JPS5983098A - Storage container - Google Patents

Storage container

Info

Publication number
JPS5983098A
JPS5983098A JP18177283A JP18177283A JPS5983098A JP S5983098 A JPS5983098 A JP S5983098A JP 18177283 A JP18177283 A JP 18177283A JP 18177283 A JP18177283 A JP 18177283A JP S5983098 A JPS5983098 A JP S5983098A
Authority
JP
Japan
Prior art keywords
storage
compartment
stored
water
sedimentation
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.)
Pending
Application number
JP18177283A
Other languages
Japanese (ja)
Inventor
ロベルト・ヴアン・デル・ツヴアン
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.)
POORU YAKESU HIYUISUBUURUDO
Original Assignee
POORU YAKESU HIYUISUBUURUDO
Priority date (The priority date 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 date listed.)
Filing date
Publication date
Application filed by POORU YAKESU HIYUISUBUURUDO filed Critical POORU YAKESU HIYUISUBUURUDO
Publication of JPS5983098A publication Critical patent/JPS5983098A/en
Pending legal-status Critical Current

Links

Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B09DISPOSAL OF SOLID WASTE; RECLAMATION OF CONTAMINATED SOIL
    • B09BDISPOSAL OF SOLID WASTE NOT OTHERWISE PROVIDED FOR
    • B09B1/00Dumping solid waste
    • B09B1/002Sea dumping

Landscapes

  • Engineering & Computer Science (AREA)
  • Environmental & Geological Engineering (AREA)
  • Processing Of Solid Wastes (AREA)
  • Medicines Containing Material From Animals Or Micro-Organisms (AREA)
  • Thermally Insulated Containers For Foods (AREA)
  • Centrifugal Separators (AREA)

Abstract

(57)【要約】本公報は電子出願前の出願データであるた
め要約のデータは記録されません。
(57) [Summary] This bulletin contains application data before electronic filing, so abstract data is not recorded.

Description

【発明の詳細な説明】[Detailed description of the invention]

