Dehydration system and dehydration method
The dehydration system addresses the issue of increased wastewater treatment load by using a rotating basket with through holes and plate-like members to dehydrate food waste, reducing viscosity and environmental impact.
Patent Information
- Application Number
- JP2024065924
- Authority / Receiving Office
- JP · JP
- Patent Type
- Applications
- Current Assignee / Owner
- Filing Date
- 2024-04-16
- Publication Date
- 2025-06-10
AI Technical Summary
The use of disposers in kitchens leads to increased load on wastewater treatment systems due to the formation of viscous mud-like substances, causing pipe blockages and requiring additional treatment and maintenance, especially with hard substances like eggshells.
A dehydration system comprising a rotating basket with a bottom member and a cylindrical main body member, both featuring numerous through holes, and plate-like members for pressing and dehydrating food waste, reducing moisture content and viscosity.
The dehydration system effectively reduces the environmental load by significantly decreasing the moisture content and viscosity of food waste, preventing pipe blockages and simplifying treatment, while also reducing fuel consumption and carbon dioxide emissions during incineration.
Smart Images

Figure 2025087561000001_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to a dehydration system and a dehydration method.
Background Art
[0002] In daily life, food waste generated by meal preparation and the like is currently discarded and collected as incinerable waste, so-called "burnable waste", and incinerated in an incinerator.
[0003] However, food waste contains a large amount of moisture. When it contains a large amount of moisture, its weight increases accordingly, making it difficult to collect. Also, because it contains moisture, it is not easy to incinerate, and since it consumes fuel accordingly, the amount of carbon dioxide generated increases.
[0004] On the other hand, in newly constructed apartment buildings such as condominiums, disposers are often installed. A disposer is a device that has a crusher installed inside the sink in the kitchen, and food waste is inserted into this crusher and drained while water is flowing.
[0005] For example, the technology related to disposers is described in Non-Patent Document 1 below.
Prior Art Documents
Non-Patent Documents
[0006]
Non-Patent Document 1
Summary of the Invention
Problems to be Solved by the Invention
[0007] However, in the case of a disposer, what should originally be food waste is discharged as drainage, resulting in a problem that the load on treatment ultimately increases. Specifically, when using a disposer, the food waste becomes a highly viscous mud-like substance, and as it separates from the disposer, moisture escapes and its viscosity further increases, causing blockages in the pipes. Therefore, it becomes necessary to provide a wastewater treatment tank for treating the drainage from the disposer, and ultimately, it is important to perform the treatment and its maintenance. In particular, hard substances such as eggshells that are difficult to dissolve in water cannot be completely pulverized and cause damage to drainage pipes and the like. Conversely, there is a problem that the maintenance burden increases.
[0008] Therefore, in view of the above problems, an object of the present invention is to provide a dehydration system and a dehydration method capable of further reducing the environmental load in treating food waste.
Means for Solving the Problems
[0009] A dehydration system according to an aspect of the present invention for solving the above problems is a dehydration system including a rotating basket and a driving device for rotating the rotating basket. The rotating basket includes a bottom member formed with a large number of through holes, a cylindrical main body member having a side wall formed with a large number of through holes covering the periphery of the bottom member, and a plate-like member provided on the bottom member and the main body member.
[0010] Further, in this aspect, although not limited, the plate-like member preferably includes a plate-like member fixed to the main body member.
[0011] Further, in this aspect, although not limited, it is preferable that a large number of through holes are also formed in the plate-like member.
[0012] Further, in this aspect, although not limited, the plate-like member preferably includes a hollow space formed by the bottom member and the main body member being recessed.
[0013] Also, in this aspect, although not necessarily limited, it is preferable that the bottom member, the main body member, and the plate-like member of the rotating basket are integrally formed.
[0014] Also, in this aspect, although not necessarily limited, the size of the plurality of through-holes is preferably in the range of 1 mm or more and 5 mm or less.
[0015] Also, in this aspect, although not necessarily limited, the number of plate-like members is preferably in the range of 3 or more and 5 or less.
