JP2012061375A - Garbage disposal apparatus and garbage disposal method - Google Patents

Garbage disposal apparatus and garbage disposal method Download PDF

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JP2012061375A
JP2012061375A JP2010205102A JP2010205102A JP2012061375A JP 2012061375 A JP2012061375 A JP 2012061375A JP 2010205102 A JP2010205102 A JP 2010205102A JP 2010205102 A JP2010205102 A JP 2010205102A JP 2012061375 A JP2012061375 A JP 2012061375A
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garbage
rotation
processing tank
rotation direction
rotation processing
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Takashi Obara
孝 小原
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KANKYO KIKI KAIHATSU KK
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KANKYO KIKI KAIHATSU KK
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Abstract

PROBLEM TO BE SOLVED: To provide a garbage disposal apparatus and a garbage disposal method shortening the garbage disposal time and reducing the energy consumption for the shortened disposal time.SOLUTION: The garbage disposal apparatus includes a bottomed cylindrical rotary disposal tank 2, inner face resistance plates 3 attached to an inner periphery of the rotary disposal tank 2, a rotary support means freely rotatably supporting the rotary disposal tank 2 in a rear side downward tilted manner, a drive means driving the rotary disposal tank 2 so as to rotate, crushing ceramic charged into the rotary disposal tank 2, a compressing plate 6 compressing garbage in the rotary disposal tank 2 and crushing the garbage cooperating with the crushing ceramic, and a control means controlling the drive means. By controlling the drive means by the control means, the rotation direction of the rotary disposal tank 2 is sequentially switched between the normal rotation direction enabling the garbage to be compressed with the compressing plate 6 and the reverse rotation direction being unable the garbage to be compressed with the compressing plate 6, and thus the garbage disposal apparatus disposes of the garbage.

Description

本発明は、微生物を担持したセラミックスを用いて生ゴミを処理するための生ゴミ処理装置及び生ゴミ処理方法に関する。   The present invention relates to a garbage disposal apparatus and a garbage disposal method for treating garbage using ceramics supporting microorganisms.

飲食店、給食センター、旅館やホテルの厨房などから排出される生ゴミを処理する生ゴミ処理装置として、固定設置した処理槽の中央部に回転軸を設けて、この回転軸に処理槽の内周面付近まで延びる複数の攪拌羽根を放射状に設け、これら複数の攪拌羽根を回転軸とともに回転させて、処理槽に投入した生ゴミを攪拌しながら、微生物で生ゴミを堆肥に処理するように構成したものが種々提案されている(例えば、特許文献1〜6参照。)。   As a garbage processing device for processing garbage discharged from restaurants, lunch centers, ryokan and hotel kitchens, etc., a rotating shaft is provided in the center of the fixed processing tank. A plurality of stirring blades extending radially to the vicinity of the peripheral surface are provided radially, and the plurality of stirring blades are rotated together with the rotating shaft so that the garbage is processed into compost with microorganisms while stirring the garbage put into the treatment tank. Various configurations have been proposed (see, for example, Patent Documents 1 to 6).

ところが、前述のように攪拌羽根を回転させる場合には、攪拌羽根に異物が絡まって、作動不良が発生したり、攪拌羽根が変形したりするという問題があるとともに、投入した生ゴミが処理槽内においてそのままの形状で転がって、微生物による分解処理が円滑になされず、多くの処理時間を要したり、処理後の残渣が比較的大きな塊状になり、残渣の減容化が十分になされなかったりするという問題があった。   However, in the case where the stirring blade is rotated as described above, there is a problem that foreign matter is entangled with the stirring blade, resulting in malfunctions or deformation of the stirring blade, and the input garbage is treated as a treatment tank. It is rolled in the same shape inside, and the decomposition treatment by microorganisms is not smooth, so it takes a lot of processing time, and the residue after treatment becomes a relatively large lump, and the volume of the residue is not sufficiently reduced. There was a problem.

そこで、本出願人は、前記問題を解決するため、特許文献7記載のように、生ゴミをそのまま投入しても、効率良く短時間で処理でき、しかも残渣の減容化が可能な生ゴミ処理装置として、生ゴミを処理するための有底円筒形の回転処理槽と、前記回転処理槽の内周面に取り付けた内面抵抗板と、前記回転処理槽の底板が下側に位置するように回転中心を水平に対して傾斜させて前記回転処理槽を回転自在に支持する回転支持手段と、前記回転処理槽を回転駆動する駆動手段と、前記回転処理槽に投入される破砕用セラミックスと、前記回転処理槽内において生ゴミを圧縮して、前記破砕用セラミックスとの協働により生ゴミを破砕する圧縮板とを備えた生ゴミ処理装置を提案した。   Therefore, in order to solve the above problem, the present applicant, as described in Patent Document 7, can treat garbage efficiently and in a short time even if the garbage is input as it is, and can reduce the volume of the residue. As a processing device, a bottomed cylindrical rotation processing tank for processing garbage, an internal resistance plate attached to the inner peripheral surface of the rotation processing tank, and a bottom plate of the rotation processing tank are positioned below A rotation support means for rotatably supporting the rotation processing tank with a rotation center inclined with respect to the horizontal, a driving means for rotating the rotation processing tank, and a crushing ceramic put into the rotation processing tank; The garbage processing apparatus provided with the compression board which compresses garbage in the said rotation processing tank and crushes garbage by cooperation with the said ceramic for crushing was proposed.

特開平8−84975号公報JP-A-8-84975 特開平11−277040号公報JP-A-11-277040 特開2000−61429号公報JP 2000-61429 A 特開平11−319778号公報JP 11-319778 A 特開2001−70922号公報JP 2001-70922 A 特開2001−212544号公報JP 2001-212544 A 特開2006−61881号公報JP 2006-61881 A

ところが、前記特許文献7記載の生ゴミ処理装置においても、例えばスーパーから排出される25kgの生ゴミを粉末状の残渣に分解処理するまでには、18時間もの処理時間を要することから、更なる処理時間の短縮が要望されていた。   However, in the garbage processing apparatus described in Patent Document 7, for example, it takes 18 hours to decompose 25 kg of garbage discharged from a supermarket into a powdery residue. There has been a demand for shortening the processing time.

本発明の目的は、生ゴミの処理時間を短縮できるとともに、処理時間を短縮した分だけ消費エネルギーを節減可能な生ゴミ処理装置及び生ゴミ処理方法を提供することである。   An object of the present invention is to provide a raw garbage processing apparatus and a raw garbage processing method that can reduce the processing time of raw garbage and can reduce energy consumption by the amount of reduction of the processing time.

本発明者は、特許文献7記載の生ゴミ処理装置の処理時間を更に短縮すべく鋭意検討した結果、従来は回転処理槽の回転方向を、圧縮板で生ゴミを圧縮可能な正転方向にのみ回転させていたのであるが、正転方向に一定時間回転させた後、逆転方向に回転させると、逆転方向では圧縮板で生ゴミを圧縮不能であるにも関わらず、処理時間を短縮できることを見出して、本発明を完成するに至った。   As a result of intensive studies to further reduce the processing time of the garbage disposal apparatus described in Patent Document 7, the present inventor has conventionally changed the rotation direction of the rotation processing tank to the normal rotation direction in which the garbage can be compressed by the compression plate. However, when rotating in the forward direction for a certain period of time and then rotating in the reverse direction, the processing time can be reduced in spite of the fact that the garbage cannot be compressed by the compression plate in the reverse direction. As a result, the present invention has been completed.

