JP2008168181A - Refuse disposal method in waste disposal site - Google Patents

Refuse disposal method in waste disposal site Download PDF

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JP2008168181A
JP2008168181A JP2007001384A JP2007001384A JP2008168181A JP 2008168181 A JP2008168181 A JP 2008168181A JP 2007001384 A JP2007001384 A JP 2007001384A JP 2007001384 A JP2007001384 A JP 2007001384A JP 2008168181 A JP2008168181 A JP 2008168181A
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waste
casing
site
excavation
space
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Masaki Hatakeyama
正樹 畠山
Osamu Ueda
修 上田
Eitaro Kawaura
栄太郎 川浦
Akihiro Ito
彰浩 伊藤
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MLT SOIL KK
Honma Corp
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MLT SOIL KK
Honma Corp
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02WCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO WASTEWATER TREATMENT OR WASTE MANAGEMENT
    • Y02W30/00Technologies for solid waste management
    • Y02W30/30Landfill technologies aiming to mitigate methane emissions
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02WCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO WASTEWATER TREATMENT OR WASTE MANAGEMENT
    • Y02W30/00Technologies for solid waste management
    • Y02W30/50Reuse, recycling or recovery technologies
    • Y02W30/58Construction or demolition [C&D] waste

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Abstract

<P>PROBLEM TO BE SOLVED: To provide a refuse disposal method in waste disposal site as a garbage dump which attempts to reduce volume and simultaneously to effectively utilize the industrial waste treatment site by effecting the simple waste treatment of the industrial waste (that is burying treatment in the waste treatment site) particularly harmful such as asbestos and the like. <P>SOLUTION: The refuse disposal method in the waste disposal site comprises forming the waste throwing space protected by a casing 1 of which the outer peripheral surface is flat and smooth, and inserting a long and narrow baggy covering body C into the space, then incorporating the waste D into the covering body, pouring a sealed material such as mortar into the crowning of the incorporated waste, withdrawing the casing by closing the mouth of the covering body and burying the waste to be treated by incorporating the surface garbage into the residual space. <P>COPYRIGHT: (C)2008,JPO&INPIT

Description

本発明は、廃棄物処分場においてゴミの減容を実現すると共に、産業廃棄物の効果的な廃棄処理を実現するゴミ処理工法に関するものである。   The present invention relates to a garbage disposal method that realizes volume reduction of garbage in a waste disposal site and realizes effective disposal of industrial waste.

産業廃棄物等のうち再利用されない廃棄物(ゴミ)は、廃棄物処分場に投棄しているもので、投棄は単に従前のゴミの上になされ、ゴミが順次積層されていくものである。放置しておくと自重による自然の圧縮以外に減容がなされない。このため処分場が満杯になると別の処分場を探さなければならない。   Among industrial wastes, waste (garbage) that is not reused is dumped in a waste disposal site, and dumping is simply performed on the previous garbage, and the garbage is sequentially stacked. If left unattended, there is no reduction in volume other than natural compression by its own weight. For this reason, when the disposal site is full, another disposal site must be found.

そこで従前よりゴミの投棄箇所におけるゴミ減容化処理が提案されている。例えば特開平7−16555号公報(特許文献1)には、集積廃棄物に重錘を落下させて廃棄物を高密度に圧縮することが開示されているし、特開平10−102475号公報(特許文献2)には、先端部が十文字に交叉して中心部が最も突出し、中心部から遠ざかるにつれて後退した状態の切断刃を設けた圧縮ロッドで堆積廃棄物に孔を穿ち、当該孔内に廃棄物を投入する手段が開示されている。   Therefore, a waste volume reduction process at a waste disposal point has been proposed. For example, Japanese Patent Application Laid-Open No. 7-16555 (Patent Document 1) discloses that a weight is dropped on accumulated waste to compress the waste with high density, and Japanese Patent Application Laid-Open No. 10-102475 ( In Patent Document 2), a hole is formed in the deposited waste with a compression rod provided with a cutting blade in a state where the tip portion crosses in a cross shape and the center portion protrudes most and recedes from the center portion. Means for charging waste is disclosed.

