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1.
    
- 1962 . .
The kinetics of reduction of a low-temperature CO shift catalyst (1962, GDR) by hydrogen at 150°C has been studied by the static circulation method. An empirical equation has been obtained for the range of maximum reaction rates.
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2.
The dependence of the electrocatalytic activity of platinum deposited on a carbon carrier by anodic oxidation of hydrogen on the size of platinum crystallites has been investigated. The influence of the basic character of the surface compounds existing on the carbon carrier on the size of the crystallites and the rate of their growth has been established.
, , . , , .
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3.
It is established that the hydrocarbon coverage (0<1) formed at T<400 K on the Ir surface is oxidized upon oxygen exposures to CO and H2O by an adsorption mechanism. Complete oxidation to CO2 and H2O is achieved at T350 K after C2H4 exposures of the oxygen coverage.
, (<1), T<400 K Ir, CO H2O . CO2 H2O T350 K C2H4 .
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4.
Thermal stability of the clodronic acid complex formed with sodium (Na2CCl2(HPO3)2 ·4H2O) was studied using both dynamic and isothermal thermogravimetric analyses as well as mass spectra. The thermal decomposition has two stages: dehydration and loss of two molecules of hydrogen chloride. Using the isothermal TG data the first step was found to be a phase-boundary reaction while the second step obviously cannot be described with just one reaction mechanism. The final residue of the dynamic TG analyses above 810 K was found to be sodium metaphosphate.
Zusammenfassung Sowohl mittels dynamischer und thermogravimetrischer Untersuchungen als auch and Hand von Massenspektren wurde die thermische Stabilität des mit Natrium gebildeten Säurekomplexes Na2CCl2(HPO3)2·4H2O untersucht. Die thermische Zersetzung vollzieht sich in zwei Schritten: Dehydratation und Verlust von zwei Molekülen HCl. Auf Grund der isothermen TG Angaben ist der erste Schritt eine Phasengrenzreaktion, während der zweite Schritt mit einem einzigen Reaktionsmechanismus nicht eindeutig beschrieben werden kann. Das Endprodukt der DTG Analyse oberhalb 810 K erwies sich als Natriummethaphosphat.

-Na2CCl2/HPO3/2·4H2O — , - . , , , . , , . 810 .
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5.
The thermal behaviour of synthetic montmorillonite of relatively simple chemical composition has been studied and interpreted. Montmorillonite was prepared by hydrothermal synthesis at 300° and 8.8 MPa during 165 hours. With the methods of DTA, DTG, TG, X-ray diffraction analysis, infrared spectroscopy and electron microscopy it was proved that the synthetic montmorillonite is a monomineral sample and no differences from natural montmorillonite were observed.
Zusammenfassung Das thermische Verhalten synthetischer Montmorillonite verhältnismässig einfacher chemischer Zusammensetzung wurde untersucht und gedeutet. Montmorillonit wurde durch hydrothermische Synthese bei 300°C und 8.8 MPa in 165 Stunden hergestellt. Durch die Methoden der DTA, DTG, TG, Röntgendiffraktionsanalyse, Infrarotspektroskopie und Elektronenmikroskopie wurde erwiesen, daß synthetische Montmorillonit eine monominerale Probe ist und keine Abweichungen von natürlichem Montmorillonit beobachtet werden konnten.

. 165 300° 8.8 . , , , , , .
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6.
Studies of the phase composition and catalytic properties of several complex oxide catalysts for oxidative ammonolysis of propane indicate that the active phases of these catalysts are antimonates of the respective metals. Phosphorus and tungsten additives to the catalysts promote the formation of such phase compositions, i.e. the formation of antimonates and the binding of excess antimony oxide.
. , ; , .
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7.
    