[0016] Also, in this aspect, although not necessarily limited, the height of the plate-like member is preferably in the range of 1 cm or more and 3 cm or less.
[0017] Also, in this aspect, although not necessarily limited, the radial length of the plate-like member is preferably in the range of 1 cm or more and 5 cm or less.
[0018] Also, in this aspect, although not necessarily limited, the shape of the plate-like member is preferably a quarter circle, a quarter ellipse, or a trapezoid with rounded corners.
[0019] Also, a dehydration method according to another aspect of the present invention is a dehydration method using a dehydration system including a rotating basket and a drive device for rotating the rotating basket, wherein the rotating basket includes a bottom member formed with a large number of through-holes, a cylindrical main body member having a side wall formed with a large number of through-holes covering the periphery of the bottom member, and plate-like members provided on the bottom member and the main body member, and the object to be dehydrated is inserted into the rotating basket, and the object to be dehydrated is pressed against the plate-like member of the rotating basket for dehydration.
Advantages of the Invention
[0020] As described above, according to the present invention, it is possible to provide a dehydration system and a dehydration method capable of reducing the environmental load more in treating food waste.
Brief Description of the Drawings
[0021]
Figure 1
Figure 2
Figure 3
Figure 4
Figure 5
Figure 6
BEST MODE FOR CARRYING OUT THE INVENTION
[0022] Hereinafter, embodiments of the present invention will be described in detail with reference to the drawings. However, the present invention can be implemented in many different forms and is not limited only to the specific examples shown in the embodiments below.
[0023] FIG. 1 is a diagram showing an overview of a dehydration system (hereinafter referred to as "this system") 1 according to the present embodiment, and FIG. 2 is a partial detailed view thereof. As shown in this figure, this system 1 is a dehydration system including a rotating basket 2 and a driving device 3 for rotating the rotating basket 2. The rotating basket 2 includes a bottom member 21 in which a large number of through holes 211 are formed, a cylindrical body member 22 having a side wall in which a large number of through holes 221 are formed and covering the periphery of the bottom member 21, and a plate-like member 23 provided on the bottom member 21 and the body member 22. Further, a fixing hole 212 used for penetrating and fixing the rotating shaft 32 of the driving device 3 is formed at the center of the bottom member 21 of the rotating basket 2.
[0024] As will be clear from the following description, this system 1 is installed and used in a sink in a household kitchen or the like. By installing it in the sink, the water contained in household food waste can be squeezed out and directly discharged from the drain pipe, while the dehydrated food waste can be taken out and discarded as combustible waste. In particular, there is no dripping of water during this process, and so-called "sliminess" can also be removed. As a result, sufficiently dehydrated food waste can be produced as combustible waste, making it possible to reduce the weight of the waste and the burden during incineration. When using this system, a non-woven garbage bag is inserted into the rotating basket 2, and the food waste is put into it, thereby preventing the scattering of the food waste, making it easier to take out the dehydrated food waste, and allowing the non-woven fabric to be discarded together with the waste.
[0025] In addition, this system 1 is equipped with other necessary components in addition to the above-mentioned rotating basket 2 and drive device 3. For example, it is preferably provided with a housing cover 4 that is arranged around the rotating basket 2 and is used to send the water discharged from the food waste to the drain pipe P. By providing the housing cover 4, the water discharged by the rotating basket 2 can be sent to the drain pipe P without leaking outside.
[0026] In this system 1, the shape and size of the housing cover 4 can be appropriately adjusted according to the shape and size of the rotating basket 2 described later. Similar to the housing cover 4, it is preferably provided with a bottom member 41 and a side wall member 42 that is arranged around the bottom member 41 and around the main body member 22 of the rotating basket 2. In addition, unlike the rotating basket 2, the housing cover 4 has no other holes formed except for the hole formed in the bottom member 41 for passing through the rotating shaft 32 of the drive device 3. Thereby, it can cover the periphery of the rotating basket 2 and send the water discharged from the food waste to the drain pipe P without leaking.
