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1.
通过共沉淀法制备一系列铜锌催化剂,用于固定床上糠醛气相加氢制2-甲基呋喃的研究。采用X射线衍射仪(XRD)、N_2吸附-脱附、扫描电子显微镜(SEM)、H_2-程序升温还原(H_2-TPR)、NH_3-程序升温脱附(NH_3-TPD)表征,分析催化剂中Cu0和ZnO在催化反应中的作用。结果表明,Cu~0是糠醛加氢的活性中心,氧化锌的加入减小了催化剂晶粒粒径、增大了催化剂比表面积、利于催化剂还原和增加催化剂表面弱酸性位。当Cu/Zn物质的量比为1∶2时,Cu_1Zn_2催化剂具有适宜氧化还原活性中心及弱酸位数量,对2-甲基呋喃表现出较高的选择性。Cu_1Zn_2催化剂在常压、反应温度为200℃、氢醛物质的量比为4∶1、糠醛体积空速为0.3 h-1条件下,糠醛转化率100.0%,2-甲基呋喃选择性最高为93.6%。反应稳定运行200 h后,糠醛转化率仍为100.0%,2-甲基呋喃选择性为80.0%,糠醇选择性为11.4%。  相似文献   

2.
采用共沉淀法制得分别以NaOH、Na_2CO_3和Na_2CO_3/NaOH为沉淀剂的CuZnAl-1、CuZnAl-2和CuZnAl-3催化剂,采用X射线衍射(XRD)、N2吸附-脱附、H_2-程序升温还原(H_2-TPR)、热重和NH_3-程序升温脱附(NH3-TPD)等方法对催化剂进行了表征,并在固定床反应器上研究了沉淀剂对CuZnAl催化剂糠醛气相加氢制糠醇选择性的影响。结果表明,糠醛加氢在三种催化剂上均有较高转化率,而CuZnAl-3催化剂对糠醇有较高选择性。沉淀剂对CuZnAl催化剂的物相结构、比表面积、酸性和氧化还原性均有较大影响。以Na_2CO_3/NaOH为沉淀剂得到的CuZnAl-3催化剂具有适宜的比表面积、CuO晶相、较弱的酸性位,且表面CuO易于还原,这些因素有利于催化反应生成糠醇。CuZnAl-3催化剂上糠醛气相加氢制糠醇优化工艺参数为:常压、反应温度180℃、氢醛物质的量比为5∶1、糠醛体积空速0.3h~(-1);糠醛转化率为99.4%,糠醇选择性为98.3%。  相似文献   

3.
 研究了催化剂的制备条件(焙烧方式、焙烧气氛和焙烧温度)对Mo-V-Te-Nb-O上丙烷选择氧化制丙烯酸反应的影响. 结果表明,制备条件对催化剂的催化性能具有很大的影响. 与敞开式焙烧制得的催化剂相比,封闭式焙烧制得的催化剂具有较高的丙烯酸选择性,但丙烷转化率较低. 在空气中焙烧制得的催化剂对丙烯酸无选择性,但在氮气和氩气中焙烧制得的催化剂具有很高的丙烷转化率和丙烯酸选择性. 随着焙烧温度的升高,丙烷转化率降低,丙烯酸选择性升高,适宜的焙烧温度为600 ℃. 催化剂制备条件对催化剂的晶相结构也具有重要的影响. 在惰性气氛中采用600 ℃下封闭式焙烧制得的Mo-V-Te-Nb-O催化剂经210 h反应后,丙烷转化率保持为19%,而丙烯酸选择性持续升高,由32%升至50%.  相似文献   

4.
研究了催化剂的制备条件(焙烧方式、焙烧气氛和焙烧温度)对Mo-V-Te-Nb-O上丙烷选择氧化制丙烯酸反应的影响.结果表明,制备条件对催化剂的催化性能具有很大的影响.与敞开式焙烧制得的催化剂相比,封闭式焙烧制得的催化剂具有较高的丙烯酸选择性,但丙烷转化率较低.在空气中焙烧制得的催化剂对丙烯酸无选择性,但在氮气和氩气中焙烧制得的催化剂具有很高的丙烷转化率和丙烯酸选择性.随着焙烧温度的升高,丙烷转化率降低,丙烯酸选择性升高,适宜的焙烧温度为600℃.催化剂制备条件对催化剂的晶相结构也具有重要的影响.在惰性气氛中采用600℃下封闭式焙烧制得的Mo-V-Te-Nb-O催化剂经210h反应后,丙烷转化率保持为19%,而丙烯酸选择性持续升高,由32%升至50%.  相似文献   