, . .
The existence of positive steady states for the kinetic equations of reversible reactions has been proved. An iteration procedure is proposed for locating the steady states. The results of model calculations are discussed.
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8.
The gas phase elimination of 3-bromobutyronitrile, examined in a static system and seasoned vessel, follows a first-order rate law. The reaction in the temperature range of 370.0–420.1°C and pressure range of 54–198 torr, is homogeneous and unimolecular. The temperature dependence of the rate coefficient is given by the equation: log k1 (s–1)=(13.74±0.25)–(213.7±3.2) kJ mol–1 (2.303RT)–1. The cyano substituent has been found to retard the elimination process through its electronwithdrawing resonance effect. Most of the dehydrobromination product is cis-trans-crotonitrile, while very little of allyl cyanide is obtained. This result is rationalized in terms of electronic factors.
3- , . . 370,0–420,1°C 54–198 . : log k1 (cek–1)=(13,74±0,25)–(213,7±3,2)(/)×(2,303 RT)–1. - . --, . .
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9.
Cyclohexane is oxidized by air oxygen in CH2Cl2 solution to yield cyclohexanol, cyclohexanone and cyclohexyl chloride when irradiated by light (>310 nm) in the presence of (Bu4N)2CrO4 or (Bu3SnO)2CrO2. The addition of PhIO greatly accelerates the reaction and increases the yield of products. The reaction mixture contains neither cyclohexanol nor cyclohexanone when the photoreaction in the presence of the Cr(VI)–PhIO system is carried out in argon atmosphere. Hence neither iodosylbenzene nor oxochromium compounds can be oxygen atom donors in alkane oxygenation. The accelerating effect of iodosylbenzene may be due to the enhanced oxidizing power of photo-excited oxochromium species when coordinated to iodosylbenzene.
CH2Cl2 , , (>310 ) (Bu4N)2CrO4 (Bu3SnO)2CrO2. PhIO . Cr(VI)–PhIO , , . , ( ) . .
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10.
The preparation of vanadium-phosphorus catalysts is described, showing the considerable influence of phosphorus on the concentration of V4+ ions. The oxidation properties were studied by chemical analysis and electron spin resonance. Moreover, ESR spectra show a strong influence of moisture on the structure of the catalysts.
- , V+4. , . , , .
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11.
Studies of Mn, Cr, Cu, La, Sb, V, Co and W oxides as catalysts for the electrocatalytic oxidation of aniline to p-aminophenol have revealed the electrocatalytic activity of WO3. A mathematical model for the kinetics of analine oxidation on WO3 is suggested that agrees fairly well with the experimental data.
Mn, Cr, Cu, La, Sb, V, Co, W -. , . , , .
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12.
Rate constants of the reactions of the radical complex Zr(IV) (O 2 ) with Fe(II), Ti(III), resorcinol, guaiacol and ascorbic acid in aqueous solutions have been measured by the ESR flow method. They are similar to the values obtained for the radical complex Ti(IV) (O 2 ).
Zr(IV)(O 2 ) , , , . , Ti(IV)(O 2 ).
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13.
Seven complex compounds exhibiting the compositions Ni(en)3Ni(CN)4·H2O (I), Ni(en)3Ni(CN)4 (II),-Ni(en)2Ni(CN)4 (III), Ni(en)Ni(CN)4·2H2O (IV), Ni(en)Ni(CN)4 (V), Ni(en)2Ni(CN)4 · 2.5H2O (VI) and-Ni(en)2Ni(CN)4 (VII) were prepared from the system Ni-en-[Ni(CN)4]2–-H2O. These compounds were examined by the methods of infrared spectroscopy, X-ray powder diffractometry, UV-VIS reflectance spectroscopy, and also by the measurement of magnetic moments. The thermal stability, the stoichiometry of thermal decomposition and the mutual transformations were investigated with a derivatograph. The reactions proceeding according to the following schemes were observed if the system was heated to appropriate temperature: (I)(II)(III)(V)(IV) and (VI)(VII)(III)(V)(IV) Process (VII)(III) represents isomerization. The reversibility of the process (V)(IV) is due to the high hygroscopicity of the anhydrous complex. The changes in structure in the course of the individual processes are discussed.
Zusammenfassung Aus einem System Ni-en-[Ni(CN)4]2–-H2O wurden sieben Komplexe der Formeln Ni(en)3Ni(CN)4·H2O (I), Ni(en)3Ni(CN)4 (II),-Ni(en)2Ni(CN)4 (III), Ni(en)Ni(CN)4·2H2O (IV), Ni(en)Ni(CN)4 (V), Ni(en)2Ni(CN)4 · 2.5H2O (VI) und-Ni(en)2Ni(CN)4 (VII) hergestellt. Diese Verbindungen wurden mittels IR-Spektroskopie, Röntgenpulverdiffraktometrie, UV-Reflexionsspektroskopie und durch Messungen des magnetischen Momentes untersucht. Die Wärmestabilität, die Stöchiometrie des thermischen Zerfalles und die gegenseitigen Umwandlungen wurden mittels eines Derivatographen untersucht. Wird das System auf geeignete Temperaturen erhitzt, kann der Reaktionsverlauf durch folgendes Schema dargestellt werden: (I)(II)(III)(V)(IV) und (VI)(VII)(III)(V)(IV).Der Prozeß (VII)(III) verkörpert eine Isomerisierung. Die Umkehrbarkeit von Prozeß (V)(IV) ist auf die ausgeprägten Hygroskopieeigenschaften des wasserfreien Komplexes zurückzuführen. Es werden die im Ablaufe der einzelnen Prozesse vorgehenden Strukturveränderungen besprochen.