本発明に係る生ゴミ処理装置は、生ゴミを処理するための有底円筒形の回転処理槽と、前記回転処理槽の内周面に取り付けた内面抵抗板と、前記回転処理槽の底板が下側に位置するように回転中心を水平に対して傾斜させて前記回転処理槽を回転自在に支持する回転支持手段と、前記回転処理槽を回転駆動する駆動手段と、前記回転処理槽に投入される破砕用セラミックスと、前記回転処理槽内において生ゴミを圧縮して、前記破砕用セラミックスとの協働により生ゴミを破砕する圧縮板と、前記駆動手段を制御する制御手段とを備え、前記制御手段により前記駆動手段を制御して、前記回転処理槽の回転方向を、前記圧縮板で生ゴミを圧縮可能な正転方向と、前記圧縮板で生ゴミを圧縮不能な逆転方向とに順次切換えて生ゴミを処理するものである。   The garbage processing apparatus according to the present invention includes a bottomed cylindrical rotation processing tank for processing garbage, an inner surface resistance plate attached to an inner peripheral surface of the rotation processing tank, and a bottom plate of the rotation processing tank. Rotation support means for rotatably supporting the rotation processing tank by tilting the rotation center with respect to the horizontal so as to be positioned on the lower side, driving means for rotationally driving the rotation processing tank, and charging into the rotation processing tank A crushing ceramic, a compression plate for compressing the garbage in the rotation processing tank, and crushing the garbage in cooperation with the crushing ceramic, and a control means for controlling the driving means, The driving means is controlled by the control means so that the rotation direction of the rotation processing tank is a normal rotation direction in which the garbage can be compressed by the compression plate and a reverse rotation direction in which the garbage cannot be compressed by the compression plate. We change garbage sequentially and process garbage It is.

この生ゴミ処理装置では、水平に対して傾斜する回転中心回りに回転処理槽を回転させるので、回転処理槽に投入した生ゴミに空気を巻き込みながら、該生ゴミを効率よく混合でき、微生物の活性を高めて、生ゴミを効率良く分解処理できる。また、生ゴミの一部は、回転処理槽の内周面と圧縮板間へ送り込まれて順次圧縮され、このときに破砕用セラミックスが生ゴミに強く押し付けられて、生ゴミが細かく破砕される。そして、この破砕により生ゴミの表面積を増やして、微生物による生ゴミの処理時間を大幅に短縮できるとともに、生ゴミを粉末状の残渣にまで容易に分解処理でき、大幅な残渣の減容化が可能となる。しかも、制御手段により回転処理槽の回転方向を切換えて、圧縮板で生ゴミを圧縮可能な正転方向だけでなく、圧縮板で生ゴミを圧縮不能な逆転方向へも、回転処理槽を回転させるので、生ゴミの処理時間をより一層短縮できる。生ゴミの処理時間を短縮できる仕組みは明確ではないが、逆転方向に回転させることで、回転処理槽内の生ゴミが一様に攪拌されて、正転方向への回転だけでは、圧縮板により圧縮されなかった生ゴミが、逆転方向に回転させることで、次回の正転方向への回転時に圧縮板で圧縮されて、破砕されることによるものと推定できる。   In this garbage disposal apparatus, the rotation processing tank is rotated around the rotation center inclined with respect to the horizontal, so that the garbage can be mixed efficiently while entraining air in the garbage thrown into the rotation treatment tank. The activity can be increased and the garbage can be decomposed efficiently. Also, a part of the garbage is sent between the inner peripheral surface of the rotation processing tank and the compression plate and sequentially compressed. At this time, the crushing ceramic is strongly pressed against the garbage and the garbage is finely crushed. . This crushing can increase the surface area of garbage and greatly reduce the processing time of garbage by microorganisms, and can easily decompose garbage into a powdery residue, greatly reducing the volume of the residue. It becomes possible. Moreover, the rotation direction of the rotation processing tank is switched by the control means, and the rotation processing tank is rotated not only in the normal rotation direction in which the garbage can be compressed by the compression plate but also in the reverse rotation direction in which the garbage cannot be compressed by the compression plate. Therefore, the processing time of garbage can be further shortened. The mechanism that can shorten the processing time of garbage is not clear, but by rotating in the reverse direction, the garbage in the rotating treatment tank is uniformly stirred, and only the rotation in the forward direction causes the compression plate to It can be estimated that the uncompressed raw garbage is rotated in the reverse rotation direction, and is compressed by the compression plate at the next rotation in the normal rotation direction and is crushed.

ここで、前記制御手段では、前記回転処理槽の回転方向を正転方向と逆転方向とにそれぞれ設定時間毎に切換えることが好ましい実施の形態である。このように構成することで、回転処理槽の正転方向への回転時には、圧縮板により生ゴミを圧縮し、逆転方向への回転時には、圧縮板により回転処理槽内の生ゴミを一様に攪拌することで、生ゴミ全体を一様に破砕して、微生物による生ゴミの分解処理を効率良く行うことが可能となる。   Here, in the said control means, it is preferable embodiment to switch the rotation direction of the said rotation processing tank to a normal rotation direction and a reverse rotation direction for every set time, respectively. By configuring in this way, when the rotation processing tank rotates in the forward rotation direction, the garbage is compressed by the compression plate, and when rotating in the reverse rotation direction, the garbage in the rotation processing tank is uniformly distributed by the compression plate. By stirring, the whole garbage can be uniformly crushed and the garbage can be efficiently decomposed by microorganisms.

前記制御手段では、前記回転処理槽を正転方向に2時間回転させた後、逆転方向に1時間回転させる回転処理を交互に行うことが好ましい。このように構成することで、生ゴミを最も効率良く分解処理することができる。   In the control means, it is preferable to alternately perform a rotation process in which the rotation processing tank is rotated in the forward rotation direction for 2 hours and then rotated in the reverse rotation direction for 1 hour. By comprising in this way, garbage can be decomposed | disassembled most efficiently.

前記回転処理槽の回転中心が水平に対して5度乃至25度傾斜するように、前記回転支持手段により前記回転処理槽を回転自在に支持することができる。このように構成することで、回転処理槽に投入した生ゴミに空気を巻き込みながら、該生ゴミを効率よく混合でき、微生物の活性を高めて、生ゴミを効率良く分解処理できる。   The rotation processing means can be rotatably supported by the rotation support means so that the rotation center of the rotation processing tank is inclined by 5 degrees to 25 degrees with respect to the horizontal. By comprising in this way, the said garbage can be mixed efficiently, entraining air in the garbage thrown into the rotation processing tank, the activity of microorganisms can be improved, and a garbage can be decomposed | disassembled efficiently.

本発明に係る生ゴミ処理方法は、水平に対して回転中心を傾斜させて支持した回転処理槽内に、破砕用セラミックスと生ゴミとを投入し、前記回転処理槽を回転させながら、前記回転処理槽内において圧縮板により生ゴミを圧縮して、前記圧縮板と前記破砕用セラミックスとの協働により生ゴミを破砕しながら生ゴミを処理する生ゴミ処理方法において、前記回転処理槽の回転方向を、前記圧縮板で生ゴミを圧縮可能な正転方向と、前記圧縮板で生ゴミを圧縮不能な逆転方向とに順次切換えて生ゴミを処理するものである。この生ゴミ処理方法では、前記生ゴミ処理装置と同様の作用効果が得られる。   In the garbage disposal method according to the present invention, the crushing ceramics and garbage are put into a rotation processing tank supported by tilting the rotation center with respect to the horizontal, and the rotation processing tank is rotated while rotating the rotation processing tank. In a garbage processing method of compressing garbage in a treatment tank by a compression plate and processing the garbage while crushing the garbage in cooperation with the compression plate and the crushing ceramic, the rotation of the rotating treatment tank The garbage is processed by sequentially switching the direction between a normal rotation direction in which the garbage can be compressed by the compression plate and a reverse rotation direction in which the garbage cannot be compressed by the compression plate. In this garbage disposal method, the same effect as that of the garbage disposal apparatus can be obtained.

