Animal litter and litter box system
11540486 · 2023-01-03
Assignee
Inventors
Cpc classification
A01K1/0114
HUMAN NECESSITIES
International classification
Abstract
A pelletized, environmentally friendly animal litter. The animal litter includes birch bark waste in pellet form that is mostly hydrophobic to allow liquid waste to quickly pass therethrough while trapping a small amount of waste therein that adheres to the surface of the pellet and is then absorbed over time. The litter is used in a litter box system that includes a base, a drawer slidably received therein for capturing waste in a preferred absorbent pad and a removeable grate suspended thereover for retaining the litter thereover. The drawer defines a container of sufficient volume to receive all of the litter when a standard amount of litter is used to fill the box which improves ease in changing litter by removing the grate and allowing the litter to drop into the drawer.
Claims
1. A pelletized animal litter comprising birch bark waste, the birch bark waste including a mixture of about 50% to about 90% birch bark, including both inner and outer birch bark, and about 10% to about 60% birch bole wood.
2. The pelletized animal litter of claim 1, wherein a concentration of birch bark is between about 60% to about 90%.
3. The pelletized animal litter of claim 1, wherein a concentration of bole wood is between about 10% and about 40%.
4. The pelletized animal litter of claim 1, wherein a pelletizing compression ratio of the animal litter is about 6:1 to 9:1.
5. The pelletized animal litter of claim 4, wherein a durability of the animal litter is greater than 90%.
6. The pelletized animal litter of claim 5, wherein a sorbency of the animal litter is less than 25%.
7. The pelletized animal litter of claim 6, wherein an inhalable dust concentration of the animal litter is less than 10 mg/m.sup.3.
8. A litter box system for use with an animal litter, the litter box system comprising: a bottom base; a drawer that slidably disposes within the bottom base, and which glides into and out of the bottom base, the drawer having a reservoir; a walled housing with at least three walls, and a front anterior wall with a cut out opening for an animal to go in and out which is removably disposed over the bottom base and engages via a perimeter flange wherein the walled housing has an open bottom that nests into the bottom base and an upper front of the drawer; a liquid permeable removable grate disposed within the walled housing, wherein the grate encourages the flow of liquid waste therethrough but prevents the passage of litter disposed thereon; and pelletized litter disposed on the removable grate, the pelletized litter comprising birch bark waste, the birch bark waste including a mixture of about 50% to about 90% birch bark, including both inner and outer birch bark, and about 10% to about 60% birch bole wood.
9. The litter box system of claim 8, further comprising a ramp that attaches to the front anterior wall cut out and facilitates entering and exiting of the box while capturing litter particulate and cleaning an animal's paws as they exit the box.
10. The litter box system of claim 8, wherein the grate includes rounded edges to facilitate liquid movement into the reservoir of the drawer.
11. The litter box system of claim 8, wherein the grate includes divots so it can be easily removed to pass the soiled litter into the reservoir of the drawer to dispose of the litter hygienically.
12. The litter box system of claim 11, wherein a volume defined by the drawer is greater than or equal to a volume of litter used in a standard litter box.
13. The pelletized animal litter of claim 1, wherein the mixture is ratio of 50% to 80% birch bark and 20% to 50% birch bole wood.
14. The pelletized animal litter of claim 1, further comprising one or more of hulls or shells of nuts, seeds, fruit, or grasses.
15. The pelletized animal litter of claim 14, wherein the hulls or shells of nuts, seeds, fruit, or grasses include one or more of coffee chaff, sunflower hulls, wild rice hulls, pistachio shells, and safflower hulls.
16. The pelletized animal litter of claim 1, further comprising other hardwood or softwood tree bark waste from one or more of aspen, pine, fir, or maple trees.
17. The pelletized animal litter of claim 1, wherein the mixture is a ratio of 60% birch bark and 40% birch bole wood.
18. The pelletized animal litter of claim 1, wherein a final pellet moisture concentration is 8% to 11%.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The disclosure may be more completely understood in consideration of the following detailed description in connection with the accompanying drawings, in which:
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(32) While the disclosure is amenable to various modifications and alternative forms, specifics thereof have been shown by way of example in the drawings and will be described in detail. It should be understood, however, that the intention is not to limit the invention to the particular embodiments described. On the contrary, the intention is to cover all modifications, equivalents, and alternatives falling within the spirit and scope of the disclosure.
DETAILED DESCRIPTION
(33) For the following defined terms, these definitions shall be applied, unless a different definition is given in the claims or elsewhere in this specification.
