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Gas storage tank

Benzene zero 0.005 Anemia decrease in blood platelets increased risk of cancer Discharge from factories leaching from gas storage tanks and landfills... [Pg.19]

Recommendations for the design and construction of refrigerated liquefied gas storage tanks... [Pg.308]

Self-Test 4.6B A large natural gas storage tank contains 200. mol CH4(g) at 1.20 atm. An additional 100. mol CH4(g) is pumped into the tank at constant temperature. What is the final pressure in the tank ... [Pg.269]

Two natural gas storage tanks, with volumes of 1.5 X 10 and 2.2 X 10 L, are at the same temperature. The tanks are connected by pipes that equalize their pressures. What fraction of the stored natural gas Is In the larger tank ... [Pg.292]

C05-0009. Natural gas storage tanks have movable roofs that rise and fall as the volume of gas... [Pg.293]

Applications of activated carbons are discussed in Chapters 8-10, including their use in the automotive arena as evaporative loss emission traps (Chapter 8), and in vehicle natural gas storage tanks (Chapter 9). The use of evaporative loss emission traps has been federally mandated in the U.S. and Europe. Consequently, a significant effort has been expended to develop a carbon adsorbent properly optimized for evaporative loss control, and to design the on board vapor collection and disposal system. The manufacture of activated carbons, and their preferred characteristics for fuel emissions control are discussed in Chapter 8, along with the essential features of a vehicle evaporative loss emission control system. [Pg.19]

Five product gas storage tanks having three functions are employed. The first tank entered is fortesting the product gas composition. Compounds indicative of the level of destruction are measured with a gas chromatograph hydrogen, methane, carbon dioxide, and carbon monoxide are also measured. If these tests are unsatisfactory, the gas is sent to a backup storage tank for recycle to the TRBPs or preheater. If the tests are... [Pg.104]

Self-Test 4.6A A large natural gas storage tank contains 200 mol CH4(g)... [Pg.304]

All LP gas storage tanks shall be mounted outside of any buildings. Underground LP gas storage tanks shall not be installed under any buildings. The... [Pg.154]

Figure 3.1.2 Purging a liquefied-natural-gas storage tank. Figure 3.1.2 Purging a liquefied-natural-gas storage tank.
A gas storage tank with a floating roof receives a steady input of 540 m /h of a natural gas. The rate of withdrawal of gas from the tank, v, varies more or less randomly during the day and is recorded at lO-min intervals. At 8 00 a.m. one morning the volume of stored gas is 3.00 x 10 m. The withdrawal rate data for the next 4 hours are as follows ... [Pg.565]

Figure 10.5 is a schematic process diagram for the LOFIN process using four parallel adsorbers and a gas storage tank. It could produce a 99.96% H2 product at... [Pg.421]

Incidents in the technical equipment, crashes in the poisonous gas supply pipes or crashes and explosions of gas storage tanks. [Pg.30]

Leaded gasoline has long been banned in the United States and some other countries, but not before millions of tons of lead poured into the air for 60 years from the exhausts of trucks and automobiles. The lead from those exhausts settled on everything around us, particularly in our soil. Lead has also entered soil from underground leaded gas storage tanks, industrial operations that produce lead grindings, and lead paint waste. [Pg.32]

Repeat the work of Problem III.37 but for the gas storage tank of Figure PIII.2b. Notice the presence of an additional effluent stream. [Pg.125]

Consider the gas storage tank of Figure PHI.2c. Suppose that we want to control the tank pressure at the desired value of 75 psig, by manipulating the downstream pressure p 2. A proportional controller is used for this purpose ... [Pg.125]

III.37 Consider the gas storage tank shown in Figure PIII.2a. [Pg.482]

Assumes no equipment cost reduction from the current scenario. Conventional equipment (high-pressure gas storage tanks) will not likely come down significantly in price. Advanced technologies may provide higher overall efficiencies, but are unlikely to be cheaper. [Pg.631]

PAHs are frequently found contaminating soils in industrial areas, where they are spilled or leaked from oil and gas storage tanks. In laboratory testing utilizing pyrene-contaminated clay loam sod, FeJ p) particles were demonstrated to remove 62% of the pyrene within 60 minutes, using a Fe ) concentration of 0.15 g/g of soil (26). Acid treatment of the Fe p) immediately prior to usage (to remove Fe oxides formed by reactions with moist air) was necessary to achieve this result. [Pg.667]

Former industrial areas can be extremely difficult to reclaim for residential or public use because of long-lasting contamination of the soil. These contaminated soils can subsequently become sources of air and water pollution. One particularly recalcitrant group of contaminants are the PAHs, which frequently become soil contaminants after spills or leaks from oil and gas storage tanks. What nanomaterial could be used for remediation of spilled PAH, and how much removal could be expected after 1 h if 0.15 g material/g soil were used ... [Pg.676]

Staircase on a gas storage tank shadowed in uncharred paint, Hiroshima. [Pg.923]


See other pages where Gas storage tank is mentioned: [Pg.441]    [Pg.64]    [Pg.1023]    [Pg.78]    [Pg.104]    [Pg.104]    [Pg.15]    [Pg.242]    [Pg.64]    [Pg.155]    [Pg.144]    [Pg.138]    [Pg.355]    [Pg.220]    [Pg.223]    [Pg.224]    [Pg.226]    [Pg.53]    [Pg.69]    [Pg.2]    [Pg.82]    [Pg.397]    [Pg.263]    [Pg.420]   
See also in sourсe #XX -- [ Pg.97 ]




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