ここで、前記回転処理槽の回転方向を正転方向と逆転方向とにそれぞれ設定時間毎に切換えて生ゴミを処理すること、前記回転処理槽を正転方向に2時間回転させた後、逆転方向に1時間回転させる回転処理を交互に行ってゴミを処理すること、などが好ましい実施の形態である。   Here, the rotation direction of the rotation processing tank is switched between the normal rotation direction and the reverse rotation direction at each set time to treat garbage, and after the rotation processing tank is rotated in the normal rotation direction for 2 hours, the rotation is reversed. It is a preferred embodiment to alternately handle the rotation processing for one hour in the direction to dispose of dust.

本発明に係る生ゴミ処理装置及び生ゴミ処理方法によれば、水平に対して傾斜する回転中心回りに回転処理槽を回転させるので、回転処理槽に投入した生ゴミに空気を巻き込みながら、該生ゴミを効率よく混合でき、微生物の活性を高めて、生ゴミを効率良く分解処理できる。また、生ゴミの一部は、回転処理槽の内周面と圧縮板間へ送り込まれて順次圧縮され、このときに破砕用セラミックスが生ゴミに強く押し付けられて、生ゴミが細かく破砕される。そして、この破砕により生ゴミの表面積を増やして、微生物による生ゴミの処理時間を大幅に短縮できるとともに、生ゴミを粉末状の残渣にまで容易に分解処理でき、大幅な残渣の減容化が可能となる。しかも、制御手段により回転処理槽の回転方向を切換えて、圧縮板で生ゴミを圧縮可能な正転方向だけでなく、圧縮板で生ゴミを圧縮不能な逆転方向へも、回転処理槽を回転させるので、生ゴミの処理時間をより一層短縮できる。   According to the garbage processing apparatus and the garbage processing method according to the present invention, since the rotation processing tank is rotated around the rotation center inclined with respect to the horizontal, the air is entrained in the garbage introduced into the rotation processing tank. Garbage can be mixed efficiently, the activity of microorganisms can be increased, and garbage can be decomposed efficiently. Also, a part of the garbage is sent between the inner peripheral surface of the rotation processing tank and the compression plate and sequentially compressed. At this time, the crushing ceramic is strongly pressed against the garbage and the garbage is finely crushed. . This crushing can increase the surface area of garbage and greatly reduce the processing time of garbage by microorganisms, and can easily decompose garbage into a powdery residue, greatly reducing the volume of the residue. It becomes possible. Moreover, the rotation direction of the rotation processing tank is switched by the control means, and the rotation processing tank is rotated not only in the normal rotation direction in which the garbage can be compressed by the compression plate but also in the reverse rotation direction in which the garbage cannot be compressed by the compression plate. Therefore, the processing time of garbage can be further shortened.

前面カバーを取り外した状態での生ゴミ処理装置の正面図Front view of the garbage disposal device with the front cover removed 側面カバーを取り外した状態での生ゴミ処理装置の側面図Side view of the garbage disposal device with the side cover removed 回転処理槽の断面図Cross section of rotation processing tank 回転処理槽の斜視図Perspective view of rotation processing tank 回転処理槽と圧縮板と補強板の分解斜視図Exploded perspective view of rotation processing tank, compression plate and reinforcement plate (a)は図5のa−a線断面図、(b)が図5のb−b線断面図(A) is the sectional view on the aa line of FIG. 5, (b) is the sectional view on the bb line of FIG.

以下、本発明を実施するための形態について、図面を参照しながら説明する。
図1〜図5に示すように、生ゴミ処理装置1は、生ゴミを処理するための有底円筒形の回転処理槽2と、回転処理槽2の内周面に取り付けた内面抵抗板3と、回転処理槽2の後面板(底板)12が下側に位置するように回転中心Cを水平面Pに対して後方下がりに傾斜させて回転処理槽2を回転自在に支持する回転支持手段4と、回転処理槽2を回転駆動する駆動手段5と、回転処理槽2に投入される破砕用セラミックスと、回転処理槽2内において生ゴミを圧縮して、破砕用セラミックスとの協働により生ゴミを破砕する圧縮板6と、駆動手段5を制御する制御手段7とを備え、制御手段7により駆動手段5を制御して、回転処理槽2の回転方向を、圧縮板6で生ゴミを圧縮可能な正転方向と、圧縮板6で生ゴミを圧縮不能な逆転方向とに順次切換えて生ゴミを処理するものである。
Hereinafter, embodiments for carrying out the present invention will be described with reference to the drawings.
As shown in FIGS. 1 to 5, the garbage processing apparatus 1 includes a bottomed cylindrical rotation processing tank 2 for processing garbage, and an inner surface resistance plate 3 attached to the inner peripheral surface of the rotation processing tank 2. And a rotation support means 4 that rotatably supports the rotation processing tank 2 by inclining the rotation center C downward with respect to the horizontal plane P so that the rear surface plate (bottom plate) 12 of the rotation processing tank 2 is positioned on the lower side. And a driving means 5 for rotationally driving the rotation processing tank 2, crushing ceramics put into the rotation processing tank 2, and garbage in the rotation processing tank 2 are compressed to produce raw materials in cooperation with the crushing ceramics. A compression plate 6 for crushing garbage and a control means 7 for controlling the drive means 5 are provided. The drive means 5 is controlled by the control means 7, and the rotation direction of the rotation processing tank 2 is changed so that the garbage is collected by the compression plate 6. A normal rotation direction that can be compressed, and a reverse rotation direction that makes it impossible to compress garbage with the compression plate 6. It is intended to process the next switched garbage.

回転処理槽2内には、生ゴミの分解能力を有する菌体を担持した菌床が、生ゴミ処理に先立って作製される。具体的には、生ゴミの分解能力を有する菌株の培養液を、ヒノキチップ、硬質多孔質セラミックス、ヒドロキシアパタイトなどに吸着させ、これらを回転処理槽2に投入して菌床を作製することになる。硬質多孔質セラミックスとしては、株式会社ミヤオカンパニーリミテッド製のRT及びGCを、ヒドロキシアパタイトとしては、株式会社ミヤオカンパニーリミテッド製の製品を例示することができる。また、生ゴミ及び夾雑物を破砕するために、超硬質セラミックスからなる破砕用セラミックスを回転処理槽2に投入するが、破砕用セラミックスとしては株式会社ミヤオカンパニーリミテッド製のアルミクロン及びアルミナ焼結体などを採用できる。   In the rotation processing tank 2, a microbial bed carrying microbial cells capable of decomposing garbage is prepared prior to the garbage treatment. Specifically, a culture solution of a strain having the ability to decompose garbage is adsorbed on cypress chips, hard porous ceramics, hydroxyapatite, etc., and these are put into the rotation processing tank 2 to produce a fungus bed. Become. Examples of hard porous ceramics include RT and GC manufactured by Miyao Company Limited, and examples of hydroxyapatite include products manufactured by Miyao Company Limited. Moreover, in order to crush raw garbage and foreign substances, crushing ceramics made of ultra-hard ceramics are put into the rotary processing tank 2, and crushing ceramics are Almicron and alumina sintered bodies manufactured by Miyao Company Limited. Etc. can be adopted.