更に特開平10−272432号公報(特許文献3)、特開2001−286843号公報(特許文献4)、特開2006−15262号公報(特許文献5)には、廃棄物処分場において圧密孔を掘削形成し、当該掘削孔にゴミを充填して処理する手段が開示されている。   Furthermore, in JP-A-10-272432 (Patent Document 3), JP-A-2001-286843 (Patent Document 4), and JP-A-2006-15262 (Patent Document 5), a consolidation hole is provided in a waste disposal site. Means for excavating and filling the excavation hole with dust is disclosed.

特開平7−16555号公報。Japanese Patent Laid-Open No. 7-16555. 特開平10−102475号公報。JP-A-10-102475. 特開平10−272432号公報。Japanese Patent Laid-Open No. 10-272432. 特開2001−286843号公報。JP 2001-286843 A. 特開2006−15262号公報。JP 2006-15262 A.

前記の特許文献3,4に記載されているようにゴミの圧縮によって空隙(圧密掘削孔)を形成し、当該空隙(掘削孔)に表層ゴミを投入することでゴミの減容化を行うことは公知であるが、従前手段は、基本的に当該ゴミ処理場におけるゴミの減容を目的としたもので、例えばアスベスト廃棄物のように、一定の処理を必要とする廃棄物についての処理に関しては全く考慮されていない。   As described in Patent Documents 3 and 4, a void (consolidated excavation hole) is formed by dust compression, and the volume of the dust is reduced by introducing surface layer garbage into the void (excavation hole). The conventional means is basically intended to reduce the volume of garbage at the garbage disposal site. For example, as for the treatment of waste that requires a certain treatment such as asbestos waste. Is not considered at all.

特許文献3のゴミ減容手段は、掘削回転方向に螺旋状に上昇するように設けたコテ部を備えた掘削土砂圧密形オーガを使用して、無排出で掘削穿孔し、而かる後前記オーガを孔内に差し入れた状態で逆回転をさせて引き抜きながら、孔口からゴミを投入し、孔底へと落下させながらコテ部で孔壁に圧密させ、更に残りを孔底に順次堆積させるもので、粉砕状態のゴミでなければ掘削孔への投入ができない。   The dust volume reducing means of Patent Document 3 uses a drilling earth and sand compacted auger provided with a trowel part provided so as to rise spirally in the direction of excavation rotation, and excavates and drills without discharge. In the state in which it is inserted into the hole, it is rotated backwards and pulled out, while dust is thrown in from the hole mouth, dropped to the bottom of the hole, consolidated into the hole wall with a trowel, and the rest is sequentially deposited on the bottom of the hole In the case of crushed garbage, it cannot be put into the excavation hole.

また特許文献4記載のゴミ減容手段は、圧密コテを周面に設けたケーシングと、このケーシング内を通し且つ先端から突出する掘削ヘッドを有する掘削ロッドとからなる掘削装置を使用し、ケーシングの圧密コテで無排出掘削を行い、ケーシングを残した状態でケーシング内に表層ゴミを投入し、後にケーシングを引き抜くゴミの減容手段が開示されているが、ケーシングの引き抜き作業において、ケーシングの圧密コテが引き抜き抵抗となるという問題がある。   Further, the dust volume reducing means described in Patent Document 4 uses a drilling device comprising a casing provided with a compacting iron on the peripheral surface, and a drilling rod having a drilling head that passes through the casing and protrudes from the tip. There has been disclosed a volume reduction means for dust, in which non-discharge excavation is performed with a compacting iron, surface dust is put into the casing with the casing remaining, and the casing is later pulled out. There is a problem that becomes resistance to pulling out.