(34) All numeric values are herein assumed to be modified by the term “about,” whether or not explicitly indicated. The term “about” generally refers to a range of numbers that one of skill in the art would consider equivalent to the recited value (i.e., having the same function or result). In many instances, the terms “about” may include numbers that are rounded to the nearest significant figure.
(35) The recitation of numerical ranges by endpoints includes all numbers within that range (e.g. 1 to 5 includes 1, 1.5, 2, 2.75, 3, 3.80, 4, and 5).
(36) As used in this specification and the appended claims, the singular forms “a”, “an”, and “the” include plural referents unless the content clearly dictates otherwise. As used in this specification and the appended claims, the term “or” is generally employed in its sense including “and/or” unless the content clearly dictates otherwise.
(37) It is noted that references in the specification to “an embodiment”, “some embodiments”, “other embodiments”, etc., indicate that the embodiment described may include one or more particular features, structures, and/or characteristics. However, such recitations do not necessarily mean that all embodiments include the features, structures, and/or characteristics. Additionally, when features, structures, and/or characteristics are described in connection with one embodiment, it should be understood that such features, structures, and/or characteristics may also be used in connection with other embodiments whether explicitly described unless clearly stated to the contrary.
(38) The following detailed description should be read with reference to the drawings in which similar elements in different drawings are numbered the same. The drawings, which are not necessarily to scale, depict illustrative embodiments and are not intended to limit the scope of the invention.
(39) The present invention relates to animal litter for all animals, including cats, dogs, rabbits, ferrets, horses, or any animal that utilizes litter for urination and defecation. The litter is comprised of ingredients that are biodegradable, environmentally friendly, scent-free, minimize dust, minimize tracking, and minimize odor. The litter is designed to be used in some embodiments with a litter box system with liquid passing through a grate and means of capturing liquid animal excretions below the grate. The animal litter has primarily liquid passing properties to transfer most of the liquid waste into the drawer, with or without the use of an absorbent pad in the drawer. Any remaining liquid waste is absorbed by the litter and held onto within the litter particulate, allowing use of litter for long periods of time, while minimizing odor.
(40) The present invention relates to an animal litter system including an animal litter box that can include a litter capturing ramp 160 (see
(41) The animal litter particulate matter of the present invention is described below with preferred embodiments. As used here, “birch” is any of the many deciduous trees of the genus Betula. The particulate matter used in the present invention is mainly composed of birch bark waste, which is a low value waste product in the forest industry. Birch bark waste is generated when birch logs are debarked. Bole is the tree trunk from the ground to the crown break. The bole doesn't include major branches supporting the tree crown. Bole wood is the section of the bole that is utilizable for a commercial product and is cut square at both ends to be made ready for delivery for processing. In the debarking process, the wood that remains adhered to the bark is bole wood. Birch bark can be further divided into outer birch bark and inner birch bark. The process of separating the outer birch bark from the inner birch bark to make outer birch bark pellets to extract beneficial organic chemicals is known and requires laborious work in the separation process, and creates an expensive pellet that is cost prohibitive to use as an animal litter.
(42) The present invention provides methods for producing a cost-efficient litter and a process for a blended (both inner and outer birch bark and bole wood combined) birch bark litter pellet with mostly hydrophobic characteristics, but also with hydrophilic characteristics to be utilized with a pass-through animal litter box system.
(43) Birch bark waste is obtained from a sawmill or paper mill. Depending on time of year, the ratio of birch bark to bole wood can vary. A birch bark waste blend of 40-90% birch bark and 10-60% bole wood are the ratios that are most common throughout the year, with winter having a higher bole wood content due to freezing and less ease of debarking the tree. A preferred embodiment uses a ratio of 50-80% birch bark to 20-50% bole wood to produce the best animal litter pellet. A lower birch bark content creates too much liquid absorption and not enough liquid pass through. With less birch bark, there is less hydrophobicity, and therefore more hydrophilicity. With more hydrophilicity, the litter particulate can break apart faster, and not last as long.
(44) One or more materials may be utilized as additions to the birch bark waste in some embodiment, such as other hardwood or softwood tree bark waste, including, but not limited to aspen, pine, fir and maple bark waste, the outside of fruit, nuts, rice, seeds, including but not limited to shells, hulls, husks, agricultural products (coffee chaff, sunflower hulls, wild rice hulls, pistachio shells, safflower hulls), and other pulverized wood materials may be combined with the birch bark waste to make the animal litter.
