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Electrolytes inorganic

All biological systems contain aqueous electrolyte solutions. These solutions consist of strong electrolytes (inorganic salts) as well as various organic substances with acidic or basic functional groups which usually behave as weak electrolytes. The solutions are often gel-like in their consistency because of the polyelectrolytes, proteins, and other macromolecules contained in them. The pH values of biological solutions as a rule are between 6.7 and 7.6. [Pg.576]

With respect to electrolytic inorganic solutes, a few special cases arise. For a solution system Involving ions and ion-pairs, eq 20 can be written as... [Pg.47]

The human Gl tract is lined by a layer afucussynthesized by cells that form part of the epithelium. Mucus is composed mostly of water, cross-linked mucins, electrolytes (inorganic salts... [Pg.628]

Many minerals are required in the diet. They are generally divided into the classifications of electrolytes (inorganic ions that are dissolved in the fluid compartments of the body), minerals (required in relatively large quantities), trace minerals (required in smaller quantities), and ultratrace minerals (Table 1.8). [Pg.15]

The working principle of this device is similar to other ISOFETs described here, with some differences arising due to the different materials employed. In particular, while the electrochemical phenomena occurring at the electrolyte/ inorganic dielectric interface are well known, a site-binding model that explains in detail the mechanism at the surface for the Mylar foils has not yet been developed. Nevertheless, the sensitivity of the device to the pH variation has been demonstrated (as shown in Fig. 6.5)... [Pg.191]

In inorganic-organic polymer electrolytes, inorganic atoms are introduced in the polymer matrix of hybrid PEs. Three classes of inorganic-organic hybrids endowed with promising ionic conductivities will be presented as follows. [Pg.221]

Key words dye-sensitized solar cell, polymer electrolyte, gel electrolyte, inorganic nanofiller, ionic Uquid, plasticizer. [Pg.381]

Reviews of batch calorimeters for a variety of applications are published in the volume on Solution Calorimetry [8] cryogenic conditions by Zollweg [22], high temperature molten metals and alloys by Colinet andPasturel [19], enthalpies of reaction of inorganic substances by Cordfunke and Ouweltjes [16], electrolyte... [Pg.1911]

Section 8 now combines all the material on electrolytes, electromotive force, and chemical equilibrium, some of which had formerly been included in the old Analytical Chemistry section of earlier editions. Material on the half-wave potentials of inorganic and organic materials has been thoroughly revised. The tabulation of the potentials of the elements and their compounds reflects recent lUPAC (1985) recommendations. [Pg.1287]

For nonionic amphiphiles, the effects of temperature on the phase behavior are large and the effects of inorganic electrolytes are very small. However, for ionic surfactants temperature effects are usually small, but effects of inorganic electrolytes are large. Most common electrolytes (eg, NaCl)... [Pg.150]

Phosphoric Acid Fuel Cell. Concentrated phosphoric acid is used for the electrolyte ia PAFC, which operates at 150 to 220°C. At lower temperatures, phosphoric acid is a poor ionic conductor (see Phosphoric acid and the phosphates), and CO poisoning of the Pt electrocatalyst ia the anode becomes more severe when steam-reformed hydrocarbons (qv) are used as the hydrogen-rich fuel. The relative stabiUty of concentrated phosphoric acid is high compared to other common inorganic acids consequentiy, the PAFC is capable of operating at elevated temperatures. In addition, the use of concentrated (- 100%) acid minimizes the water-vapor pressure so water management ia the cell is not difficult. The porous matrix used to retain the acid is usually sihcon carbide SiC, and the electrocatalyst ia both the anode and cathode is mainly Pt. [Pg.579]

The successfiil synthesis of a transparent soHd polymer electrolyte (SPE) based on PEO and alkoxysilanes has been reported (41). The material possessed good mechanical properties and high electrical conductivity (around 1.8 x 10 S/cm at 25°C) dependent on the organic—inorganic ratio and PEO chain length. [Pg.329]

Electrolytic ceUs for this reaction are manufactured by Hoechst-Uhde (see Electrochemical processing, inorganic) (30,31). [Pg.444]

Inorganic Methods. Before the development of electrolytic processes, hydrogen peroxide was manufactured solely from metal peroxides. Eady methods based on barium peroxide, obtained by air-roasting barium oxide, used dilute sulfuric or phosphoric acid to form hydrogen peroxide in 3—8% concentration and the corresponding insoluble barium salt. Mote recent patents propose acidification with carbon dioxide and calcination of the by-product barium carbonate to the oxide for recycle. [Pg.478]

Tetravalent lead is obtained when the metal is subjected to strong oxidizing action, such as in the electrolytic oxidation of lead anodes to lead dioxide, Pb02 when bivalent lead compounds are subjected to powerful oxidizing conditions, as in the calcination of lead monoxide to lead tetroxide, Pb O or by wet oxidation of bivalent lead ions to lead dioxide by chlorine water. The inorganic compounds of tetravalent lead are relatively unstable eg, in the presence of water they hydrolyze to give lead dioxide. [Pg.67]


See other pages where Electrolytes inorganic is mentioned: [Pg.448]    [Pg.257]    [Pg.364]    [Pg.35]    [Pg.185]    [Pg.823]    [Pg.838]    [Pg.448]    [Pg.2042]    [Pg.514]    [Pg.150]    [Pg.448]    [Pg.257]    [Pg.364]    [Pg.35]    [Pg.185]    [Pg.823]    [Pg.838]    [Pg.448]    [Pg.2042]    [Pg.514]    [Pg.150]    [Pg.179]    [Pg.2602]    [Pg.151]    [Pg.493]    [Pg.470]    [Pg.52]    [Pg.224]    [Pg.505]    [Pg.162]    [Pg.462]    [Pg.137]    [Pg.258]    [Pg.217]    [Pg.510]    [Pg.582]    [Pg.156]    [Pg.156]    [Pg.157]    [Pg.349]    [Pg.267]    [Pg.525]    [Pg.69]   
See also in sourсe #XX -- [ Pg.34 ]




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Aggregation in the Presence of Inorganic Electrolytes

Effect of inorganic electrolyte

Electrolytes inorganic salts

Electrolytes solid inorganic electrolyte

Hybrid inorganic-organic polymer electrolytes

Hygroscopic solid inorganic proton conductor composite polymer electrolytes

Inorganic electrolyte batteries

Inorganic polymer electrolytes

Inorganic solid electrolytes

Inorganics, solubility electrolytes

Other inorganic electrolytic processes

Supported metals inorganic electrolyte effect

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