[0027] In addition, the material of the housing cover 4 in this system 1 is not particularly limited. For example, it may be resin or metal. Also, the bottom member 41 and the side wall member 42 may be integrally formed of the same material, or may be combined of different members.
[0028] In addition, in this system 1, it is preferable that the housing cover 4 is further provided with a lid member 43. By providing the lid member 43, even if the water discharged when the rotating basket 2 is rotated comes out above the rotating basket 2, it can be surely retained in the housing cover 4. Of course, it is necessary that the lid member 43 is detachable so that it can be opened when putting in food waste.
[0029] In addition, in this system 1, it is preferable that the lid member 43 serves as a switch. Specifically, it is preferable to provide switch contacts on the side wall member 42 and also on the lid member 43, and by combining the lid member 43 with the side wall member 42 to bring the contacts into contact with each other, the switch of the drive device 3 is turned on and driven.
[0030] As described above, this system 1 has a rotating basket 2. An outline of the rotating basket 2 is shown in FIGS. 3 to 5. As shown in these figures, the rotating basket 2 includes a bottom member 21 in which a large number of through holes 211 are formed, a cylindrical main body member 22 that forms a side wall in which a large number of through holes 221 are formed and covers the periphery of the bottom member 21, and a plate-like member 23 provided on the bottom member 21 and the main body member 22.
[0031] The material of the rotating basket 2 is not particularly limited, and metals, resins, etc. can be used, but it is preferably a metal. This is because by using a metal, it is possible to rotate food waste while stabilizing the shape even during intense rotational movement. Also, when it is a metal, it is preferably a metal resistant to corrosion such as stainless steel so as not to corrode when in contact with water. Also, as described later, the bottom member 21, the main body member 22, and the plate-like member 23 may be made of the same material, or may be a combination of different materials when combined. However, integral formation is most preferable in terms of the bonding strength.
[0032] The bottom member 21 in the rotating basket 2 literally constitutes the bottom of the rotating basket 2. A number of through holes 211 are formed in the bottom member 21 as described above, and water discharged from the food waste can be discharged to the outside of the rotating basket 2 through these numerous through holes 211.
[0033] Also, near the center of the bottom member 21 in the rotating basket 2, as will be described later, the rotating shaft 32 of the drive device 3 is fixed, and the entire rotating basket 2 can be rotated according to the rotation of the rotating shaft 32 of the drive device 3. For this reason, a fixing hole 212 for inserting the rotating shaft 32 is formed near the center of the bottom member 21 of the rotating basket 2, and a screw groove is formed at its tip, and the rotating shaft 32 and the rotating basket 2 can be integrally fixed by a fixing tool such as a nut.
[0034] The shape of the bottom member 21 in the rotating basket 2 is not particularly limited, but since it rotates, it is preferably substantially circular. Here, "substantially" includes a complete state (here, circular shape), but it is substantially impossible to achieve a complete shape (here, circular shape) in terms of manufacturing, and it means including the error. Also, when it is in this substantially circular shape, its size is preferably, for example, 10 cm or more and 20 cm or less in diameter, more preferably in the range of 15 cm or less. By setting it within this range, it becomes possible to match the size of the drain opening of an actual household sink, and at the same time, the food waste is not made too heavy and can be kept at a weight sufficient for dehydration.
[0035] In addition, in the bottom member 21 of the rotating basket 2, the shape of the through-hole 211 is not particularly limited, but is preferably substantially circular, and its size (diameter) is preferably in the range of 1 mm or more and 5 mm or less. By making it circular, there is an effect that food waste is less likely to get caught in this through-hole, and by keeping it within this size range, it is possible to prevent food waste from leaking out of the through-hole. Especially in the case of food waste, since fine things such as seeds of vegetables and fruits and eggshells are generated, by containing them within these ranges, it is possible to prevent pieces of food waste from leaking out into the drain groove.
[0036] In addition, in the bottom member 21 of the rotating basket 2, it is preferable that a large number of through-holes 211 are formed, but from the viewpoint of stably holding food waste and ensuring strength, it is preferably within a certain range. For example, when the entire area of the bottom member 21 is taken as 100%, the area ratio of the through-holes 211 occupying therein is preferably in the range of 10% or more and 50% or less, and more preferably in the range of 20% or more and 40% or less.
