Elemental Mercury Adsorption And Recovery By Electrothermal Swing System With Gold Electrodeposited Activated Carbon Fiber Cloth PDF Download

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Mercury Adsorption and Desorption Kinetics

Mercury Adsorption and Desorption Kinetics
Author: Mark A. Bentley
Publisher:
Total Pages: 132
Release: 2012
Genre: Air
ISBN: 9781267320728

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Mercury emissions in the United States are regulated under the Clean Air Mercury Rule. Multiple mercury removal technologies have been investigated and at this time, activated carbon injection into flue gas has been considered to be an efficient and economically feasible method for the removal of elemental mercury. Also, chemical modifications to activated carbon have shown to increase its mercury sorption capacity and removal efficiency. In this study, adsorption of elemental mercury onto ferric chloride impregnated activated carbon was investigated. The results show that ferric chloride impregnated activated carbon has a higher mercury sorption capacity than raw activated carbon does. A chemisorption mechanism was proposed and confirmed based on the characterization tests of fresh and spent sorbents. A kinetic study for the regeneration of spent sorbents was also conducted. The activation energies of mercury desorption from various substrates were calculated and the corresponding mercury desorption profiles were mathematically modeled.


Catalytic Oxidation and Heterogeneous Capture of Elemental Gas-phase Mercury

Catalytic Oxidation and Heterogeneous Capture of Elemental Gas-phase Mercury
Author: Sandhya Eswaran
Publisher:
Total Pages: 304
Release: 2006
Genre: Adsorption
ISBN:

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The ability of three sorbents, activated carbon, char and mordenite, to adsorb mercury is determined using simulated flue gas containing 10-15 mu g/m3 of mercury, in a laboratory-scale, fixed-bed adsorption system. The adsorption performance of the three sorbents is compared by, adsorption rate, rather than the adsorption capacity. The effect of temperature, sorbent loading, mercury concentration and acid gases such as NO and SO2 on the adsorption rate is investigated and presented in this dissertation. The mercury adsorption rate is in the range of 3000 to 3900 ng/hr for all three sorbents and increases with temperature, mercury concentration and acid gas concentration. Temperature is the major factor affecting the mercury adsorption rate on activated carbon and char while the rate of mercury adsorption on the zeolite sorbent is more strongly affected by the mercury concentration in the flue gas stream.