Method and apparatus to clean air

Gas separation: processes – Electric or electrostatic field – With cleaning of collector electrode

Reexamination Certificate

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Details

C055S429000, C055S433000, C055SDIG003, C096S029000, C096S039000, C096S094000, C096S097000

Reexamination Certificate

active

06656248

ABSTRACT:

BACKGROUND OF THE INVENTION
The present invention relates to a method for separating materials in the form of particles and/or drops from a gas flow, in which method the gas flow is directed through a collection chamber, the outer walls of which are grounded and in which method high voltage is directed to the ion yield tips arranged in the collection chamber so that an ion beam separating the desired materials from the gas flow is achieved towards the walls working as collection surfaces and where the collection surfaces are electrically insulated from the outer walls and a high voltage is directed to the collection surface having a counter-direct-current voltage as to the high voltage directed to the ion yield tips.
The purpose of the method according to the invention is to provide protection in shields such as bomb shelters to clean air and to protect the people present in the said shelter. Earlier applied air cleaning solutions, in the said shelters, use various fiber filters, various electronic precipitators, air cleaning methods based on ion blow or electrophoresis and grounded collection surfaces applied in the method, air cleaning methods based on ion blow and collection surfaces of opposite electronic charge applied in the method, air cleaning methods based on fiber filter media and sand precipitation.
The disadvantages of the above mentioned, well-known solutions are:
The precipitation effect of fiber filters is limited by particle size incapable to separate small particles from air such as chemical compounds and nuclear.
The precipitation effect of fiber filters is limited by particle size incapable to separate small particles from air such as chemical compounds and nuclear pollution used as biological weapons. The major disadvantage of fiber filters is the blocking effect due to the huge number of atmospheric particles or droplets. This is why these do not meet requirements for sheltering room areas.
Electronic precipitators require in sheltering room spaces prefiltering by fiber filters to prohibit fibrous particles from penetrating into the filter media. As mentioned before, fiber filters are not applicable to be utilized in such areas, and neither to be utilized solely.
Air cleaning methods based on ion blow and grounded collection surfaces are based on high voltage 100 to 150 kV, which make the voltage suppliers heavyweight, robust and expensive. This is why such methods are discarded when arranging economic air cleaning specifically in restricted, individual inhabitant shelters.
Air cleaning based on ion blow and oppositely charged collection surface, utilizes flushing liquid or dry cleaning to drop down the collected material. This is why the collection surface must be vertical as both flushing and mass dropping are based on gravitational phenomena. These methods use collection surfaces on solid insulated casings.
Fiber filters and sand precipitators are the most common air cleaning methods in inhabitant shelters. If a fiber filter is used, there is always a potential risk for blocking. If sand precipitation is the single method, penetration of small particles cannot be prohibited, which means that a number of chemical compounds and nuclear pollution penetrate the filtering;
OBJECTS AND SUMMARY OF THE INVENTION
The purpose of this invention is to eliminate the above mentioned disadvantages. Method according to this invention is characterized by a collection surface, which is compact and conveniently and totally replaced.
The invention also relates to a device comprised of a collection chamber with grounded outer walls, ion yield tips arranged in the collection chamber where a high voltage is directed to the ion yield tips, of an electronically conductive collection surface, in the collection chamber, where the collection surface is electrically insulated from the outer casing and a high voltage is supplied to the collection surface having an opposite direct-voltage than the high voltage supplied to the ion yield. The collection surface can optionally be angular or designed from individual plates. The device according to the invention is characterized in that the collection surface is totally rapidly and conveniently replaced.
The decisive advantage of the invention is the simple use of the air cleaning unit, where all cleaning, flushing or control arrangements are unnecessary.
A decisive advantage is the simple use of the air cleaning device, as neither cleaning nor control arrangements are required. Electronic methods handling dry mass material, require additionally electronic control to alter the electronic charge potential and remove the mass, which in this invention is unnecessary.
Removal of unnecessary elements as mentioned above accomplishes cost-efficient manufacture and increased safety in use.
This invention is not limited by any direction or position of the collection surface which may be arbitrary, for example, horizontal or vertical. An advantage of the device according to this invention is also mounting of the air cleaning device to penetrate the outer construction wall for the supply of fresh clean air into the sheltered indoor area.
Replacement of the collection surface using a protective covering bag enables removal and discarding of collected contaminated material for disposal or transportation to a hazardous waste treatment plant.
Various application models of the invention have been shown in the independent patent claims in the claim settings.


REFERENCES:
patent: 1908897 (1933-05-01), Heinrich
patent: 2409579 (1946-10-01), Meston
patent: 2712362 (1955-07-01), Winklepleck
patent: 3343344 (1967-09-01), Fairaizl et al.
patent: 3765154 (1973-10-01), Hardt et al.
patent: 3768258 (1973-10-01), Smith et al.
patent: 4247307 (1981-01-01), Chang
patent: 4689951 (1987-09-01), Polach
patent: 5254155 (1993-10-01), Mensi
patent: 5277703 (1994-01-01), Sklenak et al.
patent: 6126727 (2000-10-01), Lo
patent: 6187078 (2001-02-01), Huang

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