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Organic species

A substantial fraction of the named enzymes are oxido-reductases, responsible for shuttling electrons along metabolic pathways that reduce carbon dioxide to sugar (in the case of plants), or reduce oxygen to water (in the case of mammals). The oxido-reductases that drive these processes involve a small set of redox active cofactors , that is, small chemical groups that gain or lose electrons. These cofactors include iron porjDhyrins, iron-sulfur clusters and copper complexes as well as organic species that are ET active. [Pg.2974]

Carbanions are negatively charged organic species with an even number of electrons and the charge mainly concentrated on a carbon atom. In alkyl, alkenyl, and alkynyl anions all of the... [Pg.4]

Hydrophilic and Hydrophobic Surfaces. Water is a small, highly polar molecular and it is therefore strongly adsorbed on a polar surface as a result of the large contribution from the electrostatic forces. Polar adsorbents such as most zeoHtes, siUca gel, or activated alumina therefore adsorb water more strongly than they adsorb organic species, and, as a result, such adsorbents are commonly called hydrophilic. In contrast, on a nonpolar surface where there is no electrostatic interaction water is held only very weakly and is easily displaced by organics. Such adsorbents, which are the only practical choice for adsorption of organics from aqueous solutions, are termed hydrophobic. [Pg.252]

Fluorosulfuric acid may be used to prepare diazonium fluorosulfates, ArN SO.F (44), which decompose on heating to give aryl (Ar) fluorosulfates (36,45). Aryl fluorosulfates are also obtained from arylsulfonyl chlorides and fluorosulfuric acid (35). Alkyl and other organofluorosulfates form during electrolysis of fluorosulfuric acid in the presence of organic species (46,47). [Pg.249]

Penicillins. Since the discovery of penicillin in 1928 as an antibacterial elaborated by a mold, Penicillium notatum the global search for better antibiotic-producing organism species, radiation-induced mutation, and culture-media modifications have been used to maximize production of the compound. These efforts have resulted in the discovery of a variety of natural penicillins differing in side chains from the basic molecule, 6-aminopenici11anic acid [551-16-6], These chemical variations have produced an assortment of dmgs having diverse pharmacokinetic and antibacterial characteristics (see Antibiotics, P-lactams). [Pg.403]

Examination of equation 5 shows that if there are no chemical reactions, (R = 0), or if R is linear in and uncoupled, then a set of linear, uncoupled differential equations are formed for determining poUutant concentrations. This is the basis of transport models which may be transport only or transport with linear chemistry. Transport models are suitable for studying the effects of sources of CO and primary particulates on air quaUty, but not for studying reactive pollutants such as O, NO2, HNO, and secondary organic species. [Pg.380]

Solution Deposition of Thin Films. Chemical methods of preparation may also be used for the fabrication of ceramic thin films (qv). MetaHo-organic precursors, notably metal alkoxides (see Alkoxides, metal) and metal carboxylates, are most frequently used for film preparation by sol-gel or metallo-organic decomposition (MOD) solution deposition processes (see Sol-GEL technology). These methods involve dissolution of the precursors in a mutual solvent control of solution characteristics such as viscosity and concentration, film deposition by spin-casting or dip-coating, and heat treatment to remove volatile organic species and induce crystaHhation of the as-deposited amorphous film into the desired stmcture. [Pg.346]

Gaseous and particulate pollutants are withdrawn isoldnetically from an emission source and collected in a multicomponent sampling train. Principal components of the train include a high-efficiency glass- or quartz-fiber filter and a packed bed of porous polymeric adsorbent resin (typically XAD-2 or polyurethane foam for PCBs). The filter is used to collect organic-laden particulate materials and the porous polymeric resin to adsorb semivolatile organic species (com-... [Pg.2207]

The reaction shown above for the steam reforming of methatie led to die formation of a mixture of CO and H2, die so-called synthesis gas. The mixture was given this name since it can be used for the preparation of a large number of organic species with the use of an appropriate catalyst. The simplest example of this is the coupling reaction in which medrane is converted to ethane. The process occurs by the dissociative adsorption of methane on the catalyst, followed by the coupling of two methyl radicals to form ethane, which is then desorbed into the gas phase. [Pg.142]