回転処理槽2は、円筒状の胴体部10と、胴体部10の前端部に固定した円板状の前面板11と、胴体部10の後端部に固定した円板状の後面板12とを有し、前面板11の中央部に生ゴミ投入用の開口部13を形成したものである。回転処理槽2は、その回転中心Cが水平面Pに対して傾斜角度θだけ後方下がりに傾斜するように、回転支持手段4に回転自在に支持されている。傾斜角度θは、回転処理槽2の大きさにもよるが、回転処理槽2に投入した生ゴミが、回転処理槽2の回転により、空気を巻き込みながら効率よく混合されるように、例えばθ=5度〜25度に設定されている。   The rotation processing tank 2 includes a cylindrical body 10, a disk-shaped front plate 11 fixed to the front end of the body 10, and a disk-shaped rear plate 12 fixed to the rear end of the body 10. , And an opening 13 for throwing in garbage is formed at the center of the front plate 11. The rotation processing tank 2 is rotatably supported by the rotation support means 4 so that the rotation center C is inclined backward and downward with respect to the horizontal plane P by an inclination angle θ. Although the inclination angle θ depends on the size of the rotation processing tank 2, for example, θ can be used so that the raw garbage thrown into the rotation processing tank 2 is efficiently mixed while entraining air by the rotation of the rotation processing tank 2. = 5 degrees to 25 degrees.

図5、図6に示すように、後面板12と胴体部10とは円周方向に間隔をあけて溶接され、溶接部14では後面板12と胴体部10とは液密状に接続されるが、非溶接部15では後面板12と胴体部10間には回転処理槽2内から外部へ通じる隙間16が形成されている。この隙間16は、回転処理槽2内に投入される生ゴミや菌床、破砕用セラミックスや生ゴミの分解処理後の残渣などが通過しない微細な通路幅の隙間で構成され、回転処理槽2に投入された生ゴミに含まれる水分や油分のみが、傾斜状に配置された回転処理槽2の後端部の下部から隙間16を通じて、生ゴミ処理装置1の下部に配置した残渣受け箱17に排出されるように構成されている。なお、隙間16に代えて、後面板12や胴体部10にスリットや孔を形成して、水分や油分のみを排出できるように構成することも可能である。   As shown in FIGS. 5 and 6, the rear plate 12 and the body portion 10 are welded at intervals in the circumferential direction, and at the welded portion 14, the rear plate 12 and the body portion 10 are connected in a liquid-tight manner. However, in the non-welded portion 15, a gap 16 is formed between the rear plate 12 and the body portion 10 so as to communicate from the inside of the rotation processing tank 2 to the outside. The gap 16 is composed of a gap with a fine passage width through which garbage, fungus bed, ceramics for crushing, residues after decomposition of garbage, etc., which are put into the rotation processing tank 2 do not pass. Only the moisture and oil contained in the garbage input to the garbage are left in the bottom of the garbage processing apparatus 1 through the gap 16 from the lower end of the rear end of the rotation processing tank 2 arranged in an inclined manner. It is configured to be discharged. Instead of the gap 16, it is possible to form a slit or hole in the rear plate 12 or the body portion 10 so that only moisture and oil can be discharged.

回転処理槽2は、生ゴミ処理装置1の処理能力などにより、後面板12の直径D、深さH、後面板12の直径Dと深さHとの比率、前面板11の幅L、傾斜角度θなどが異なってくる。1日当たりに処理可能な生ゴミの処理量が10kg乃至50kgの場合には、後面板12の直径Dは450mm乃至750mm、深さHは200mm乃至600mm、後面板12の直径Dと深さHとの比率は1:0.3乃至1:0.8、前面板11の幅Lは200mm乃至450mm、傾斜角度θは5度乃至25度に設定することが好ましい。   The rotation processing tank 2 has a diameter D and a depth H of the rear plate 12, a ratio of the diameter D and the depth H of the rear plate 12, a width L and an inclination of the front plate 11 depending on the processing capacity of the garbage processing apparatus 1. The angle θ is different. When the amount of garbage that can be processed per day is 10 kg to 50 kg, the diameter D of the rear plate 12 is 450 mm to 750 mm, the depth H is 200 mm to 600 mm, and the diameter D and depth H of the rear plate 12 are Is preferably set to 1: 0.3 to 1: 0.8, the width L of the front plate 11 is set to 200 mm to 450 mm, and the inclination angle θ is set to 5 degrees to 25 degrees.

回転支持手段4について説明すると、生ゴミ処理装置1の下部には支持フレーム20が後方下がりの傾斜状に設けられ、支持フレーム20の前部には前後方向に延びる1対の支持軸21が左右に間隔をあけて設けられ、両支持軸21の前後両端部には支持ローラ22が回転自在に設けられ、回転処理槽2は、その前面板11及び後面板12の外周部が左右に間隔をあけて配置された左右1対の支持ローラ22によりそれぞれ下側から受け止められて、回転自在に支持されている。   The rotation support means 4 will be described. A support frame 20 is provided at a lower portion of the garbage processing apparatus 1 in a downwardly inclined manner, and a pair of support shafts 21 extending in the front-rear direction are provided on the front portion of the support frame 20 on the left and right sides. The support rollers 22 are rotatably provided at both front and rear ends of both support shafts 21, and the rotation processing tank 2 has an outer peripheral portion of the front plate 11 and the rear plate 12 spaced from side to side. It is received from the lower side by a pair of left and right support rollers 22 that are spaced apart and is rotatably supported.

支持フレーム20の後部には、回転処理槽2を回転するとともに、回転処理槽2の後方への移動を規制する駆動手段5が設けられている。駆動手段5について説明すると、回転処理槽2の後面板12の中央部には後方へ突出する軸部材23が設けられ、支持フレーム20の後部には減速機24及びモータ25が設置され、減速機24及びモータ25により軸部材23を減速回転することで、回転処理槽2を減速回転できるように構成されている。また、軸部材23の後方への移動が減速機24を介して規制されることで、回転処理槽2の後方への移動が規制されている。なお、回転処理槽2を回転自在に支持する手段及び回転処理槽2を回転する手段としては、上記以外の任意の構成のものを採用することが可能である。   At the rear of the support frame 20, there is provided a driving means 5 that rotates the rotation processing tank 2 and restricts the rearward movement of the rotation processing tank 2. The driving means 5 will be described. A shaft member 23 protruding rearward is provided at the center of the rear plate 12 of the rotation processing tank 2, and a speed reducer 24 and a motor 25 are installed at the rear of the support frame 20. The rotation processing tank 2 can be rotated at a reduced speed by rotating the shaft member 23 at a reduced speed by the motor 24 and the motor 25. Further, the backward movement of the shaft member 23 is restricted via the speed reducer 24, whereby the backward movement of the rotation processing tank 2 is restricted. In addition, as a means to support the rotation processing tank 2 rotatably, and a means to rotate the rotation processing tank 2, the thing of arbitrary structures other than the above is employable.

