WO2006070291A2 - Surface-modified activated carbon in smoking articles - Google Patents
Surface-modified activated carbon in smoking articles Download PDFInfo
- Publication number
- WO2006070291A2 WO2006070291A2 PCT/IB2005/004100 IB2005004100W WO2006070291A2 WO 2006070291 A2 WO2006070291 A2 WO 2006070291A2 IB 2005004100 W IB2005004100 W IB 2005004100W WO 2006070291 A2 WO2006070291 A2 WO 2006070291A2
- Authority
- WO
- WIPO (PCT)
- Prior art keywords
- activated carbon
- layer
- carbon
- polymer
- compound
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
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Classifications
-
- A—HUMAN NECESSITIES
- A24—TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
- A24D—CIGARS; CIGARETTES; TOBACCO SMOKE FILTERS; MOUTHPIECES OF CIGARS OR CIGARETTES; MANUFACTURE OF TOBACCO SMOKE FILTERS OR MOUTHPIECES
- A24D3/00—Tobacco smoke filters, e.g. filter tips or filtering inserts; Filters specially adapted for simulated smoking devices; Mouthpieces of cigars or cigarettes
- A24D3/06—Use of materials for tobacco smoke filters
- A24D3/16—Use of materials for tobacco smoke filters of inorganic materials
- A24D3/163—Carbon
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- A—HUMAN NECESSITIES
- A24—TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
- A24D—CIGARS; CIGARETTES; TOBACCO SMOKE FILTERS; MOUTHPIECES OF CIGARS OR CIGARETTES; MANUFACTURE OF TOBACCO SMOKE FILTERS OR MOUTHPIECES
- A24D3/00—Tobacco smoke filters, e.g. filter tips or filtering inserts; Filters specially adapted for simulated smoking devices; Mouthpieces of cigars or cigarettes
- A24D3/06—Use of materials for tobacco smoke filters
- A24D3/14—Use of materials for tobacco smoke filters of organic materials as additive
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- C—CHEMISTRY; METALLURGY
- C01—INORGANIC CHEMISTRY
- C01B—NON-METALLIC ELEMENTS; COMPOUNDS THEREOF; METALLOIDS OR COMPOUNDS THEREOF NOT COVERED BY SUBCLASS C01C
- C01B32/00—Carbon; Compounds thereof
- C01B32/30—Active carbon
- C01B32/354—After-treatment
- C01B32/372—Coating; Grafting; Microencapsulation
Definitions
- BACKGROUND he present invention relates to activated carbon which is treated to reduce the presence of fine particles in smoking articles.
- activated carbon is treated to reduce the formation and presence of fine particles in smoking articles.
- the surface of the activated carbon is modified to improve the mechanical integrity of the activated carbon and thus decrease the propensity of the activated carbon to form fine particles.
- the surface of the activated carbon is also modified to attach or fasten existing fine particles to the activated carbon to reduce the presence of fine particles.
- the surface of the activated carbon can be modified by forming a hydrocarbon compound layer, a polymer layer or a carbon layer on external and internal surfaces of the activated carbon.
- a cigarette in another embodiment, comprises a tobacco rod including tobacco and a filter, wherein said filter includes a surface-modified activated carbon comprising activated carbon,- fine carbon particles on surfaces of the activated carbon; and a layer on an internal surface and an external surface of the activated carbon, wherein the layer comprises a hydrocarbon compound, an additional layer of carbon or a polymer on the activated carbon, wherein if the layer is a polymer, the polymer is about 9-20 wt% of the surface- modified activated carbon total weight.
- a filter includes a surface-modified activated carbon comprising activated carbon,- fine carbon particles on surfaces of the activated carbon; and a layer on an internal surface and an external surface of the activated carbon, wherein the layer comprises a hydrocarbon compound, an additional layer of carbon or a polymer on the activated carbon, wherein if the layer is a polymer, the polymer is about 9-20 wt% of the surface- modified activated carbon total weight.