5.
 以机械混合法、浸渍法和共沉淀法分别制备了4%Ni-Al2O3催化剂,并用X射线衍射、程序升温还原、紫外-可见漫反射光谱和N2吸附等方法对催化剂的体相和表面结构进行了表征,系统考察了制备方法及焙烧温度对Ni-Al2O3催化剂催化丙烷选择性还原NO性能的影响. 结果表明, Ni-Al2O3中存在NiO和NiAl2O4两种镍相,前者是丙烷氧化活性中心,后者是NO选择性催化还原的活性中心. 共沉淀法制备的催化剂活性最好, 550 ℃焙烧的Ni-Al2O3催化剂在反应温度为450和500 ℃时NO转化率接近100%.  相似文献   

6.
姜聚慧  石起增  陈华军 《色谱》2005,23(1):110-110
糠醛、糠酸、糠醇是重要的有机化工原料,糠醛(呋喃甲醛)化学性质活泼,经深加工可以制取糠醇(呋喃甲醇)、糠酸(呋喃甲酸)和呋喃等。以糠醛为原料制备糠酸时,在强碱性介质和催化剂存在下,糠醛经空气氧化、硫酸酸化可制得糠酸,但在反应中有大量副产品糠醇产生。因此反应液及产品中糠酸、糠醇和糠醛含量的准确测定,对于优化反应条件、监控生产过程、保障产品质量至关重要。本文采用反相高效液相色谱法(RP-HPLC)同时分离测定了糠酸、糠醇和糠醛,方法简便快速,灵敏度高,定量准确。  相似文献   

7.
采用共沉淀法制备了Cu-Mn-Si催化剂,并将其应用于常压气相环己醇脱氢和糠醛加氢耦合反应中,考察了沉淀pH值和焙烧温度对耦合反应的影响。沉淀pH值对糠醛加氢制2 甲基呋喃反应影响不大,但对环己酮的选择性影响较大。pH值在7.5~10.0制备的催化剂具有优良的反应性能。焙烧温度的提高,导致催化剂的比表面积减小,孔径变大,铜的比表面积下降,还原温度提高。在耦合一体化反应中,环己醇脱氢制备环己酮反应受焙烧温度影响不大,但糠醛转化率和2 甲基呋喃选择性随着焙烧温度的提高而减小。  相似文献   

8.
采用共沉淀法并通过改变焙烧温度制备了一系列具有不同晶相结构的La_2Zr_2O_7催化剂,在微型固定床反应器上评价其甲烷氧化偶联反应性能,并利用XRD、Raman、CO_2-TPD、XPS等表征手段,探究催化剂的物相结构、表面碱性以及表面氧物种的变化规律。结果表明,随着焙烧温度从700℃逐渐升高到1200℃,La_2Zr_2O_7催化剂结晶度不断提高,晶相发生明显变化,从无定形结构逐渐向缺陷萤石结构过渡,最终转变成烧绿石结构。焙烧温度提高促使La_2Zr_2O_7晶相转变过程中,催化剂表面的碱性强度减弱,中等碱性位数量以及具有催化活性的表面氧物种O_2~(2-)和O_2~-的相对含量不断减少,致使催化剂的CH_4转化率和C_(2+)选择性不断降低。其中,无定形LZO-CP-700催化剂表现出最佳的甲烷氧化偶联反应性能。  相似文献   

