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1.
NHPI结合磺化酞菁钴催化的乙苯氧化反应   总被引:1,自引:1,他引:0  
探索了一种由N-羟基邻苯二甲酰亚胺(NHPI)和磺化酞菁钴(CoSPc)组成的催化体系催化的将乙苯转化成相应氧化物有效且温和的方法.结果显示控制NHPI和乙苯物质的量比为0.050,NHPI和CoSPc物质的量比为6,反应温度90℃,是该氧化反应的最佳条件,在此条件下,乙苯在氧气中反应10h,乙苯转化率和苯乙酮选择性分...  相似文献   

2.
镁铝水滑石负载MnO-4催化氧化乙苯合成苯乙酮   总被引:1,自引:0,他引:1  
汪一帆  周维友  方筱  陈群 《应用化学》2012,29(9):1017-1022
采用焙烧还原法制备了镁铝水滑石负载MnO4-催化剂,并将其应用于催化氧气氧化乙苯合成苯乙酮的反应中。考察了催化剂用量、反应温度、反应时间、MnO4-负载量和镁铝比等因素对催化氧化反应的影响及催化剂的重复使用性能。在优化条件下:催化剂用量3 g,乙苯用量45 mL,反应温度120℃,水滑石结构中n(Mg)/n(Al)=5,氧气流量100 mL/min,苯乙酮产率可达57.0%,苯乙酮选择性可达96.3%,催化剂重复使用3次催化活性降低较小。  相似文献   

3.
研究了乙酸溶剂中无引发剂条件下,Co掺杂MCM-41催化过氧化氢(30%)氧化4-甲基吡啶的反应,催化剂表现出高底物转化率和产物吡啶甲酸选择性以及良好的再生性。 探讨了不同溶剂、反应时间、反应温度、催化剂用量等对H2O2氧化4-甲基吡啶反应的影响,确定较优反应条件为m(4-甲基吡啶)∶m(催化剂)=10∶1,V(4-甲基吡啶)∶V(冰醋酸)=1∶10,温度363 K,时间6 h。 该条件下4-甲基吡啶的转化率为96.5%,4-吡啶甲酸的选择性为91.4%。 探讨了可能的反应机理。  相似文献   

4.
孔德轮  高保娇  章艳 《分子催化》2007,21(6):579-584
以固载于微米级硅胶表面的聚4-乙烯吡啶-铜(Ⅱ)配合物(P4VP-Cu(Ⅱ)/SiO2)为催化剂,以分子氧为氧化剂,在常压下实施了将乙苯氧化为苯乙酮的催化氧化反应;用红外光谱、紫外光谱及液相色谱对产物的化学结构进行了表征;重点研究了催化剂的催化性能,以及各种条件(温度、催化剂性质、催化剂用量等)对催化氧化反应的影响;并分析了催化氧化反应的机理.研究结果表明,固载于硅胶表面的聚4-乙烯吡啶-Cu(Ⅱ)配合物能有效地活化分子氧,显著地催化氧化乙苯为苯乙酮的反应过程;该催化剂具有优良的催化活性与选择性,于130℃常压下通氧气反应10h,可使约60%的乙苯转化为苯乙酮,另一氧化产物α-甲基苄醇的含量则极少.另外,该催化剂具有较好的重复使用稳定性.  相似文献   

5.
以PhI(OAc)2为氧化剂,考察了1,3-二烷基咪唑硫酸酯系列离子液体中Mn(Salen)催化仲醇氧化的反应. 结果表明, 在MMISM-CH2Cl2(1:4,v:v)混合溶剂中, 反应条件为n((-苯乙醇): n(醋酸碘苯): n(催化剂1c)=50: 70: 1时, (-苯乙醇的转化率可以达到97.8%, 产物苯乙酮的选择性为100%, 远高于在纯CH2Cl2中的结果, 也要好于[bmim]BF4和[bmim]PF6对该反应的促进作用. 此外, BMISM及BEISE对催化剂1c有较好的稳定作用,催化剂可以重复使用.  相似文献   

