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JP3557957B2 - Repair method of existing waste disposal site - Google Patents

Repair method of existing waste disposal site Download PDF

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Publication number
JP3557957B2
JP3557957B2 JP22257499A JP22257499A JP3557957B2 JP 3557957 B2 JP3557957 B2 JP 3557957B2 JP 22257499 A JP22257499 A JP 22257499A JP 22257499 A JP22257499 A JP 22257499A JP 3557957 B2 JP3557957 B2 JP 3557957B2
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JP
Japan
Prior art keywords
waste
disposal site
waste disposal
section
existing waste
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
Application number
JP22257499A
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Japanese (ja)
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JP2001046992A (en
Inventor
克己 小谷
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Obayashi Corp
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Obayashi Corp
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Description

【0001】
【発明の属する技術分野】
本発明は、既設廃棄物処分場の補修方法に関する。
【0002】
【従来の技術】
造成されてからの経年が長かったり、法規制以前に造成された廃棄物処分場、あるいは不法投棄の結果生じた廃棄物処分場にあっては、底部に遮水工が施されていないか、施されていても不完全であることが多い。このような廃棄物処分場にあっては、滲出水による処分場下流側の地下水汚染が社会問題となっており、これを完全に補修ないしは改修する技術が要請されている。
【0003】
この種の既設廃棄物処分場の補修方法として、廃棄物処分場の外郭に沿って鋼矢板などを打設することにより遮水壁を構築し、周辺地区との縁切りを行ってから、内部に薬液を注入して底部を固化する方法が提案されている。
【0004】
【発明が解決しようとする課題】
しかしながら、この方法では、廃棄物処分場を構成する場所の地形、地質が複雑であることが多いため、完全な補修を期待することはできない。また、廃棄物はそのままの状態であり、そこに薬液が注入され、固化されてしまうため、より嫌気性雰囲気となって分解が遅れ、無害化までには却って長期間を要する。
【0005】
これに対し、全ての廃棄物を掘削し、これを他の保管場所に一時的に保管した状態で遮水工を施すことも考えられるが、この作業を行う場合は、一時的な保管のための代替地としてかなり広い敷地を必要とし、代替地それ自体の確保、代替地の汚染防止処理、代替地の沈下に起因した跡地利用の困難性といった課題があるほか、補修すべき廃棄物処分場とその代替地とが離れている場合の移送の問題もあり、現実には、その実施が著しく困難である。
【0006】
本発明は、以上の課題を解決するものであって、その目的は、廃棄物を他の場所に移送することなく、現状を維持したままで順次廃棄物処分場の補修ないしは改修を行えるようにした既設廃棄物処分場の補修方法を提供するものである。
【0007】
【課題を解決するための手段】
以上の目的を達成するため、本発明方法は、既設廃棄物処分場を格子状ないしは短冊状に仕切り、下部地盤に到達する複数の地下連続壁を構築し、該地下連続壁に囲われた区画の廃棄物を掘削除去した後、当該区画の底部に遮水工を施すことを特徴とする。従って、本発明方法によれば、地下連続壁により仕切られた区画内の廃棄物量は処分場全体の廃棄物量に比べて少なく、これを掘削して他の区画に移送することで廃棄物処分場の敷地外に移送することなく、補修ないしは改修をおこなうことが出来る。また、処分場外に移送する場合であっても、その量は少ないため、代替地の問題を容易に解消することができる。
【0008】
また、本発明方法において、前記掘削除去した廃棄物を処分場内の他の区画または処分場外に移送し、遮水工が施された後に当該遮水工を施した区画内に移送廃棄物を埋め戻すことをすべての区画において繰り返すことにより、既存廃棄物処分場全体に遮水工を施すことができるだけでなく、掘削及び埋め戻し時の曝気効果による好気性菌の増殖により、有機成分の分解が促進されるため廃棄物の早期分解に好適である。
【0009】
【発明の実施の形態】
以下、本発明方法の好ましい実施の形態につき、添付図面を参照して詳細に説明する。
【0010】
本実施の形態では、廃棄物処分場1に、平面視で格子状(間隔3〜10m程度)に仕切る地下連続壁を構築する。図1は、重機5を用いて、SMW工法により、地下連続壁となるソイルセメント柱列6を構築している状態を示し、ソイルセメント柱列6は、廃棄物3の層を縦断し、その底部を下部地盤Eにまで到達した深さとなるよう鉛直に構築される。なお、地下連続壁としては、ソイルセメント柱列6に代えて鋼矢板等の他の公知の地下連続壁を採用することもできる。
【0011】
以上の地下連続壁構築作業が終了した後は、図2に示すように、ショベルカー7をいずれかの区画上に投入して廃棄物3を掘削し、例えば隣接する区画の廃棄物上に山積みする(山積み廃棄物を3a,3bで図示)。そして、前記区画に堆積された廃棄物の掘削除去が完了したならば、図3に示すように、露出した地盤Eの表面に遮水工8を施した後、隣接区画に山積みした廃棄物3a,3bを同区画内に投入して埋め戻す。遮水工8としては、ゴムシートなどの遮水シート、防水アスファルト、防水コンクリートなどの公知のものを採用することができる。
【0012】
以下、次々と各区画毎に同じ作業を繰返せば、図4に示すように、廃棄物処分場1の底面全体が遮水工8で覆われ、補修ないしは改修作業が完了する。ソイルセメント柱列6により仕切られた区画内の廃棄物量は処分場1全体の廃棄物量に比べて少なく、これを掘削して他の区画に移送することで廃棄物処分場1の敷地外に移送することなく、補修ないしは改修をおこなうことが出来る。また、掘削及び埋め戻しによる曝気効果によって、廃棄物内には酸素が取入れられ、好気性菌の活性化を促し、廃棄物中に含まれる有機成分の早期分解を図ることができる。
【0013】
なお、本実施の形態では、処分場1内を格子状に仕切ったが、短冊状ないしは筋状に仕切るようにしても良いことは勿論である。また、上記実施形態では、ある区画で掘削した廃棄物を隣接する区画上に山積みしたが、隣接する区画でなく離れた区画であってもよいし、廃棄物処分場1外に移送することもできる。この場合であっても、廃棄物の移送量は少ないため、代替地の問題を容易に解消することができる。
【0014】
また、ソイルセメント柱列6や鋼矢板等により形成される地下連続壁を基礎として屋根などを構築することもできるし、また、他の部分に環境保全を考慮した保管庫をつくることもできる。さらに、これらの地下連続壁を基礎として、沈下しない構造物を構築することもできる。
【0015】
【発明の効果】
以上の説明により明らかなように、本発明による既設廃棄物処分場の補修方法にあっては、地下連続壁により仕切られた区画内の廃棄物量はすべての廃棄物量に比べて少なく、これを掘削して他の区画に移送することで廃棄物処分場の敷地外に移送することなく、補修ないしは改修をおこなうことが出来る。また、処分場外に移送する場合であっても、その量は少ないため、代替地の問題を容易に解消することができる。
【図面の簡単な説明】
【図1】地下連続壁となるソイルセメント柱列を構築している状態を示す断面図である。
【図2】地下連続壁によって区画されたうちの一つの区画を掘削している状態を示す断面図である。
【図3】同区画に遮水工を実施した状態を示す断面図である。
【図4】補修完了状態を示す断面図である。
【符号の説明】
1 既設廃棄物処分場
3 廃棄物
6 地下連続壁(ソイルセメント柱列)
8 遮水工
[0001]
TECHNICAL FIELD OF THE INVENTION
The present invention relates to a method for repairing an existing waste disposal site.
[0002]
[Prior art]