特許文献5記載のゴミ減容手段は、ゴミ集積箇所に所定のオーガを用いて無排出掘削孔(圧密孔)を形成した後、オーガを引き抜いた当該掘削孔に外周面が平滑なケーシングを立て込み、ケーシング内にゴミを投入充填しながら若しくは充填後にケーシングの引き抜きを行ってなることが記載されているが、掘削孔形成とケーシング立て込みが別作業となり、効率的な作業とはいえないし、有害な産業廃棄物の処理について全く考慮されていない。   In the dust volume reducing means described in Patent Document 5, a non-discharge drilling hole (consolidation hole) is formed at a dust accumulation location using a predetermined auger, and then a casing having a smooth outer peripheral surface is set up in the drilling hole from which the auger is pulled out. However, it is described that the casing is withdrawn while charging or filling the casing with or after filling the casing, but the drilling hole formation and the casing standing are separate operations, which cannot be said to be an efficient operation. No consideration is given to the disposal of hazardous industrial waste.

そこで本発明は、アスベスト等のような特に有害な産業廃棄物の廃棄処理が可能な廃棄物処分場におけるゴミ処理工法を提案したものである。   Therefore, the present invention proposes a garbage disposal method in a waste disposal site capable of disposal of particularly harmful industrial waste such as asbestos.

本発明に係る廃棄物処分場におけるゴミ処理工法は、外周面が平滑なケーシングで保護された廃棄物投入空間を、ゴミ集積箇所に無排出掘削で形成し、前記空間に細長袋状の被覆体を挿入した後、前記被覆体内に廃棄物を投入し、投入廃棄物の頂部にモルタル等の密閉体を流し込み、被覆体の口部を閉じてケーシングを引き抜き、又は前記被覆体を挿入せずに、所定の被覆体で包装した廃棄物をケーシング内に投入してケーシングを引き抜き、
残空間に表層ゴミを投入して処理廃棄物を埋設してなることを特徴とするものである。
In the waste disposal method according to the present invention, a waste input space protected by a casing with a smooth outer peripheral surface is formed by non-discharge excavation at a dust accumulation location, and the elongated bag-like covering is formed in the space After inserting the waste material into the covering body, pouring a sealing body such as mortar into the top of the input waste, closing the mouth of the covering body and pulling out the casing, or without inserting the covering body. , Put the waste packaged in a predetermined covering into the casing, pull out the casing,
It is characterized in that surface waste is thrown into the remaining space and processing waste is buried.

而して廃棄対象物は被覆体で包装された状態で、集積ゴミ内に埋設されるので、有害な廃棄物の処理も簡単にできる。   Thus, since the object to be discarded is embedded in the collected garbage in a state of being wrapped in a covering, it is possible to easily handle harmful waste.

また特に本発明(請求項2、3)は、連繋可能な軸部と、前記軸部先端にケーシング内周と合致する掘削ドリル部とを備えたドリル体を、掘削ドリル部をケーシング先端から露出させ、軸部をケーシング頂部でケーシングと連結して供回り可能な状態としてケーシングに装備させ、ケーシングを回転させながらゴミ集積箇所に打ち込み、所望深さまで打ち込んだ後掘削ドリルをケーシング上端から取り出して廃棄物投入空間を形成してなることを特徴とするものである。   In particular, the present invention (Claims 2 and 3) exposes a drill body including a shaft portion that can be linked and a drilling drill portion that matches the inner periphery of the casing at the tip of the shaft, and the drilling drill portion is exposed from the tip of the casing. The shaft is connected to the casing at the top of the casing so that it can be rotated and installed in the casing. The casing is rotated and driven into the dust accumulation site. After driving to the desired depth, the drilling drill is removed from the upper end of the casing and discarded. It is characterized by forming an article input space.

而してケーシングに掘削ドリル体を装備させてケーシングを回転することで、掘削ドリルで集積ゴミを排除しながらケーシングを立て込むもので、掘削とケーシング立て込みが同時にできる。   Thus, by mounting the excavation drill body on the casing and rotating the casing, the casing is stood up while removing accumulated dust with the excavation drill, and excavation and casing upset can be performed simultaneously.