[0037] In addition, as described above, the rotating basket 2 is provided with a cylindrical main body member 22 that covers the periphery of the bottom member 21 and has a side wall formed with a large number of through-holes 221. Thereby, it is possible to cover the bottom and the periphery, and even when food waste is put therein and rotated, the food waste is not scattered.
[0038] The shape of the main body member 22 in the rotating basket 2 is defined by the shape of the bottom member 21. For example, when the shape of the bottom member 21 is substantially circular, it becomes a cylindrical shape, and when it becomes substantially square, it becomes a hollow substantially square column shape. Also, in this case, the height of the main body member 22 can be adjusted as appropriate, but if it is too low, food waste will overflow when put in and rotated, while if it is too high, there is a possibility that rotation wobbling etc. will occur, and the bottom member 21 will be too low compared to the sink surface, making it difficult to take out the put-in food waste. Therefore, it is preferable to keep it within an appropriate range. Specifically, for example, it is preferably 10 cm or more and 20 cm or less, and more preferably in the range of 15 cm or less.
[0039] Also, in the main body member 22 of the rotating basket 2, the shape of the through-hole 221 is not particularly limited, but similar to the bottom member 21, it is preferably substantially circular, and its size (diameter) is preferably in the range of 1 mm or more and 5 mm or less. By making it circular, there is an effect that food waste is less likely to get caught in this through-hole, and by keeping it within this size range, it is possible to prevent food waste from leaking out of the through-hole. Especially in the case of food waste, since fine things such as seeds of vegetables and fruits and eggshells are generated, by containing them within these ranges, it is possible to prevent pieces of food waste from leaking into the drain groove.
[0040] Also, in the main body member 22 of the rotating basket 2, it is preferable that a large number of through-holes 221 are formed, but from the viewpoint of stably holding food waste and ensuring strength, it is preferably within a certain range. For example, when the entire area of the main body member 22 is taken as 100%, the area ratio of the through-holes 221 occupying therein is preferably in the range of 10% or more and 50% or less, and more preferably in the range of 20% or more and 40% or less. By setting it to 10% or more, water drainage can be made more efficient, and by setting it to 20% or more, this effect can be made more remarkable. On the other hand, by setting it to 50% or less, there is an advantage that strength can be ensured.
[0041] Also, in the main body member 22 of the rotating basket 2, in the example of this figure, an edge 222 may be provided at the opening, but it is not necessary to provide it. However, by providing the edge 222, it becomes possible to use it as a contact point for stabilizing the rotation. For example, by holding this edge via a bearing or the like (for example, to the housing cover), there is an advantage that it is possible to suppress the vibration of rotation.
[0042] In addition, a plate-like member 23 is provided on the bottom member 21 and the main body member 22 of the rotary basket 2. By providing the plate-like member 23, this part can be caught by food waste, preventing the food waste from idling. Here, the "plate-like member" refers to a member having a wide and thin portion, and as will be described later, it may have a cavity inside. Although the plate-like member 23 is preferably fixed to the bottom member 21 and the main body member 22, it is also possible to be provided only on the bottom member 21 or only on the main body member 22. However, since food waste tends to gather on the outside due to centrifugal force, it is preferably concentrated near the connection portion between the bottom member 21 and the main body member 22. Therefore, it is preferably fixed to both the bottom member 21 and the main body member 22.
[0043] In addition, in the rotary basket 2, the shape of the plate-like member 23 is preferably a substantially quarter circle, a substantially quarter ellipse, or a substantially rounded trapezoid. The meaning of "substantially" is the same as above. By adopting these shapes, a gap can be formed in the central portion, facilitating the discharge of water from the bottom member 21, while being able to reliably push the food waste that is attracted to the side wall side by centrifugal force. An image diagram of the shape of the plate-like member 23 in this case is shown in FIG. 6. In this figure, (A) shows an example of a substantially quarter circle, and (B) shows an example of a substantially rounded trapezoid.