この発明は、右害物?Jをコン1〜1−1−ル状態で貯
蔵してa3 <ための貯蔵庫に関し、4jrに一]ンア
ノ=等内に詰められた成用111廃棄物質のftj’ 
M /’Fに関り−る。 このような物71の貯蔵を行なうには、種々の可能な仕
方がd5る。一つの可能性は、放射性物質を居住[ス域
hs rら遠く離れた海溝内に沈めることである。この
ような貯蔵は、それ自身長期間に4つたって安全である
が、−1投下しcしようと物質の−lン1−L1−ルが
−くさない、。 将来には、決定的な解決を保湘しかつ環境間V11とい
う観点からも完全に受iJ入れることのできるいくつか
の可能111があるということは想(f(:にツ11り
ない、。 従って、改良された技術によ−)(、故的性物7りの貯
蔵の!こめに海床からこの物7″iを取り出1ことがC
きるようにし一’CJ3 <ことが強く望;1、れJ、
う。 海床h11らのこの廃棄物質の取り出し)は、草大な−
」ストを別にしCも、さしあたって不可能ではないにU
よ?JJ雑である。 海中への放射性物質の投下の他に、二1ンデナ等に詰め
られIご放6=J (’l廃棄物質を地−ト深くに位置
するいわゆる岩塩ドーム内に貯蔵Jることも可能である
。これは、放tJI性物質が比較的筒中かつ適切なコス
1−で取り出Jことがでさ、その上貯蔵山の中間の補正
も好ましくない開発に対して行なえるという利点がある
が、岩塩ドーム(よ、居住域に近過きかつぞの内部←二
貯蔵されている廃棄物質は、ン°1塩ドームの位置Jる
地層の移動可能性のために、汲み上げられるであろう地
下水と接触づるC・あろうという問題が考えられる。 この発明は、貯R即を提供しようとづるものであって、
Iンラ−〕−等に詰められた放q・J性廃棄物T’tが
、良明間にわたっ(安全かつLIント1−1−ル可能に
貯蔵て゛き、後に筒中かつ安(…口こ取り出りことがζ
゛き、よI、:さらに貯M庁が居住域から充分遠< P
lfれC位置計しめられ′T:召会d3よび社会が1幾
能Jる/l;71it系に危険のないような貯蔵庫を提
供しようとりるものである。 この発明によれば、貯蔵庫が、フロー1−可能で・かつ
水中に沈降用111iな構造体であり、これが少なく其
部分的にtm床に沈めることがて−さかつ収納されでい
る汚染廃棄物への接jL[のためのシール可能な人11
を右づるようにりることにJ、ってこの目的を達成−4
ることか(きる。 この貯蔵庫(J、多数の分割された区画を右し、その各
々が接近ハツチによってシール可能であることが9rま
しい。この区画内に貯蔵された物質の状態は、測定装置
および制御装置によっC測定され、記録されかつ制御さ
れる。好J、しくない開発の場合に1.L 、 rjl
l!!JJ性物τ′1を貯蔵し乙いる一1シーj]の温
tQかクリアrカルなどきは、区画内の海水あるい
Is this invention harmful, right? ftj' of the 111 waste material packed in the storage room for storing J in a con-1 to 1-1-1-contained state,
Related to M/'F. There are various possibilities d5 for carrying out the storage of such objects 71. One possibility is to sink radioactive materials in ocean trenches far from habitable areas. Although such storage is itself safe for long periods of time, it does not destroy the material even if it is dropped. I believe that in the future there will be several possibilities that will preserve a definitive solution and be fully acceptable from an inter-environmental V11 perspective. Therefore, with improved technology, it is possible to remove this item 7''i from the seabed during the storage of the deceased object 7.
I strongly hope that it will be possible;
cormorant. The extraction of this waste material from the seabed H11 etc.) is a huge problem.
”Aside from the strike, C is not impossible for the time being.
Yo? JJ is rough. In addition to dropping radioactive materials into the ocean, it is also possible to store them in so-called salt domes located deep underground. This has the advantage that the radioactive substance can be taken out relatively in the cylinder and at an appropriate cost, and furthermore, correction in the middle of the storage pile can be performed against unfavorable developments. The waste material stored inside the salt dome (which is located close to the habitable area) may be mixed with the groundwater that would be pumped due to the mobility of the geological formations in the location of the salt dome. There is a problem that there may be contact.This invention is intended to provide a solution for saving R.
Released q/J wastes packed in I-liners etc. are stored safely and safely in the LI-int 1-1-1-1-1-1-1-1, and are later stored in the cylinders and safely (...the mouth is collected). The protrusion is ζ
゛ki, yoI,: In addition, the storage M office is far enough from the residential area <P
The church d3 and the society are trying to provide a safe storage for the 71it system. According to the present invention, the storage is a structure capable of flow and settling in water, so that the contaminated waste can be partially submerged in the tm floor and stored therein. Sealable person 11 for contact jL[
I achieved this goal by moving to the right direction.-4
This reservoir (J) preferably has a number of subdivided compartments, each of which can be sealed by means of an access hatch. The condition of the substance stored in this compartment can be measured Measured, recorded and controlled by the device and control device.1.L, rjl in case of favorable or unfavorable development.
l! ! The temperature of the area where the JJ property τ′1 is stored, such as the temperature of the water or the clear water, is stored in the seawater or water in the compartment.