In the case of waste disposal sites that have been constructed for a long period of time, or that have been constructed before laws or regulations, or that have been disposed of as a result of illegal dumping, check that the bottom is not impermeable. Even if applied, it is often incomplete. In such a waste disposal site, groundwater contamination on the downstream side of the disposal site due to leaching water has become a social problem, and a technology for completely repairing or repairing this is required.
[0003]
As a method of repairing this type of existing waste disposal site, a water impervious wall is constructed by driving steel sheet pile along the outer periphery of the waste disposal site, cutting off the surrounding area, A method of injecting a chemical solution to solidify the bottom has been proposed.
[0004]
[Problems to be solved by the invention]
However, in this method, since the terrain and geology of the place composing the waste disposal site are often complicated, complete repair cannot be expected. In addition, the waste is in a state as it is, and the chemical solution is injected into the waste and solidified. Therefore, the waste becomes more anaerobic and the decomposition is delayed.
[0005]
On the other hand, it is conceivable to excavate all the waste and temporarily store it in another storage location and then apply a seepage control method. It requires a rather large site as an alternative land, and has issues such as securing the alternative land itself, preventing pollution of the alternative land, and making it difficult to use the former site due to the settlement of the alternative land, and the waste disposal site to be repaired. There is also the problem of transportation when the site is separated from the alternative site, and in practice, its implementation is extremely difficult.
[0006]
The present invention has been made to solve the above problems, and an object of the present invention is to make it possible to repair or renovate a waste disposal site sequentially without transferring the waste to another place while maintaining the current status. It provides a method for repairing existing waste disposal sites.
[0007]
[Means for Solving the Problems]
In order to achieve the above object, the method of the present invention is to partition an existing waste disposal site into a grid or a strip, construct a plurality of underground continuous walls reaching the lower ground, and construct a section surrounded by the underground continuous walls. After excavating and removing the wastes, the bottom of the section concerned is subjected to a seepage control. Therefore, according to the method of the present invention, the amount of waste in the section partitioned by the underground continuous wall is smaller than the amount of waste in the entire repository, and by excavating and transferring it to another section, the waste Repairs or renovations can be performed without having to be transported offsite. In addition, even in the case of transfer outside the disposal site, since the amount is small, the problem of the substitute site can be easily solved.
[0008]
Further, in the method of the present invention, the excavated and removed waste is transferred to another section in the disposal site or outside the disposal site, and after the impervious work is performed, the transferred waste is buried in the impervious section. By repeating the return in all sections, not only can the entire existing waste disposal site be impermeable, but also the decomposition of organic components due to the growth of aerobic bacteria due to the aeration effect during excavation and backfilling. Because it is promoted, it is suitable for early decomposition of waste.
[0009]
BEST MODE FOR CARRYING OUT THE INVENTION
Hereinafter, preferred embodiments of the method of the present invention will be described in detail with reference to the accompanying drawings.
[0010]