6.
以30%H2O2为氧化剂,金属助剂改性VPO为催化剂选择性氧化苯乙烯合成苯甲醛.研究了金属助剂、反应时间、温度、溶剂、氧化剂的量等对反应的影响.结果表明,镍助剂修饰的VPO能显著提高苯甲醛选择性,在Ni-VPO催化剂用量为5%,n(苯乙烯)∶n(H2O2)=1∶2,乙腈做溶剂50℃反应6 h的最优条件下,苯乙烯转化率为80.6%,苯甲醛选择性74%.XRD、FT-IR、SEM对催化剂进行表征并提出了可能的反应机理.  相似文献   

7.
以交联聚苯乙烯(CPS)微球为基质,经过几步大分子反应在微球表面合成与固载了N-羟基邻苯二甲酰亚胺(NHPI),形成固载有NHPI的聚合物微球CPS-NHPI。本文主要将CPS-NHPI与过渡金属盐组成共催化体系,用于分子氧氧化甲苯的反应,考察了该非均相催化剂的催化特性与催化氧化机理。结果表明,几种过渡金属盐中,Co(OAc)2的助催化效果最好;微球CPS-NHPI与Co(OAc)2所构成的共催化体系,在温和条件(80℃和常压氧气)下可有效地将甲苯深度氧化为苯甲酸,显现出高的催化活性(甲苯转化率达到57%)与优良的选择性(苯甲酸的选择性达到84%)。催化氧化反应遵循自由基链式反应机理。主催化剂CPS-NHPI固载的NHPI与助催化剂Co(OAc)2适宜的摩尔比为14∶1,主催化剂所含NHPI为底物的12(mol)%时,催化剂用量较为合适。固体催化剂CPS-NHPI具有良好的再循环使用性能。  相似文献   

8.
以H_2O_2为氧化剂,将一系列磷钨杂多酸类离子液体用于催化环戊烯(CPE)选择性氧化制备戊二醛(GA)反应,筛选出催化活性最高的催化剂为[π-C_5H_5NC_(16)H_(33)]_3PW_4O_(16).分别探讨了溶剂种类、用量、催化剂用量、H_2O_2用量、反应温度和反应时间等因素对反应的影响.确定了优化的反应条件:5 mL乙酸乙酯,n(Cat.)∶n(H_2O_2)∶n(CPE)=0.03∶50∶33,35℃,18 h,环戊烯的转化率达100%,戊二醛的选择性达87%.催化剂[π-C_5H_5NC_(16)H_(33)]_3PW_4O_(16)循环使用7次后,戊二醛的选择性仍保持在80%以上.  相似文献   

9.
汪小强  欧光南  袁友珠 《化学学报》2004,62(18):1695-1700
研究了若干钒基催化剂在双氧水存在下对甲、乙苯的液相选择性氧化催化性能.结果表明:在乙腈为溶剂的反应体系中,所研究的钒基催化剂包括VPO,VOPO4,V2O5,VO(acac)2和NH4VO3等均表现出以苯甲醛为甲苯选择性氧化主产物和以苯乙酮为乙苯选择氧化主产物的反应结果;从反应活性和主产物选择性来看,按以下顺序递减:VPO>V2O5>VOPO4>VO(acac)2>NH4VO3.对于具有(VO)2P2O7晶相的VPO催化剂,在双氧水存在下对甲苯选择性氧化主产物苯甲醛的最高选择性为58.8%,乙苯选择性氧化主产物苯乙酮的最高选择性为67.8%;其催化性能与P/V比、焙烧条件、双氧水的使用量、反应溶剂等有关.从已有的实验结果推测,钒基催化剂在双氧水存在下的甲、乙苯选择氧化反应与V5+/V4+的"氧化-还原"作用密切相关.  相似文献   

10.
以分子氧为氧化剂,N-羟基邻苯二甲酰亚胺(NHPI)为引发剂,Co(Salen)配合物[NHPI/Co(Salen)]为催化剂,偶氮二异丁腈(AIBN)为助引发剂,AcOH为溶剂,催化氧化取代甲苯制备取代苯甲酸。最佳反应条件为:甲苯6mmol,q(NHPI)=10%,q[Co(Salen)]=0.5%,q(AIBN)=1%,O2(0.1MPa),AcOH10mL,于80℃反应20h,甲苯转化率92.7%,苯甲酸选择性88.9%。  相似文献   