(45) The litter particulate matter produced for the present invention may be formed by a disk pelletizer, a briquette machine, a tableting machine or similar. In one embodiment, the preferred method is the disk pelletizer due to availability and price. Ideal pre-pelleting or forming moisture levels range from 12-15% prior to entering the pellet die, or other. However, the wood industry seldom uses steam to maintain final pellet moisture at a minimum. Steam is only utilized to start pelleting if moisture content is below ideal ranges. If steam is required, use a high pressure 46 Kw (5 HP) Chromalox electric steam boiler, or similar, with a set pressure of 65 psi (high pressure).
(46) Prior to grinding, the birch bark waste may need to be dried if moisture content is too high. Birch bark waste may be air dried or dried in a machine known in the art such as a rotating dryer. Final moisture of the product is in a range from 6-13% and preferred in the 8-11% range.
(47) When the animal litter particulate is formed into a cylindrical pellet shape, the average diameter range is from 3-8 mm, and preferably 4-7 mm. The average individual particulate length is 3-30 mm, and preferably 6-10 mm. An animal such as a cat prefers small litter particulate, but if the particulate is too small it tends to get caught in the animal's paws and creates tracking of the litter particulate around the house. Also, the litter particulate needs to be large enough to not fall through or get stuck in between the bars of the grate. An advantage of a removable grate is that you can have different litter particulate sizes with different grate open space sizes between bars.
(48) It is preferable that the amount of water absorbed in a water sorbency drip-test is in the range of 0.01-0.20 water absorbed/product used (g/g) or 1% to 20%. In the sorbency drip-test, a lower sorbency number indicates a lower affinity to attract and absorb water. This means that more liquid waste is repelled from the litter particulate, and therefore the litter lasts longer as there is less particulate deformation, less particulate disintegration, and less odor.
(49) The sorbency can be measured with the sorbency drip-test method which focuses on exposure time, density, and sorbent ability. Pelleted litter is weighed and placed into a cylinder. Then 100 grams of water is poured through the cylinder and pass-through water is collected after 5 minutes and weighed. Product sorbency is a calculation of water retained divided by the starting mass.
(50) The preferred pellet durability is above 90%, and more preferred to be above 98%. With lower particulate durability, the litter particulate may break down with distribution, or with animals walking on them, and it may shorten length of time the litter is able to be used.
(51) The durability is measured using the Kansas State University Pellet Durability Index Score (PDI). The test measures the durability of a dry pellet before being exposed to moisture, such as cat urine in use. Durability of pellets should be determined by tumbling the test sample for 10 minutes at 50 r.p.m. in a dust-tight enclosure, starting with a consistent weight of pellets, and starting immediately after cooling. When the temperature of the pellets is within ±10 degrees)(° Fahrenheit of ambient, they are considered cool. The device is rotated around an axis that is perpendicular to and centered in the 12 inch sides. A 2 inch by 9 inch plate is affixed symmetrically along one of its 9 inch sides to a diagonal of one 12 inch by 12 inch side of the can. A door may be placed on any side and should be dust-proof. Projections, such as rivets and screws, should be kept to a minimum and well rounded.
(52) A sample of pellets to be tested should be sieved on the appropriate sieve to remove all fines. Fines shall be determined by screening a sample on a wire sieve having openings just smaller than the nominal pellet diameter. If pellets of 0.5 inch diameter or larger are being tested, select pellets that are between 1.25 inches and 1.5 inches long. Place a 500-gram sample of sieved pellets in the tumbling can device. After tumbling for 10 minutes, the sample will be removed, sieved, and the percent of whole pellets calculated. Pellet durability is defined as: Durability=weight of pellets after tumbling (g) divided by weight of pellets before tumbling (500 g)×100.
(53) Inhalable dust is currently classified as dust particles less than 10 micron. Peak dust is the highest recorded concentration of dust less than or equal to 10 microns during a test period. Concentration values are stated as milligrams per cubic meter. The preferred least amount of inhalable dust is less than 10 milligrams per cubic meter. For respiratory health of both the animals and the humans residing in the animals' house, the least amount of dust is most desirable. National Optical Astronomy Observatory states that the risk of particulate exposure for entering the respiratory system can be determined by the length of exposure, concentrations, and most importantly, the size of the dust particle.
(54) To evaluate the level of inhalable dust generated through handling of material, a DustTrak® monitor is utilized to filter and read dust concentrations utilizing light scattering technology. For each individual test, a 100 gram sample is evaluated. Sample is analyzed for inhalable dust less than 10 microns. Document current temperature and humidity. Use a 32 inch collectively in total drop tube height, and a collection box. Drop litter down the tube and into a collection box. The sample and dust generated are captured in a box at the bottom of the tube with an air outlet port at the side of the box. Test utilizing a 10 micron filter.