本発明の構成は上記のとおりであるから、ゴミ集積所である廃棄物処分場において、ゴミの減容を図れると共に、有害産業廃棄物も容易に埋設処分できたもので、産業廃物処分場が有効に活用されるものである。   Since the configuration of the present invention is as described above, it is possible to reduce the volume of trash at a waste disposal site that is a garbage collection site, and toxic industrial waste can be easily disposed of in an industrial waste disposal site. It is used effectively.

次に本発明の実施の形態について説明する。本発明の実施装置は、ケーシング1と、掘削ドリル体2と、ドリル体装着部材3と、ケーシング駆動機構4で構成される。   Next, an embodiment of the present invention will be described. The implementation apparatus of the present invention includes a casing 1, a drilling drill body 2, a drill body mounting member 3, and a casing drive mechanism 4.

ケーシング1は、外周表面が平滑なφ1500mmの中空二重管(内筒部と外筒部の間に格子状のリブが設けられている既知のもの)で、上下端に差し込み連繋可能とした嵌合部11を形成すると共に、連結ピン12で所望の長さに連結できるようにしているものである。   The casing 1 is a φ1500 mm hollow double tube (a known one having a grid-like rib provided between the inner cylinder part and the outer cylinder part) with a smooth outer peripheral surface. The joint portion 11 is formed, and the connecting pin 12 can be connected to a desired length.

掘削ドリル体2は、掘削ドリル部21と軸部22で形成され、掘削ドリル部21は、軸部22の先端にケーシング内周と合致する大きさで、掘削対象(集積ゴミA)を掻き分けて掘進する構造である。また軸部22は、連繋可能としたもので、例えば上下端に差込連結軸部23及び差込孔部を設けると共に、前期差込連結軸部23及び差込孔部を貫通する連結用ピン孔24を設けて、差込連繋し連結用ピンで固定することで、ケーシング長と対応する長さとするものである。   The excavation drill body 2 is formed by an excavation drill portion 21 and a shaft portion 22, and the excavation drill portion 21 has a size that matches the inner periphery of the casing at the tip of the shaft portion 22, and scrapes the object to be excavated (accumulated garbage A). It is a structure that excavates. The shaft portion 22 can be connected, for example, provided with an insertion connecting shaft portion 23 and an insertion hole portion at the upper and lower ends, and a connecting pin penetrating the previous insertion connecting shaft portion 23 and the insertion hole portion. The hole 24 is provided, and is connected to the plug and fixed with a connecting pin, so that the length corresponds to the casing length.

ドリル体装着部材3は、リング形状で、ケーシング1の頂部に、前記ケーシング連繋構造と同様な構造(嵌合部31と連結ピン32)を備え、且つ軸部22の上端に設けた連結用ピン孔24を貫通できる連結軸体33を架設したものである。   The drill body mounting member 3 has a ring shape and includes a connection pin provided at the top end of the shaft portion 22, having the same structure (the fitting portion 31 and the connection pin 32) as the casing connection structure at the top of the casing 1. A connecting shaft 33 that can pass through the hole 24 is constructed.

ケーシング駆動機構4は、ケーシング1を抱持状態で回転駆動する、既存の機器である。   The casing drive mechanism 4 is an existing device that rotationally drives the casing 1 in the holding state.

前記実施装置を使用して本発明方法の実施について説明する。ケーシング1の頂部にドリル体装着部材3を連結固定し、掘削ドリル部21をケーシング1の先端から露出させ、軸部22の上端の連結用ピン孔24に連結軸体33を挿通し、前記軸体33をドリル体装着部材3の本体に固定し、ケーシング1と掘削ドリル体2を供回り可能な状態とし、廃棄物処分場におけるゴミAの集積箇所である掘削位置に、ケーシング駆動機構4を配置して、ケーシング1と掘削ドリル体2を一体としたものをクレーン等で吊下げて、ケーシング駆動機構4の所定箇所に起立させて組み込む(図3)。   Implementation of the method of the present invention will be described using the above-described implementation apparatus. The drill body mounting member 3 is connected and fixed to the top of the casing 1, the drilling drill portion 21 is exposed from the tip of the casing 1, and the connecting shaft body 33 is inserted into the connecting pin hole 24 at the upper end of the shaft portion 22. The body 33 is fixed to the main body of the drill body mounting member 3 so that the casing 1 and the excavation drill body 2 can be rotated, and the casing drive mechanism 4 is installed at the excavation position where the garbage A is collected in the waste disposal site. Then, the casing 1 and the excavation drill body 2 that are integrated with each other are suspended by a crane or the like and erected at a predetermined position of the casing drive mechanism 4 (FIG. 3).