- a cigarette filter comprises a filter with a cavity, wherein said cavity includes a surface-modified activated carbon therein comprising: activated carbon; fine carbon particles on surfaces of the activated carbon; and a layer on an internal surface and an external surface of the activated carbon, wherein the layer comprises a hydrocarbon compound, an additional layer of carbon or a polymer on the activated carbon, wherein if the layer is a polymer, the polymer is about 9-20 wt% of the surface- modified activated carbon total weight.
- a method of manufacturing a cigarette comprises forming surface-modified activated carbon by providing activated carbon having fine carbon particles on surfaces thereof; and forming a layer on internal and external surfaces of the s activated carbon, wherein the layer comprises hydrocarbon compound, carbon or polymer on the activated carbon, wherein if the layer is polymer, the polymer is about 9-20 wt% of the surface-modified activated carbon total weight; incorporating the surface-modified activated carbon into a cigarette filter; and attaching the cigarette o filter to a tobacco rod to form a cigarette.
- a method of treating mainstream tobacco smoke by drawing the mainstream tobacco smoke through a filter containing surface-modified activated carbon comprising: activated carbon; fine carbon particles on surfaces of the activated carbon,- and s a layer on an internal surface and an external surface of the activated carbon, wherein the layer comprises a hydrocarbon compound, an additional layer of carbon or a polymer on the activated carbon, wherein if the layer is a polymer, the polymer is about 9-20 wt% of the surface-modified activated carbon total weight.
- Activated carbon is a generic term used to describe a family of carbonaceous adsorbents with an extensively developed internal pore structure.
- Activated carbon can be produced by activating an 5 amorphous (non-graphitic) carbon, wherein amorphous (non-graphitic) carbon can be produced by carbonizing a precursor, such as wood, lignite, coal, coconut husk, peat, pitch, polymers, cellulose fibers, or polymer fibers, etc., to form char.
- a precursor such as wood, lignite, coal, coconut husk, peat, pitch, polymers, cellulose fibers, or polymer fibers, etc.
- carbonization is carried out at high temperatures, i.e., 300-1000 0 C, preferably above 0 600°C in an inert atmosphere.
- activation can be carried out by heat treating the amorphous carbon or char with an oxidizing agent, e.g., carbon dioxide or steam. During activation, some of the carbon of the amorphous carbon or char is reacted with the oxidizing agent and pores of various sizes, e.g., on the order of 5 angstroms to microns, are formed in the activated carbon.
- an oxidizing agent e.g., carbon dioxide or steam.
- the activated carbon could be in the form of granules, spheres, monoliths, beads, powders or fibers.
- the activated carbon can have an average particle size of about 6 mesh to 300 mesh.
- Activated carbon may include a distribution of micropores, mesopores and macropores.
- microporous generally refers to s such materials having pore sizes of about 20 A or less, while the term “mesoporous” generally refers to such materials with pore sizes of about 20 to 500 A.
- macropores refers to pore sizes above 500 A.
- the relative amounts of micropores, mesopores and macropores can be pre-selected relative to the selected components from io mainstream tobacco smoke that are to be targeted and removed. Thus, the pore sizes and pore distribution can be adjusted accordingly as ) needed for a certain application.
- Activated carbon can be incorporated in one or more locations of the smoking article. Activated carbon is preferably is placed in filters to reduce their interaction with tobacco, such as tobacco in the tobacco rod. For example, activated carbon can be placed in the passageway of a tubular free-flow filter, in the freeflow filter, intermingled with fibrous material, and/or in a void space.
- the quantity of fine particles and the mechanical strength of the activated carbon vary depending on the origin of the precursor and the activation treatment.
- activated carbon formed from lower density precursors such as coconut husks
- processing pitch tends to be more expensive and may not be available in some forms, such as particles for example.
- less expensive activated carbon may have lower mechanical strength and thus may also lead to increased amounts of fine particles.
- fine particles may also be generated due to the somewhat fragile nature of activated carbon as mentioned above.