(55) It is preferable that as small of an amount of ammonia NH3 be generated as possible, less than or equal to 0.1 ppm at 1 hour and 24 hours after exposure. Measure a level of ammonia generated on litter particulate using a Drager tester. The procedure to evaluate ammonia control of animal litter particulate is as follows.
(56) 1. Fill a 250 ml plastic measuring cup with two test litters. Litter should be added to reach a level that is 1 inch below the top of the rim.
(57) 2. Test liquid utilized is four parts water with one part 5% ammonia hydroxide or household ammonia (4:1). This level of ammonia is utilized to serve as an “index”. For performance and should provide a detectable level for comparison. Synthetic urine contains only 1.0 E-4 percent (%) ammonia, producing very limited levels of ammonia for performance testing.
(58) 3. Using a pipe tote, add 5 ml of solution to each cup.
(59) 4. Wait 1 hour.
(60) 5. Document room temperature and humidity.
(61) 6. Using the Drager tester with the 5-30 ppm tubes, test each litter and document NH3 levels obtained.
(62) 7. Repeat steps 1-3 and wait 24 hours. Then repeat steps 5-6.
(63) A preferred method of manufacturing by pelletizing of the animal litter is described. Moisture content range of the birch bark waste should be from 12-15%.
(64) Prior to pelleting, the birch bark waste product is ground using a 25 HP, 22-inch Champion brand hammer mill rotating at 3,600 r.p.m. With a 3/16-inch hole screen for the first pass followed by a ⅛- 1/16-inch screen for the second pass.
(65) Pellet die size utilized for production for a preferred embodiment included a 6:1 compression ratio CR (compression ratio=die length/hole diameter) to a 9:1 compression ratio CR, with a die diameter of 3 mm-7 mm. A thicker die with a greater compression ratio produces a product with improved performance. Pelleting for the trial was conducted on a 60-Hp California Pellet Mill. The pellet mill runs using 220V/3 phase electricity. Operating idle amperage is 16 A and full load amperage is 70 A.
(66) In a first representative litter that was manufactured, the present invention is a pelletized animal litter particulate and method of production as described in detail below. Birch bark waste comprised of 80% birch bark and 20% bole wood were utilized. Initial starting moisture content was 13.5%. Prior to pelleting, the birch bark waste product was ground using a 25 HP, 22-inch Champion brand hammer mill rotating at 3,600 r.p.m., with a 3/16 inch hole screen for the first pass followed by a ⅛ inch screen for the second pass. Pellet die size utilized for production for a preferred embodiment included a 6:1 compression ratio CR (compression ratio=die length/hole diameter). The die diameter was ¼ inch. A thicker die with a greater compression ratio produces a product with improved performance. In particular, it has been found that the compression ratio impacts the durability of the pellets in a wet test. This is a qualitative test in which pellets are placed in a liquid for a period of time. After such time, the pellets are observed to determine if they retain their pellet shape and defined exterior surface. This quality is both a function of the compression ratio and the materials used. As it is desirable to have some hydrophilicity as stated above, there is some liquid absorbed into the pellets on each use by the animal. If the pellet breaks down when wetted, it will not last in the litter box and become problematic from many perspectives. Therefore, it is preferred that pellets of the present invention have the previously stated sorbency range while substantially maintaining pellet form over the period of use between litter changes. Pelleting for the trial was conducted on a 60 HP California Pellet Mill. The pellet mill runs using 220V/3 phase electricity. Operating idle amperage is 16 A and full load amperage is 70 A.
(67) The animal litter of a second representative litter that was manufactured followed the same methods as the first representative litter, except that the compression ratio included a 7:1 compression ratio. The die diameter was ¼ inch.
(68) In a third representative litter that was manufactured, the same methods of the first representative litter were followed, except that the birch bark composition was 60% birch bark, and bole wood was 40%. The compression ratio was 8:1, with a ¼ inch die width.
(69) Properties of the three representative litters that were manufactured were tested along with comparing properties under the same tests for a commercially available litter sold under the Tidy Cats® Breeze® label and a generic clay pellet litter. The results of these tests are presented in Tables 1, 2 and 3 below. The superior properties of pellets of the present invention are evident, especially the second representative sample.