回転処理槽2の内周面には内面抵抗板3が周方向に一定間隔おきに固定されている。内面抵抗板3は、回転処理槽2の回転時に、回転処理槽2の下部側に配置される生ゴミ及び破砕用セラミックスを、上側へ掻き起こして移動させることで、生ゴミ及び破砕用セラミックスを効率良く一様に混合するためのものである。具体的には、厚さが2mm乃至5mm、長さが回転処理槽2の深さHの3/4乃至4/4である内面抵抗板3が周方向に一定間隔おきに4箇所乃至12箇所取り付けられている。   An inner resistance plate 3 is fixed to the inner peripheral surface of the rotation processing tank 2 at regular intervals in the circumferential direction. The internal resistance plate 3 causes the garbage and crushing ceramics disposed on the lower side of the rotation processing tank 2 to move upward by scraping and moving the garbage and crushing ceramics when the rotation processing tank 2 rotates. This is for efficient and uniform mixing. Specifically, the internal resistance plate 3 having a thickness of 2 to 5 mm and a length of 3/4 to 4/4 of the depth H of the rotation processing tank 2 is 4 to 12 at regular intervals in the circumferential direction. It is attached.

回転処理槽2の前側には前部気密保持板30が設けられ、回転処理槽2の上側には上部気密保持板31が設けられ、生ゴミ処理装置1の内部は、両気密保持板30,31により、前部空間32と後部空間33と上部空間34とに区画されている。前記回転処理槽2と回転支持手段4と駆動手段5とは後部空間33に配置されている。   A front airtight holding plate 30 is provided on the front side of the rotation processing tank 2, an upper airtight holding plate 31 is provided on the upper side of the rotation processing tank 2, and the inside of the garbage processing apparatus 1 includes both airtight holding plates 30, 31 divides the front space 32, the rear space 33, and the upper space 34. The rotation processing tank 2, the rotation support means 4, and the drive means 5 are disposed in the rear space 33.

生ゴミ処理装置1の外板の前面には生ゴミ投入口40が形成されるとともに、生ゴミ投入口40を開閉する開閉扉41が開閉自在に設けられている。前部気密保持板30には回転処理槽2の開口部13に対面させて保持板開口部42が形成され、前部気密保持板30における保持板開口部42の下側には生ゴミ投入口40側へ向けて前方上がりの傾斜状に延びるシュート43が設けられ、生ゴミ投入口40から投入された生ゴミは、シュート43により案内されて回転処理槽2内へ投入されることになる。   A garbage input port 40 is formed on the front surface of the outer plate of the garbage processing apparatus 1, and an open / close door 41 for opening and closing the garbage input port 40 is provided to be openable and closable. A holding plate opening 42 is formed in the front airtight holding plate 30 so as to face the opening 13 of the rotation processing tank 2, and a garbage input port is provided below the holding plate opening 42 in the front airtight holding plate 30. A chute 43 that extends in an upwardly inclined manner toward the side 40 is provided, and the garbage introduced from the garbage input port 40 is guided by the chute 43 and introduced into the rotation processing tank 2.

前部気密保持板30の前側には補強板44が固定され、補強板44の左右方向の中央部には切欠部45が保持板開口部42に対応させて形成されている。補強板44には保持板開口部42及び回転処理槽2の開口部13を通って回転処理槽2内に配置される半円板状の支持板46が3つのスペーサ部材47を介して固定され、支持板46には回転処理槽2内を前面板11に沿って左側へ略水平に延びる支持腕48が設けられ、支持腕48の端部には圧縮板6が取り付けられている。圧縮板6は、厚さが6mm乃至15mmで、長さが回転処理槽2の深さHの1/2乃至3/4の板状部材で構成され、回転処理槽2の回転中心Cより傾斜角度α=5度乃至20度だけ下部方向へ向けて傾斜状に支持腕48に取り付けられている。このような圧縮板6を設けることで、生ゴミを効率的に破砕できるとともに、投入された生ゴミ中に、ビニル、プラスチックトレイ、発泡スチロールの断片、割り箸などが少量混在していても、それらを破砕できる。   A reinforcing plate 44 is fixed to the front side of the front hermetic holding plate 30, and a notch 45 is formed at the center in the left-right direction of the reinforcing plate 44 so as to correspond to the holding plate opening 42. A semicircular support plate 46 disposed in the rotation processing tank 2 through the holding plate opening 42 and the opening 13 of the rotation processing tank 2 is fixed to the reinforcing plate 44 via three spacer members 47. The support plate 46 is provided with a support arm 48 extending substantially horizontally to the left along the front plate 11 in the rotation processing tank 2, and the compression plate 6 is attached to the end of the support arm 48. The compression plate 6 is composed of a plate member having a thickness of 6 mm to 15 mm and a length of 1/2 to 3/4 of the depth H of the rotation processing tank 2, and is inclined from the rotation center C of the rotation processing tank 2. It is attached to the support arm 48 so as to be inclined downward at an angle α = 5 to 20 degrees. By providing such a compression plate 6, the garbage can be efficiently crushed, and even if a small amount of vinyl, plastic tray, foamed styrene fragments, disposable chopsticks, etc. are mixed in the input garbage, Can be crushed.

生ゴミ処理装置1の後部には吸気口50が形成され、吸気口50には前部気密保持板30の前側まで延びてシュート43へ向けて開口する送風ダクト51が形成されている。送風ダクト51の途中部には送風ファン52と加熱手段53とが上流側から順番に設けられ、吸気口50から送風ダクト51内に導入された外気は、加熱手段53により加熱された後、送風ダクト51からシュート43に向けて放出され、シュート43により案内されて回転処理槽2内へ供給される。このように、送風ダクト51から回転処理槽2内へ温風を供給することで、回転処理槽2内の雰囲気温度を菌体の活性が高くなる40℃前後に維持して、菌体による生ゴミの処理速度を高めるように構成されている。なお、送風ダクト51の端部を回転処理槽2内に挿入して、送風ダクト51から回転処理槽2内へ直接的に外気を導入することも可能である。   An air inlet 50 is formed at the rear of the garbage disposal apparatus 1, and an air duct 51 that extends to the front side of the front airtight holding plate 30 and opens toward the chute 43 is formed at the air inlet 50. A blower fan 52 and a heating unit 53 are provided in order from the upstream side in the middle of the blower duct 51, and the outside air introduced into the blower duct 51 from the intake port 50 is heated by the heating unit 53 and then blown. It is discharged from the duct 51 toward the chute 43, guided by the chute 43, and supplied into the rotation processing tank 2. In this way, by supplying warm air from the air duct 51 into the rotation processing tank 2, the atmosphere temperature in the rotation processing tank 2 is maintained at around 40 ° C. at which the activity of the fungus body becomes high. It is configured to increase the garbage processing speed. In addition, it is also possible to introduce the outside air directly from the air duct 51 into the rotation processing tank 2 by inserting the end of the air duct 51 into the rotation processing tank 2.

