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Gas industry

Management of the environmental impact of projects is of major concern in the oil and gas industry, not only to meet the legislative requirements in host countries, but is also viewed as good business because it is ... [Pg.70]

The oil and gas industry produces much waste material, such as scrap metal, human waste, unspent chemicals, oily sludges and radiation. All of the incoming streams to a facility such as a production platform end up somewhere, and only few of the outgoing streams are useful product. It is one of the responsibilities of the engineer to try to limit the amount of incoming material which will finally become waste material. [Pg.74]

The parametric method is an established statistical technique used for combining variables containing uncertainties, and has been advocated for use within the oil and gas industry as an alternative to Monte Carlo simulation. The main advantages of the method are its simplicity and its ability to identify the sensitivity of the result to the input variables. This allows a ranking of the variables in terms of their impact on the uncertainty of the result, and hence indicates where effort should be directed to better understand or manage the key variables in order to intervene to mitigate downside and/or take advantage of upside in the outcome. [Pg.168]

The X-ray TV introscope can find wide application in engineering, atomic, chemical, heat power, oil and gas industries. [Pg.452]

In oil and gas industry of C.l.S. a lot of pipelines are in operation, including 206 thousand km of main gas pipelines, 65 thousand km of main oil pipelines, 6 thousand km of product pipelines and more than 300 thousand km of field pipelines of different applications. Two thirds of pipelines are more than 15 years old. [Pg.910]

Industrial asphalts Industrial catalysts Industrial coatings Industrial enzymology Industrial ethanol Industrial furnaces Industrial gas Industrial hygiene... [Pg.512]

Petroleum and Natural Gas. Over 90% of the 428,000 t of caustic soda used in the petroleum and natural gas industry is used to process oil and gas into marketable products, especially by removing acidic contaminants. The remainder is used primarily to decrease corrosion of drilling equipment and to increase the solubiUty of drilling mud components by maintaining an alkaline pH (6). [Pg.518]

Bellows or Dia.phra.gm Meters. Bellows meters use flexible diaphragms as the metering chambers. A series of valves and linkages control the filling and emptying of the chambers. Movement of the flexible walls is regulated for a constant displacement per stroke. Meters of this type are widely used in the gas industry as residential meters (see Gas, natural). [Pg.58]

M. W. Peebles, Evolution of The Gas Industry, New York University Press, 1980. [Pg.176]

A large use of molecular sieves ia the natural gas industry is LPG sweetening, in which H2S and other sulfur compounds are removed. Sweetening and dehydration are combined in one unit and the problem associated with the disposal of caustic wastes from Hquid treating systems is eliminated. The regeneration medium is typically natural gas. Commercial plants are processing from as Htde as ca 30 m /d (200 bbl/d) to over 8000 m /d (50,000 bbl/d). [Pg.457]

Drilling Muds in the Petroleum and Natural Gas Industry. Since 1941, chromium chemicals have been used in the drilling of wells to combat fatigue corrosion cracking of drill strings, with about one metric ton of sodium chromate being used aimuaHy for an average West Texas well. Other early uses were in gas-condensate wells in Louisiana and East Texas. [Pg.147]

Cobalt in Catalysis. Over 40% of the cobalt in nonmetaUic appHcations is used in catalysis. About 80% of those catalysts are employed in three areas (/) hydrotreating/desulfurization in combination with molybdenum for the oil and gas industry (see Sulfurremoval and recovery) (2) homogeneous catalysts used in the production of terphthaUc acid or dimethylterphthalate (see Phthalic acid and otherbenzene polycarboxylic acids) and (i) the high pressure oxo process for the production of aldehydes (qv) and alcohols (see Alcohols, higher aliphatic Alcohols, polyhydric). There are also several smaller scale uses of cobalt as oxidation and polymerization catalysts (44—46). [Pg.380]

The approach developed will be used for working up of a new generation of the corresponding standai ds. The same approach may be also adapted for analysis of some other products of gas industry, such as liquefied gases, natural gas, etc. [Pg.183]

API Std 616, Gas Turbines for the Petroleum, Chemical, and Gas Industry Services, 4th Edition, August 1998... [Pg.151]

This standard could be adapted to the fuel compressor for the natural gas to be brought up to the injection pressure required for the gas turbine. Covers the minimum requirements for reciprocating compressors and their drivers used in petroleum, chemical, and gas industry services for handling process air or gas with either lubricated or nonlubricated cylinders. Compressors covered by this standard are of moderate-to-low speed and in critical services. The nonlubricated cylinder types of compressors are used for injecting fuel in gas turbines at the high pressure needed. Also covered are related lubricating systems, controls, instrumentation, intercoolers, after-coolers, pulsation suppression devices, and other auxiliary equipment. [Pg.154]

API Std 671, Special Purpose Couplings for Petroleum Chemical and Gas Industry Services, 3rd Edition, October 1998... [Pg.155]


See other pages where Gas industry is mentioned: [Pg.74]    [Pg.253]    [Pg.291]    [Pg.291]    [Pg.291]    [Pg.987]    [Pg.1010]    [Pg.1053]    [Pg.286]    [Pg.58]    [Pg.172]    [Pg.264]    [Pg.311]    [Pg.303]    [Pg.45]    [Pg.45]    [Pg.12]    [Pg.177]    [Pg.349]    [Pg.375]    [Pg.14]    [Pg.511]    [Pg.1615]    [Pg.2047]    [Pg.184]    [Pg.68]    [Pg.155]   
See also in sourсe #XX -- [ Pg.62 ]

See also in sourсe #XX -- [ Pg.32 , Pg.153 , Pg.179 , Pg.213 , Pg.282 , Pg.293 , Pg.316 , Pg.329 ]

