JP2712132B2 - Fish culture water filter - Google Patents
Fish culture water filterInfo
- Publication number
- JP2712132B2 JP2712132B2 JP1058796A JP5879689A JP2712132B2 JP 2712132 B2 JP2712132 B2 JP 2712132B2 JP 1058796 A JP1058796 A JP 1058796A JP 5879689 A JP5879689 A JP 5879689A JP 2712132 B2 JP2712132 B2 JP 2712132B2
- Authority
- JP
- Japan
- Prior art keywords
- breeding
- biocontainer
- unit
- water
- breeding water
- 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
Links
- XLYOFNOQVPJJNP-UHFFFAOYSA-N water Substances O XLYOFNOQVPJJNP-UHFFFAOYSA-N 0.000 title claims description 65
- 238000009395 breeding Methods 0.000 claims description 72
- 230000001488 breeding effect Effects 0.000 claims description 72
- 238000001914 filtration Methods 0.000 claims description 48
- 241000251468 Actinopterygii Species 0.000 claims description 13
- 239000007952 growth promoter Substances 0.000 claims description 10
- 230000000813 microbial effect Effects 0.000 claims description 10
- 230000001737 promoting effect Effects 0.000 claims description 5
- 239000004576 sand Substances 0.000 claims description 5
- 229920001328 Polyvinylidene chloride Polymers 0.000 claims description 4
- 239000005033 polyvinylidene chloride Substances 0.000 claims description 4
- 238000009287 sand filtration Methods 0.000 description 21
- 229910017464 nitrogen compound Inorganic materials 0.000 description 16
- 150000002830 nitrogen compounds Chemical class 0.000 description 16
- 244000005700 microbiome Species 0.000 description 15
- 238000005273 aeration Methods 0.000 description 13
- 241000894006 Bacteria Species 0.000 description 8
- 241001148470 aerobic bacillus Species 0.000 description 7
- QGZKDVFQNNGYKY-UHFFFAOYSA-N Ammonia Chemical compound N QGZKDVFQNNGYKY-UHFFFAOYSA-N 0.000 description 4
- IJGRMHOSHXDMSA-UHFFFAOYSA-N Atomic nitrogen Chemical compound N#N IJGRMHOSHXDMSA-UHFFFAOYSA-N 0.000 description 4
- QVGXLLKOCUKJST-UHFFFAOYSA-N atomic oxygen Chemical compound [O] QVGXLLKOCUKJST-UHFFFAOYSA-N 0.000 description 4
- 238000000354 decomposition reaction Methods 0.000 description 4
- 238000009795 derivation Methods 0.000 description 4
- 210000003608 fece Anatomy 0.000 description 4
- VNWKTOKETHGBQD-UHFFFAOYSA-N methane Chemical compound C VNWKTOKETHGBQD-UHFFFAOYSA-N 0.000 description 4
- 238000000034 method Methods 0.000 description 4
- 239000001301 oxygen Substances 0.000 description 4
- 229910052760 oxygen Inorganic materials 0.000 description 4
- 238000005192 partition Methods 0.000 description 4
- 230000000644 propagated effect Effects 0.000 description 4
- 238000009423 ventilation Methods 0.000 description 4
- 241000605159 Nitrobacter Species 0.000 description 3
- 230000000694 effects Effects 0.000 description 3
- 230000005484 gravity Effects 0.000 description 3
- 235000014653 Carica parviflora Nutrition 0.000 description 2
- 241000243321 Cnidaria Species 0.000 description 2
- RWSOTUBLDIXVET-UHFFFAOYSA-N Dihydrogen sulfide Chemical compound S RWSOTUBLDIXVET-UHFFFAOYSA-N 0.000 description 2
- 241000237502 Ostreidae Species 0.000 description 2
- XSQUKJJJFZCRTK-UHFFFAOYSA-N Urea Chemical compound NC(N)=O XSQUKJJJFZCRTK-UHFFFAOYSA-N 0.000 description 2
- 229910021529 ammonia Inorganic materials 0.000 description 2
- 239000000919 ceramic Substances 0.000 description 2
- 238000004140 cleaning Methods 0.000 description 2
- 239000010794 food waste Substances 0.000 description 2
- 239000007789 gas Substances 0.000 description 2
- 229910000037 hydrogen sulfide Inorganic materials 0.000 description 2