[0044] In addition, in the rotary basket 2, the number of the plate-like members 23 is not limited, but is preferably in the range of 3 or more and 5 or less. By setting this range, it is possible to ensure the balance of the area occupied by the plate-like members 23 with respect to the bottom member 21. Particularly when there are a plurality of them, it is preferably arranged to be rotationally symmetric about the portion of the bottom member 21 where the rotary shaft 32 is connected. By arranging them in this way, there is an effect that the rotation is stable with less fluctuation of the center of gravity even during rotation. The rotary shaft 32 is basically fixed. During use, instead of taking out the rotary basket 2, a non-woven fabric is installed inside the rotary basket 2, food waste is put into this non-woven fabric, and after dehydration, the food waste can be discarded by taking out the non-woven fabric together with the food waste.
[0045] In addition, in the rotating basket 2, the height 233 of the plate-shaped member 23 can be adjusted as appropriate, but it is preferably within the range of 1 cm or more and 3 cm or less. By setting it to 1 cm or more, it is possible to prevent the possibility that the food waste will overcome this when the rotating basket 2 is rotated. On the other hand, by setting it to 3 cm or less, it is possible to prevent the amount of food waste inserted from being inhibited, and there are advantages such as making it easier to put a hand into the rotating basket 2 and making it easier to clean the bottom member 21.
[0046] In addition, in the rotating basket 2, the radial length 234 of the plate-shaped member 23 is preferably within the range of 1 cm or more and 5 cm or less. By setting it to 1 cm or more, when the rotating basket 2 is rotated, the food waste can be sufficiently brought into contact with and pushed and rotated. On the other hand, by setting it to 5 cm or less, the plate-shaped member 23 does not block the surface of the bottom member 21 to deteriorate the drainage, does not make it difficult to take out the food waste, and allows sufficient contact with the bottom member 21 so that the bottom member 21 can be easily cleaned.
[0047] In addition, in the main body member 22 of the rotating basket 2, it is preferable that a large number of through holes 221 are formed, but from the viewpoint of stably holding the food waste and ensuring the strength, it is preferably within a certain range. For example, when the entire area of the main body member 22 is 100%, the area ratio of the through holes 221 occupied therein is preferably within the range of 10% or more and 50% or less, and more preferably within the range of 20% or more and 40% or less.
[0048] In addition, in the rotating basket 2, it is preferable that a large number of through holes 231 are also formed in the plate-shaped member 23. By providing through holes in the plate-shaped member 23 as well, it is possible to prevent the possibility that the water discharged from the food waste remains between the plate-shaped member 23 and the food waste.
[0049] Further, in the rotating basket 2, it is preferable that the plate-like member 23 includes a hollow space 232 formed by the recesses of the bottom member 21 and the main body member 22. In this way, the integrity of the rotating basket 2 can be ensured and sufficient strength can be obtained. Since this hollow space 232 is outside the rotating basket 2, the hollow space 232 is connected through the through-hole, and it becomes possible to more efficiently discharge the water discharged from the food waste.
[0050] As repeatedly described above, in the rotating basket 2, it is preferable that the bottom member 21, the main body member 22, and the plate-like member 23 of the rotating basket 2 are integrally formed. However, as long as the connection between these can be strengthened, it is also possible to make them separate members.
[0051] Also, as described above, the drive device 3 in the present system 1 is for rotating the rotating basket 2. Specifically, it is preferable that the drive device 3 includes a rotating shaft 32, a motor 31 for rotating the rotating shaft 32, and a housing cover for housing these. Further, although not limited, for rotating the rotating basket 2, it is preferable that the extending axis of the rotating shaft 32 is along the vertical axis. Thereby, it becomes possible to make the rotating axis of the rotating basket 2 along the vertical axis.
[0052] Also, in the present system, it is preferable to seal the periphery of the rotating shaft 32 with packing or the like so that the water discharged from the food waste does not enter the motor 31 side along the rotating shaft.