(70) TABLE-US-00001 TABLE 1 Pellet Water Pellet Die Durability Absorbed/Product Final Pellet Product Utilized (%) Used (g/g) Moisture (%) First Preferred Embodiment: ¼ in × 6:1 CR 95.8% 0.19 10.2% 80% birch bark/20% bolewood Second Preferred Embodiment: ¼ in × 7:1 CR 98.5% 0.09 9.3% 80% birch bark/20% bolewood Third Preferred Embodiment: ¼ in × 8:1 CR 97.9% 0.13 9.3% 60% birch bark/20% bolewood
(71) TABLE-US-00002 TABLE 2 Peak Dust Concentration Product Peak 10 micron First Preferred Embodiment 6.1 80/20. 6:1 CR Second Preferred Embodiment 6.7 80/20. 7:1 CR Third Preferred Embodiment 5.8 60/40. 8:1 Tidy Cats Breeze 18.3 Tidy Cats 24/7 (prilled) 27 Clay Granulated Litter 150
(72) TABLE-US-00003 TABLE 3 Ammonia Level Ammonia Level Product at 1 hour (ppm) at 24 hours (ppm) Second Preferred Embodiment 0 0 80% birch bark/20% bolewood Tidy Cats Breeze Pellet 0.45 0
(73) The animal litter of a fourth embodiment was the same as above in all three embodiments, and then adding either into the ground mix, or by spraying in after pelletizing, a bio-based odor neutralizer such as but not limited to Itaconix® ZINADOR™ 22L, which is an odor neutralizing chemical that is a polymeric zinc itaconate complex that is 100% bio-based.
(74) Another alternative embodiment would be same as above and add another one or two organic ingredients into the ground mixture, such as but not limited to hulls or shells of nuts, seeds, fruit, or grasses.
(75) As shown in
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(77) Base 1 is a rectangular shaped bottom part with continuous 3-sided base flange 1p to set the positioning of wall 2 and to guide drawer 3 to smoothly glide in and out of base 1 and to house drawer 3 when drawer 3 is in the inserted or closed position. As shown in
(78) Alternative embodiments of the above litter box system are depicted in
(79) Shown in
(80) Shown in
(81) As shown in
(82) As shown in
(83) The surround walls of housing 2 or 2A, are seamless, so there is no leakage of liquid waste through a seam, and no cover required. Animals, such as male cats and dogs tend to urinate high and may urinate outside of a litter box if the litter box doesn't have high sides. As animals can urinate at multiple angles, urine can leak out through the seam between a cover and a side wall, or any sidewall seams. Animal litter boxes 10 and 10A has no side wall seams and prevents liquid waste leakage outside of animal litter box 10 and 10A.
(84) In some embodiments, the litter box includes a removable grate with divot cut-outs on short or long ends of the grate. In Matsuo U.S. Pat. Nos. 6,994,054 and 7,131,396, the bottom part of the litter drawer is detachable from the dripping container for cleaning purposes, but their design does not allow removal while the litter is still in the container, nor does it allow a means of directing of soiled litter into the reservoir drawer for easy removal of soiled litter. The present disclosed grate is removable, while litter is on the grate, by using the divot cut-out to lift with a finger, or to use litter scoop, and lifting as gliding the grate backwards, directing soiled litter into drawer. Further, the design allows the ability to change out the grate to allow different size grate openings, allowing various litter particulate sizes and to increase ease of cleaning the box. The varying styles of grates improves the versatility of the system. Many animals will accept a pellet litter, but others have more sensitive paws, and require a softer and smaller particulate size.
(85) As shown in
(86) Grate deformation causes litter particulate to get caught in between the grate bars 4b and could create deformation movement which is startling to an animal and could dissuade an animal from using the animal litter box 10 or 10A. A strong grate 4 material, such as an ABS plastic or stainless steel, but not limited to these materials, is preferred, to prevent deformation. Grate 4 rounded bars 4b on top and bottom surfaces facilitates a hydrophobicity by having curves and no flat surfaces, to maximize liquid waste pass through.