Ni- -[No(N)]2 -2 Ni(en)3Ni(CN)4 · 2 (I), Ni(en)3Ni(CN)4 (II),-Ni(en)2Ni(CN)4 (III), Ni(en)Ni(CN)4-2H2O (IV), Ni(en)Ni(CN)4 (V), Ni(en)2Ni(CN)4 · 2,5H2O (VI) -Ni(en)2Ni(CN)4 (VII). , , - , . , . (I)(II)(III)(V)(IV) (VI)(VII)(III)(V)(IV). (VII)(III) . (V)(IV) . .
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14.
Kinetics of Ru(III) catalyzed oxidation of methanol, ethanol, n-propanol, n-butanol, isopropanol and iso-butanol by N-bromosuccinimide (NBS) in the presence of Hg(II) acetate have been studied in acid medium. The oxidation exhibits a fractional order in [alcohol] and first order in [NBS]. The applicability of Taft's equation was tested. The probable mechanism is discussed.
, , -, -, - () Hg(II), Ru(III), . . . .
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15.
The deactivation of a silver catalyst was investigated after six years of industrial production of ethylene oxide. Temperature-programmed reduction was used to characterize the chemical nature of the silver and its reactivity towards oxygen. The fresh and some aged catalysts were examined, also after different thermal treatments.During the industrial run, the surface species were modified and some oxygen diffused into the bulk of the metal. Aging caused permanent changes in the characteristics of the silver, resulting in a different interaction with oxygen. The TPR spectra exhibited a trend along the reactor axis, suggesting a correlation with the degree of deactivation of the catalyst.
Zusammenfassung Die Desaktivierung eines Silberkatalysators wurde nach 6-jährigem Einsatz zur industriellen Produktion untersucht. Temperaturprogrammierte Reduktion wurde angewandt, um die chemische Natur des Silbers und dessen Reaktivität gegenüber Sauerstoff zu charakterisieren. Frische und einige gealterte Katalysatoren wurden nach verschiedenen thermischen Vorbehandlungen untersucht. Die Alterung verursachte bleibende Veränderungen in charakteristischen Eigenschaften des Silbers, was in der unterschiedlichen Wechselwirkung mit Sauerstoff zum Ausdruck kommt. Die TPR-Resultate zeigen einen Trend entlang der Reaktorachse, was auf eine Korrelation mit dem Grad der Desaktivierung des Katalysators hindeutet.

. () . , , . . , , . , .


The experimental contributions by F. Genoni and G. Valassina are gratefully acknowledged.  相似文献   

16.
The acidity and basicity of Sn–Mo–Ox catalysts with different Mo/Mo+Sn atomic ratios were measured by determining the adsorption isotherms of pyridine and acetic acid by chromatographic method. It was found that acidity and basicity go through a maximum at a Mo content of 15–20 at.%.
Sn–Mo–Ox Mo/Mo+Sn, . Mo=15–20 at.%.
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17.
A new method to calculate the function of density distribution of adsorption centers according to the activation energies of desorption by using temperature-programmed desorption curves is suggested. The application of this method is exemplified by toluene desorption from ZSM-5 zeolite.
, . .
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18.
High-temperature X-ray diffraction analysis in the temperature range of 553–823 K was used to study the formation and the region of thermal stability of VMo3O11 being an active component of the V–Mo–O catalyst for acrolein oxidation to acrylic acid.
553–823 K VMo3O11, V-Mo-O .
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19.
By the method of gas chromatography it has been found that the adsorption of acrolein takes place without dissociation whereas acrylic acid is adsorbed dissociatively. The adsorption of water vapor proceeds also dissociatively and results in increasing the number of the Brönsted acid centers. The presence of water vapor has a positive effect on the desorption rate of acrylic acid and a negative effect on the reoxidation rate of the catalyst.
, , . , . , — .
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20.
The dependence of the activity of tin-containing oxide catalysts on their basicity and acidity has been examined. The rate of oxidative dehydrodimerization of olefins is shown to be determined by the mobility of allyl compounds depending on the catalyst acid properties.
. , , .
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