In the present embodiment, an underground continuous wall is constructed in the waste disposal site 1 to partition it into a lattice shape (at an interval of about 3 to 10 m) in plan view. FIG. 1 shows a state in which a soil cement column 6 serving as an underground continuous wall is constructed by the SMW method using the heavy equipment 5, and the soil cement column 6 traverses a layer of the waste 3. It is constructed vertically so that the bottom reaches the lower ground E. As the underground continuous wall, another known underground continuous wall such as a steel sheet pile may be used instead of the soil cement column 6.
[0011]
After the above-mentioned underground continuous wall construction work is completed, as shown in FIG. 2, the shovel car 7 is thrown into one of the sections to excavate the waste 3, and, for example, pile up on the waste in the adjacent section. (The piled waste is shown by 3a and 3b). Then, when the excavation and removal of the waste accumulated in the section is completed, as shown in FIG. 3, the exposed surface of the ground E is subjected to a water impervious work 8, and the pile of the waste 3a is piled up in the adjacent section. , 3b into the same section and backfill. As the water shield 8, known materials such as a water shield sheet such as a rubber sheet, waterproof asphalt, and waterproof concrete can be employed.
[0012]
Thereafter, if the same work is repeated for each section one after another, as shown in FIG. 4, the entire bottom surface of the waste disposal site 1 is covered with the water shield 8, and the repair or repair work is completed. The amount of waste in the section partitioned by the soil cement column 6 is smaller than the total amount of waste in the repository 1, and is excavated and transferred to another section to be transferred outside the site of the waste repository 1. Repairs or renovations can be performed without having to do so. Oxygen is taken into the waste due to the aeration effect of excavation and backfilling, which promotes the activation of aerobic bacteria, and can promptly decompose organic components contained in the waste.
[0013]
In the present embodiment, the inside of the disposal site 1 is partitioned in a lattice shape. However, it is needless to say that the inside of the disposal site 1 may be partitioned in a strip shape or a streak shape. Further, in the above embodiment, the waste excavated in a certain section is piled up on the adjacent section, but may be a separate section instead of the adjacent section, or may be transferred to the outside of the waste disposal site 1. it can. Even in this case, since the amount of waste transferred is small, the problem of alternative land can be easily solved.
[0014]
In addition, a roof or the like can be constructed on the basis of the underground continuous wall formed by the soil cement column 6 or the steel sheet pile, and a storage in other parts in consideration of environmental conservation can be formed. Furthermore, a structure that does not sink can be constructed based on these underground continuous walls.
[0015]
【The invention's effect】
As is apparent from the above description, in the method for repairing an existing waste disposal site according to the present invention, the amount of waste in the section partitioned by the underground continuous wall is smaller than the amount of all waste, and Then, it can be repaired or refurbished without being transferred to a site other than the waste disposal site. In addition, even in the case of transfer outside the disposal site, since the amount is small, the problem of the substitute site can be easily solved.
[Brief description of the drawings]
FIG. 1 is a cross-sectional view showing a state in which a soil cement column that serves as an underground continuous wall is being constructed.
FIG. 2 is a cross-sectional view showing a state where one of the sections partitioned by the underground continuous wall is being excavated.
FIG. 3 is a cross-sectional view showing a state where a water shielding work is performed on the same section.
FIG. 4 is a sectional view showing a repair completed state.
[Explanation of symbols]
1 Existing waste disposal site 3 Waste 6 Underground continuous wall (column of soil cement)
8 Water shield