次にケーシング1と掘削ドリル体2を回転させて、掘削ドリル部21の作用で集積ゴミAを掻き分けてケーシング1を集積ゴミA内に立て込み、適宜ケーシング1及び掘削ドリル体2を連繋して所望の深さまで掘削を終えると(図5)、掘削ドリル体2をケーシング1の上端から取り出す(図6)。   Next, the casing 1 and the excavation drill body 2 are rotated, the accumulated dust A is scraped by the action of the excavation drill portion 21, the casing 1 is stood in the accumulated garbage A, and the casing 1 and the excavation drill body 2 are appropriately connected. When excavation is completed to a desired depth (FIG. 5), the excavation drill body 2 is taken out from the upper end of the casing 1 (FIG. 6).

掘削ドリル体2を取り出すとケーシング1内に廃棄物投入空間Bが形成されるので、当該空間Bに細長袋状の被覆体Cを挿入する。この被覆体Cは、ビニールやゴム製のもので充分な強度と水密性を有するもので形成する。   When the excavation drill body 2 is taken out, the waste input space B is formed in the casing 1, and the elongated bag-like covering body C is inserted into the space B. The covering body C is made of vinyl or rubber and has sufficient strength and water tightness.

アスベストのような埋設が必要な有害な産業廃棄物Dを、前記被覆体C内に投入し(図7)、投入廃棄物の頂部にモルタル、コンクリート、ベントナイト等の密閉体Eを流し込み、被覆体Cの口部を閉じてケーシング1の引き抜きを行なう(図8)。尚前記のケーシング1の引き抜きは、モルタルが固化する前に行なう。   Hazardous industrial waste D such as asbestos that needs to be buried is thrown into the cover C (FIG. 7), and a sealing body E such as mortar, concrete, bentonite, etc. is poured into the top of the input waste, and the cover The mouth of C is closed and the casing 1 is pulled out (FIG. 8). The casing 1 is pulled out before the mortar is solidified.

ケーシング1の引き抜きがなされた後には、上方に残空間Fが残り(図9)、この残空間Fに表層のゴミAを投入して有害な処理すべき産業廃棄物Dを埋設して全作業を終了する(図10)。   After the casing 1 is pulled out, a remaining space F remains in the upper part (FIG. 9), and the waste A to be treated is buried in the remaining space F to bury industrial waste D to be treated harmfully. Is finished (FIG. 10).

従って既設の廃棄物処分場において、有害な産業廃棄物を、密封状態で集積ゴミA内に埋設することになるので、有害な産業廃棄物を確実且つ容易に廃棄処分とすることができると共に、無排出掘削孔の形成によってゴミ集積所のゴミ容量(体積)も減容することができたものである。   Therefore, in the existing waste disposal site, harmful industrial waste is buried in the collected garbage A in a sealed state, so that harmful industrial waste can be disposed of reliably and easily, It was also possible to reduce the volume (volume) of garbage at the garbage collection site by forming no discharge drill holes.

またケーシングの掘削設置は、前記の実施形態に限定されるものではなく、従前の掘削手段と同様に、オーガなどによる無排出掘削を実施して掘削孔を形成した後に、当該掘削孔にケーシングを立て込む手段を採用しても良い。   Further, the excavation and installation of the casing is not limited to the above-described embodiment. Similarly to the conventional excavation means, after the non-discharge excavation with an auger or the like is performed to form the excavation hole, the casing is inserted into the excavation hole. You may employ | adopt the means to stand up.

