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Acetylene reaction with ethene

Write a balanced chemical equation for (a) the hydrogenation of ethyne (acetylene, C2H2) to ethene (C2H4) by hydrogen (give the oxidation number of the carbon atoms in the reactant and product) (b) the shift reaction (sometimes called the water gas shift reaction, WGSR) (c) the reaction of barium hydride with water. [Pg.738]

Ligands are not always innocent spectator groups. Cationic j -diiminate alkyl complexes of aluminium, rather than undergoing insertion in the Al-alkyl bond, show attack of the unsaturated substrate (ethene or acetylene) at the ligand (Scheme 1). Surprisingly, the C-C coupling reaction observed with ethene is reversible [42]. [Pg.152]

A convenient way to prepare a solution of LiC=CH in liquid ammonia consists of adding lithinm to boiling NH3 through which acetylene is being bubbled. In this reaction ethene is also formed, but this does not react with alkali mejal in liquid ammonia. The reaction with... [Pg.17]

Why do the Diels-Alder reactions with both normal and inverse electron demand occur under relatively mild conditions And, in contrast, why can [4+2]-cycloadditions between ethene or acetylene, respectively, and butadiene be realized only under extremely harsh conditions (Figure 15.1) Equation 15.2 described the amount of transition state stabilization of [4+2]-cycloadditions as the result of HOMO/LUMO interactions between the 7T-MOs of the diene and the dienophile. Equation 15.3 is derived from Equation 15.2 and presents a simplified estimate of the magnitude of the stabilization. This equation features a sum of two simple terms, and it highlights the essence better than Equation 15.2. [Pg.663]

The reaction between acetylene and ethene, catalyzed by WCle in benzene at 20°C, gives polybutadiene (85% 1,2-, 15% 1,4-) of high MW. The initial formation of butadiene probably occurs by alternate addition of acetylene to [W]=CH2 to form [W]=CHCH=CH2, and chain transfer with ethene (Zaliznaya 1990). [Pg.204]

The observation by Perry, Atkinson, and Pitts (89) of a pressure dependence for the reaction of OH radicals with acetylene Is analogous to that for the reaction of OH radicals with ethene (76, 108, 183, 184), and for the reaction of H atoms with... [Pg.429]

Cis- and ra 5(bisbenzenesulfonyl)ethene are also acetylene equivalents. The two sulfonyl groups undergo reductive elimination on reaction with sodium amalgam. [Pg.343]

Palladium and Platinum. PHIP has been used to study the hydrogenation of phenyl acetylene by colloidal palladium.In situ P NMR spectroscopy has been used to show the resting state of the [(Pr 2PCH2CH2CH2PPr 2)Pd(PR3)2] in the catalysis of the reaction of ethene with The size-selective hydrogenation of alkenes by dendrimer-encapsulated palladium nanoparticles has been investigated by NMR spectroscopy. [Pg.76]

Wallington, T.J., J.M. Andino, I.M. Lorkovic, E.W Kaiser, and G. Marston (1990c), Pressure dependence of the reaction of chlorine atoms with ethene and acetylene in air at 295 K,... [Pg.1471]

The much more stable MIL-lOO(Cr) lattice can also be impregnated with Pd(acac)2 via incipient wetness impregnation the loaded catalyst is active for the hydrogenation of styrene and the hydrogenation of acetylene and acetylene-ethene mixtures to ethane [58]. MIL-lOl(Cr) has been loaded with Pd using a complex multistep procedure involving an addition of ethylene diamine on the open Cr sites of the framework. The Pd-loaded MIL-lOl(Cr) is an active heterogeneous Heck catalyst for the reaction of acrylic acid with iodobenzene [73]. [Pg.85]

For trichloroethene (TCE), the stoichiometric amount of iron and the effect of different preparations determine the outcome of the several competing reactions. Coupling products such as butenes, acetylene and its reduction products ethene and ethane, and products with five or six carbon atoms were formed (Liu et al. 2005). Although a held-scale application successfully lowered the concentration of TCE, there was evidence for the formation of the undesirable di-l,2-dichloroethene and 1-chloroethene (vinyl chloride) in the groundwater (Quinn et al. 2005). [Pg.26]

Perhaps the next simplest molecular adsorbates for which quantitative structural information exists are the unsaturated C2 hydrocarbons, notably acetylene (ethyne, HC CH) and ethylene (ethene, H2C=CH2), adsorbed on a number of metal surfaces (especially, Cu, Ni and Pd), and also on Si(100), studied by LEED, SEXAFS, and PhD. In some systems adsorption of ethylene is accompanied by a surface reaction. In particular, on both Pt(lll) [74] and Rh(lll) [75] ethylene is converted to an ethylidyne species, H3C—C—, which bonds to these surfaces through the C atom with the —C axis essentially perpendicular to the surface, in three-fold coordinated hollow sites. In addition, ethylene adsorbed on Ni(l 11) at low temperature dehydrogenates to produce adsorbed acetylene as the surface is warmed towards room temperature this particular system actually provided the first example of the... [Pg.21]

The substantial difference in the heats of reaction of ethane, ethene, and ethyne with bromine is reflected in a very important practical consideration in handling ethyne (acetylene), namely its thermodynamic stability relative to solid carbon and hydrogen gas. Unlike ethane, both ethene and ethyne can be shown from bond energies to be unstable with respect to formation of solid carbon and gaseous hydrogen ... [Pg.359]


See other pages where Acetylene reaction with ethene is mentioned: [Pg.124]    [Pg.101]    [Pg.31]    [Pg.1179]    [Pg.37]    [Pg.187]    [Pg.208]    [Pg.3369]    [Pg.71]    [Pg.440]    [Pg.37]    [Pg.59]    [Pg.3368]    [Pg.431]    [Pg.465]    [Pg.510]    [Pg.71]    [Pg.148]    [Pg.613]    [Pg.1179]    [Pg.636]    [Pg.220]    [Pg.248]    [Pg.128]    [Pg.462]    [Pg.96]    [Pg.99]   
See also in sourсe #XX -- [ Pg.204 ]




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Acetylene reactions

Acetylenes reaction with

Ethene reactions

Reaction with ethene

With Acetylenes

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