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Oxide stability

Greases Mechanical and rheological behavior and its persistence Consistency and viscosity Mechanical stability Oxidation resistance... [Pg.284]

The absence of both secondary and tertiary C—H bonds leads to a high measure of oxidative stability. Oxidation does take place when thin films are heated in air to temperatures above 300°C and causes cross-linking but this is of little practical significance. The absence of double bonds gives a very good but not absolute resistance to ozone. [Pg.572]

This strategy has resulted in entirely new formulations with remarkable benefits. Sustainable Earth (SE) cleaning products combine reagents determined to be safer for human and environmental health with a positively characterized hybrid surfactant system containing a stabilized oxidizing compound. This system eliminates conventional ingredients such as alkyl glycol ethers, alkali builders, alkylphenol ethoxylates, EDTA and ethanolamine. [Pg.303]

Silica from zeolite migrates less readily. In the magnesia-alumina system, spinel, as identified by X-ray diffraction, is inactive for SO2 removal. The effect of temperature on steam stability, oxidative adsorption and reductive desorption of SO2 are described. Five commercial catalyst types are ranked for SOx removal. [Pg.114]

SRM (selected reaction monitoring), 693 Stability, oxidation indices, 656, 664-5 Standard enthalpy of formation see Heat of formation... [Pg.1490]

Stabilized zirconia refers to a solid solution of zirconium oxide with one or more of a number of stabilizing oxides (CaO, MgO, 20, or others) to form a cubic fluorite structure. This... [Pg.251]

Radiation damage Desolvation reactions Solid-gas reactions Thermal stability Oxidative stability Curie point determinations Purity determinations Sample comparison... [Pg.121]

Compare the properties of the trioxides of the chromium subgroup elements (their colour, thermal stability, oxidizing ability, and reaction with water). [Pg.219]

Much attention has been paid to the synthesis of fluorine-containing condensation polymers because of their unique properties (43) and different classes of polymers including polyethers, polyesters, polycarbonates, polyamides, polyurethanes, polyimides, polybenzimidazoles, and epoxy prepolymers containing pendent or backbone-incorporated bis-trifluoromethyl groups have been developed. These polymers exhibit promise as film formers, gas separation membranes, seals, soluble polymers, coatings, adhesives, and in other high temperature applications (103,104). Such polymers show increased solubility, glass-transition temperature, flame resistance, thermal stability, oxidation and environmental stability, decreased color, crystallinity, dielectric constant, and water absorption. [Pg.539]

The XPS analysis of the samples primed at 34% RH indicated that there was a consistent failure of the wedge samples which occurred mainly within the alkoxide layer in all systems. Partial hydrolysis may have resulted in the formaton of a weak hydrated oxide layer and was the zone through which the crack propagated to debond the samples. Based on the relative humidity in the chamber during the priming process and the failure surface analysis results, it was concluded that this level of 34% RH was not sufficient to complete the hydrolysis of the alkoxides and produce a stabilized oxide structure. As noted above, however, the wedge crack results did not indicate any instability. [Pg.576]

Heat and/or moisture stability Oxidative stability Plasma stability... [Pg.81]

The case study. The hydrolytic stability, oxidation stability, thermal stability, friction and wear characteristics of both borate and carbonate RMs of sulfonate, salicylate and phenate are shown in Table 3.7 (Inoue, 1993). [Pg.98]

Calcium borate-detergent and calcium carbonate-detergent hard-core RMs Calcium borate is stabilized in hard-core RMs with detergents such as sulfonate, salicylate and phenate and evaluated in comparison with calcium carbonate-detergent RMs. The hydrolytic stability, oxidation stability, thermal stability, friction and wear characteristics of both systems are shown in Table 3.7. Why have borate-detergent RMs been recently recognized as an efficient multifunctional class of anticorrosive-antiwear additive ... [Pg.119]

Cloned, pH stability, Temperature stability [°C], Organic solvent stability, Oxidation stability, General stability, Storage stability, Renatured, and Links to other databases and references. [Pg.136]

Concerning the chemical stability, oxidation by the ambient oxygen is of major concern [18]. Sealing and encapsulation of the material improves the lifetime. For photostability any absorption process has to be strongly avoided [19, 20]. Not only the linear absorption a0 but also the two-photon absorption a2 is of concern. The prevention of any absorption is therefore not only important for the figures of merit but also for the photostability. [Pg.141]

The first step of SAIE in the case of corrosion protection of aluminum alloys is the preparation of oxides. The top layer of an aluminum alloy is generally covered with hydrated mixed oxides. Either alkaline cleaning or a combination of alkaline cleaning and deoxidization removes major organic contaminants and this potentially unstable oxide layer. A thin layer of plasma polymer is deposited on the stabilized oxide layer thus created. [Pg.582]