9.
采用等量浸渍法 ,制得 5 0 0、 6 0 0、 75 0和 95 0℃焙烧的 Co/ γ- Al2 O3催化剂 ;考察了它们对 CO氧化和乙烯选择还原 NO的反应性能 ;用 XRD和 XPS方法表征了催化剂的体相与表相结构 .活性测试结果表明 ,随焙烧温度升高 ,样品对 CO的氧化活性呈下降趋势 ;对乙烯选择还原 NO反应 ,活性先上升 ,而后又有所下降 (当焙烧温度高于 75 0℃时 ) .从硝酸钴制得的样品 ,其氧化活性要高于从醋酸钴制得的样品 ,但对乙烯选择还原 NO,后者的活性更好 .结构表征结果表明 ,催化剂中钴物种的存在形式与原料盐类及焙烧温度密切相关 .在 Co/ γ- Al2 O3催化剂中主要存在两种钴相 ,即 Co3O4和非化学计量的 Cox Al( 8/ 3- 2 x/ 3) O4尖晶石相 ,前者为完全氧化活性中心 ,后者是 NO选择还原的活性中心 .在相同焙烧温度下 ,以醋酸钴为原料时 ,更容易形成 Cox Al( 8/ 3- 2 x/ 3) O4尖晶石相 .随着焙烧温度提高 ,活性组分与载体的相互作用加强 ,Co3O4相逐步向 Cox Al( 8/ 3- 2 x / 3) O4尖晶石相转化 ,这可能是样品氧化活性下降和选择还原活性升高的主要原因 .在更高焙烧温度下 ,随着 Cox Al( 8/ 3- 2 x / 3) O4尖晶石相颗粒度的增加和晶形改变 ,以及钴离子由表相向体相的迁移 ,使样品比表面积下降 ,表面氧空位及活性位减少 ,  相似文献   

10.
采用等量浸渍法, 制得500、 600、 750和950 ℃焙烧的Co/γ-Al2O3催化剂; 考察了它们对CO氧化和乙烯选择还原NO的反应性能; 用XRD和XPS方法表征了催化剂的体相与表相结构. 活性测试结果表明, 随焙烧温度升高, 样品对CO的氧化活性呈下降趋势; 对乙烯选择还原NO反应, 活性先上升, 而后又有所下降(当焙烧温度高于750 ℃时). 从硝酸钴制得的样品, 其氧化活性要高于从醋酸钴制得的样品, 但对乙烯选择还原NO, 后者的活性更好. 结构表征结果表明, 催化剂中钴物种的存在形式与原料盐类及焙烧温度密切相关. 在Co/γ-Al2O3催化剂中主要存在两种钴相, 即Co3O4和非化学计量的CoxAl(8/3-2x/3)O4尖晶石相, 前者为完全氧化活性中心, 后者是NO选择还原的活性中心. 在相同焙烧温度下, 以醋酸钴为原料时, 更容易形成CoxAl(8/3-2x/3)O4尖晶石相. 随着焙烧温度提高, 活性组分与载体的相互作用加强, Co3O4相逐步向CoxAl(8/3-2x/3)O4尖晶石相转化, 这可能是样品氧化活性下降和选择还原活性升高的主要原因. 在更高焙烧温度下, 随着CoxAl(8/3-2x/3)O4尖晶石相颗粒度的增加和晶形改变, 以及钴离子由表相向体相的迁移, 使样品比表面积下降, 表面氧空位及活性位减少, 从而导致样品对乙烯选择还原NO的活性下降.  相似文献   

11.
通过在ZrO_2中掺杂TiO_2,并在350-500℃下焙烧,制备了系列TiO_2-ZrO_2复合氧化物催化剂,将其应用于十八醇脱水制十八烯反应。随焙烧温度的升高,催化剂表面的Lewis酸性位量逐渐增加,450℃焙烧的催化剂Lewis酸性位量最多,焙烧温度继续升高则Lewis酸性位量降低;催化剂中未发现Br?nsted酸性位。焙烧温度≤400℃的TiO_2-ZrO_2复合氧化物形成Ti-O-Zr键,呈无定形态;焙烧温度400℃的TiO_2-ZrO_2复合氧化物呈单斜相和四方相ZrO_2晶型。晶相结构和酸性位量综合影响催化剂的十八醇脱水性能,具有单斜相和四方相ZrO_2晶型的催化剂上酸性位活性很低,具有无定形相的催化剂上酸性位活性显著增加,400℃焙烧的催化剂1-十八烯收率最高。  相似文献   