- activated carbon when activated carbon is provided in smoking articles, fine particles may be formed in the smoking articles by attrition, abrasion between activated carbon particles and compaction of the activated carbons during the packaging, transporting, and/or other processing of the activated carbons. Therefore, embodiments provided herein increase the mechanical strength of activated carbon and in turn decrease the amount of fine particles present.
- surface-modified activated carbon includes mechanically strengthened activated carbon with a layer thereon or activated carbon that has undergone surface modification by forming a layer thereon, then treating the layer to convert the layer into a higher strength surface modification.
- a preferred embodiment includes a method of reducing fine particles by forming a surface-modified activated carbon to reduce the presence and production of fine particles in smoking articles.
- the activated carbon can have increased mechanical strength against breakage and reduced formation of fine particles.
- any fine particles present can be fastened on a surface of the surface-modified activated carbon, thus reducing contamination by the fine particles in smoking articles.
- hydrocarbon compound is intended to include lower molecular weight hydrocarbons
- polymer is intended to include higher molecular weight hydrocarbons, as well as other polymer compositions.
- exemplary hydrocarbon compounds include waxes, paraffins, etc.
- exemplary polymers include polypropylene, pectin, etc.
- the activated carbon can be surface-modified by forming a layer of hydrocarbon compound, such as a wax, onto the activated carbon, wherein the hydrocarbon compound can adhere to external and internal surfaces of activated carbon.
- the hydrocarbon compound can strengthen the activated carbon by increasing the mechanical integrity of the activated carbon, as well as fasten fine particles by coating the fine particles into the layer.
- the activated carbon can be surface-modified by forming a layer of polymer, such as a polypropylene or pectin, onto the activated carbon wherein the polymer, similar to the wax, can adhere to external and internal surfaces of activated carbon. Again, by this adherence, the polymer can strengthen the activated carbon by increasing the mechanical integrity of the activated carbon, as well as, fasten fine particles by coating the fine particles into the layer.
- polymer such as a polypropylene or pectin
- a surface-modified activated carbon can be formed by providing an aromatic compound, such as pitch, on external and internal surfaces of activated carbon before heat treating the aromatic compound and the activated carbon to form a carbon layer on the activated carbon.
- an aromatic compound such as pitch
- the carbon layer By forming this carbon layer on the porous framework of the activated carbon, some of the pores can be filled thus changing the pore distribution of the activated carbon.
- the addition of the carbon layer allows for the density of the activated carbon to be increased which in turn can cause the strength of the activated carbon to be increased.
- the addition of the carbon layer allows for fine particles to be fastened by the carbon layer.
- the carbon layer can be formed using a precursor material with a higher density than the precursor material used to form the activated carbon.
- a carbon coated activated carbon can be formed with the increased mechanical strength from the pitch precursor carbon layer with decreased cost by providing a base of less expensive coconut husk precursor activated carbon.
- the surface-modified activated carbon improves the mechanical strength and reduces the amount of fine particles of the activated carbon.
- the surface modification can be used to reduce breakage of the activated carbon s and to reduce the amount of broken portions of the activated carbon that may become loose in a smoking article during storage of the smoking article.
- the hydrocarbon compound can be formed on internal o and external surfaces of the activated carbon. This is done by first, forming a liquid solution, preferably a homogeneous liquid solution, by melting or dissolving the hydrocarbon compound in a solvent or solvent mixture. Next, the activated carbon can be suspended in the liquid solution to impregnate the hydrocarbon compound into the s activated carbon, thus covering the internal and external surfaces of the activated carbon with the hydrocarbon compound. Next, the solvent can be removed by evaporating or extracting the solvent from the activated carbon to form a hydrocarbon compound layer, preferably a thin, uniform thickness layer, on internal and external surfaces of o the activated carbon.