【よ
真水の強制冷/Jlをfj7.うか、貯蔵1喝トを海床
から持らトけにれを別の良いI場所へ移づということが
−Cさる。 上iJi l、 /こ貯蔵庫のbつ大きな利点は、沈下
に先\’L −) ’C、敢剣竹廃東物を1)!壁に4
5いであるい(まn)111ならIJ、での′1成揚所
にa3いC完全にあるいは一部分収納し、必要な場所へ
曳航して沈下させることができるということである。貯
蔵Fドの完全<rあるいは部分的な収納が、片壁と沈下
状態の両りで行イrえるということは、取扱い北、大き
なフレキシビリi−イが得られる、。 以下、添(slの図面に示す実施例に基づいてこの発明
の詳細な説明する。 図面は、柵長い貯蔵庫1を示し、各々接近ハツチ3でシ
ール可能な複数の分離された区画2に分割されている。 貯蔵庫1は、長ズI命と覆るために鉄筋工」ンクリ−1
−で作られていることが好ましく、フロー1〜可能であ
ると同時に沈降可能な(M Xjを右1〕、充分な安定
性と沈降位置からフロート位置に復帰でさるように設h
1されていることが好J、シい。 鉄筋1ンクリ−1−の代りに、長町命の異−秤の月71
(ン1つるい【、1月Y′1の組合けを選択Jることが
てき、放射線に夕・1して充分なシールド係数を可能な
限り右しηいイ)1.この構造13に、浸透を防+L−
316シールを右()ているべきである。 細長い形状の他に、他の形も可能である。海4の上を7
1」−1・状態C゛移動ゼるという点からは、細長い形
状が明らかに好ましい。 通常、貯蔵庫1は、乾ドックで絹5’/−1られ、)A
:下さI!るべき必要な1月所へそこから曳航されザク
ジョンしゆ/υUつ間(図示せず)の如き手段にJ、っ
て7175床5に部分的に配置され、イの位置に固定さ
れる。貯M庫1の海床への説rF+−L1少なくとも接
近ハラJ’ 3が)f〆1床5ト(二突出づるJ、う(
こJへきCある。 海面に浮いた装置6によつC1船7から供給され二1ン
テナ8 ?7に詰められた敢0=J +〕+物質(よ、
開かれた接近ハツチ3から各々の区画へ装填される。 区画をIIIA々に設置J 1.: )こめ(こ、種)
2のり、イブの成用+’l廃棄物を別々に貯蔵層ること
がてき、;1、たての他に貯蔵庫’I Ll 、段階的
に充填ηることができるという利点すある。 接近ハツチ3をシールηる他に、接近ハツチJ3−にに
t/17中アスノj・ル1〜あるいi、J−、lンクリ
ー1へかf」着さけられてL)、I、い1.このJ、う
なシールにJ、つC1海水あるい(,1,淡水が区画内
に(F ’(xシ、水中装填(、二J、る゛−!ンデプ
を介しての汚染ii1 (I粍’I!J、 Ll、貯)
成I小夕1の海水に対しU l、1;ない。廃棄物質の
詰め込みは、必要あれ(,1、陰極防食を施される。 必要あれ(,1′、]ヌ画の各々は、区画内に存在する
された海水あるいは淡水を用いて間冷)i1水循環シス
1ムε)により個々に強制冷却される。この冷却循環シ
ステム9は、ある区画において、収納された丁」ンアナ
の温度が、放射性廃棄物質による昇熱にJ、ってクリテ
ィカルなものとな−〕だときに、補助的な安全f段どし
て向く。もし好ましくない影響が区画fOに制限される
ので、個々独立した区画を設()ることの利点は明らか
である。 貯蔵庫が間冷加水システムを備えているどき(j、これ
は、貯R庄1内の個々の区画10に収容できる。 冷l、11水循環システム[)の駆動部分(ま、いわゆ
る、インタースアージ冷月111にJ:り外部の水によ
って強制的に冷加される。このような19.画は、各1
人画2の各々の状態を測定し、記録しかつ制御Jる測定
おJ、び制御装冒を装備することができ、測定*i’j
果は、海岸の中央記録ステーションに伝送手段を介し乙
伝達される。区画10への水中での接近を行なう!、二
めの水中[lツクが設(〕られる。ト区画0の下りには
、冷却水循環シス−】ムおよび測定制御装置のための:
■源を収容りる区画12が設置、Jられる。 必要あれば、測定Jjよび制御装置は、貯蔵沖′1上に
構成されノ、コタツ−13に収容でさ、このタワ−13
は水面4上に突出し、また伝)工手段を備えている。こ
のりfノーは、タワー内部から区画10J:iJ−び1
2への接近がでさるJ、うに構成されている。このタワ
ー(J1貯蔵庫1の沈下0.Yに(,1重要な安定是準
どなり、このり1ノーtJ1、タワーに収納された装置
が別の場所でt(理されあるいは交1β(きるようにす
るために、貯蔵庫1に取外し可能に取りf;1(ノられ
Cいる。 冷ノ、(1水循環シスラム9の少なくと6駆動部分83
よび電源4,1、り1ノー内に収納できる。 区画10ど12i1iJ:ぴ(ifうるいは)り1ノー
13の存在は、貯蔵庫1が設(6される海床の深さによ
って定まる。これらの部+A h′Xなくでも、8麻に
=1ンI−1:1−ルされた貯蔵が行なわれるものC゛
あること(よ明らかである。 貯M沖の沈降は、1人画内への湖水の21人によ−)て
iiなわれる。、接3Ii、ハツチの使用後、区画内の
海水は、貯蔵される=1ンデナを腐食の少ないIMj5
1に同くために1ヌ画内への淡水の8人にJ、つ−C入
れ台片られる。 1、図面のm“1甲なR1明 第1図ILL、第2図の!−1線に沿っにJ)た1ヌ画
化された貯蔵庫の長手方向断面図であって、区画は、フ
U−トし°Cいる滑車装置によって廃棄物質を水中C′
充填される様子を示し、 第2図は、第1図の貯蔵庫の平面図a3よび第33図は
、貯蔵庫の側面図をそれぞれ承り。 ′1・・・貯 蔵 即    2・・・区  画3・・
・接近ハツチ    4・・・海  m15・・・海 
    床       6・・・滑車装置7・・・船
        E3・・・コンラナ9・・・冷J11
1水楯環システ11 10・・・区   画  11・・・インタースラージ
冷74112・・・区      画       1
3・・・タ  ワ  −59
[Forced cooling of fresh water/Jl fj7. Or, it would be better to remove the tanker from the seabed and move it to another suitable location. The big advantage of this storage is that it will sink before it sinks. 4 on the wall
If it is 5 or 111, it means that the A3C can be completely or partially stored in the IJ's landing place, and then towed to the required location and allowed to sink. The fact that complete or partial storage of the storage space can be carried out both on one wall and in a submerged position provides great handling flexibility. In the following, the invention will be described in detail on the basis of an embodiment shown in the accompanying drawing (sl). Reinforcement work is being carried out in Storage Room 1 to cover the length of the building.
- is preferably made of a material that is capable of flow 1 to at the same time sinking (M
I like being number 1. Instead of reinforcing steel 1-1-1, Nagamachi no Mikoto's strange scale moon 71
(It is easy to select a combination of 1 and 1, and make sure that the shielding coefficient is as high as possible for radiation.) 1. This structure 13 prevents penetration +L-
The 316 seal should be on the right (). Besides the elongated shape, other shapes are also possible. over the sea 4 7
