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Carbonaceous

Adsorption. Adsorption involves the transfer of a component onto a solid surface. An example is the adsorption of organic vapors by activated carbon. Activated carbon is a highly porous form of carbon manufactured from a variety of carbonaceous raw materials such as coal or wood. The adsorbent may need to be... [Pg.108]

This measurement characterizes the tendency of an oil to form carbonaceous deposits upon undergoing carbonization. [Pg.283]

Note 2. The separation may be difficult owing to the presence of carbonaceous material. [Pg.125]

Perchlorates Carbonaceous materials, flnely divided metals particularly magnesium and aluminum, sulfur, benzene, oleflns, ethanol, sulfur, sulfuric acid... [Pg.1211]

Perchloric acid Acetic acid, acetic anhydride, alcohols, antimony compounds, azo pigments, bismuth and its alloys, methanol, carbonaceous materials, carbon tetrachloride, cellulose, dehydrating agents, diethyl ether, glycols and glycolethers, HCl, HI, hypophosphites, ketones, nitric acid, pyridine, steel, sulfoxides, sulfuric acid... [Pg.1211]

Before measurement it must be decided exactly which isotopes are to be compared. For oxygen, it is usually the ratio of 0 to 0, and for hydrogen it is H to H. Such isotope ratios are measured by the mass spectrometer. For example, examination of a sample of a carbonaceous compound provides abundances of ions at two m/z values, one related to C and one to C (it could be at m/z 45 and COj at m/z 44). By convention, the heavier isotope is always compared with the lighter isotope. The ratio of isotopes is given the symbol R (Figure 48.1). [Pg.354]

For example, if a carbonaceous sample (S) is examined mass spectrometrically, the ratio of abundances for the carbon isotopes C, in the sample is Rg. This ratio by itself is of little significance and needs to be related to a reference standard of some sort. The same isotope ratio measured for a reference sample is then R. The reference ratio also serves to check the performance of the mass spectrometer. If two ratios are measured, it is natural to assess them against each other as, for example, the sample versus the reference material. This assessment is defined by another ratio, a (the fractionation factor Figure 48.2). [Pg.354]

Activated carbons are made by first preparing a carbonaceous char with low surface area followed by controlled oxidation in air, carbon dioxide, or steam. The pore-size distributions of the resulting products are highly dependent on both the raw materials and the conditions used in their manufacture, as maybe seen in Figure 7 (42). [Pg.275]

Percentage of meteorites seen to fall. Chondrites. Over 90% of meteorites that are observed to fall out of the sky are classified as chondrites, samples that are distinguished from terrestrial rocks in many ways (3). One of the most fundamental is age. Like most meteorites, chondrites have formation ages close to 4.55 Gyr. Elemental composition is also a property that distinguishes chondrites from all other terrestrial and extraterrestrial samples. Chondrites basically have undifferentiated elemental compositions for most nonvolatile elements and match solar abundances except for moderately volatile elements. The most compositionaHy primitive chondrites are members of the type 1 carbonaceous (Cl) class. The analyses of the small number of existing samples of this rare class most closely match estimates of solar compositions (5) and in fact are primary source solar or cosmic abundances data for the elements that cannot be accurately determined by analysis of lines in the solar spectmm (Table 2). Table 2. Solar System Abundances of the Elements ... [Pg.96]

Carbonization. Next to combustion, carbonization represents one of the largest uses of coal (2,24—26). Carbonization is essentially a process for the production of a carbonaceous residue by thermal decomposition, accompanied by simultaneous removal of distillate, of organic substances. [Pg.63]

Biomass is another material that can produce a mixture of carbonaceous soHd and Hquid products as well as gas ... [Pg.75]

The MTG process was developed for synfuel production in response to the 1973 oil crisis and the steep rise in crude prices that followed. Because methanol can be made from any gasiftable carbonaceous source, including coal, natural gas, and biomass, the MTG process provided a new alternative to petroleum for Hquid fuels production. New Zealand, heavily dependent on foreign oil imports, utilizes the MTG process to convert vast offshore reserves of natural gas to gasoline (59). [Pg.83]

L. E. Swabb, Jr., G. K. Vick, and T. Aczel, "The Liquefaction of SoHd Carbonaceous Matedals," paper presented at The World Conference on Future Sources of Organic Raw Materials, Toronto, Can., July 10, 1978. [Pg.99]

Fuel-fired furnaces primarily utilize carbonaceous or hydrocarbon fuels. Since the purpose of a furnace is to generate heat for some useful appHcation, flame temperature and heat transfer are important aspects of furnace design. Heat transfer is impacted by the flame emissivity. A high emissivity means strong radiation to the walls. [Pg.141]


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See also in sourсe #XX -- [ Pg.85 ]

See also in sourсe #XX -- [ Pg.139 , Pg.172 , Pg.174 ]




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Adsorbed carbonaceous species, anodic