- 229910052757 nitrogen Inorganic materials 0.000 description 2
- 235000020636 oyster Nutrition 0.000 description 2
- 238000010979 pH adjustment Methods 0.000 description 2
- 238000005406 washing Methods 0.000 description 2
- JVMRPSJZNHXORP-UHFFFAOYSA-N ON=O.ON=O.ON=O.N Chemical compound ON=O.ON=O.ON=O.N JVMRPSJZNHXORP-UHFFFAOYSA-N 0.000 description 1
- LEHOTFFKMJEONL-UHFFFAOYSA-N Uric Acid Chemical compound N1C(=O)NC(=O)C2=C1NC(=O)N2 LEHOTFFKMJEONL-UHFFFAOYSA-N 0.000 description 1
- TVWHNULVHGKJHS-UHFFFAOYSA-N Uric acid Natural products N1C(=O)NC(=O)C2NC(=O)NC21 TVWHNULVHGKJHS-UHFFFAOYSA-N 0.000 description 1
- MMDJDBSEMBIJBB-UHFFFAOYSA-N [O-][N+]([O-])=O.[O-][N+]([O-])=O.[O-][N+]([O-])=O.[NH6+3] Chemical compound [O-][N+]([O-])=O.[O-][N+]([O-])=O.[O-][N+]([O-])=O.[NH6+3] MMDJDBSEMBIJBB-UHFFFAOYSA-N 0.000 description 1
- 238000011001 backwashing Methods 0.000 description 1
- 230000009286 beneficial effect Effects 0.000 description 1
- 239000004202 carbamide Substances 0.000 description 1
- 238000004891 communication Methods 0.000 description 1
- 150000001875 compounds Chemical class 0.000 description 1
- 238000010586 diagram Methods 0.000 description 1
- 238000009792 diffusion process Methods 0.000 description 1
- 238000005516 engineering process Methods 0.000 description 1
- 235000013305 food Nutrition 0.000 description 1
- 239000010410 layer Substances 0.000 description 1
- 239000000463 material Substances 0.000 description 1
- 239000002245 particle Substances 0.000 description 1
- 238000004064 recycling Methods 0.000 description 1
- 239000013535 sea water Substances 0.000 description 1
- 241000894007 species Species 0.000 description 1
- 238000005507 spraying Methods 0.000 description 1
- 230000000153 supplemental effect Effects 0.000 description 1
- 239000002344 surface layer Substances 0.000 description 1
- 238000011144 upstream manufacturing Methods 0.000 description 1
- 229940116269 uric acid Drugs 0.000 description 1
- 238000004065 wastewater treatment Methods 0.000 description 1
- 238000003911 water pollution Methods 0.000 description 1
- 238000009736 wetting Methods 0.000 description 1
Classifications
-
- Y—GENERAL 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
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02W—CLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO WASTEWATER TREATMENT OR WASTE MANAGEMENT
- Y02W10/00—Technologies for wastewater treatment
- Y02W10/10—Biological treatment of water, waste water, or sewage
Landscapes
- Filtration Of Liquid (AREA)
- Farming Of Fish And Shellfish (AREA)
- Biological Treatment Of Waste Water (AREA)
Description
【発明の詳細な説明】 (産業上の利用分野) 本発明は、魚類を飼育又は繁殖する際に、飼育水中の
魚類の排泄物(糞、アンモニア、尿素、尿酸)や餌の残
渣等における窒素化合物を効果的に分解処理し、飼育水
を循環利用するための濾過装置に関するものである。DETAILED DESCRIPTION OF THE INVENTION (Industrial application field) The present invention relates to a method for cultivating or breeding fish, which is carried out by using nitrogen in fish excreta (feces, ammonia, urea, uric acid) and food residues in breeding water. The present invention relates to a filtration device for effectively decomposing a compound and recycling breeding water.
(従来の技術) 従来、魚類飼育水の循環利用の技術に関しては、重力
式の濾過装置及び圧力式の濾過装置、又はそれらに簡単
な前処理設備を付設したもの、或いはそれらを組み合わ
せたもの等があった。(Prior art) Conventionally, regarding the technique of circulating and utilizing fish breeding water, a gravity type filtration device and a pressure type filtration device, or those provided with a simple pretreatment facility, or a combination thereof are used. was there.