11.
A new alternative system for the chemoselective oxidation of secondary hydroxyl group to ketone with IBX/n-Bu4NBr in CH2Cl2-H2O has been developed. Under the reaction conditions, the secondary hydroxyl group was highly chemoselectively oxidized to the corresponding ketone, in moderate to good yields at rt, in the presence of primary hydroxyl group within the same molecule.  相似文献   

12.
Hydrocarbons, benzylamines, and heteroaromatic-bearing amines have been efficiently employed as substrates in allylic and benzylic oxidations via C(sp3)–H bond activation by TBAI/TBHP in water. This operationally simple method allows access to ketones, nitriles, and amides in moderate to high yields and a regio- and chemoselective late-stage functionalization.  相似文献   

13.
目前,天然气转化为高附加值化工产品的应用越来越受到人们关注.甲烷作为天然气的主要成分,其转化和应用是天然气化工领域的重要研究方向.而甲烷直接氧化制甲醇长久以来一直是研究重点.甲烷直接氧化制甲醇与传统的甲烷二步法间接转化相比,有节能和工艺简化的突出特点.然而,甲醇直接氧化制甲醇过程所面临的主要问题有:(1)甲烷分子的活化能很高,需要苛刻的操作条件才能活化参与反应;(2)反应进行的程度难以控制,生成的甲醇会进一步被氧化生成较多副产物,大大降低甲醇收率.因此,高效活化甲烷分子和抑制甲醇深度氧化是促进该过程工业化的重要研究内容.本文主要论述了非均相、气相均相和液相体系中甲烷直接氧化制甲醇的研究进展.在甲烷非均相氧化过程中,采用过渡金属氧化物作为催化剂在高温条件下催化甲烷部分氧化反应,其中,钼系和铁系催化剂的研究最为广泛.研究表明, MoO3可作为催化剂的主要活性组分,尤以 MoO3/Ga2O3催化剂性能最好,得到甲醇收率最高.在铁系催化剂中, Fe-ZSM-5 催化反应的甲醇选择性和收率都相对较高;但是每次反应后催化剂都需要重新活化,这种间歇性操作会增加成本,不利于工业化应用.总之,甲烷的非均相氧化过程存在易形成金属聚集体、催化剂选择性低以及甲醇收率低(5%)等问题,需要深入系统地研究解决.然而,与非均相氧化过程相比,操作较为简单的甲烷气相均相氧化作为目前最有工业前景的过程受到越来越多关注.在此过程中,影响反应的主要因素有反应器、反应条件(反应压力、反应温度和反应时间等)以及添加的介质等.反应器的特殊设计需要考虑的方面有反应产物的分离与转移、反应热的移除以有效提高甲烷的转化率,比如膜反应器对物质的分离作用.反应压力对反应过程的影响较为复杂.基于动力学因素,提高反应压力可以较大幅度地增加甲醇收率,同时最佳反应温度降低,但是,当压力高于8.0 MPa时,设备成本消耗大幅增加.另外,研究表明,进料中加入 NOx作为添加介质可以提高甲烷转化率和甲醇选择性,同时降低初始反应温度.与前两个氧化体系相比,液相均匀氧化过程能够获得较高的甲烷转化率与甲醇选择性.但是液相体系中强腐蚀性介质的使用增加了设备成本,阻碍了该过程工业化的应用进程.因此,促进液相体系工业化的关键就是开发绿色高效的催化剂.  相似文献   

14.
The catecholamine oxidation process induces cardiotoxicity and neurotoxicity. Catecholamines can oxidize to aminochromes through autoxidation or by enzymatic or non-enzymatic catalysis. Although some toxic effects seem to be related to the formation of aminochromes there is still scarce information concerning the identification and evaluation of these compounds in in vivo models. In this study five catecholamines were oxidized to their respective aminochromes: adrenaline/adrenochrome; noradrenaline/noradrenochrome; dopa/dopachrome; dopamine/dopaminochrome; and isoproterenol/isoprenochrome. The evaluation of the catecholamines oxidation profile was performed by HPLC with photodiode array detection and using either enzymatic (tyrosinase) or non-enzymatic [Ag(2)O, CuSO(4), NaIO(4) and K(3)Fe(CN)(6)] catalytic systems. The NaIO(4) was found to be the most efficient oxidant of catecholamines. An isocratic reverse-phase HPLC method was developed to analyse each pair of catecholamine-aminochrome. The analytical system was then applied to the detection of adrenochrome in rat blood at 490 nm. Thus, adrenochrome was administered i.p. to rats and its concentration in whole blood was monitored after 5, 15 and 25 min. Blood treatment for adrenochrome evaluation consists of an acidification for protein precipitation followed by a rapid neutralization. The results showed a rapid decrease of adrenochrome concentration in blood after its administration. The adrenochrome present in blood was characterized by UV and tandem mass spectrometry.  相似文献   

