IP Library Patent Application 13810244
Patent Application
App. No. 13/810,244

Reduction of Particulates in Gas Streams

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Patent No.
US None
App. No.
13/810,244
Abstract

This invention provides methods for reducing a spark rate and/or increasing the voltage in a cold-side electrostatic precipitator through which a particulate-containing gas stream is directed, wherein said electrostatic precipitator has a spark rate and a voltage. The methods comprise injecting an amount of a halogenated carbonaceous substrate formed from a carbonaceous substrate and an elemental halogen and/or a hydrohalic acid into the particulate-containing gas stream upstream of the electrostatic precipitator, such that the spark rate decreases by about 40% or more and/or such that the voltage can be increased by about 20% or more than when said halogenated carbonaceous substrate is not injected.

Claims (14)

1 . A method for reducing a spark rate and/or increasing the voltage in a cold-side electrostatic precipitator through which a particulate-containing gas stream is directed, wherein said electrostatic precipitator has a spark rate and a voltage, which method comprises injecting an amount of a halogenated carbonaceous substrate formed from a carbonaceous substrate and an elemental halogen and/or a hydrohalic acid into the particulate-containing gas stream upstream of the electrostatic precipitator, such that the spark rate decreases by about 40% or more and/or such that the voltage can be increased by about 20% or more than when said halogenated carbonaceous substrate is not injected, as compared to said cold-side electrostatic precipitator when halogenated carbonaceous substrate is not injected into the particulate-containing gas stream.

2 . A method as in claim 1 wherein the spark rate decreases by about 60% or more and/or such that the voltage can be increased by about 30% or more.

3 . A method as in claim 1 wherein the halogenated carbonaceous substrate is a brominated carbonaceous substrate.

4 . A method as in claim 1 wherein the carbonaceous substrate is activated carbon.

5 . A method as in claim 3 wherein the brominated carbonaceous substrate is a brominated activated carbon.

6 . A method as in claim 1 wherein the method is carried out in the absence of injected SO 3 or in the absence of conditioning agents.

7 . A method as in claim 1 wherein the method is carried out in the absence of other agents.

8 . A method as in claim 1 wherein the gas stream is a combustion gas stream, and wherein the halogenated carbonaceous substrate is injected into the gas stream before the gas stream before passes through a heat exchanger.

9 . A method as in claim 1 wherein the gas stream is a combustion gas stream, and wherein the halogenated carbonaceous substrate is injected into the gas stream after the gas stream passes through a heat exchanger.

10 . A method as in claim 1 wherein said amount of halogenated carbonaceous substrate is about 0.5 to about 15 lb/MMacf.

11 . A method as in claim 1 wherein particulate-containing gas stream is from waste incineration, metallurgical processes, metal recovery processes, or cement production.

12 . A method as in claim 1 wherein the particulate-containing gas stream is from a process other than combustion.

13 . A method as in claim 5 wherein the method is carried out in the absence of injected SO 3 or in the absence of conditioning agents.

14 . A method as in claim 5 wherein the method is carried out in the absence of other agents.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 7, 2023
From: ALBEMARLE CORPORATION
To: ALBEMARLE AMENDMENTS, LLC
Reel/Frame 062667/0139 →