12.
Five Co-B amorphous alloy catalysts were prepared by chemical reduction in different media, including pure water and pure ethanol as well as the mixture of ethanol and water with variable ethanol content, Their catalytic properties were evaluated using liquid phase furfural hydrogenation to furfuryl alcohol as the probe reaction. It was found that the reaction media had no significant influence on either the amorphous structure of the Co-B catalyst or the electronic interaction between metallic Co and alloying B. This could successfully account for the fact that all the as-prepared Co-B catalysts exhibited almost the same selectivity to furfuryl alcohol and the same activity per surface area ( Rs ), which could be considered as the intrinsic activity, since the nature of active sites remained unchanged. However, the activity per gram of Co ( R^mH ) of the as-prepared Co-B catalysts increased rapidly when the ethanol content in the water-ethanol mixture used as the reaction medium for catalyst preparation increased. This could be attributed to the rapid increase in the surface area possibly owing to the presence of more oxidized boron species which could serve as a support for dispersing the Co-B amorphous alloy particles.  相似文献   

13.
钯-高分子载体催化剂对糠醛加氢液相反应的研究   总被引:7,自引:0,他引:7  
以弱碱性苯乙烯系阴离子交换树脂[D392,-NH2,D382,-NHCH3,D301R,-NH(CH3)2],强碱性苯乙烯系阴离子交换树脂[201×7DVB,-NH+(CH3)3]和弱碱性环氧系阴离子交换树脂(701,-NH2)为载体制备了3种钯-高分子载体催化剂.考察了反应条件、高分子载体的种类、钯含量和催化剂用量对糠醛催化加氢生成四氢糠醇反应及催化性能的影响.在体积分数为50%的乙醇-水溶液和水中对糠醛常压液相加氢反应,钯-高分子载体(阴离子交换树脂D392,-NH2,D382,-NHCH3)催化剂均可使糠醛的加氢反应转化率达100%,生成四氢糠醇的选择性达98%以上,而用金属钯为催化剂的转化率达70%以上,选择性达97%以上.同时用XPS分析了高分子载体催化剂的结构与催化加氢反应性能的关系.  相似文献   

14.
Furfural derived from biomass hemicelluloses is an important intermediate for biofuels and chemicals. In order to further upgrade, furfural is usually reduced into 2-methyl furan that is more stable and useful. In this work, furfural was reduced by CuZnAl, CuMgAl, Cu2Cr2O5, CuNiAl as catalysts in a supercritical methanol without external H2 source. The best yield of 2-methyl furan was achieved among the H2 free furfural process reported as high as 74%. And the catalytic behaviors were discussed under difierent catalysts and temperatures conditions.  相似文献   

15.
Cr-free bi-metallic SBA-15-supported Co–Cu catalysts were examined in the conversion of bio-mass-derived α-, β-unsaturated aldehyde (furfural) to value-added chemical furfuryl alcohol (FOL). Co–Cu/SBA-15 catalysts with a fixed Cu loading of 10 wt% and varying Co loadings (2.5, 5, and 10 wt%) were prepared by the impregnation method. The catalysts were characterized by X-ray dif-fraction, N2 sorption, H2 temperature-programmed reduction, scanning electron microscopy, ener-gy-dispersive X-ray spectroscopy, high-resolution transmission electron microscopy, CO chemi-sorption, and inductively coupled plasma mass spectrometry. The influence of different reaction parameters such as temperature, pressure, catalyst dosage, and furfural concentration on the cata-lyst performance was evaluated. Relative to catalysts supported on amorphous silica, the current SBA-15-supported Co–Cu catalysts displayed higher performance, attaining a furfural conversion of 99% and furfuryl alcohol selectivity of 80%. The catalytic reactions were conducted in a 100-mL autoclave at 170 °C and 2 MPa H2 pressure for 4 h.  相似文献   

