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Gas material

Initial volume of released dense gas material, length x,q,z Distance in dimensional space, length... [Pg.2340]

Air Products and Chemicals, Inc., Specialty Gas Material Safety Data Sheet, Allentown, PA, rev. February 1984. [Pg.283]

A set of equations known collectively as gas material balance equations has been devised to determine original gas in place and predict gas reserves. These equations were derived for dry gases and can be used for wet gases, if care is taken in defining the properties of the wet gases. The equations are applicable to retrograde gases only at reservoir pressures above the dew point. [Pg.158]

We propose a scheme for the combustion of a smokeless powder which provides for its transformation into energy-rich gas materials through a heterogeneous reaction and the subsequent reaction of these materials with release of combustion heat in the gas phase at the surface of the powder. This scheme is analogous to Belyaev s scheme for the combustion of EM. [Pg.360]

Specialty Gas Material Data Sheet on Fluorine Air Products and Chemicals Inc. Allentown, PA, 1986... [Pg.138]

Usually the estimation of structural parameters of foam formed by dispersion through gauzes is done on the basis of liquid and gas material balance [36,38]. Such calculations do not account for the properties of foaming solution and capillary pressures during the process of foam formation. That is why they cannot give reliable results. [Pg.12]

Strong evidence for Archean methanogens comes from highly fractionated carbon isotopes. As mentioned above, these have been found in 2.7 Ga material from Belingwe (Grassineau et al, in press), and also from similarly aged rocks in Australia (Rye and Holland, 2000). [Pg.3893]

Authors Method of Measurement Heating or Cooling of Gas Gas Material Shape Diameter Dp, mm... [Pg.636]

For liquid or gas materials or for Type 1 methods some of these steps may be irrelevant. In addition all necessary transfer standards must be used to calibrate basic instruments (e.g. balances, wavelength etc). [Pg.58]

It is well known that a foam is a composite solid-gas material. The continuous phase is the polyurethane polymer and the discontinuous phase is the gas phase. Polyurethanes are an extremely versatile group of polymers, produced in a wide range of densities, crosslink densities and stiffnesses, from very soft to very hard structures, as shown in Figure 1.6. [Pg.5]

A flame resistant grade of PP/EPDM elastomeric is used for extmsion-coating electrical cables because it contains only 5.5 percent acid-gas materials, compared to PVC that contains 25 percent. Large concentrations of acid-gas can corrode the surface of sensitive electronic equipment if exposed to fire. [Pg.971]

Before exposure to the gas, materials should be brought into equilibrium with the humidity and temperature required by the process. The time required for this should be balanced against the opposing need to minimize the time before sterilization. [Pg.40]

Firefighters chance a great risk to the exposure to HCN, which is a known fire-effluent gas. Materials such as polyurethane foam, silk, wool, polyacrylonitrile, and nylon fibers bum fo produce HCN (Sakai and Okukubo 1979 Yamamoto 1979 Morikawa 1988 Levin el al. 1987 Sumi and Tsuchiya 1976) along wilh CO, acrolein, CO2, formaldehyde, and other gases. Emissions of these toxic gases take place primarily under the conditions of oxygen deficiency, and when Ihe air supply is plentiful the emissions are decreased considerably (Hoschke et al. 1981). [Pg.319]

Pop-up pressure relief valves in Units 7 and 9 were too small Small amounts of corrosion in valves could prevent venting if non-gas material is present... [Pg.358]

A set of simulators that can be used to simulate gas-material interaction (such as gas-particle two-phase flow) with the inter gas-material heat and mass transfer... [Pg.1210]

With the two advanced units of the drying suite, R D engineers and researchers can carry out cost-effective simulations for better design, optimization, and control. With simulation of the internal heat and mass transfer, drying time under different operating conditions can be predicted to help both process and dryer designs. With simulation of the inter gas-material heat and mass transfer, geometry and details inside the dryer... [Pg.1210]


See other pages where Gas material is mentioned: [Pg.1018]    [Pg.210]    [Pg.383]    [Pg.659]    [Pg.286]    [Pg.145]    [Pg.54]    [Pg.1018]    [Pg.3896]    [Pg.299]    [Pg.31]    [Pg.342]    [Pg.311]    [Pg.33]    [Pg.29]    [Pg.205]    [Pg.360]    [Pg.211]    [Pg.17]    [Pg.99]    [Pg.53]   
See also in sourсe #XX -- [ Pg.31 ]




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Carbon nanotube and metal oxide hybrid materials for gas sensing

Cavitands as a Material for Gas Sensors

Compressed gases construction materials

Compressed gases contruction materials

Cryo-adsorbed gas storage in carbon materials

Electrode Materials Preferable for Gas Sensor Applications

Elemental Composition of Gas-Sensing Material Should Be Optimized

Features of Sensing Materials Used in Acoustic Wave Gas Sensors

G. Korotcenkov, Handbook of Gas Sensor Materials, Integrated Analytical Systems

G. Korotcenkov, Handbook of Gas Sensor Materials: Properties, Advantages and Shortcomings

Gas Compatibility with Various Materials

Gas Sensing Materials

Gas Sensors with Porous Materials

Gas adsorption in porous nanostructured materials

Gas barrier materials

Gas diffusion layer materials

Gas separation materials

Gases and Materials

Gases common materials

Gases, storage materials

High temperature corrosion of structural materials under gas-cooled reactor helium

High-temperature gases reference materials

Industrial gases industry material

Inorganic Materials for Gas-separation Membranes

M. Galinski arbon Materials for Gas Diffusion Electrodes, Metal Air ells and Batteries

Material Requirements for Packaging of Gas Sensors

Materials Acceptable for Gas Sensor Applications

Materials for Capacitance-Based Gas Sensors

Materials for Electrochemical Gas Sensors with Liquid and Polymer Electrolytes

Materials for Field Ionization Gas Sensors

Materials of construction with CO2 in feed gas

Materials of construction with SO3 in feed gas

Membrane materials, for gas separation

Nanoionic Materials as Gas Sensors

Other Materials in Thin-Film Transistor-Based Gas Sensors

Polymeric Membrane Materials and Potential Use in Gas Separation

Prediction of diffusion coefficients in gases, liquids, amorphous solids and plastic materials using an uniform model

Recent material developments for improved selectivity of SiC gas sensors

Surface Functionalizing of Carbon-Based Gas-Sensing Materials

Transportation and storage of material gases

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