本生ゴミ処理装置1では、生ゴミを破砕しながら菌体で分解処理するので、生ゴミは粉末状の残渣にまで分解処理されることになり、分解処理された後の残渣は送風ダクト51から供給される温風により比重選別されるように構成されている。つまり、分解処理の完了していない生ゴミや菌床や破砕用セラミックスなどは、回転処理槽2内に残留した状態となるが、分解処理が完了した後の粉末状の残渣は、図2に矢印Xで示すように、送風ダクト51から供給される温風により空気輸送されて、回転処理槽2から前部空間32内へ排出され、生ゴミ処理装置1の下部に配置した残渣受け箱17に落下して、残渣受け箱17に収納される。このように、分解処理後の残渣を回転処理槽2から残渣受け箱17へ自動的に空気輸送できるので、回転処理槽2からの残渣の排出作業を大幅に軽減できる。   In the present garbage disposal apparatus 1, the garbage is decomposed by the cells while crushing the garbage, so that the garbage is decomposed to a powdery residue, and the residue after the decomposition treatment is the air duct 51. The specific gravity is selected by the hot air supplied from. In other words, garbage, fungus beds, crushing ceramics, etc. that have not been decomposed remain in the rotary treatment tank 2, but the powdery residue after the decomposition is completed is indicated by an arrow in FIG. As indicated by X, air is transported by the hot air supplied from the air duct 51, discharged from the rotary processing tank 2 into the front space 32, and placed in the residue receiving box 17 disposed in the lower part of the garbage processing apparatus 1. It falls and is stored in the residue receiving box 17. Thus, since the residue after the decomposition treatment can be automatically pneumatically transported from the rotation processing tank 2 to the residue receiving box 17, the operation of discharging the residue from the rotation processing tank 2 can be greatly reduced.

上部空間34内にはフィルタ54及び脱臭装置55と排気ファン56とが設けられ、前部空間32内の空気は、図2に矢印Yで示すように、前部空間32からフィルタ54へ供給されて、空気中に浮遊する微細な残渣が除去された後、脱臭装置55を通って脱臭され、その後排気口57から外部へ排出される。フィルタ54としては、不織布などを用いたフィルタを採用することもできるし、サイクロン方式のフィルタを用いることもできる。脱臭装置55としては、吸着式の活性炭、触媒型の脱臭剤などを備えたものを用いることができるが、脱臭装置55としてオゾン発生機を設けて、オゾンにより臭気を分解することもできる。   A filter 54, a deodorizing device 55, and an exhaust fan 56 are provided in the upper space 34, and the air in the front space 32 is supplied from the front space 32 to the filter 54 as indicated by an arrow Y in FIG. Then, after the fine residue floating in the air is removed, it is deodorized through the deodorizing device 55 and then discharged from the exhaust port 57 to the outside. As the filter 54, a filter using a nonwoven fabric or the like can be adopted, and a cyclone type filter can also be used. As the deodorizing device 55, an apparatus equipped with adsorption-type activated carbon, a catalyst-type deodorizing agent, or the like can be used. However, an ozone generator can be provided as the deodorizing device 55 to decompose the odor with ozone.

生ゴミ処理装置1の制御手段7では、送風ファン52と排気ファン56と加熱手段53の制御に加えて、モータ25の回転方向を設定時間毎に切換えて、回転処理槽2の回転方向を、圧縮板6で生ゴミを圧縮可能な正転方向Aだけでなく、圧縮板6で生ゴミを圧縮不能な逆転方向Bへも回転させ、正転と逆転とを交互に行うことによって、生ゴミの処理時間を短縮できるように構成されている。正転時間と逆転時間とは任意に設定できるが、正転時間を逆転時間の1〜3倍、好ましくは1.5〜2.5倍に設定すると、生ゴミの処理時間を短縮できるので好ましい。具体的には、2時間正転させた後、1時間逆転させる処理を繰り返し行ったり、4時間正転させた後、2時間逆回転させる処理を繰り返し行うことになる。ただし、投入する生ゴミの特性や、生ゴミ処理装置1での生ゴミの処理状況等に応じて、正転時間と逆転時間とを設定できるように構成することも可能である。   In the control means 7 of the garbage processing apparatus 1, in addition to the control of the blower fan 52, the exhaust fan 56 and the heating means 53, the rotation direction of the motor 25 is switched every set time to change the rotation direction of the rotation treatment tank 2. By rotating not only the normal rotation direction A in which the garbage can be compressed by the compression plate 6 but also in the reverse rotation direction B in which the compression plate 6 cannot be compressed, the normal rotation and the reverse rotation are alternately performed. The processing time can be shortened. The normal rotation time and the reverse rotation time can be arbitrarily set, but it is preferable to set the normal rotation time to 1 to 3 times, preferably 1.5 to 2.5 times the reverse rotation time, because the processing time of garbage can be shortened. . Specifically, after the normal rotation for 2 hours, the process of reversing for 1 hour is repeated, or after the normal rotation for 4 hours, the reverse rotation process for 2 hours is repeated. However, the forward rotation time and the reverse rotation time can be set in accordance with the characteristics of the garbage to be input, the processing status of the garbage in the garbage processing apparatus 1, and the like.

なお、生ゴミの処理時間は、生ゴミの投入量などに応じて予め設定することになるが、生ゴミの処理が完了すると、回転処理槽2内の湿度が低くなるので、回転処理槽2内に水分センサを設けて、該水分センサが一定の閾値以下になったときに、生ゴミ処理を完了することもできる。   The processing time of the garbage is set in advance according to the input amount of the garbage, but when the processing of the garbage is completed, the humidity in the rotation processing tank 2 is lowered, so that the rotation processing tank 2 It is also possible to provide a moisture sensor inside and complete the garbage disposal when the moisture sensor falls below a certain threshold.

次に、生ゴミ処理装置1を用いた生ゴミ処理方法について説明する。
先ず、生ゴミ処理装置1を稼働する前に、菌床及び破砕用セラミックスを生ゴミ投入口40より投入する。この菌床及び破砕用セラミックスの投入は、基本的には初回のみ行うことになり、その後は菌床及び破砕用セラミックスが減少したときにのみ、必要量を補充することになる。
Next, a garbage disposal method using the garbage disposal apparatus 1 will be described.
First, before the garbage processing apparatus 1 is operated, the bacteria bed and the crushing ceramics are introduced from the garbage input port 40. The introduction of the fungus bed and the crushing ceramic is basically performed only for the first time, and thereafter, the necessary amount is replenished only when the fungus bed and the crushing ceramic are reduced.