15.
Palygorskite-supported Sn complexes were prepared by a simple procedure. Cyclic ketones and acyclic ketones were oxidized by hydrogen peroxide in a reaction catalyzed by palygorskite-supported Sn complexes, affording corresponding lactones or esters with selectivity for the product of 90-100%. The catalysts can be recycled for several times without significant decline in catalytic activity.  相似文献   

16.
In the partial oxidation of methane (POM) to syngas, carbon deposition on the catalyst causing catalyst deactivation or reactor plugging was reported[1~3]. Our previous work showed that methane dissociation on metallic sites to H2 and NixC is an initial step of POM over Ni/Al2O3[4]. If NixC can not be consumed immediately after its formation, it has a tendency to dissolve into the nickel crystal to form carbon whiskers. The bulk carbon and carbon whiskers are more difficult to be oxidized than NixC. Therefore, prohibiting the transformation of NixC to bulk carbon and carbon whiskers can depress the formation of carbon deposition effectively.  相似文献   

17.
One-electron oxidation of thionine has been studied using specific oxidizing radicals such as ClTl(II) and N3 generated by pulse radiolysis of aqueous solutions. The semioxidized thionine exhibited threepK’s indicating four conjugate acid-base forms. N3 radicals were found to be less efficient in oxidizing thionine as compared to Cl 2 , Tl2+ and Tl(OH)+. The rate constants for electron abstraction from thionine by Cl 2 , Tl2+, Tl(OH)+, Tl(OH)2 and N3 were evaluated. The spectra of different protonated forms of semioxidized thionine and the extinction coefficients at λmax are presented. Reaction of OH radicals with thionine gave transient products whose spectra and acid-base properties were different from those of semioxidized thionine. The rate constant for formation of the product transient agrees well with competition kinetic value for reaction of OH with thionine reported earlier.  相似文献   

18.
Singlet molecular oxygen (1O2) is generated in biological systems and reacts with different biomolecules. Proteins are a major target for 1O2, and His, Tyr, Met, Cys, and Trp are oxidized at physiological pH. In the present study, the modification of lysozyme protein by 1O2 was investigated using mass spectrometry approaches. The experimental findings showed methionine, histidine, and tryptophan oxidation. The experiments were achieved using [18O]‐labeled 1O2 released from thermolabile endoperoxides in association with nano‐scale liquid chromatography coupled to electrospray ionization mass spectrometry. The structural characterization by nLC‐MS/MS of the amino acids in the tryptic peptides of the proteins showed addition of [18O]‐labeling atoms in different amino acids.  相似文献   

19.
A facile, substrate-selective and transition metal-free oxidation of benzylic and allylic alcohols catalyzed by β-cyclodextrin with NaOCl oxidant using water as an only solvent was developed.  相似文献   

20.
SONG  Cui  CHEN  Min  MA  Chun'an  ZHENG  Xiaoming 《中国化学》2009,27(10):1903-1906
A new 0.1%Pd‐6%Mn/stainless steel wire mesh catalyst was prepared and used for volatile organic compounds (VOC) elimination. The supported palladium and manganese catalyst over the stainless steel wire mesh was prepared by using an impregnation method. When an anodic oxidation technology was employed, an anodic oxidation membrane appeared on the stainless steel wire mesh. On the 0.1%Pd‐6%Mn/stainless steel wire mesh catalyst calcined at 500°C, the total oxidation of toluene, acetone and ethyl acetate was respectively at 260, 220 and 320°C. The activity could be stable for over 700 h for toluene oxidation. The scanning electron microscopy (SEM) investigation of the Pd‐Mn/stainless steel wire mesh catalyst shows that the presence of anodic oxidation membrane on the support surface is important for better dispersion of active phases.  相似文献   

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