(87) All grate surfaces that may be contacted by animal urine are smooth and rounded to maximize liquid waste flow from the top of the grate, over the rounded bars 4b, through the liquid permeable open spaces, to flow to the bottom side of the grate 4 and then to flow away from the bottom side of the grate bar 4b creating a stream of liquid encouraging flow, and avoiding droplets which splatter. The rounded surfaces of the grate bars 4b also create a mildly uneven upper surface so litter particulate is uneven, which creates space between litter particulate, facilitating quick and efficient movement of fluid through litter particulate, through the top side of grate through to the bottom side of grate 4 to drawer 3 or 3A. Projections 4c on outside edge 4e of grate 4, prevent translational or longitudinal movement of ramp when ramp is set in wall retainment flange 2cd, while also creating a small space between the wall retainment flange 2cd and the outside edge 4f of the grate 4. The projections 4c also extend slightly superiorly and inferiorly beyond the height of the edge on both the top and bottom sides of the edge, creating a load onto the projections 4c and slightly elevating grate 4, creating a space between the bottom of the edge 4f creating a pathway for any liquid to flow from the side wall 2a, fillet 2b, first horizontal flange 2c, wall retainment flange 2cd, vertical flange 2d, second horizontal flange 2e, final horizontal flange 2f, over the trimmed edge 2g, and into the drawer 4. An alternative embodiment for the grate is a mildly textured grate with subtle bumps and valleys, or a woven wire mesh that angles inferiorly to the lowest (valley) area. Liquid, such as urine from an animal, is excreted onto the litter particulate 12a (see
(88) In at least some preferred embodiments the drawer is a deep reservoir with a top rolled edged that can hold all the litter when it is desired to empty the litter from the box by removing the grate. The deep reservoir drawer with top edge rolled outward and enlarged in the corners 3p in
(89) As shown in
(90) In drawer 3, the front over-run flange 3e then connects into the front interior flange 3n. The interior flange connects into the continuous exterior surface of the drawer 3a. A plane, perpendicular to the floor, parallel with the transverse width of the animal litter box 10, and coincident at the intersection of the large exterior fillets 3h and the flat edge running the depth, creates the joint between the interior flange edge 3l and the exterior edge 3i surface, and the flat flange surface 11, the intersection of drawer exterior edge and base flat flange surface 6, in
(91) In the alternative, drawer 3A of
(92)
(93) In animal litter box 10, there are eight total cuts, called cinch notches 3f; two in each of the four corners of the drawer. These cinch notches 3f allow the absorbent pad 13a to attach to the drawer 3, so the pad remains in position and does not get caught up when moving the drawer in or out of the put-in position or totally closed position.
(94) A preferred embodiment is for the drawer to house an absorbent pad 13a to capture and hold onto the liquid waste and to neutralize odors. An absorbable pad made to lay flat on the bottom of a reservoir drawer, to go up the sides of the reservoir drawer, and to bend outward over the over-run edges 3n of the reservoir drawer. The outer non-absorbent edges may have perforated handle “C” cut outs. An alternative embodiment is a drawstring in the outer peripheral border of non-absorbing portion of pad that runs through a channel made from the bottom impermeable layer by folding over and sealing. The drawstring lays flat within the channel until ready to be pulled out and cinched. The drawstring is made of similar bottom impermeable material. There are two exits for the drawstring from the channel, directly across from each other, preferably front and back, but could be side and side. Once the pad is saturated, the border is lifted over the edge, and the drawstring is pulled from the two exit areas as lifting and cinching, keeping all the urine and saturated pad contents locked in, allowing easy, clean disposal without spilling, or touching the saturated areas. It can then be carried to composter or garbage. An alternative to the drawstring is: two-four handled perforated cut out handle areas, ideally one for each side of the outer impermeable layer but could be two opposite sides. An option proximal to the cut-out handle, on the back/outside of impermeable layer, would be an attachment of impermeable plastic, attached in the middle to the impermeable layer, and shaped as width and length allowing to tie around the four pad edges where the perforated handles are brought together. This again would prevent touching of the soiled portions of the pad, and prevent any spillage of contents, and allow easy transport to dispose of pad. Another embodiment of the absorbent pad would have C-shaped perforations in the corners of the outer non-absorbing portions of the pad edges extending in the corners from the outer perimenter of the pad to engage the drawer retainment flange 3m or the enlarged over-run edge corners 3p of the drawer 3A of the animal litter box 10 or 10A, or alternatively, a taut stretchy outer perimeter of the non-absorbing outer edge of the pad to go over the upper angled over-run edges 3e of the collection drawer, to hold the absorbable pad in position while moving the drawer in or out of the base.
(95) In preferred embodiments, the absorbable pad has multiple layers. The top layer is a liquid permeable sheet, preferably made from bamboo or a wood fiber; the bottom layer is liquid impermeable and made of a plant-based bioplastic that is biodegradable or compostable such as polylactic acid. Between is an absorbent non-woven fluff layer, preferable bamboo or wood fiber, a biodegradable super absorbent polymer (SAP), starch-based SAP that is biodegradable or preferably a compostable SAP. Alternative embodiments include a hydrophilic clumpable cat litter substrate to assist with absorption, retainment of liquid, and neutralization of urine for odor control. There may be a biodegradable substance added for management of odor, or odor neutralization.