The logarithms of the stability constants fly for the formation of 1 1 complexes of the actinide ions M +, M " ", MOj and MO with various inorganic ligands are plotted in Fig. 21.1. Carbonato complexes of alkaline-earth elements, lanthanides, actinides and other transition elements play an important role in natural waters and may stabilize oxidation states. [Pg.402]

These applications will be briefly treated in this section. As will become evident, the solid electrolyte membrane materials are either stabilized oxides or mixed oxides. Further details of science and technology of electrocatalytic membrane reactors beyond the scope of this chapter can be found in a number of excellent reviews [Ceilings et al., 1988 Stoukides, 1988]. [Pg.352]


See other pages where Oxide stability is mentioned: [Pg.323]    [Pg.325]    [Pg.380]    [Pg.177]    [Pg.184]    [Pg.434]    [Pg.603]    [Pg.323]    [Pg.156]    [Pg.329]    [Pg.179]    [Pg.190]    [Pg.68]    [Pg.59]    [Pg.257]    [Pg.167]    [Pg.728]    [Pg.110]    [Pg.241]    [Pg.177]    [Pg.184]    [Pg.547]    [Pg.380]    [Pg.222]    [Pg.323]    [Pg.324]    [Pg.325]    [Pg.4474]    [Pg.6639]    [Pg.494]    [Pg.76]   
See also in sourсe #XX -- [ Pg.48 , Pg.51 ]




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1,2,3-Triazoles, computed stability formation from 1,2,4-triazine 4-oxides