Adsorbents, carbonaceous

Adsorption carbonaceous species

Adsorption of Carbonaceous Species on Platinum Metals

Adsorption of Weakly Bonded Carbonaceous Species

Aerosol carbonaceous

Amino acids carbonaceous chondrites

Anode materials carbonaceous

Asteroids, carbonaceous

Boron-doped carbonaceous

Boron-doped carbonaceous material

CARBONACEOUS DUSTS

Carbon Carbonaceous deposit

Carbon Carbonaceous overlayer

Carbon, activated Carbonaceous material

Carbonaceous BOD

Carbonaceous Moiety

Carbonaceous Removal from Industrial Wastewater

Carbonaceous adsorbent powder

Carbonaceous adsorbents materials

Carbonaceous aerosol urban

Carbonaceous aerosols in the

Carbonaceous aggregates

Carbonaceous amino acids

Carbonaceous anode

Carbonaceous biochemical oxygen

Carbonaceous biochemical oxygen demand

Carbonaceous black shales

Carbonaceous cathodes

Carbonaceous char

Carbonaceous char barriers

Carbonaceous char layer

Carbonaceous chemical composition

Carbonaceous chemically bonded

Carbonaceous chondrites

Carbonaceous chondrites aqueous alteration

Carbonaceous chondrites characteristics

Carbonaceous chondrites chemistry

Carbonaceous chondrites classification

Carbonaceous chondrites elemental composition

Carbonaceous chondrites hibonite

Carbonaceous chondrites insoluble organic matter

Carbonaceous chondrites mineral composition

Carbonaceous chondrites organic material

Carbonaceous chondrites soluble organic compounds

Carbonaceous chondrites techniques

Carbonaceous chondrites thermal processing

Carbonaceous chondrites volatile element depletion

Carbonaceous chondrites, organic

Carbonaceous chondrites, organic compounds

Carbonaceous chrondrites

Carbonaceous compounds, reaction

Carbonaceous deposit

Carbonaceous deposits carbon nanotubes

Carbonaceous deposits cleaning from surfaces

Carbonaceous energy carriers

Carbonaceous feed, solid

Carbonaceous formation

Carbonaceous fuel molecules

Carbonaceous fuels

Carbonaceous gases

Carbonaceous gases and

Carbonaceous intermediates

Carbonaceous intermediates adsorption

Carbonaceous intermediates hydrocarbons

Carbonaceous kerogen

Carbonaceous layer

Carbonaceous layer/residue

Carbonaceous limestone

Carbonaceous liquid electrolytes

Carbonaceous material

Carbonaceous material aerosols

Carbonaceous material, atmospheric

Carbonaceous material, atmospheric aerosols

Carbonaceous materials acidity

Carbonaceous materials definition

Carbonaceous materials oxidation

Carbonaceous materials, reactivity

Carbonaceous matter

Carbonaceous matter, association with

Carbonaceous matter, association with uranium

Carbonaceous mesophase

Carbonaceous mesophase spherical

Carbonaceous mesophases

Carbonaceous meteorite

Carbonaceous meteorites, carbon

Carbonaceous molecules

Carbonaceous overlayer

Carbonaceous particle

Carbonaceous particle surface

Carbonaceous particle synthesis

Carbonaceous particles sources

Carbonaceous phases

Carbonaceous precursors

Carbonaceous radicals

Carbonaceous radicals species

Carbonaceous refractory materials

Carbonaceous refractory materials carbon

Carbonaceous refractory materials graphite

Carbonaceous residue, cracking

Carbonaceous residues

Carbonaceous shales, uranium deposits

Carbonaceous shell

Carbonaceous solids

Carbonaceous soot

Carbonaceous sorbent materials

Carbonaceous sorbents

Carbonaceous species

Carbonaceous species effects

Carbonaceous species tests

Carbonaceous substances, catalyst

Carbonaceous substrate

Carbonaceous support materials

Carbonaceous surface oxides

Carbonaceous surfaces

Carbonaceous surfaces, modification

Carbonaceous, generally

Carbonaceous, generally residue

Carbonaceous, generally structures

Carbonaceous-silicate char

Cleaning carbonaceous materials

Coals and Carbonaceous Materials

Deactivation by carbonaceous deposits

Disordered carbonaceous materials

Electrode carbonaceous

Extended carbonaceous materials

Extended carbonaceous materials production

Filler carbonaceous

From carbonaceous materials

Hydrogen Adsorption in the Presence of Chemisorbed Carbonaceous Species

Hydrogenation carbonaceous species

Intercalation carbonaceous anodes

Lignites, coals and carbonaceous

Lithium carbonaceous materials

Mesoporous carbonaceous solid

Meteorite Carbonaceous chondrites

Methane Storage in Carbonaceous Adsorbents

Methane carbonaceous material

Minerals carbonaceous chondrite anhydrous

Murchison meteorite carbonaceous chondrite

Nanomaterials carbonaceous materials

Nongraphitized Carbonaceous Materials

Novel Carbonaceous Materials for Application in the Electrochemical Supercapacitors

Ordering Carbonaceous chondrites

Other carbonaceous materials

Oxidation Mechanism of Chemisorbed Carbonaceous Species

Oxidation of carbonaceous solids

Oxygen with carbonaceous compounds

Platinum carbonaceous overlayer

Polymer composites carbonaceous materials

Practical carbonaceous fuels (C. R. Shaddix)

Pyrolysis to Porous Carbonaceous Structures

Raman spectroscopy carbonaceous deposits

Removing carbonaceous pollution

Rocks carbonaceous

SEI Formation on Carbonaceous Electrodes

SYNTHESIS OF PHOSGENE FROM CARBONACEOUS MATERIALS

Sandstones carbonaceous matter

Shales, carbonaceous matter

Smoke carbonaceous solid particles

Surface carbonaceous compounds

The Final Stage Carbonaceous Deposits

The First Intercalation Step in Carbonaceous Anodes

The Formation, Structure, and Function of Carbonaceous Deposits

Towards Robust Carbonaceous Films on Micro-textured Polymer Surfaces

Water carbonaceous chondrites

Yazami, A. Martinent and Y. Reynier haracterization of Anodes Based on Various Carbonaceous aterials for Application in Lithium-Ion Cells

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