Claims (2)

既設廃棄物処分場を格子状ないしは短冊状に仕切り、下部地盤に到達する複数の地下連続壁を構築し、該地下連続壁に囲われた区画の廃棄物を掘削除去した後、当該区画の底部に遮水工を施すことを特徴とする既設廃棄物処分場の補修方法。The existing waste disposal site is partitioned into a grid or strip, a plurality of underground continuous walls reaching the lower ground are constructed, and the waste in the section surrounded by the underground continuous wall is excavated and removed. A method of repairing an existing waste disposal site, characterized by applying a seepage control to the existing waste disposal site. 前記掘削除去した廃棄物を処分場内の他の区画または処分場外に移送し、遮水工が施された後に当該遮水工を施した区画内に移送廃棄物を埋め戻すことをすべての区画において繰り返すことを特徴とする請求項1に記載の既設廃棄物処分場の補修方法。Transferring the excavated and removed waste to another section in the disposal site or outside the disposal site, and backfilling the transferred waste in the section subjected to the impervious work after the impervious work is performed in all the sections. The method for repairing an existing waste disposal site according to claim 1, wherein the method is repeated.
JP22257499A 1999-08-05 1999-08-05 Repair method of existing waste disposal site Expired - Fee Related JP3557957B2 (en)

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JP22257499A JP3557957B2 (en) 1999-08-05 1999-08-05 Repair method of existing waste disposal site

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Application Number Priority Date Filing Date Title
JP22257499A JP3557957B2 (en) 1999-08-05 1999-08-05 Repair method of existing waste disposal site

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JP3557957B2 true JP3557957B2 (en) 2004-08-25

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