- the hydrocarbon compound layer on ' the activated carbon By forming the hydrocarbon compound layer on ' the activated carbon, fine particles existing on internal or external surfaces of the activated carbon can be entrapped within the hydrocarbon compound layer or can be covered or fastened onto the internal or external 5 surfaces of the activated carbon by the layer, thus reducing the number of free fine particles. Additionally, the hydrocarbon compound layer on the activated carbon can increase the mechanical integrity of the activated carbon such that if the layered activated carbon is subjected to vibration or other mechanical disturbance, fewer fine 0 particles are formed and/or discharged, which in turn can reduce the levels of the fine particles.
- a viscous wax layer can be formed on activated carbon, wherein the viscous wax layer sticks to both the activated carbon and the fine particles, and the viscous wax layer also increases the mechanical strength of the 5 activated carbon because of its viscosity.
- the hydrocarbon compound is either non-polar or weakly polar to minimize surface tension between the hydrocarbon compound layer and the activated carbon, which is often weakly polar.
- non-polar or weakly polar hydrocarbon compounds By using non-polar or weakly polar hydrocarbon compounds, an improved uniformity of the layer can be realized based on the polarity. Additionally, the non-polarity or weak polarity of the hydrocarbon s compounds can change the selectivity of the activated carbon to target non-polar or weakly polar smoke constituents.
- the hydrocarbon compound is preferably a low volatility material with a boiling point over about 150 0 C at about one atmosphere with a low vapor pressure at ambient conditions to ensure stability of o the hydrocarbon compound on the activated carbon.
- the hydrocarbon compound can be provided to not vaporize during smoking of a cigarette with hydrocarbon compound coated activated carbon therein.
- hydrocarbon compounds Preferably, such hydrocarbon compounds, however, have a high viscosity on the activated carbon to prevent migration.
- exemplary solvents include, but are not limited to: organic solvents, such as ethers, acetone, MEK (methyl ethyl 0 ketone), hexane, toluene, and xylene.
- polymers can also be used to coat activated carbon. If a polymer is used to surface modify the activated carbon, the polymer can be formed on internal and external surfaces of the activated 5 carbon. This is preferably done by first, forming a liquid solution, preferably a homogeneous liquid solution, by melting or dissolving the polymer in a solvent or a solvent mixture. Next, the polymer can be loaded into the activated carbon by allowing the liquid solution to soak into the activated carbon, thus impregnating the polymer into the 0 activated carbon. The impregnated polymer can then form a polymer layer, preferably a thin, uniform thickness layer, on internal and external surfaces of the activated carbon.
- the activated carbon can be layered by wetness-incipient impregnation by the liquid solution, by flowing the liquid solution through a bed of activated 5 carbon, or by soaking the carbon in the liquid solution and then removing the excess solution.
- a stepwise thermal treatment can be performed to release solvent and open the porous structure of the activated carbon without adversely impacting the internal porous structure of the activated carbon.
- a stepwise thermal treatment in a temperature range of 100 to 300°C can be used to release a solvent, such as hexane.
- the amount of polymer coated on the activated carbon is about 9 to 20 wt% of the total polymer coated activated carbon weight in order to provide mechanical strength, while still providing accessibility to the pores and thus the activated carbon smoke adsorption properties.
- the polymer is preferably o provided in about 10-18%, 11-17 wt%, 12-16 wt%, 10-12 wt%, 12-14 wt%, 14-16 wt%, 16-18 wt% or 18-20 wt% to balance the mechanical strength of the activated carbon with the adsorption properties of the activated carbon.
- the polymer layer can possess electrical charges capable of trapping fine particles with electrical forces, such as by static electricity force.
- a polymer layered activated carbon in a cigarette filter can include a polymer specifically selected to allow the activated carbon to selectively adsorb carbon monoxide or other specific gaseous constituents of the cigarette smoke when the cigarette is smoked.
- Exemplary polymers are non-toxic and are preferably biodegradable and/or smoke permeable, such that cigarette smoke can permeate the polymer to access the activated carbon.
- exemplary polymers preferably have been approved by the Food and Drug Administration (FDA) and have a prolonged shelf life.