1''-1・State C'' The elongated shape is clearly preferable from the point of view of movement. Typically, storage 1 is dry docked with silk 5'/-1)A
: Give it to me! From there, it was towed to the required location, and partially placed on floor 5 of 7175 by means such as a vacuum cleaner (not shown), and fixed in position A. Theory of storage M storage 1 to the seabed rF+-L1 at least approach Hara J' 3)
There is a C to J. 21 antenna 8 supplied from C1 ship 7 by device 6 floating on the sea surface? 7 packed into 0=J+〕+substance(yo,
Each compartment is loaded from the opened access hatch 3. Set up sections in IIIA 1. : ) Kome (ko, seed)
2. The waste can be stored in separate storage layers; 1. In addition to fresh storage, there is the advantage that it can be filled in stages. In addition to sealing the approaching hatch 3, the approaching hatch J3- was also attached to Asnore J. Le 1~ or I, J-, lncrease 1 during t/17. 1. In this case, J, C1 seawater or (,1, fresh water is in the compartment (F''I!J, Ll, save)
There is no U l, 1 for the seawater of Sei I Koyu 1. The packing of the waste material is provided with cathodic protection, if necessary (,1',). They are individually forcedly cooled by a water circulation system (ε). This cooling circulation system 9 is used to provide supplementary safety measures when the temperature of the stored materials in a certain compartment is critical due to heat increase due to radioactive waste materials. and turn. The advantage of establishing separate compartments is obvious if the undesired effects are confined to the compartment fO. If the storage is equipped with an intercooled water system (j, this can be housed in individual compartments 10 in the storage room 1). The cold moon 111 is forcibly cooled by external water.
Measurement and control equipment can be equipped to measure, record and control the state of each of the figures 2, and the measurement *i'j
The results will be transmitted via transmission means to a central recording station on the coast. Approaching section 10 underwater! , a second submersible system is installed below section 0 for the cooling water circulation system and measurement and control equipment:
■The compartment 12 containing the source is installed and installed. If necessary, the measurement equipment and control equipment can be constructed on the storage offshore '1 and housed in the kotatsu-13.
protrudes above the water surface 4 and is equipped with transmission means. This direction is from the inside of the tower to section 10J:iJ-1.
J, which approaches 2, is composed of sea urchins. Due to the subsidence of this tower (J1 storage 1) 0.Y(, 1 important stability issue, this 1 note tJ1, the equipment stored in the tower is t(processed or exchanged 1β(, 1β) in another location. In order to do this, the storage 1 is removably installed. At least 6 drive parts 83 of the water circulation system 9
It can be stored within the power supply 4, 1, and 1 no. Section 10 and 12 and 1 and 1 and 1 and 1 and 1 and 1 and 1 and 1 and 1 and 1 and 1 and 1 and 13, respectively, are determined by the depth of the seabed in which storage 1 is located. It is clear that there is something in which the stored storage is carried out. , Connection 3Ii, After using the hatch, the seawater in the compartment will be stored = 1 ndena into a less corrosive IMj5
For the same reason as in 1, 8 people of fresh water in 1 picture are left with J, 2 and C. 1. Longitudinal cross-sectional view of a scaled storehouse taken along the line !-1 of FIG. 1, ILL of FIG. A pulley device transports the waste material into the water.
Fig. 2 is a plan view of the storage in Fig. 1, and Fig. 33 is a side view of the storage, respectively. '1... Storage Immediately 2... Section 3...
・Approaching hatch 4...Sea m15...Sea
Floor 6...Pulley device 7...Ship E3...Conlaner 9...Cold J11
1 Water shield ring system 11 10... Section 11... Interslage cold 74112... Section 1
3... Tower -59

