the strong secondary reactions of ethylene during CO hydrogenation cause a very poor light olefin selectivity, which will be improved greatly by modifying Al2O3.  相似文献   

6.
Fe—Silicalite—2催化剂表面CO2加氢反应性能的研究   总被引:3,自引:0,他引:3  
研究了Fe/Silicalite-2催化剂CO2加氢低碳烯烃反应性能,利用CO2-TPD,CO2/H2-TPSR和CO/H2-TPSR表征手段,考察了铁含量及MnO助剂对Fe/Silicalite-2催化剂CO2吸附脱附及加氢反应性能的影响,表明随铁含量增加可提高催化剂对CO2的吸附能力,有利于提高CO2加氢反应的转化率。  相似文献   

7.
Intr0ductionRcccntl}.n1uchprogrcsshasbcc11n1adcinthcscIcctivcCOh\'drogcnationproducingliglltolcfinsvIas}'ngasb}'dct'clopingasilicalitc-2zcolitcsupp0rtcdFccatal\'st.Ithasbccllshox\llthatasilicaIitc-2zcoIitcsupportcdFccatal\'stpromotcdb}'aIkalin1ctalandMnOdispla}sadcsirabIcolcfil1sclccti\'it}(asl1ighas7()%)andadcsirablcCOcont'crsion(muchhighcrthan7O%)\\ithabett.,rcactionlifconst,ca.I1~31.Ho\\cvcr-thcundcsirablcstrcl1gthofSi-2zcolitcisunsuitabIcforitsapplicatiOninindustry-\\hichsIlouldbci…  相似文献   

8.
ThisprojectissllpportedbytheNationalNaturalScienceFotmdationofChina.IntroductionRecentstUdyonCOZhydrogenationfortheformationofhydrocarbonshascausedagreatinterest,especiallyintheproductionoflightalkenes.msreactionwillprovideanalternativeroutetoproducebasic…  相似文献   

9.
利用连续流动微反研究了Rh+Co/Al2O3催化剂的CO加氢反应, 结果表明反应在220℃以上发生, 反应活性随着温度的升高和H2/CO值的增加而增加。利用TP-IR动态方法研究了Rh+Co/Al2O3上CO和H2共吸附及其动态行为。结果表明在Rh+Co/Al2O3的孪生及线式中心上, CO和H2室温共吸附时即有部分孪生及线式CO转化为相应的羰基氢化物, 随着温度的升高, 剩余的孪生和线式CO继续向相应的羰基氢化物转化。而羰基氢化物则向多羰基氢化物转化。在到达反应温度之前, 催化剂表面只存在羰基氢化物及相应的多氢羰基氢化物。在反应温度则导致产物CH4生成。与CO加氢反应和CO歧化的吸附态研究结果相关联, 作者认为Rh+Co/Al2O3上CO加氢生成CH4是经由羰基氢化物-多氢羰基氢化物途径。  相似文献   

10.
A series of reactions involving Fe(+) ions were studied by the pulsed laser ablation of an iron target, with detection of ions by quadrupole mass spectrometry at the downstream end of a fast flow tube. The reactions of Fe(+) with N(2)O, N(2) and O(2) were studied in order to benchmark this new technique. Extending measurements of the rate coefficient for Fe(+) + N(2)O from 773 K to 185 K shows that the reaction exhibits marked non-Arrhenius behaviour, which appears to be explained by excitation of the N(2)O bending vibrational modes. The recombination of Fe(+) with CO(2) and H(2)O in He was then studied over a range of pressure and temperature. The data were fitted by RRKM theory combined with ab initio quantum calculations on Fe(+).CO(2) and Fe(+).H(2)O, yielding the following results (120-400 K and 0-10(3) Torr). For Fe(+) + CO(2): k(rec,0) = 1.0 x 10(-29) (T/300 K)(-2.31) cm(6) molecule(-2) s(-1); k(rec,infinity) = 8.1 x 10(-10) cm(3) molecule(-1) s(-1). For Fe(+) + H(2)O: k(rec,0) = 5.3 x 10(-29) (T/300 K)(-2.02) cm(6) molecule(-2) s(-1); k(rec,infinity) = 2.1 x 10(-9) (T/300 K)(-0.41) cm(3) molecule(-1) s(-1). The uncertainty in these rate coefficients is determined using a Monte Carlo procedure. A series of exothermic ligand-switching reactions were also studied at 294 K: k(Fe(+).N(2) + O(2)) = (3.17 +/- 0.41) x 10(-10), k(Fe(+).CO(2) + O(2)) = (2.16 +/- 0.35) x 10(-10), k(Fe(+).N(2) + H(2)O) = (1.25 +/- 0.14) x 10(-9) and k(Fe(+).O(2) + H(2)O) = (8.79 +/- 1.30) x 10(-10) cm(3) molecule(-1) s(-1), which are all between 36 and 52% of their theoretical upper limits calculated from long-range capture theory. Finally, the role of these reactions in the chemistry of meteor-ablated iron in the upper atmosphere is discussed. The removal rates of Fe(+) by N(2), O(2), CO(2) and H(2)O at 90 km altitude are approximately 0.1, 0.07, 3 x 10(-4) and 1 x 10(-6) s(-1), respectively. The initially formed Fe(+).N(2) and Fe(+).O(2) are converted into the H(2)O complex at approximately 0.05 s(-1). Fe(+).H(2)O should therefore be the most abundant single-ligand Fe(+) complex in the mesosphere below 90 km.  相似文献   