- Examples of 0 such polymers include, but are not limited to: synthetic polymers, such as polypropylene, polyethylene, silicone polymer, poly(ethylene oxide), poly(ethylene glycol), poly(acrylic acid), poly(vinyl acetate), poly(vinyl alcohol), various block poly(ethylene oxide) - poly(propylene oxide) copolymers, other copolymers or other block copolymers or their derivatives and/or natural polymers, such as pectin, alginate or starch.
- Exemplary solvents or co-solvents preferably have relatively low boiling points, and can solvate the exemplary polymers listed above, for example, exemplary solvents include, but are not limited to: water, alcohol, such as methanol or ethanol, or hexane.
- the aromatic compound can be formed on internal and external surfaces of the activated carbon. This is done by first, forming a liquid solution, preferably a homogeneous liquid solution, o by melting or dissolving the aromatic compound in a solvent or solvent mixture. Next, the activated carbon can be suspended in the liquid solution to allow the aromatic compounds to impregnate the activated carbon, thus covering the surfaces of the activated carbon. Next, the solvent can be removed by filtering, then evaporating or extracting s the remaining solvent.
- the layered activated carbon can be stabilized by heating according to a predetermined heating schedule, such that the aromatic compounds can be converted into a stabilized, infusible form prior to carbonization.
- the 0 stabilized, infusible form aromatic compounds can be carbonized by heat treating the stabilized, infusible form aromatic compounds on the activated carbon in an inert environment.
- a new carbon layer can thereby be formed on the surfaces of the activated carbon.
- the carbon layer on the activated carbon is not itself activated, as activation of the carbon layer may cause loss of at least part of the carbon layer, and a decrease of its mechanical strength.
- aromatic compounds that may be used include, but are not limited to: petroleum pitches, coal tar pitches and pine tar pitches, other natural or synthetic aromatic compounds, and mixtures thereof. These aromatic compounds are preferred because of their high density, which in turn after carbonization, leads to higher mechanical strength carbon than can be achieved by carbonizing lower density carbonaceous precursors. Thus, by coating and carbonizing a pitch precursor on a lower density precursor activated carbon, the higher mechanical strength of a carbonized pitch can be provided on a lower cost, lower density precursor activated carbon.
- WMP N-methyl- s 2-pyrrolidinone
- Smoking articles o
- the surface-modified activated carbons are preferably used in smoking articles, specifically filter portions of smoking articles.
- the smoking articles envisioned herein include cigarettes, such as traditional and non-traditional cigarettes, cigars and other smoking devices.
- Non-traditional cigarettes include, for example, cigarettes s for electrical smoking systems as described in commonly-assigned U.S.
- a cigarette typically contains two sections, a tobacco- 0 containing portion often referred to as the tobacco or cigarette rod, and a filter portion, which may be referred to as a filter tipping.
- the tipping paper overlaps an end portion of the tobacco rod to hold the filter and tobacco rod together.
- the tobacco rod, or tobacco containing . element of the 5 cigarette typically includes a cigarette wrapping paper in which shreds of tobacco is wrapped with an adhesive, holding the seams of the paper together.
- mainstream tobacco smoke is drawn from the lit or heated end 0 downstream to the filter end of the tobacco rod and further downstream through the filter.
- mainstream smoke includes the mixture of gases and/or aerosols passing down a smoking article, such as a tobacco rod, and issuing from an end, such as through the filter end, i.e., the amount of smoke issuing or drawn from the mouth end of a cigarette during smoking of the cigarette.
- the mainstream smoke contains air that is drawn in through the heated region of the cigarette and through the paper wrapper.
- “Smoking" of a cigarette generally involves lighting one end of the cigarette and drawing the smoke downstream through the mouth end of the cigarette, while the tobacco contained therein undergoes a combustion reaction or heating.
- the cigarette may also be smoked by other means.
- the cigarette may be smoked by heating the cigarette using an electrical heater, as described, for example, in commonly-assigned U.S. Patent Nos . 6,053,176; 5,934,289; 5,591,368 or 5,322,075, each of which is incorporated herein by reference in its entirety.