Mathai (21) summarized the specialty conference on atmospheric visibility. With the exception of water content of particles and the measurement of organic species, analytical laboratory techniques are readily available for particle analysis. Regulatory approaches to mitigate existing visibility impairment and to prevent further impairment are being formulated. A... [Pg.148]

Later it was found that the polluting lubricant droplets originating from the transport belts used in the production they had fallen into the paint bath and prevented adhesion of the paint to the metal. It can be concluded that the high sensitivity of SSIMS in the detection of submonolayer coverage of organic species makes it an extremely powerful tool for solving such interface problems. [Pg.98]

Almost all stable organic species have tetravalent carbon atoms, but species with trivalent carbon atoms also exist. Carbocatiom are one such class of compounds. [Pg.33]

Clearly the application of macroreticular (macroporous) ion exchange resins will be often advantageous in the separation of organic species. [Pg.192]

Organism Species Body Weight (g) Main Tissue Containing Coelenterazine Coelenterazine, nmol (Luciferase, 1012 quanta/s)... [Pg.162]

Let us now consider another organic species, such as a sulphone ArS02R known to be irreversibly reduced less easily than pyrene. The basic mechanism for its cathodic reduction has already been presented (reactions 3-6). It is necessary, however, to assume here that the chemical degradation of the anion radical when produced in solution is at least reasonably fast. [Pg.1014]

Breiter, M. W. Adsorption of Organic Species on Platinum Metal Electrodes 10... [Pg.601]

A rate law summarizes the dependence of the rate on concentrations. However, rates also depend on temperature. The qualitative observation is that most reactions go faster as the temperature is raised (Fig. 13.22). An increase of 10°C from room temperature typically doubles the rate of reaction of organic species in solution. That is one reason why we cook foods heating accelerates reactions that lead to the breakdown of cell walls and the decomposition of proteins. We refrigerate foods to slow down the natural chemical reactions that lead to their decomposition. [Pg.676]


See other pages where Organic species is mentioned: [Pg.519]    [Pg.585]    [Pg.1102]    [Pg.1243]    [Pg.1683]    [Pg.213]    [Pg.3]    [Pg.446]    [Pg.261]    [Pg.212]    [Pg.270]    [Pg.253]    [Pg.253]    [Pg.2421]    [Pg.24]    [Pg.72]    [Pg.128]    [Pg.140]    [Pg.593]    [Pg.124]    [Pg.561]    [Pg.80]    [Pg.98]    [Pg.39]    [Pg.1259]    [Pg.161]    [Pg.200]    [Pg.239]    [Pg.367]    [Pg.1014]    [Pg.613]    [Pg.52]   
See also in sourсe #XX -- [ Pg.71 , Pg.187 ]

See also in sourсe #XX -- [ Pg.85 ]




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Activation of Hydrogen Peroxide Using Inorganic and Organic Species

Adsorption organic species

Aerobic organisms reactive oxygen species

Antimony-containing organic species

Biologically active organic species

Biologically active organic species high polymers

Carbons organic species adsorption

Direct Detection of Organic Species

Dissolved organic species, identification

Electron transfer excited organic species

Ionic organic species

Lead-containing organic species

Living organisms organic matter species

Mercury-containing organic species

Model Organic Species and Explosives with Clay Minerals

Naming Surface Species in Organic Reactions on Surfaces

Organ lethality, species differences

Organic solutes, thermophiles and species distribution

Organic species fuel cell

Organic sulfur species, salt

Organically complexed metal species

Other Characteristics of the Inorganic Species in Organic Solution

Phosphorus-containing organic species

Polar volatile organic species

Radical organic species

Reactive oxygen species organic radicals

Selenium-containing organic species

Selenium-containing organic species determination

Species organically complexed

Sulphur species organic

Types of organic species

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