Acrylonitrile-butadiene-styrene thermal oxidative stability

Aluminum oxides, stability diagram

Amine oxide stabilizers

And oxidative stability

Anti-oxidation, Stabilization, and Improvement of Bioavailability

Approaches to the Improvement of Metal Oxide Structure Stability

Aromatic oils oxidative stability

Assessment of Oxidative Stability for Lipids

Atmospheric oxidation, stability

Biodiesel oxidative stability

Bismuth oxide stabilizers

Bomb oxidation stability

Butter, oxidative stability

Calculations of the Electrolyte Oxidation Stability

Calorimetry oxidation stability evaluation

Canolol oxidative stability

Cerium oxide stabilizers

Chemical stability oxidation

Chemical stability oxidation reduction effects

Conductivity, oxidation stability measurement

Conjugated linoleic acid oxidative stability

Coordination polymers oxidative stability

Covalent hydrates, oxidation stabilization

Dairy products, oxidation stability

Differential scanning calorimetry oxidative stability determined using

Docosahexaenoic acid oxidative stability

Eicosapentaenoic acid oxidative stability

Electrolyte oxidative stability

Electrolytes stabilized bismuth oxide

Electrolytes stabilized cerium oxide

Electrostatic stabilization, metal oxide

Erbia-stabilized bismuth oxide

Fast oxidation of oil for correlation with its oxidative stability

Fuel cell membranes oxidative stability

Grease oxidation stability

Greases, oxidative stability

Gums, oxidation stability

High Oxidation Stability

High-temperature, oxidative stability

High-temperature, oxidative stability polymers

High-temperature, oxidative stability search

Hydraulic fluids oxidation stability

Hydrogen peroxide oxidation stability evaluation

Induction times oxidation stability

Infrared spectroscopy oxidative stability

Instability of Metal Oxide Parameters and Approaches to Their Stabilization

Ionization potentials, electron affinities and stabilities of oxidation states

Linoleic acid oxidative stability

Linolenic acid, oxidative stability

Lipid stability measurements oxidation techniques

Lipids oxidation/stability

Lubricants oxidative stability

Lubrication Oxidation Stability

Mayonnaise oxidative stability

MeOH Oxidation Catalyst Stability

Mechanical stability ethylene oxide-fatty alcohol

Metal oxide solid electrolytes yttria-stabilized zirconia

Metal oxide stability

Metal oxide-based compounds thermal stability

Monomer stabilization thermal oxidative polymerization

Naphthenic oils oxidation stability

OXIDATION OXIDATIVE STABILITY

OXIDATION OXIDATIVE STABILITY

Olefin copolymers oxidative stability

Organic materials, oxidative stability

Oxalic acid, oxidation stability

Oxidation base-stabilized systems

Oxidation drug stability

Oxidation protein stability

Oxidation stability

Oxidation stability aromatics, effect

Oxidation stability composition

Oxidation stability mechanism

Oxidation stability of aviation fuels

Oxidation stability of gasoline

Oxidation stability oxygen uptake

Oxidation stability peroxides

Oxidation stability sulfur compounds

Oxidation stability test, diesel fuels

Oxidation stability testing

Oxidation stability, separators

Oxidation state, stabilization

Oxidation states stabilities

Oxidation-reduction stability relationships

Oxidative Stability of Biodiesel by P-DSC

Oxidative Stability of Rosins

Oxidative addition adduct stability

Oxidative cleavage stability

Oxidative quality/stability tests

Oxidative stability

Oxidative stability

Oxidative stability Fire resistant materials

Oxidative stability Linear poly

Oxidative stability canolol effect

Oxidative stability derivatives

Oxidative stability electron spin resonance spectroscopy

Oxidative stability imaging chemiluminescence

Oxidative stability measurement

Oxidative stability of biodiesel

Oxidative stability of conjugated linoleic acid

Oxidative stability of lipids

Oxidative stability of polymers

Oxidative stability of urethane

Oxidative stability of vegetable oils

Oxidative stability omega

Oxidative stability phosphine oxide

Oxidative stability temperatures

Oxidative stability testing

Oxidative stability thermogravimetric analysis

Oxidative stability weight loss

Oxidative stability, blending

Oxidative stability, blending poly

Oxidative stability, encapsulated orange

Oxidative stabilizers

Oxidative stabilizers

Oxides Stabilized Zirconia

Oxides stability constants

Oxides stability diagram

Oxidizing agents, acetal stability

Paraffinic oils oxidation stability

Phosphine Oxide and Phosphonate-Stabilized Anions

Photo stability oxidation

Photo-oxidative stability

Photoelectrochemical Stability of Oxide Layers

Poly oxidation stability

Poly oxidative stability

Polyethylene oxidative stability

Polyethylene oxide) shear stability

Polymers oxidative stability

Polypropylene oxidative stability

Polytetrafluoroethylene oxide, stability

Porous silicon stabilization electrochemical oxidation

Porous silicon stabilization oxidation

Porous silicon stabilization thermal oxidation

Poultry oxidative stability

Protein stabilization oxidation

Pyrolysis processes oxidation stabilization

Rancimat™, oxidation stability measurement

Reclaimed Oxidation Stability

Relative Stabilities of Oxidation States

Rosins, oxidative stability

Service life oxide stability effects

Silicon oxides, stability diagram

Silicone Oxidation Stability

Silicone fluids, oxidative stabilization

Silicones oxidative stability

Solid-oxide fuel cells temperature stability

Stabilities of iron oxides

Stability against oxidation

Stability anodic oxide

Stability of Bulk Metal Oxides

Stability of Oxide Surfaces

Stability of Some Oxidation States

Stability of Surface Oxides in an Oxygen Environment

Stability of iron oxide suspensions

Stability of metal oxides

Stability of oxidation stales

Stability of oxidation states

Stability oxidation degradation

Stability perovskite oxides

Stability to atmospheric oxidation

Stability to oxidants

Stability to oxidation

Stability transition metal oxide insertion

Stability, oxidation indices

Stabilization against Thermal-Oxidative Degradation

Stabilization of On and High Oxidation States

Stabilization of Polyamides Against Thermal Oxidation

Stabilization of Polyethylene against Thermo-oxidative Degradation

Stabilization of Polyolefins Against Oxidative Destruction

Stabilization of oxidation states

Stabilization of the Oxide Interface

Stabilization of unstable d-metal oxidation

Stabilization of unstable d-metal oxidation states

Stabilization of unstable d-metal oxidation states by complex formation

Stabilization of unusual oxidation states

Stabilization of unusual oxidation states by coordination

Stabilizers oxidation

Standard Test Method for Thermal-Oxidative Stability of Polypropylene Using a Specimen Rotator Within an Oven

Storage oxidation stability

Structural stabilities of Mn(IV) oxides

Synthetic Oxidation Stability

Synthetic lubricants oxidative stability

Temporal Stabilization of Porous Silicon Through Oxidation

The Activity-Stability Parameterization of Homogeneous Green Oxidation Catalysts

The Morphological Stability of Boundaries During Metal Oxidation

The Stabilization of High Oxidation States

The Stabilization of Oxidation States

The Stabilization of Oxidation States R. S. Nyholm and M. L. Tobe

The Stabilization of Oxidation States, and Reduction Potentials

Thermal Analysis and Measurement of Oxidation Stability

Thermal and oxidative stability

Thermal oxidative stability

Thermal-oxidation stability

Thermo-oxidation, stabilized

Thermo-oxidative stability

Thermo-oxidative stability degradation mechanism

Thermo-oxidative stabilization

Thiobarbituric acid reactive substances oxidation stability

Transuranium elements oxidation state stability

Trends in the Stability of Oxidation States

Triphenylphosphine oxide stability

Vegetable oils oxidative stability

Virgin Oxidation Stability

Vitamin oxidative stability

Volatile acids, oxidation stability measurement

Yttrium oxide partially stabilized zirconia

Yttrium oxide zirconia stabilization

Yttrium-stabilized zirconium oxide

Zinc group oxides, stabilities

Zinc oxide heat stabilization

Zinc oxide light stabilization

Zirconium oxide calcium-stabilized

Zirconium oxide partially-stabilized

Zirconium oxide stabilized

Zirconium oxide yttria-stabilized

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