[0053] Also, as is clear from the above description, the present system 1 can be installed in a sink in an ordinary household kitchen, etc. More specifically, the present system 1 is connected to a drain opening formed on the bottom surface of the sink, and by connecting the discharged water to the drain pipe P, dehydration can be performed without being conspicuous. Note that a "sink" is a tank-shaped stand where water can be stored and has a drain opening formed therein. The present system 1 can stably rotate the rotating basket 2 by fixing it to the lower part of this sink. However, in the present system 1, if the vibration by the drive device 3 is transmitted to the sink, it may become an unpleasant noise. Therefore, it may be good to install the drive device 3 on the floor or stand under the sink and separate it from the sink.
[0054] Also, here, a dehydration method using the present system 1 (hereinafter referred to as "this method") will be described. Specifically, this method is a dehydration method using a dehydration system including a rotating basket and a drive device for rotating the rotating basket. The rotating basket includes a bottom member formed with a large number of through holes, a cylindrical main body member having a side wall formed with a large number of through holes covering the periphery of the bottom member, and a plate-like member provided on the bottom member and the main body member. The object to be dehydrated is inserted into the rotating basket, and the object to be dehydrated is pressed against the plate-like member of the rotating basket for dehydration.
[0055] In this method, by pressing the object to be dehydrated against the plate-like member of the rotating basket, when the rotating basket rotates, the food waste inside will be sufficiently dehydrated. In particular, through holes are also formed in the plate-like member, and further, these through holes are connected to the outside of the rotating basket, so that dehydration can be performed more efficiently.
[0056] As described above, according to the present invention, it is possible to provide a dehydration system and a dehydration method capable of reducing the environmental load more in processing food waste. Specifically, by discharging water from the food waste, it becomes easier to incinerate this food waste, the fuel required for combustion can be reduced, and the carbon dioxide emission amount can be significantly reduced.
Industrial Applicability
[0057] The present invention has industrial applicability as a dehydration system and a dehydration method.
Explanation of Signs
[0058] 1 ··· Dehydration system 2 ··· Rotary basket 21 ··· Bottom member 211 ··· Through hole 212 ··· Fixing hole 22 ··· Body member 221 ··· Through hole 23 ··· Plate-like member 231 ··· Through hole 232 ··· Hollow space 3 ··· Driving device 4 ··· Storage cover
Claims
1. A rotating cage, A dehydration system comprising: The rotating cage includes: A bottom member having a large number of through holes formed therein; a cylindrical main body member having a side wall with a number of through holes formed therein and surrounding the bottom member; A plate-shaped member fixed to the bottom member.
2. The dehydration system of claim 1 , wherein the plate member is also fixed to the body member.
3. 2. The dehydration system according to claim 1, wherein the plate-like member also has a large number of through holes formed therein.
4. The dehydration system according to claim 1 , wherein the plate-like member has a hollow space formed by recessing the bottom member and the main body member.
5. 2. The dehydration system of claim 1, wherein the bottom member, the body member and the plate member of the tumbling basket are integrally formed.
6. The dehydration system according to claim 1 , wherein the size of the plurality of through holes is within a range of 1 mm or more and 5 mm or less.
7. The dehydration system according to claim 1 , wherein the number of the plate-like members is within a range of 3 to 5.
8. 2. The dehydration system according to claim 1, wherein the height of the plate-like members is within a range of 1 cm to 3 cm.
9. 2. The dehydration system according to claim 1, wherein the radial length of the plate-like member is within a range of 1 cm to 5 cm.
10. 2. The dehydration system according to claim 1, wherein the shape of the plate-like member is a quadrant, a quarter ellipse, or a trapezoid with rounded corners.
11. A dewatering method using a dewatering system including a rotating basket and a drive device for rotating the rotating basket, the rotating cage includes a bottom member having a large number of through holes formed therein, a cylindrical main body member covering the periphery of the bottom member and having a side wall having a large number of through holes formed therein, and a plate-like member provided on the bottom member and the main body member, A dehydration method in which an object to be dehydrated is inserted into the rotating basket and dehydrated by pressing the object against the plate-like members of the rotating basket.