- suitable types of tobacco materials include, but are not limited to, flue-cured tobacco, Burley tobacco, Maryland tobacco, Oriental tobacco, rare tobacco, specialty tobacco, reconstituted tobacco, blends thereof and the like.
- the tobacco material may be provided in any suitable form, including, but not limited to, tobacco lamina, processed tobacco materials, such as volume expanded or puffed tobacco, processed tobacco stems, such as cut-rolled or cut-puffed stems, reconstituted tobacco materials, blends thereof, and the like. Tobacco substitutes may also be used.
- the tobacco is normally used in the form of cut filler, i.e., in the form of shreds or strands cut into widths ranging from about 1/10 inch to about 1/20 inch or even about 1/40 inch.
- the lengths of the strands range from between about 0.25 inch to about 3.0 inches.
- the cigarettes may further comprise one or more flavors, as described above, or other additives (e.g., burn additives, combustion modifying agents, coloring agents, binders, etc.) .
- the filter material of the filter may be any of the variety of fibrous materials for use in tobacco smoke filter elements. Typical materials include cellulose acetate, polypropylene or paper. Preferably, the filter material will be cellulose acetate.
- exemplary filter structures that may be used include, but are not limited to, a mono filter, a dual filter, a triple filter, a single or multi-cavity filter, a recessed filter, a free-flow filter, combinations thereof and the like.
- Mono filters typically contain cellulose acetate tow or cellulose paper materials. Pure mono cellulose filters or paper filters offer good tar and nicotine retention, and are highly degradable.
- Dual filters typically comprise a cellulose acetate mouth end and a pure cellulose or cellulose acetate segment. The length and pressure drop of the segments in a dual filter may be adjusted to provide optimal sorption, while maintaining acceptable draw resistance.
- Triple filters may include mouth and smoking material or tobacco side segments, and a middle segment comprising paper.
- Cavity filters include two segments, e.g., acetate-acetate, acetate-paper or paper-paper, separated by at least one cavity.
- Recessed filters include an open cavity on the mouth side.
- the surface-modified activated carbon is provided in filters of the smoking articles, as mentioned above.
- the filters may also be ventilated and/or may include in addition to the surface-modified activated carbon, other sorbents, catalysts or other additives suitable for use in filters of smoking articles.
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- Chemical & Material Sciences (AREA)
- Inorganic Chemistry (AREA)
- Organic Chemistry (AREA)
- Engineering & Computer Science (AREA)
- Materials Engineering (AREA)
- Cigarettes, Filters, And Manufacturing Of Filters (AREA)
- Carbon And Carbon Compounds (AREA)
- Solid-Sorbent Or Filter-Aiding Compositions (AREA)
Abstract
Description
Claims
Priority Applications (7)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| MX2007008005A MX2007008005A (en) | 2004-12-30 | 2005-12-29 | Surface-modified activated carbon in smoking articles. |
| CN2005800452953A CN101094598B (en) | 2004-12-30 | 2005-12-29 | Surface-modified activated carbon in smoking articles |
| BRPI0519453-9A BRPI0519453A2 (en) | 2004-12-30 | 2005-12-29 | surface activated carbon in tobacco articles |
| JP2007548920A JP4916453B2 (en) | 2004-12-30 | 2005-12-29 | Surface modified activated carbon in smoking articles |
| AU2005321022A AU2005321022B2 (en) | 2004-12-30 | 2005-12-29 | Surface-modified activated carbon in smoking articles |