Claims (4)

【特許請求の範囲】[Claims] (1)  コンラナ等に詰められた右古物質の二1ン1
〜lll−ルされI、:貯蔵庫において、貯蔵庫が、少
なくとも海床中に沈降可能なフロー1〜可能でありかつ
沈■;可能な(14造を右することを特徴とJる貯蔵庫
(1) 21-1 of the ancient material packed in containers etc.
~ll-ruled I: A storage, characterized in that the storage is capable of at least a flow of sedimentation into the seabed and is capable of sedimentation (14).
(2)  貯蔵庫が複数の個々の区画に分割され、区画
の各ノイが接近ハップーでシール可能で・ある特許請求
の範囲第1項記載の貯蔵外。
(2) The storage unit according to claim 1, wherein the storage unit is divided into a plurality of individual compartments, each compartment being sealable with a close contact.
(3)貯蔵庫が、各区画内に貯蔵された有害物τ1の状
態に応答りる装置を備え、1qられた情報が、中央記録
スT−シ」ンに記録されるようにした特許請求の範囲第
11J′iあるいは第21n記載の貯蔵外。
(3) The storage is provided with a device that responds to the status of the harmful substances τ1 stored in each compartment, and the information obtained is recorded in a central recording screen. Outside the storage described in range 11J'i or 21n.
(4)  前記装置が、有害物質が好ましくない高)品
とな−)たとぎに、各1g画を別個に冷7i11づる開
冷却水循環シスアム4右づることを特徴とする特許請求
の範囲第3項記載の貯蔵庫。
(4) When the device is of a high quality product that does not contain harmful substances, each 1 gram portion is separately connected to an open cooling water circulation system (4). storage.
JP18177283A 1982-09-29 1983-09-29 Storage container Pending JPS5983098A (en)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
NL8203791A NL8203791A (en) 1982-09-29 1982-09-29 MARITIME CONTROLLED STORAGE OF HARMFUL MATERIAL.
NL8203791 1982-09-29

Publications (1)

Publication Number Publication Date
JPS5983098A true JPS5983098A (en) 1984-05-14

Family

ID=19840354

Family Applications (1)

Application Number Title Priority Date Filing Date
JP18177283A Pending JPS5983098A (en) 1982-09-29 1983-09-29 Storage container

Country Status (5)

Country Link
JP (1) JPS5983098A (en)
BE (1) BE897827A (en)
DE (1) DE3333156A1 (en)
GB (1) GB2129190B (en)
NL (1) NL8203791A (en)

Families Citing this family (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB2138198B (en) * 1983-03-22 1987-07-01 Nat Nuclear Corp Ltd Disposal of radioactive waste material
DE3404329A1 (en) * 1984-02-08 1985-08-08 Deutsche Gesellschaft für Wiederaufarbeitung von Kernbrennstoffen mbH, 3000 Hannover STORAGE FOR RADIOACTIVE WASTE AND BURNED FUEL ELEMENTS
GB8429241D0 (en) * 1984-11-20 1985-02-13 Nuclear Technology Consultants Repositories for waste material
AU590912B2 (en) * 1986-03-12 1989-11-23 Consolidated Environmental Technologies Ltd. The construction and use of subsea boreholes
SE504793C2 (en) * 1995-05-15 1997-04-28 Hydro Betong Ab A facility for offshore storage of hazardous waste and a base body with storage areas

Family Cites Families (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4307679A (en) * 1979-12-21 1981-12-29 The United States Of America As Represented By The United States Department Of Energy Submergible barge retrievable storage and permanent disposal system for radioactive waste

Also Published As

Publication number Publication date
GB8325780D0 (en) 1983-11-16
DE3333156A1 (en) 1984-04-05
NL8203791A (en) 1984-04-16
GB2129190B (en) 1986-04-03
GB2129190A (en) 1984-05-10
BE897827A (en) 1984-03-27
DE3333156C2 (en) 1988-03-31

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