16.
以经不同温度(120、250、350、450℃)焙烧处理的ZrO_2为载体,采用沉积-沉淀法制备了系列CuO/ZrO_2催化剂;考察了富氢气氛下催化剂的水煤气变换反应(WGS)催化性能。结果表明,CuO/ZrO_2催化剂的催化活性随ZrO_2载体焙烧温度的升高呈现先升高后降低的"火山型"变化趋势,在焙烧温度为250℃时取得最高值。采用X射线粉末衍射、N_2物理吸附-脱附、N_2O滴定、H_2程序升温还原和CO程序升温还原及质谱跟踪等技术研究了系列ZrO_2载体及CuO/ZrO_2催化剂的结构和还原性能。结果表明,随着ZrO_2焙烧温度的升高,一方面,CuO/ZrO_2催化剂的Cu分散度逐渐降低,与ZrO_2具有强相互作用的高分散活性Cu-[O]-Zr物种("[]"表示ZrO_2表面氧空位)逐渐减少;另一方面,Cu-[O]-Zr物种的还原能力逐渐增强,并诱导催化剂活性表面羟基的还原能力也相应增强(CO为还原剂),即降低了催化剂对WGS反应的起活温度。两方面的综合作用使得ZrO_2载体焙烧温度为250℃(中等温度)时,CuO/ZrO_2催化剂的WGS催化活性最高。  相似文献   

17.
The previous studies indicated that the unsupported and alumina supported nickel oxide catalysts are the attractive candidates for the oxidative dehydrogenation of ethane (ODE) reaction at lower reaction temperature[1,2]. In the present study, NiO/ZrO2 catalysts were prepared by the impregnation, complex of ammonia and coprecipitation, respectively, using the conventional incipient wetness technique. Over all samples used in this study, no NiO crystal structure was detected by XRD measurements carried out in parallel with the present work, which indicated the nickel oxide was highly dispersed on the support The blank testing indicated that the support ZrO2 had very little activity below 600℃. Comparing with the unsupported nickel oxide, it was found that the activity of NiO/ZrO2 catalysts prepared by the methods mentioned above decreased slightly and the selectivity for ethylene improved. With the increasing temperature, the ethane conversion increased and the selectivity for ethylene decreased However, the cracking of the ethane occurred at ca.450℃ on all samples prepared by different methods. The optimum catalytic behavior could be obtained on 5wt%NiO/ZrO2 prepared by coprecipitation, with the ethane conversion of 26.2% and selectivity for ethylene of 51.8% at as low temperature as 350℃. The sample prepared by coprecipitation and calcined at 500℃ was calcined again at 600℃ for 5 h,the activity decreased obviously, which may be attributed to the existence of the interaction between nickel oxide and support taking into account for the high dispersion of NiO on ZiO2.  相似文献   

18.
Mesoporous aluminosilicates (Al-containing NaMCM-41) were applied as catalyst supports for oxidative coupling of β-naphthol and substituted β-naphthols due to their remarkable features such as surface area, ordered mesopores and high thermal stability. The NaMCM-41 supported copper catalysts prepared by impregnation method, and Cu-NaMCM-41 was prepared by incorporating copper during synthesis. Oxidative coupling of β-naphthol reaction was studied using molecular oxygen as oxidant. The copper supported NaMCM-41 catalysts were prepared with different Si/Al ratios and calcined from 120 to 420 °C were observed to show varied product selectivity. The NaMCM-41 supported copper catalysts and Cu-NaMCM-41 were more active than the corresponding Cu/Fe supported on NaY zeolite. The catalysts were characterized by X-ray diffraction (XRD), temperature programmed reduction (TPR), UV–DRS, ICPMS and BET surface area techniques and the reaction products were confirmed by 1H-NMR, FTIR and HRMS. An attempt has been made to explain the product selectivity of the catalysts discussed with the above techniques. The high dispersion of Cu+2 species observed in the catalysts having high Si/Al ratios in NaMCM-41 support and catalysts that are calcined at low temperatures, i.e. less than 420 °C, yielded an unexpected product perylene diol. A comparatively low dispersion of Cu+2 species, noticed in catalysts having low Si/Al ratios and calcined at high temperatures, yielded binapthol as the coupled product. The effect of the variation of catalyst and the solvent are also studied.  相似文献   

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