次に、生ゴミを生ゴミ投入口40より投入するとともに、モータ25、加熱手段53、送風ファン52、排気ファン56を作動させる。これにより回転処理槽2が、例えば2乃至7rpmで減速回転することになるが、回転処理槽2の回転中心Cが水平面Pに対して傾斜角度θだけ傾斜しているので、回転処理槽2に投入した生ゴミは、空気を巻き込みながら、菌床及び破砕用セラミックスと一様に混合される。また、内面抵抗板3により、回転処理槽2の下部側に配置される生ゴミ及び破砕用セラミックスが上側へ掻き起されることによっても、生ゴミ及び破砕用セラミックスが一様に混合される。一方、生ゴミの一部は、回転処理槽2の内壁と圧縮板6間へ送り込まれて順次圧縮され、このときに破砕用セラミックスが生ゴミに強く押し付けられて、生ゴミが細かく破砕されることになる。こうして、投入された生ゴミが、菌床及び破砕用セラミックスと一様に混合されるとともに、細かく破砕され、しかも回転処理槽2内へ供給される温風により、菌体の活性温度に温調されることで、微生物により効率良くる分解処理されることになる。また、生ゴミに含まれる水分や油分は、回転処理槽2の後端部の下部から隙間16を通じて、生ゴミ処理装置1の下部に配置した残渣受け箱17に排出され、水分が除去されることで、生ゴミの処理時間を短縮でき、油分が除去されることで、該油分が回転処理槽2に残留することを防止できる。なお、水分及び油分の排出を促進するため、回転処理槽2の回転を生ゴミ処理の途中で一定時間だけ停止させることもできる。   Next, the garbage is introduced from the garbage input port 40, and the motor 25, the heating means 53, the blower fan 52, and the exhaust fan 56 are operated. As a result, the rotation processing tank 2 rotates at a reduced speed of, for example, 2 to 7 rpm, but the rotation center C of the rotation processing tank 2 is inclined with respect to the horizontal plane P by an inclination angle θ. The thrown garbage is uniformly mixed with the fungus bed and the crushing ceramics while entraining air. Also, the garbage and crushing ceramics are uniformly mixed by scraping the garbage and the crushing ceramics disposed on the lower side of the rotation processing tank 2 upward by the inner resistance plate 3. On the other hand, a part of the garbage is sent between the inner wall of the rotation processing tank 2 and the compression plate 6 and sequentially compressed. At this time, the crushing ceramic is strongly pressed against the garbage, and the garbage is finely crushed. It will be. Thus, the input garbage is uniformly mixed with the fungus bed and the crushing ceramics, and is finely crushed, and the temperature is adjusted to the active temperature of the fungus body by the warm air supplied into the rotary treatment tank 2. As a result, the microorganisms are efficiently decomposed by microorganisms. Further, moisture and oil contained in the garbage are discharged from the lower part of the rear end of the rotation processing tank 2 through the gap 16 to the residue receiving box 17 disposed at the lower part of the garbage processing apparatus 1 to remove the moisture. Thereby, the processing time of garbage can be shortened and it can prevent that this oil component remains in the rotation processing tank 2 by removing an oil component. In addition, in order to accelerate | stimulate discharge | emission of a water | moisture content and an oil content, rotation of the rotation processing tank 2 can also be stopped only for the fixed time in the middle of garbage processing.

こうして、回転処理槽2を設定時間正転させた後、回転処理槽2を設定時間逆転させ、その後は生ゴミの処理が完了するまで、正転と逆転とを設定時間毎に繰り返し行うことで、生ゴミを微生物により順次分解処理することになる。なお、回転処理槽2の逆転時には、圧縮板6により生ゴミが破砕されることはないが、回転処理槽2内の生ゴミが一様に攪拌されて、正転方向への回転だけでは、圧縮板6により圧縮されなかった生ゴミが、逆転方向に回転させることで一様に攪拌されて、次回の正転方向への回転時に圧縮板6で圧縮されて、破砕されることになる。   In this way, after the rotation processing tank 2 is rotated forward for a set time, the rotation processing tank 2 is reversed for the set time, and thereafter, normal rotation and reverse rotation are repeatedly performed every set time until the processing of the garbage is completed. Then, garbage is sequentially decomposed by microorganisms. In addition, when the rotation processing tank 2 is reversed, the garbage is not crushed by the compression plate 6, but the garbage in the rotation processing tank 2 is uniformly stirred and only rotating in the normal rotation direction. The raw garbage that has not been compressed by the compression plate 6 is uniformly stirred by rotating in the reverse direction, and is compressed and crushed by the compression plate 6 during the next rotation in the normal direction.

このように、回転処理槽2を水平面Pに対して傾斜させること、回転処理槽2に内面抵抗板3を設けること、回転処理槽2を正転及び逆転させること、などにより回転処理槽2内の生ゴミと菌床と破砕用セラミックスとが一様に混合され、また圧縮板6により生ゴミを細かく破砕して、その表面積を増やすとともに、回転処理槽2内の温度を菌体の活性温度に設定することで、投入した生ゴミを短時間で粉末状の残渣になるまで分解処理することが可能となる。   As described above, the rotation processing tank 2 is inclined with respect to the horizontal plane P, the inner surface resistance plate 3 is provided in the rotation processing tank 2, and the rotation processing tank 2 is rotated forward and reverse. The raw garbage, fungus bed and crushing ceramics are uniformly mixed, and the garbage is finely crushed by the compression plate 6 to increase its surface area, and the temperature in the rotary processing tank 2 is set to the active temperature of the fungus body. By setting to, it becomes possible to decompose the input raw garbage into a powdery residue in a short time.

また、分解処理が完了した粉末状の残渣は、回転処理槽2内へ供給される温風とともに回転処理槽2から前部空間32内へ順次空気輸送されて、自重により残渣受け箱17内に落下して、残渣受け箱17内に収容され、また回転処理槽2から前部空間32内へ排出される空気は、フィルタ54及び脱臭装置55を経て排気口57から外部へ排出されることになる。   In addition, the powdery residue that has undergone the decomposition process is sequentially pneumatically transported from the rotation processing tank 2 into the front space 32 together with the hot air supplied into the rotation processing tank 2, and is put into the residue receiving box 17 by its own weight. The air that falls and is stored in the residue receiving box 17 and discharged from the rotation processing tank 2 into the front space 32 is discharged from the exhaust port 57 to the outside through the filter 54 and the deodorizing device 55. Become.

次に、生ゴミ処理装置の評価試験について説明する。
生ゴミ処理装置として、株式会社環境機器開発製のKD−30を用い、この生ゴミ処理装置の回転処理槽に、6kgのヒノキチップ及び3kgの硬質多孔質セラミックス(株式会社ミヤオカンパニーリミテッド製GC)にBacillus amyloliquefaciens(NBRC 14141)の培養液を浸漬させた菌床並びに破砕用セラミックス(株式会社ミヤオカンパニーリミテッド製アルミクロン)3kgを投入し、回転処理槽内の温度を40℃に保持するとともに、回転処理槽を1分間に3回転(3rpm)させながら、レストランより生じる生ゴミを25kg投入した。
Next, an evaluation test of the garbage disposal apparatus will be described.
KD-30 manufactured by Environmental Equipment Development Co., Ltd. was used as the garbage disposal device, and 6 kg of cypress chips and 3 kg of hard porous ceramics (GC manufactured by Miyao Company Limited) were used in the rotation processing tank of this garbage disposal device. 3 kg of fungus bed in which a culture solution of Bacillus amyloliquefaciens (NBRC 14141) is immersed and 3 kg of crushing ceramics (Almicron manufactured by Miyao Co., Ltd.) are put in, and the temperature in the rotating tank is kept at 40 ° C. 25 kg of garbage generated from the restaurant was added while the processing tank was rotated three times (3 rpm) per minute.

そして、表1に示すような条件で、回転処理槽を正転方向にのみ回転させた比較例と、正転方向に設定時間だけ回転させた後、逆転方向に設定時間だけ回転させるという回転処理を繰り返し行った実施例1〜6における、生ゴミの処理時間をそれぞれ測定した。その結果を表1に示す。   Then, under the conditions shown in Table 1, a comparative example in which the rotation processing tank is rotated only in the normal rotation direction, and a rotation process in which the rotation processing tank is rotated in the normal rotation direction for a set time and then rotated in the reverse rotation direction for a set time. The processing time of the garbage in Examples 1-6 which performed repeatedly was measured, respectively. The results are shown in Table 1.

