IP Library › Granted Patent US 9,562,205
Granted Patent B2
US 9,562,205 · App. 12/744,591 · Granted Feb 7, 2017

Combustion process for the reduction of particulates in combustion fumes

Inventors: Massimo Malavasi (Milan, IT); Grazia Di Salvia (Bari, IT); Edoardo Rossetti (Bologna, IT)
Assignee: ITEA S.P.A.
C10L10/02C10L1/12C10L1/1233C10L10/00C10L10/04F23C9/00F23C99/00F23G5/02F23J7/00F23L7/007C10L1/125C10L1/1283C10L1/1291F23C2202/30F23C2900/99001F23G2201/701F23G2202/106Y02E20/322Y02E20/342Y02E20/344
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Quick Facts
Patent No.
US 9,562,205
App. No.
12/744,591
Granted
Feb 7, 2017
Kind
B2
Abstract

A combustion process wherein a fuel, a comburent and component A) are fed to a combustor, component A), comprising low-melting salts and/or oxides having a melting temperature ≦1,450 K, the ratio by moles A′/(A″−A′)≧0.01, being: A′ the sum by moles between the amount of metals, under the form of low-melting salts and/or low-melting oxides present in the component A) and the amount of metals under the form of the low-melting salts and/or low-melting oxides or their low-melting mixtures, contained in the fuel, A″ is the sum of the amount of all the metals contained in the fuel and of those contained in component A), in which the combustor is isothermal type and flameless.

Claims (27)

1. A combustion process for removing particle size diameter lower than 2.5 μm (PM 2.5) to values lower than 50 μm/Nm 3 from combustion fumes wherein a fuel, a comburent, optionally premixed with recycling fumes, and component A) are fed to a combustor, component A) comprising low-melting salts and/or oxides and/or mixtures thereof having a melting temperature, comprising a melting point <1,450 K, the ratio by moles A′/(A″−A′) is >0.01, being:

A′ the sum by moles between an amount of metals, under the form of low-melting salts and/or oxides and/or mixtures thereof present in the component A) and an amount of metals under the form of the low-melting salts and/or oxides or mixtures thereof contained in the fuel,

A″ is the sum of the amount of all the metals contained in the fuel and of those contained in component A),

in which

the combustor is isothermal type and flameless,

wherein the comburent is oxygen and is used in molar excess with respect to a stoichiometric amount for combustion reaction with the fuel, wherein the titre of oxygen is at least 70% by volume, the complement to 100% being formed of inert gases and/or nitrogen;

wherein metals present in the fuel and in component A) remain under a liquid state in the combustor and are removed from a bottom of the combustor; and

wherein the pressure in the combustor is higher than the atmospheric pressure and up to 2,000 kPa and the temperature is comprised between 1,500 K (1,223° C.) and up to 2,100 K (1,827° C.).

2. A process according to claim 1 , wherein the ratio by moles A′/(A″−A′) is at least 0.1.

3. A process according to claim 1 , wherein the combustion gases at the combustor outlet are cooled at a temperature equal to or lower than 1,100 K.

4. A process according to claim 1 , wherein as component A) a mixture having melting temperature <1,450 K is used consisting of one or more compounds as defined in A) and of salts and/or oxides having melting temperature above 1,450 K.

5. A process according to claim 1 , wherein component A) is fed to the combustor separately from the fuel or in admixture with the fuel.

6. A process according to claim 1 , wherein the fuel residence time in the combustor ranges from 0.5 seconds up to 30 minutes.

7. A process according to claim 1 , wherein oxygen is premixed with recycling fumes, the recycling fume amount being higher than 10% by volume.

8. A process according to claim 7 , wherein the recycling fumes contain water under the vapor form in an amount higher than 10% by volume calculated on the total volume of recycling fumes.

9. A process according to claim 1 , wherein the fuel contains water/vapor in an amount, expressed as percent by weight, up to 80%.

10. Fumes obtainable according to a combustion process for removing particle size diameter lower than 2.5 μm (PM 2.5) to values lower than 50 μm/Nm 3 from combustion fumes wherein a fuel, a comburent, optionally premixed with recycling fumes, and component A) are fed to a combustor, component A) comprising low-melting salts and/or oxides and/or mixtures thereof having a melting temperature, comprising a melting point <1,450 K, the ratio by moles A′/(A″−A′) is >0.01, being:

A′ the sum by moles between an amount of metals, under the form of low-melting salts and/or oxides and/or mixtures thereof present in the component A) and an amount of metals under the form of the low-melting salts and/or oxides or mixtures thereof contained in the fuel,

A″ is the sum of the amount of all the metals contained in the fuel and of those contained in component A),

in which

the combustor is isothermal type and flameless,

wherein the comburent is oxygen and is used in molar excess with respect to a stoichiometric amount for combustion reaction with the fuel, wherein the titre of oxygen is at least 70% by volume, the complement to 100% being formed of inert gases and/or nitrogen;

wherein metals present in the fuel and in component A) remain under a liquid state in the combustor and are removed from a bottom of the combustor;

wherein the pressure in the combustor is higher than the atmospheric pressure and up to 2,000 kPa and the temperature is comprised between 1,500 K (1,223° C.) and up to 2,100 K (1,827° C.); and

wherein a concentration of the PM 2.5 is lower than 50 μg/Nm 3 .

11. A process according to claim 2 , wherein the ratio by moles A′/(A″−A′) is at least 0.2.

12. A process according to claim 1 , comprising: removing particles having particle size diameter lower than 2.5 μm (PM 2.5) from the combustion fumes.

Assignments (2)
LICENSE Recorded May 24, 2023
From: ITEA S.P.A.
To: OXOCO S.R.L.
Reel/Frame 063755/0509 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 27, 2010
From: MALAVASI, MASSIMO; DI SALVIA, GRAZIA; ROSSETTI, EDOARDO
To: ITEA S.P.A.
Reel/Frame 024450/0692 →
Priority Claims (1)
IT MI2007A2291 · Dec 6, 2007 · national
Continuity (1)
Related Publication 20100261126A1 · Oct 14, 2010