| EA200701415A EA011784B1 (en) | 2004-12-30 | 2005-12-29 | Surface-modified activated carbon in smoking articles |
| EP05849375A EP1835820A2 (en) | 2004-12-30 | 2005-12-29 | Surface-modified activated carbon in smoking articles |
Applications Claiming Priority (2)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| US11/025,818 | 2004-12-30 | ||
| US11/025,818 US20060144410A1 (en) | 2004-12-30 | 2004-12-30 | Surface-modified activated carbon in smoking articles |
Publications (2)
| Publication Number | Publication Date |
|---|---|
| WO2006070291A2 true WO2006070291A2 (en) | 2006-07-06 |
| WO2006070291A3 WO2006070291A3 (en) | 2006-09-14 |
Family
ID=36143682
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| PCT/IB2005/004100 Ceased WO2006070291A2 (en) | 2004-12-30 | 2005-12-29 | Surface-modified activated carbon in smoking articles |
Country Status (12)
| Country | Link |
|---|---|
| US (1) | US20060144410A1 (en) |
| EP (1) | EP1835820A2 (en) |
| JP (1) | JP4916453B2 (en) |
| KR (1) | KR20070095380A (en) |
| CN (1) | CN101094598B (en) |
| AU (1) | AU2005321022B2 (en) |
| BR (1) | BRPI0519453A2 (en) |
| EA (1) | EA011784B1 (en) |
| MX (1) | MX2007008005A (en) |
| UA (1) | UA89069C2 (en) |
| WO (1) | WO2006070291A2 (en) |
| ZA (1) | ZA200703942B (en) |
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| WO2007113694A3 (en) * | 2006-03-31 | 2008-02-21 | Philip Morris Prod | Method of making modified activated carbon |
| JP2010527599A (en) * | 2007-05-24 | 2010-08-19 | フィルトロナ インターナショナル リミティド | Cigarette smoke filter |
| WO2012016051A3 (en) * | 2010-07-30 | 2013-02-21 | R. J. Reynolds Tobacco Company | Filter element comprising multifunctional fibrous smoke-altering material |
| CN101583417B (en) * | 2006-09-13 | 2013-10-30 | 罗地亚管理公司 | Composite material of high cohesive strength, method of preparation and uses, especially in cigarette filters |
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| US20100206317A1 (en) * | 2007-09-28 | 2010-08-19 | Vector Tobacco, Inc. | Reduced risk tobacco products and use thereof |
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| US8079369B2 (en) | 2008-05-21 | 2011-12-20 | R.J. Reynolds Tobacco Company | Method of forming a cigarette filter rod member |
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| US8613284B2 (en) | 2008-05-21 | 2013-12-24 | R.J. Reynolds Tobacco Company | Cigarette filter comprising a degradable fiber |
| WO2009143338A2 (en) | 2008-05-21 | 2009-11-26 | R.J. Reynolds Tobacco Company | Apparatus and associated method for forming a filter component of a smoking article and smoking articles made therefrom |
| US8511319B2 (en) * | 2008-11-20 | 2013-08-20 | R. J. Reynolds Tobacco Company | Adsorbent material impregnated with metal oxide component |
| US8119555B2 (en) * | 2008-11-20 | 2012-02-21 | R. J. Reynolds Tobacco Company | Carbonaceous material having modified pore structure |
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| US20110271968A1 (en) | 2010-05-07 | 2011-11-10 | Carolyn Rierson Carpenter | Filtered Cigarette With Modifiable Sensory Characteristics |
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Cited By (25)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| WO2007113694A3 (en) * | 2006-03-31 | 2008-02-21 | Philip Morris Prod | Method of making modified activated carbon |
| EA013882B1 (en) * | 2006-03-31 | 2010-08-30 | Филип Моррис Продактс С.А. | Method of making modified activated carbon |
| US9394179B2 (en) | 2006-03-31 | 2016-07-19 | Philip Morris Usa Inc. | Method of making modified activated carbon |
| CN101583417B (en) * | 2006-09-13 | 2013-10-30 | 罗地亚管理公司 | Composite material of high cohesive strength, method of preparation and uses, especially in cigarette filters |