更に産業廃棄物Dを廃棄物投入空間Bに投入するに際して、産業廃棄物Dが予め充分な強度と産業廃棄物Dの内容に対応した機能(水密性・耐薬品性等)を備えた被覆体Cで包装しておき、被覆体Cで包装した産業廃棄物Dをケーシングで保護された廃棄物投入空間Bに投入廃棄しても良い。この場合には、密閉体Eを採用しなくとも良いし、または密閉体Eに換えて固形物からなる閉塞物を投入して産業廃棄物Dを押さえ込むようにしても良い。   Further, when the industrial waste D is thrown into the waste input space B, the industrial waste D has sufficient strength and functions (watertightness, chemical resistance, etc.) corresponding to the contents of the industrial waste D in advance. It may be packaged with C, and the industrial waste D packaged with the cover C may be thrown into the waste charging space B protected by the casing. In this case, the sealing body E may not be used, or the industrial waste D may be pressed down by inserting a plug made of solid material instead of the sealing body E.

本発明方法の実施装置のケーシング、掘削ドリル体、ドリル体装着部材の斜視図。The perspective view of the casing of the implementation apparatus of this invention, a drilling drill body, and a drill body mounting member. 同ケーシングの連繋構造の説明図。Explanatory drawing of the connection structure of the casing. 同の作業工程の説明図(掘削開始時の正面図)。Explanatory drawing of the same operation process (front view at the start of excavation). 同の作業工程の説明図(掘削開始時の平面図)。Explanatory drawing of the same work process (plan view at the start of excavation). 同の作業工程の説明図(ケーシング立て込み終了時)。Explanatory drawing of the same work process (at the time of casing stand-up completion). 同の作業工程の説明図(掘削ドリル体の引き抜き作業)。Explanatory drawing of the same work process (extraction work of a drilling drill body). 同の作業工程の説明図(被覆体内への廃棄物投入作業)。Explanatory drawing of the same work process (injecting waste into the covering). 同の作業工程の説明図(ケーシング引き抜き作業)。Explanatory drawing of the same operation | work process (casing extraction work). 同の作業工程の説明図(埋設直前)。Explanatory drawing of the same work process (just before embedding). 同の作業工程の説明図(作業終了状態)。Explanatory drawing of the same work process (work completion state).

符号の説明Explanation of symbols

1 ケーシング
11 嵌合部
12 連結ピン
2 掘削ドリル体
21 掘削ドリル部
22 軸部
23 差込連結軸部
24 連結用ピン孔
3 ドリル体装着部材
31 嵌合部
32 連結ピン
33 連結軸体
4 ケーシング駆動機構
A 集積ゴミ
B 廃棄物投入空間
C 被覆体
D 産業廃棄物
E 密閉体
F 残空間
DESCRIPTION OF SYMBOLS 1 Casing 11 Fitting part 12 Connection pin 2 Drilling drill body 21 Drilling drill part 22 Shaft part 23 Insertion connection shaft part 24 Connection pin hole 3 Drill body mounting member 31 Fitting part 32 Connection pin 33 Connection shaft body 4 Casing drive Mechanism A Accumulated garbage B Waste input space C Cover D Industrial waste E Sealed body F Remaining space

Claims (3)