(96) The absorbable portion is sized to fit in bottom of drawer, and top permeable and bottom non-permeable layer to continue up the vertical side walls. In each corner there can be two cinch notches for the corner of the permeable/non-permeable portion of the pad to pinch into. Removing the grate with the soiled litter in the litter tray and having the bottom edge of base to direct the litter particulate, allows litter to passively drop into reservoir drawer, making changing litter quick, easy and hygienic, significantly reducing required maintenance. No need to take the whole system apart to clean the box; just empty used litter into reservoir drawer, spray & wipe smooth inner walls and grate with wipeable cleaner, replace grate, replace clean reservoir drawer, and add fresh litter. The reservoir drawer with soiled litter can easily be emptied into a bag or container to be disposed of, or easily be carried to an area to dispose of or be composted. All the cleaning can take place without having to move a dirty litter container with holes or hauling whole system to a cleaning area. Our litter drawer is deep with higher sides, and large bottom surface, allowing the dirty litter to stay in the tray to be easily carried with clean outer surface, and to contain dirty litter, and dispose with ease. Litter drawer is much smaller, lighter and easier to carry than the whole litter container.
(97) When using absorbent pad, the absorbent portion of the pad fits on the inside bottom of the reservoir container. The non-absorbent bottom layer and top layer combine and continue outward beyond the absorbent layer, and angles upward along the reservoir drawer walls, and goes up and over horizontal top edge. In a preferred embodiment the non-absorbent edge continues up all four side walls and has tabs 13e that slide into each cinch notch—2 at each corner, to hold onto pad edge. This edge may or may not have a drawstring/cinch to facilitate removal in a clean and easy way, or may have “C” shaped tabs in each corner. Undo tabs from cinch notch areas in each corner and simply lift each corner of pad edge. If it has a drawstring, each corner drawstring will be pulled, tightening up the whole pad, with all the absorbent portion of pad with liquid contents, locked into a bag made with pad. Another option is to have “C” shaped perforations in the sides of the non-absorbent portion of pad, and use those to lift pad, again keeping absorbent portion of pad contained inside to prevent leaking and to prevent touching the liquid waste. In one embodiment, the pads edge goes laterally over the tray lateral edge and then inferiorly and to follow outside wall. In another embodiment, the widened edge goes over the tray edge, and contains a drawstring or cinch, within a tunnel made by folding over the bottom impermeable edge of the absorbent pad outward and sealing. This prevents the non-absorbent edge, or flaps, of the pad from getting caught and curling up, on the bottom of the lower edge of the side wall as it is being pushed back into the base. Another preferred embodiment of the absorbable pads outer non-absorbent edge would have C-shaped perforations in the corners of the outer non-absorbing portions of the pad extending in the corners from the outer perimeter of the pad to engage the drawer retainment flange 3m or the enlarged over-run edge corners 3p of the drawer 3A of the animal litter box 10 or 10A. Alternatively, the pad could have a taut stretchy outer perimeter of the non-absorbing outer edge of the pad to go over the upper over-run edges 3e of the collection drawer to hold the abosorbable pad in position while moving the drawer in or out of the base.
(98)
(99)
(100) Another possible component to add into the absorbable pad is a bio-based odor neutralizer such as Itaconix® ZINADOR™ 22L, which is a polymeric zinc itaconate complex that is 100% bio-based. It is also possible to add additional ingredients to the absorbent pad, including changing order of layers and numbers of layers.
(101) The absorbent portion 13b of the pad is in the center rectangle see
(102) In a second preferred embodiment, the non-absorbent portion of the absorbent pad 13a, continues out over the drawer over-run flange 3e, and contains a drawstring or cinch see
(103) Because the soiled absorbent pad contains all biodegradable components, urine and pad materials, this pad can be put into a compost bin. Using bio-based materials decreases the environmental impact from a materials side to the end disposal side.
(104) Use of the absorbent pad 13a significantly reduces the maintenance required in keeping an animal litter box clean. The pad 13a captures and holds onto the liquid waste and can decrease the frequency of having to remove the liquid waste, whether through a clumpable litter, or through use with animal litter box 10 or 10A, without using the absorbent pad 13a. The absorbent pad 13a as described above should last up to 5-9 days for one cat, of average weight of 9-10 pounds, which produces an average of ½ cup of urine daily. The absorbent pad 13a holds onto the urine and neutralizes the odor, preventing malodorous odors from being released into the air. The liquid absorbent sheet 13a allows less maintenance with decrease changing of the pad to every 5-9 days for one animal, clean and easy removal and disposal of pad.
(105) The present invention comprises a lightweight ramp with outer base tray and inner ramp insert that attaches to most styles of litter boxes, that cleans animal's paws, that captures litter tracked outside a litter box, that facilitates entering and exiting the litter box for all animals, allows cat scratching on the insert, is easy to use, has a low cost, and keeps animals' preferences in mind.
