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US20030206843A1 - Methods and compositions to sequester combustion-gas mercury in fly ash and concrete - Google Patents

Methods and compositions to sequester combustion-gas mercury in fly ash and concrete
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Publication number
US20030206843A1
US20030206843A1US10/430,721US43072103AUS2003206843A1US 20030206843 A1US20030206843 A1US 20030206843A1US 43072103 AUS43072103 AUS 43072103AUS 2003206843 A1US2003206843 A1US 2003206843A1
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mercury
ozone
sorbent
carbon
carbonaceous substrate
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US10/430,721
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Sidney Nelson
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Abstract

A method for removing mercury from a combustion gas in an exhaust gas system has the steps of providing a mercury sorbent; injecting the mercury sorbent into a stream of the mercury-containing combustion gas to enable mercury to adsorb onto the sorbent; and collecting and removing the sorbent from the combustion gas stream. The mercury sorbent is prepared by treating a carbonaceous substrate with an ozone-containing gas to increase the ability of the substrate to adsorb mercury. Concrete compositions with fly ash containing the mercury sorbents will have reduced interference with air-entraining-admixtures.

Description

Claims (22)

What is claimed is:
1. A method for removing mercury and mercury-containing compounds from a combustion gas in an exhaust gas system, comprising the steps of:
providing a mercury sorbent that has been prepared by treating a carbonaceous substrate with an effective amount of an ozone-containing gas for a time sufficient to increase the ability of the carbonaceous substrate to adsorb mercury and to reduce the degree of possible interference of the sorbent with air-entraining-admixtures used with the substrates as a component of a concrete composition;
injecting the mercury sorbent into a stream of the mercury-containing combustion gas for a sufficient time to allow an effective amount of the mercury and mercury-containing compounds in the combustion gas to adsorb onto the mercury sorbent; and
collecting and removing the mercury sorbent from the combustion gas stream.
2. The method ofclaim 1 wherein:
the carbonaceous substrate comprises activated carbon.
3. The method ofclaim 1, wherein:
the carbonaceous substrate or mercury sorbent is reduced to a particle size distribution fluidizable in the combustion gas stream.
4. The method ofclaim 2, wherein:
the carbonaceous substrate or mercury sorbent is reduced to a particle size distribution fluidizable in the combustion gas stream.
5. A process for manufacturing a mercury sorbent, comprising:
providing a carbonaceous substrate;
providing a ozone-containing gas; and
contacting the carbonaceous substrate with the ozone-containing gas for a time sufficient to increase the mercury adsorbing ability of the carbonaceous substrate and to reduce the degree of interference of the substrate with air-entraining-admixtures used with the sorbent as a component of a concrete composition.
6. The process ofclaim 5, wherein:
the carbonaceous substrate is activated carbon.
7. The process ofclaim 5, further comprising the step of:
reducing the particle size distribution of the carbonaceous substrate or mercury sorbent to a distribution that is fluidizable in the ductwork of a combustion gas stream.
8. The process ofclaim 6, further comprising the step of:
reducing the particle size distribution of the carbonaceous substrate or mercury sorbent to a distribution that is fluidizable in the ductwork of a combustion gas stream.
9. A mercury sorbent prepared according the process ofclaim 5.
10. A mercury sorbent prepared according the process ofclaim 8.
11. A process in which ozone is used to pacify the surface of a carbon source material extrinsic to ash comprising applying ozone to said carbon source material extrinsic to ash to produce a product which reduces the undesirable affect on air entrainment when said carbon source material is incorporated into concrete.
12. The process ofclaim 11 wherein the amount of ozone added to the carbon is 10-300 g-ozone/kg-carbon.
13. The process ofclaim 11 wherein the amount of ozone added to the carbon is 1-50 μmoles-ozone/m2-total-carbon-surface area.
14. The process ofclaim 11 in which the carbon source material is treated separately with ozone and then added to the ash stream.
15. A process comprising oxidizing activated carbon-based sorbents which are used to capture metal vapors, said oxidizing reducing the undesirable affect on air entrainment when said activated carbon-based sorbents are to be incorporated into ash and the ash subsequently used in concrete.
16. The process ofclaim 15 where the metal vapor is either oxidized or elemental mercury.
17. The process ofclaim 15 in which the oxidant is ozone.
18. The process ofclaim 15 in which the activated carbon is treated prior to its use as a mercury sorbent, so that the final ash is not degraded in its concrete performance.
19. A process of surface oxidation used to pacify the surface of a carbon containing source material extrinsic to carbon containing ash comprising the step of surface oxidation of said carbon containing source material to prepare a material useful for incorporation into concrete.
20. The process ofclaim 19 wherein the surface oxidation is performed with ozone.
21. The process ofclaim 19 wherein the oxidation is performed with a member selected from the group of air, oxygen, nitric acid, chromic acid, persulfate, permanganate, and hydrogen peroxide.
22. A concrete composition comprising concrete and an ozone treated carbon source material extrinsic to ash wherein the undesirable affect on air entrainment is reduced.
US10/430,7212002-05-062003-05-06Methods and compositions to sequester combustion-gas mercury in fly ash and concreteAbandonedUS20030206843A1 (en)

Priority Applications (1)

Application NumberPriority DateFiling DateTitle
US10/430,721US20030206843A1 (en)2002-05-062003-05-06Methods and compositions to sequester combustion-gas mercury in fly ash and concrete

Applications Claiming Priority (2)

Application NumberPriority DateFiling DateTitle
US37779002P2002-05-062002-05-06
US10/430,721US20030206843A1 (en)2002-05-062003-05-06Methods and compositions to sequester combustion-gas mercury in fly ash and concrete

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US20030206843A1true US20030206843A1 (en)2003-11-06

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US10/430,721AbandonedUS20030206843A1 (en)2002-05-062003-05-06Methods and compositions to sequester combustion-gas mercury in fly ash and concrete
US10/430,577Expired - LifetimeUS6953494B2 (en)2002-05-062003-05-06Sorbents and methods for the removal of mercury from combustion gases

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US10/430,577Expired - LifetimeUS6953494B2 (en)2002-05-062003-05-06Sorbents and methods for the removal of mercury from combustion gases

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US (2)US20030206843A1 (en)
EP (1)EP1509629B1 (en)
JP (1)JP4723240B2 (en)
KR (1)KR100991761B1 (en)
CN (1)CN100340683C (en)
AT (1)ATE437246T1 (en)
AU (2)AU2003232092A1 (en)
CA (1)CA2522258C (en)
DE (1)DE60328489D1 (en)
WO (2)WO2003092861A1 (en)

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