| JP2010527599A (en) * | 2007-05-24 | 2010-08-19 | フィルトロナ インターナショナル リミティド | Cigarette smoke filter |
| KR101617465B1 (en) * | 2007-05-24 | 2016-05-02 | 필트로나 인터내셔날 리미티드 | Tobacco smoke filter |
| WO2012016051A3 (en) * | 2010-07-30 | 2013-02-21 | R. J. Reynolds Tobacco Company | Filter element comprising multifunctional fibrous smoke-altering material |
| US8720450B2 (en) | 2010-07-30 | 2014-05-13 | R.J. Reynolds Tobacco Company | Filter element comprising multifunctional fibrous smoke-altering material |
| US20140210127A1 (en) * | 2010-07-30 | 2014-07-31 | R.J. Reynolds Tobacco Company | Filter element comprising multifunctional fibrous smoke-altering material |
| US9119420B2 (en) * | 2010-07-30 | 2015-09-01 | R.J. Reynolds Tobacco Company | Filter element comprising multifunctional fibrous smoke-altering material |
| US9259031B2 (en) | 2011-06-06 | 2016-02-16 | British American Tobacco (Investments) Limited | Filter for a smoking article |
| US9642394B2 (en) | 2011-07-21 | 2017-05-09 | British American Tobacco (Investments) Limited | Porous carbon and methods of production thereof |
| US10117456B2 (en) | 2013-12-30 | 2018-11-06 | Philip Morris Products S.A. | Activated carbon for smoking articles |
| US10420375B2 (en) | 2014-04-30 | 2019-09-24 | British American Tobacco (Investments) Limited | Aerosol-cooling element and arrangements for use with apparatus for heating a smokable material |
| US10779577B2 (en) | 2014-04-30 | 2020-09-22 | British American Tobacco (Investments) Limited | Aerosol-cooling element and arrangements for use with apparatus for heating a smokable material |
| US10375996B2 (en) | 2014-10-22 | 2019-08-13 | British American Tobacco (Investments) Limited | Inhalator and cartridge thereof |
| US11324254B2 (en) | 2014-10-22 | 2022-05-10 | Nicoventures Trading Limited | Inhalator and cartridge thereof |
| US12336564B2 (en) | 2014-10-22 | 2025-06-24 | Nicoventures Trading Limited | Inhalator and cartridge thereof |
| US10426199B2 (en) | 2015-02-27 | 2019-10-01 | British American Tobacco (Investments) Limited | Cartridge, components and methods for generating an inhalable medium |
| US11865246B2 (en) | 2015-02-27 | 2024-01-09 | Nicoventures Trading Limited | Apparatus for generating an inhalable medium |
| US11511056B2 (en) | 2015-10-02 | 2022-11-29 | Nicoventures Trading Limited | Apparatus for generating an inhalable medium |
| US12213514B2 (en) | 2016-05-20 | 2025-02-04 | Nicoventures Trading Limited | Article for use in an apparatus for heating smokable material |
| US12514281B2 (en) | 2016-05-20 | 2026-01-06 | Nicoventures Trading Limited | Article for use in an apparatus for heating smokable material |
| US11672276B2 (en) | 2016-11-02 | 2023-06-13 | British American Tobacco (Investments) Limited | Aerosol provision article |
| US12144372B2 (en) | 2018-07-30 | 2024-11-19 | Nicoventures Trading Limited | Generation of an inhalable medium |
Also Published As
| Publication number | Publication date |
|---|---|
| KR20070095380A (en) | 2007-09-28 |
| JP4916453B2 (en) | 2012-04-11 |
| ZA200703942B (en) | 2008-09-25 |
| EA011784B1 (en) | 2009-06-30 |
| JP2008526193A (en) | 2008-07-24 |
| EP1835820A2 (en) | 2007-09-26 |
| WO2006070291A3 (en) | 2006-09-14 |
| MX2007008005A (en) | 2007-08-22 |
| CN101094598B (en) | 2013-04-24 |
| US20060144410A1 (en) | 2006-07-06 |
| AU2005321022A1 (en) | 2006-07-06 |
| BRPI0519453A2 (en) | 2009-01-27 |
| AU2005321022B2 (en) | 2011-09-29 |
| UA89069C2 (en) | 2009-12-25 |
| CN101094598A (en) | 2007-12-26 |
| EA200701415A1 (en) | 2007-10-26 |
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