(106) As shown in the drawings, the present invention comprises a ramp assembly that can include a lightweight bottom base ramp tray with side rails and a back rail, and may have a front flap (if made out of corrugated cardboard), or with an inferior angled projection flap if made of a solid material, that attaches to most styles of litter boxes which would go over the front edge of a litter box, which captures and holds the litter, along with a lightweight rigid insert ramp, which loosens and cleans the animals paws as it walks down the ramp on exiting. The top insert ramp may end prior to the bottom base ramp tray, or can have a tapered end creating a holding area for captured loosened and tracked litter, until ready to put back into the litter box 10 or 10A. The base ramp tray and inner ramp nest and attach to the edge of an animal litter box, to facilitate the ingress and egress from the box for animals of all ages and abilities, including kittens, senior cats, and cats with mobility problems. The ramp is easy for cats, animals and their owners to use, easy to clean, easy to capture and return loose litter back into the box, is low cost, and keeps animal preferences in mind. To return the litter to the litter box, you just lift and pour it back into the litter box.
(107) One preferred embodiment would include the base tray of corrugated cardboard, which could be sprayed with a wax to add liquid resistance, with the front flap adjustable to the varied inside edge of a litter box. By being approximately 3 inches, the lower tray flap is held in place by the upper insert rigid ramp. The upper insert ramp could be corrugated cardboard and nest with the tray. The base tray ramp could also be made from a material such as, but not limited to: wood, bamboo, or plywood, and a top walking surface with a material such as, but not limited to corrugated cardboard, sisal, seagrass, hemp, or jute.
(108) Another preferred embodiment would include the base tray made out of a solid material such as, but not limited to wood, bamboo, compressed paper, plastic or plywood, and bent to an angle of 90 to 125° or in one embodiment approximately a 115° angle, and the nesting ramp made out of corrugated cardboard or a material such as, but not limited to wood, bamboo, plastic or plywood with a top walking surface such as, but not limited to sisal, seagrass, hemp, or jute. If the base tray is made out of material other than cardboard, the front angle flap would measure 90 to 125° or preferably around 115°, with the top ramp being either corrugated, and in that case a rigid angle of 90 to 125° or preferably approximately 115° to nest with the firm tray, or if wood, bamboo, compressed paper plastic or plywood, it would be bent to the same angle/nesting, and the top walking surface could be attached to the top ramp by Velcro, or an adhesive, or by staples or other attachments.
(109) Another embodiment of the outer tray could be a compressed paper product which resists moisture. A light spray of wax could be sprayed on the tray to add moisture resistance to the tray.
(110) Another preferred embodiment would be a ramp that is made out on the same material as the animal litter box described and attaches to the front opening of the wall portion of the animal litter box.
(111) The animal litter box 10 has an alternative embodiment that includes the use of a ramp to capture tracked litter, to clean paws, and to facilitate entering and exiting the animal litter box 10.
(112) From the top inside edge of the vertical side walls 161 moving down, the surface takes a 90° bend inward and another 90° bend downward creating a narrow insert border 162 to meet the bottom 165. Animals tend to track litter and dust out of the litter box. The ramps 160 and 172 are designed to clean the animal's paws, and to loosen and capture any litter and dust. The litter collects at the end of the ramp in the catch space. As demonstrated in
(113) An alternate embodiment of ramp 160 is the same ramp as above, however, the vertical side walls 161 continue straight down from the top edge and meet the bottom 165 at 90° with a small fillet to facilitate easy cleaning, and the side walls 161 become one with the ramp insert reservoir walls. There is no insert border 102 in this second embodiment.
(114)
(115) Another preferred embodiment of the animal litter box 10 and 10A includes ramp 172 shown in
(116) Another example of the ramp 172 is an outer tray 173 made out if a solid material such as, but not limited to wood, bamboo, or plywood, compressed paper, plastic or wood, and bent to an angle of preferably approximately 115°, or a range of 90° to 125°, and the nesting inner ramp 177 could be made out of corrugated cardboard, a material such as but not limited to wood, bamboo, plywood, compressed paper or wood and sisal, seagrass, hemp or jute. If the outer tray 173 is a material other than corrugated, the front angle flap 176 would measure preferably about 115°, with a range of 90° to 125°, and the inner ramp 177 would be bent to the same angle to allow a nesting of the two parts. The top surface of the inner ramp 177 may be attached using Velcro, adhesives, staples, or other. If the outer tray is made of corrugated or compressed paper, it may be sprayed with a light spray of wax to add moisture resistance.