11.
High selectivity to light alkenes can be achieved from CO and CO_2hydrogenation over K-Fe-MnO/Si-2 catalyst.The alkene selectivity isinsensitive to reaction temperature for CO hydrogenation,while apparentlyincreases for CO_2 hydrogenation with raising reaction temperature.An increasein alkene selectivity is observed for both CO and CO_2 hydrogenation with GHSVrising,While a decrease with the elevation of reaction pressure for both CO/H_2and CO_2/H_2 reaction.A two-step mechanism is suggested forCO_2 hydrogenation to form hydrocarbons,by which the variations incontributions of CO and HC as products of CO_2/H_2 reaction with change ofreaction temperature,GHSV and pressure are explained.Moreover,thecatalyst is favorable for selective production of light olefins,which can alsoconcern the slightly secondary reactions of light olefins to some extent.  相似文献   

12.
考察了Fe,Rh载量以及助剂对Rh-Fe/Al2O3催化剂上合成气制乙醇反应性能的影响.结果表明,随着Fe载量的增加,甲醇选择性持续上升伴随着甲烷选择性的持续下降,而乙醇选择性有最优值.助剂的添加或多或少促进了甲醇耦合、CO插入和解离的活性,或抑制了催化剂加氢能力,使得乙醇选择性有所上升,甲醇选择性有所下降,而烃类选择性变化不大.随着CO加氢反应的进行,Rh-Fe/Al2O3催化剂上烃类选择性逐渐下降,但甲醇的生成活性逐渐上升,而乙醇选择性和生成活性逐渐下降;然而,助剂的添加并未提高催化剂的稳定性.这可能是由于在反应过程中Fe物种逐渐被合成气还原使得乙醇生成活性位数量逐渐减少所致.  相似文献   

13.
用浸渍法制得一系列不同铁负载量的Fe2O3/ZrO2催化剂,应用催化反应评价结合穆斯堡尔谱对催化剂的CO加氢反应性能、催化剂活性相结构及催化剂铁物种在合成气反应过程中的物相变化进行了研究.结果表明,铁负载量的大小对于Fe2O3/ZrO2催化剂的F-T反应催化性能有很大影响,铁负载量适当时,Fe2O3/ZrO2催化剂铁锆间适当的强相互作用使得催化剂在保持较高催化活性的同时高选择性地生成低碳烯烃,产物分布偏离Schulz-Flory分布规律.  相似文献   

14.
CO加氢反应机理一直是许多化学工作者感兴趣的课题.Rh催化剂因其优良的性能而被用于 CO加氢机理研  相似文献   

15.
CO2/H2和(CO/CO2)+H2低压合成甲醇催化过程的本质   总被引:8,自引:0,他引:8  
通过在Cu/ZnO/Al2O3催化剂上CO2+H2,CO+H2和(CO/CO2)+H2催化反应动力学研究对合成甲醇动力学和反应机理进行了细致分析,提出合成甲醇的反应机理,解释了在(CO/CO2)+H2合成甲醇过程中少量CO2的作用及合成甲醇的直接碳源。  相似文献   

16.
采用CO加氢反应、CO-TPD、CO/H_2-TPSR及C_2H_4/H_2-TPSR等手段,研究合成气制低碳烯烃反应K-Fe-MnO/MgO催化剂中MnO的助剂作用。结果表明MnO能大幅度提高低碳烯烃的选择性,尤其是乙烯的选择性;MnO能抑制催化剂表面的乙烯加氢,因而有利于提高低碳烯烃的选择性及烯/烷的比值。  相似文献   