外周面が平滑なケーシングで保護された廃棄物投入空間を、ゴミ集積箇所に無排出掘削で形成し、前記空間に細長袋状の被覆体を挿入した後、前記被覆体内に廃棄物を投入し、廃棄物の頂部にモルタル等の密閉体を流し込み、前記被覆体の口部を閉じてケーシングを引き抜き、又は前記被覆体を挿入せずに、所定の被覆体で包装した廃棄物をケーシング内に投入してケーシングを引き抜き、残空間に表層ゴミを投入して処理廃棄物を埋設してなることを特徴とする廃棄物処分場におけるゴミ処理工法。   A waste input space protected by a casing with a smooth outer peripheral surface is formed by non-discharge excavation at a dust accumulation location, and a slender bag-shaped covering is inserted into the space, and then waste is injected into the covering. Pour a sealed body such as mortar onto the top of the waste, close the mouth of the cover and pull out the casing, or insert the waste packaged in a predetermined cover without inserting the cover into the casing. A waste disposal method in a waste disposal site, characterized in that the waste is disposed by pulling out the casing, throwing the surface layer garbage into the remaining space and burying the treatment waste. 掘削箇所の集積ゴミを外周に排除する掘削ドリルを先端に装備したケーシングを、回転させながらゴミ集積箇所に打ち込み、所望深さまで打ち込んだ後掘削ドリルをケーシング上端から取り出して廃棄物投入空間を形成してなる請求項1記載の廃棄物処分場におけるゴミ処理工法。   A casing equipped with a drilling drill that removes accumulated dust from the excavation site at the outer periphery is driven into the dust collection site while rotating it. The refuse disposal method in the waste disposal site according to claim 1. 連繋可能な軸部と、前記軸部先端にケーシング内周と合致する掘削ドリル部とを備えたドリル体を、掘削ドリル部をケーシング先端から露出させ、軸部をケーシング頂部でケーシングと連結し、供回り可能な状態としてケーシングに装備させてなる請求項2記載の廃棄物処分場におけるゴミ処理工法。   A drill body comprising a shaft portion that can be linked and a drilling drill portion that matches the casing inner periphery at the tip of the shaft portion, the drilling drill portion is exposed from the tip of the casing, and the shaft portion is connected to the casing at the top of the casing; The refuse disposal method in the waste disposal site according to claim 2, wherein the casing is installed in a state where it can be rotated.
JP2007001384A 2007-01-09 2007-01-09 Refuse disposal method in waste disposal site Pending JP2008168181A (en)

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Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP5172033B1 (en) * 2012-07-17 2013-03-27 山本基礎工業株式会社 Waste burial method and waste container
JP5623583B2 (en) * 2013-04-11 2014-11-12 株式会社エムエルティーソイル Waste disposal method and excavated body at waste disposal site
JP2015054275A (en) * 2013-09-11 2015-03-23 株式会社エムエルティーソイル Waste disposal method in waste disposal site
JP2016019950A (en) * 2014-07-15 2016-02-04 株式会社本間組 Rubbish volume reducing method on waste disposal site

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Publication number Priority date Publication date Assignee Title
JPH06328056A (en) * 1993-05-24 1994-11-29 Kajima Corp Waste disposal
JPH10137714A (en) * 1996-11-15 1998-05-26 Ohbayashi Corp Disposition method of waste
JP2001286843A (en) * 2000-04-06 2001-10-16 Santekku:Kk Treating method and treating device for deposited refuse in waste disposal plant
JP2001340827A (en) * 2000-06-05 2001-12-11 Mitsubishi Constr Co Ltd Treatment method for containing polluted soil and method for creating substructure
JP2006015262A (en) * 2004-07-02 2006-01-19 Mlt Soil:Kk Waste treatment method in waste disposal plant

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH06328056A (en) * 1993-05-24 1994-11-29 Kajima Corp Waste disposal
JPH10137714A (en) * 1996-11-15 1998-05-26 Ohbayashi Corp Disposition method of waste
JP2001286843A (en) * 2000-04-06 2001-10-16 Santekku:Kk Treating method and treating device for deposited refuse in waste disposal plant
JP2001340827A (en) * 2000-06-05 2001-12-11 Mitsubishi Constr Co Ltd Treatment method for containing polluted soil and method for creating substructure
JP2006015262A (en) * 2004-07-02 2006-01-19 Mlt Soil:Kk Waste treatment method in waste disposal plant

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP5172033B1 (en) * 2012-07-17 2013-03-27 山本基礎工業株式会社 Waste burial method and waste container
JP5623583B2 (en) * 2013-04-11 2014-11-12 株式会社エムエルティーソイル Waste disposal method and excavated body at waste disposal site
JP2015054275A (en) * 2013-09-11 2015-03-23 株式会社エムエルティーソイル Waste disposal method in waste disposal site
JP2016019950A (en) * 2014-07-15 2016-02-04 株式会社本間組 Rubbish volume reducing method on waste disposal site

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