Figure 2012061375
Figure 2012061375

表1から、回転処理槽を正転方向にのみ回転させながら生ゴミを処理する場合よりも、正転方向と逆転方向とに切換えながら生ゴミを処理する場合の方が、処理時間を短縮できることが判る。また、正転時間を逆転時間の2倍に設定した実施例3、5は他の実施例よりも処理時間が短く、特に正転時間を2時間に設定し逆転時間を1時間に設定した実施例3が最も短時間で処理でき、正転方向にのみ回転させる場合の67%の処理時間で処理できることが判る。   From Table 1, the processing time can be shortened in the case where garbage is processed while switching between the normal rotation direction and the reverse rotation direction, compared with the case where garbage is processed while rotating the rotation processing tank only in the normal rotation direction. I understand. Further, in Examples 3 and 5 in which the forward rotation time was set to twice the reverse rotation time, the processing time was shorter than in the other examples, and in particular, the forward rotation time was set to 2 hours and the reverse rotation time was set to 1 hour. It can be seen that Example 3 can be processed in the shortest time and can be processed in a processing time of 67% in the case of rotating only in the normal rotation direction.

1 生ゴミ処理装置 2 回転処理槽
3 内面抵抗板 4 回転支持手段
5 駆動手段 6 圧縮板
7 制御手段
10 胴体部 11 前面板
12 後面板 13 開口部
14 溶接部 15 非溶接部
16 隙間 17 残渣受け箱
20 支持フレーム 21 支持軸
22 支持ローラ 23 軸部材
24 減速機 25 モータ
30 前部気密保持板 31 上部気密保持板
32 前部空間 33 後部空間
34 上部空間
40 生ゴミ投入口 41 開閉扉
42 保持板開口部 43 シュート
44 補強板 45 切欠部
46 支持板 47 スペーサ部材
48 支持腕
50 吸気口 51 送風ダクト
52 送風ファン 53 加熱手段
54 フィルタ 55 脱臭装置
56 排気ファン 57 排気口
DESCRIPTION OF SYMBOLS 1 Garbage disposal apparatus 2 Rotation processing tank 3 Inner surface resistance plate 4 Rotation support means 5 Drive means 6 Compression plate 7 Control means 10 Body part 11 Front plate 12 Rear surface plate 13 Opening part 14 Welding part 15 Non-welded part 16 Crevice 17 Box 20 Support frame 21 Support shaft 22 Support roller 23 Shaft member 24 Reduction gear 25 Motor 30 Front airtight holding plate 31 Upper airtight holding plate 32 Front space 33 Rear space 34 Upper space 40 Garbage input port 41 Opening and closing door 42 Holding plate Opening 43 Chute 44 Reinforcement plate 45 Notch 46 Support plate 47 Spacer member 48 Support arm 50 Air inlet 51 Air duct 52 Air fan 53 Heating means 54 Filter 55 Deodorizing device 56 Air exhaust fan 57 Air outlet

Claims (7)

生ゴミを処理するための有底円筒形の回転処理槽と、前記回転処理槽の内周面に取り付けた内面抵抗板と、前記回転処理槽の底板が下側に位置するように回転中心を水平に対して傾斜させて前記回転処理槽を回転自在に支持する回転支持手段と、前記回転処理槽を回転駆動する駆動手段と、前記回転処理槽に投入される破砕用セラミックスと、前記回転処理槽内において生ゴミを圧縮して、前記破砕用セラミックスとの協働により生ゴミを破砕する圧縮板と、前記駆動手段を制御する制御手段とを備え、
前記制御手段により前記駆動手段を制御して、前記回転処理槽の回転方向を、前記圧縮板で生ゴミを圧縮可能な正転方向と、前記圧縮板で生ゴミを圧縮不能な逆転方向とに順次切換えて生ゴミを処理する、
ことを特徴とする生ゴミ処理装置。
A bottomed cylindrical rotation processing tank for treating garbage, an internal resistance plate attached to the inner peripheral surface of the rotation processing tank, and a rotation center so that the bottom plate of the rotation processing tank is located on the lower side Rotation support means for rotatably supporting the rotation processing tank inclined with respect to the horizontal, driving means for rotating the rotation processing tank, crushing ceramics put into the rotation processing tank, and the rotation processing A compression plate for compressing the garbage in the tank and crushing the garbage by cooperating with the crushing ceramic, and a control means for controlling the drive means;
The driving means is controlled by the control means so that the rotation direction of the rotation processing tank is a normal rotation direction in which the garbage can be compressed by the compression plate and a reverse rotation direction in which the garbage cannot be compressed by the compression plate. We change garbage sequentially and process garbage
The garbage processing apparatus characterized by the above-mentioned.
前記制御手段では、前記回転処理槽の回転方向を正転方向と逆転方向とにそれぞれ設定時間毎に切換える請求項1記載の生ゴミ処理装置。   The garbage processing apparatus according to claim 1, wherein the control means switches the rotation direction of the rotation processing tank between a normal rotation direction and a reverse rotation direction at each set time. 前記制御手段では、前記回転処理槽を正転方向に2時間回転させた後、逆転方向に1時間回転させる回転処理を交互に行う請求項1記載の生ゴミ処理装置。   The garbage processing apparatus according to claim 1, wherein the control means alternately performs a rotation process in which the rotation processing tank is rotated in the forward rotation direction for 2 hours and then rotated in the reverse rotation direction for 1 hour. 前記回転処理槽の回転中心が水平に対して5度乃至25度傾斜するように、前記回転支持手段により前記回転処理槽を回転自在に支持した請求項1〜3のいずれか1項記載の生ゴミ処理装置。   4. The raw material according to claim 1, wherein the rotation processing tank is rotatably supported by the rotation support means so that the rotation center of the rotation processing tank is inclined by 5 degrees to 25 degrees with respect to the horizontal. Garbage disposal device. 水平に対して回転中心を傾斜させて支持した回転処理槽内に、破砕用セラミックスと生ゴミとを投入し、前記回転処理槽を回転させながら、前記回転処理槽内において圧縮板により生ゴミを圧縮して、前記圧縮板と前記破砕用セラミックスとの協働により生ゴミを破砕しながら生ゴミを処理する生ゴミ処理方法において、
前記回転処理槽の回転方向を、前記圧縮板で生ゴミを圧縮可能な正転方向と、前記圧縮板で生ゴミを圧縮不能な逆転方向とに順次切換えて生ゴミを処理する、
ことを特徴とする生ゴミ処理方法。
Crushing ceramics and raw garbage are put into a rotation processing tank supported by tilting the rotation center with respect to the horizontal, and the rotation processing tank is rotated, and the garbage is collected by a compression plate in the rotation processing tank. In the garbage processing method of compressing and processing garbage while crushing garbage by cooperation of the compression plate and the crushing ceramics,
The rotation direction of the rotation processing tank is sequentially switched between a normal rotation direction in which the garbage can be compressed with the compression plate and a reverse rotation direction in which the garbage cannot be compressed with the compression plate, and the garbage is processed.
The garbage disposal method characterized by the above-mentioned.
前記回転処理槽の回転方向を正転方向と逆転方向とにそれぞれ設定時間毎に切換えて生ゴミを処理する請求項5記載の生ゴミ処理方法。   6. The garbage processing method according to claim 5, wherein the garbage is processed by switching the rotation direction of the rotation processing tank between a normal rotation direction and a reverse rotation direction for each set time. 前記回転処理槽を正転方向に2時間回転させた後、逆転方向に1時間回転させる回転処理を交互に行ってゴミを処理する請求項5記載の生ゴミ処理方法。
6. The raw garbage processing method according to claim 5, wherein after the rotation processing tank is rotated in the normal rotation direction for 2 hours, the rotation processing is performed alternately for 1 hour in the reverse rotation direction to process the garbage.
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