17.
程文强  宋夫交  高佳  葛艳  许琦 《合成化学》2020,28(4):308-313
以Zn(NO3)2·6H2O、Zr(NO3)4·5H2O为原料,Na2CO3为沉淀剂,采用并流共沉淀法制备了一系列不同Zn/Zr摩尔比的双金属氧化物催化剂,其结构经XRD、BET、Raman光谱、TEM和H2-TPR表征。结果表明:Zn0.2Zr0.8Ox催化剂为固溶体结构,比表面积最大达46.2 m^2·g^-1,还原性能良好。以催化CO2加氢合成甲醇为目标反应,对不同Zn/Zr摩尔比的催化剂进行性能测试,并考察了反应温度和反应时间对Zn0.2Zr0.8Ox催化剂性能的影响。结果表明:反应温度250℃、空速GHSV为12000 mL·g^-1h^-1、反应压力2 MPa和H2/CO2(体积比)=3/1时,Zn0.2Zr0.8Ox固溶体催化剂催化活性最高,二氧化碳转化率达到了3.5%、甲醇选择性高达75.4%,甲醇收率达到2.6%,且催化剂能够稳定运行100 h而不失活。  相似文献   

18.
A new K-Fe-MnO/Si-2 catalyst has been developed for CO2 hydrogenation, which exhibits a fascinating reaction activity and light olefin selectivity for CO2 hydrogenation. Over the catalyst, it is observed that olefin selectivity increases apparently with reaction temperature and/or GHSV, while decreases when reaction pressure is up. Furthermore, the catalyst exhibits a better stability for CO2 hydrogenation. However, coke deposited on catalyst surface is formed at the beginning of the reaction period and then reached a stable state during CO2 hydrogenation. Generally, the K-Fe-MnO/Si-2 catalyst can be regenerated for CO2 hydrogenation, the same selectivity of C2=-C4=alkenes is regained without any decrease in catalyst activity with time on stream.  相似文献   

19.
Rh基催化剂上CO加氢制C2含氧化物的原位红外光谱研究   总被引:5,自引:0,他引:5  
 用原位红外光谱考察了Rh-Mn-Li-Fe/SiO2和Rh/SiO2催化剂表面上CO的吸附态及CO加氢反应过程中吸附物种的变化. 结果表明,CO在Rh/SiO2催化剂上仅有线式吸附态存在,而CO在Rh-Mn-Li-Fe/SiO2催化剂上既有线式吸附态存在,又有孪生吸附态存在. 这说明Rh-Mn-Li-Fe/SiO2催化剂中Rh的分散度较高. 经CO加氢反应(3.0 MPa,593 K)后,在Rh-Mn-Li-Fe/SiO2催化剂上可观测到C2含氧化物前驱物种的吸收谱带,而在Rh/SiO2催化剂上未观测到相应的谱带; CO在这两种催化剂上主要以线式吸附态存在,孪生吸附态基本消失. 结合催化剂对CO加氢的催化性能,可以认为线式吸附的CO对生成C2含氧化物有贡献. Rh-Mn-Li-Fe/SiO2催化剂的高活性是由于助剂的存在削弱了其表面吸附CO的 C-O键,促进了CO的活化,从而有利于C2含氧化物前驱物的生成.  相似文献   

20.
 研究了Cu3/2PMo12O40表面改性的骨架镍催化剂上含羰基化合物(正丁醛、异丁醛、丙酮、丁酮和环己酮)及含碳-碳双键化合物(苯、糠醇和1-辛烯)的加氢反应.结果表明,随着骨架镍催化剂上Cu3/2PMo12O40附着量的增加,含羰基化合物的加氢反应速率上升,而含碳-碳双键化合物的加氢反应速率下降.与未改性的骨架镍催化剂相比,当骨架镍催化剂上Cu3/2PMo12O40附着量为6.3%时,羰基的加氢活性提高2倍以上,碳-碳双键的加氢活性下降30%以上.计算了各种化合物在催化剂上的表观活化能.结果表明,Cu3/2PMo12O40表面改性的骨架镍催化剂上,羰基加氢反应的表观活化能降低,而碳-碳双键加氢反应的表现活化能升高.从动力学角度讨论了Cu3/2PMo12O40对骨架镍催化剂的影响.用XPS对骨架镍表面的Cu3/2PMo12O40进行了研究,发现杂多酸盐的Keggin型结构已被破坏,Cu3/2PMo12O40分子中的Cu2+被还原为Cu0,而Mo6+被部分还原为Mo5+和Mo4+;Cu2+和Mo6+价态的变化是由骨架镍表面吸附的活泼氢所引起的.羰基加氢选择性的提高是Cu0和混合价态Mo共同作用的结果.  相似文献   

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