See also in sourсe #XX -- [ Pg.529 ]

See also in sourсe #XX -- [ Pg.29 , Pg.32 , Pg.40 , Pg.43 , Pg.46 , Pg.49 , Pg.53 , Pg.68 , Pg.115 , Pg.136 , Pg.188 , Pg.226 , Pg.243 ]




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China Industrial Gases Industry

Cleaning, gas industrial data

Clearing of Industrial Gas Emissions: Theory, Calculation, and Practice

Common Cause Failures Defense Approach for Oil and Gas Industry Safety Instrumented Systems

Damage Control in the Oil and Gas Industry

Development of membranes for industrial gas separation

Drying of gas industrial data

Future hollow fibre membranes and industrial gas separation

Gas compositions, industrial

Gas compositions, industrial after intermediate

Gas compositions, industrial control

Gas compositions, industrial furnace offgas

Gas compositions, industrial intermediate H2SO4 making

Gas compositions, industrial making

Gas compositions, industrial metallurgical offgas

Gas compositions, industrial oxidation gases

Gas compositions, industrial spent sulfuric acid regeneration

Gas compositions, industrial sulfur burning offgas

Gas cooling industrial method

Gas cooling, cleaning and drying industrial data

Gas industrial

Gas industrial

Gas turbine industrial

Handbook of Electrical Engineering: For Practitioners in the Oil, Gas and Petrochemical Industry. Alan L. Sheldrake

Handbook of Electrical Engineering: For Practitioners in the Oil, Gas and Petrochemical Industry. Alan L. Sheldrake 2003 John Wiley Sons, Ltd ISBN

Hydrates in the Natural Gas Industry

INDUSTRIAL GAS SEPARATIONS

Industrial Gas Phase Adsorptive Separations

Industrial Gas Treating

Industrial Gases Processing. Edited by Heinz-Wolfgang Haring

Industrial SO3 gas recycle

Industrial acid plant tail gas treatment methods

Industrial data affected by CO2 in feed gas

Industrial data affected by SO3 in feed gas

Industrial data affected by gas pressure

Industrial data gas cleaning, cooling and

Industrial data gas dehydration with strong

Industrial data in feed gas

Industrial data input gas temperatures

Industrial exhaust gases treatment from

Industrial gas companies

Industrial gas cooling

Industrial gases acetylene

Industrial gases adsorption separation

Industrial gases and fumes

Industrial gases argon

Industrial gases carbon dioxide

Industrial gases cryogenic separation

Industrial gases from wood

Industrial gases helium

Industrial gases hydrogen

Industrial gases industry

Industrial gases industry

Industrial gases industry adsorption oxygen

Industrial gases industry argon

Industrial gases industry change

Industrial gases industry energy-efficient process

Industrial gases industry innovation continuing

Industrial gases industry markets demanding more

Industrial gases industry material

Industrial gases industry needs

Industrial gases industry opportunities

Industrial gases industry plant

Industrial gases industry power systems

Industrial gases industry scale

Industrial gases industry schematic

Industrial gases industry separation power changes

Industrial gases industry technologies

Industrial gases membrane separation

Industrial gases methane

Industrial gases nitrogen

Industrial gases nitrous oxide

Industrial gases oxygen

Industrial gases properties

Industrial gases transport

Liquefied petroleum gas industry

Logistics of Industrial Gas Supply

Maintenance Influence on Major Accidents in the Oil and Gas Industry Case Studies

Monographies on Major Industrial Gases

Natural gas industry

Oil and Gas Industry Equipment Reliability

Oil and gas industry

Oil and natural gas industry

Petroleum and natural gas industries

Producers and Manufacturers of Major Industrial Gases

SO2 concentrations in industrial acidmaking furnace gases

SO3 concentrations in industrial gases H2SO4 making

SO3 concentrations in industrial gases SO2 oxidation efficiency affected

SO3 concentrations in industrial gases aqueous scrubbing)

SO3 concentrations in industrial gases calculations

SO3 concentrations in industrial gases catalyst bed

SO3 concentrations in industrial gases catalyst bed feed gas

SO3 concentrations in industrial gases catalytic oxidation

SO3 concentrations in industrial gases enthalpy

SO3 concentrations in industrial gases equations

SO3 concentrations in industrial gases feed gas

SO3 concentrations in industrial gases final H2SO4 making

SO3 concentrations in industrial gases furnace offgases

SO3 concentrations in industrial gases heat release

SO3 concentrations in industrial gases intermediate

SO3 concentrations in industrial gases making

SO3 concentrations in industrial gases metallurgical furnace offgas

SO3 concentrations in industrial gases output gas

SO3 concentrations in industrial gases precipitator input and

SO3 concentrations in industrial gases produced during sulfur burning

SO3 concentrations in industrial gases production from

SO3 concentrations in industrial gases removed from gas during subsequent

SO3 concentrations in industrial gases spent sulfuric acid regeneration

SO3 concentrations in industrial gases temperature equation

SO3 concentrations in industrial gases vapor pressure over sulfuric acid

Safety in Offshore Oil and Gas Industry

Scrubbing metallurgical gas industrial data

Simulation of Water Gas Shift Reactor An Industrial Case

Temperature control, gas industrial

Temperature of gas product industrial data

Temperatures, acid and gas industrial

Temperatures, industrial catalyst bed input gas

Temperatures, industrial gas dehydration

Temperatures, industrial metallurgical gas

Temperatures, industrial spent acid decomposition gas

The oil and gas industry

Types of industrial gas-liquid-solid reactor

Use of foams in petroleum and gas industries

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