(発明が解決しようとする課題) 前記した従来技術は、次のような問題点を露呈してい
た。(Problem to be Solved by the Invention) The above-described conventional technology has revealed the following problems.
濾過槽が残渣や糞等の水中浮遊物により詰まってしま
うため、濾過槽の逆洗が定期的に必要であり、その逆洗
水は窒素化合物を含むので、水質汚濁防止法の排水規制
のため排水処理設備が必要であった。Because the filtration tank is clogged with suspended matters such as residues and feces, backwashing of the filtration tank is required periodically. The backwash water contains nitrogen compounds. Wastewater treatment equipment was required.
濾過槽に餌の残渣や糞が多量に流入すると濾過槽のバ
クテリアが異常に繁殖し、溶存酸素を多量に消費して、
しいては好気性から嫌気性の状態に濾過槽を変化させ
て、有害な、メタンガス、硫化水素等の発生の原因とな
る可能性があった。If a large amount of food residue or feces flows into the filtration tank, bacteria in the filtration tank abnormally grow and consume a large amount of dissolved oxygen.
In addition, changing the filtration tank from aerobic to anaerobic can cause harmful generation of methane gas, hydrogen sulfide and the like.
海水を重力式濾過槽により処理する場合は、濾過槽を
いくら深くしても飼育水中の窒素化合物の処理に働くニ
トロモナスやニトロバクター等の有益なバクテリアは表
面層しか繁殖しないため、深層部は微生物処理の効果が
なく、従って、重力式濾過槽の場合は、結局は広い面積
が必要であった。When treating seawater with a gravity filtration tank, no matter how deep the filtration tank is, beneficial bacteria such as nitromonas and nitrobacter that work on the treatment of nitrogen compounds in the breeding water only propagate on the surface layer. There was no effect of the treatment, and in the case of the gravity filtration tank, a large area was eventually required.
本発明は、このような点に鑑みてなされたもので、即
ち、魚類が排泄物として飼育中に放出する窒素化合物
(アンモニア性窒素、亜硝酸性窒素、硝酸性窒素等)を
微生物的に処理するために、窒素化合物の処理に有効な
ニトロモナスやニトロバクター等の好気性のバクテリア
を、広範囲の種に渡って効果的に繁殖させて飼育水の効
果的な処理を行い、これらの処理部を濾過部に前置する
ことにより、濾過部での水中浮遊物による詰まりを減少
させると共に、これらの要素を濾過槽内に一体に構成す
ることにより装置の小型化を計ることを目的とするもの
である。The present invention has been made in view of the above points, that is, a method of microbiologically treating nitrogen compounds (ammoniacal nitrogen, nitrite nitrogen, nitrate nitrogen, etc.) that fish release as excrement during breeding. Aerobic bacteria, such as Nitromonas and Nitrobacter, which are effective in treating nitrogen compounds, are effectively propagated over a wide range of species and treated effectively with breeding water. It is intended to reduce clogging of the filtration unit with suspended matter in the water by being placed in front of the filtration unit, and to reduce the size of the device by integrally configuring these elements in the filtration tank. is there.
(課題を解決するための手段) 上述した課題を解決するために、本発明では、まず上
部壁を多孔状壁に構成すると共にオーバーフロー管を設
けたバイオ容器内に微生物繁殖促進体を多段的に収納
し、このバイオ容器を濾過槽内の上部に配置すると共
に、バイオ容器の上方に散水部を配置し、濾過槽内の下
部にpH調節部と砂濾過部を配置した魚類飼育水の濾過装
置を提案する。(Means for Solving the Problems) In order to solve the above-mentioned problems, in the present invention, firstly, the upper wall is constituted by a porous wall and the microorganism propagation promoter is multi-staged in a biocontainer provided with an overflow pipe. The bio-container is disposed at the upper part of the filter tank, the watering part is disposed above the bio-container, and the pH control part and the sand filter part are disposed at the lower part of the filter tank. Suggest.
また本発明では、上記の構成において、バイオ容器を
濾過槽内の上部に複数段配置し、バイオ容器の段間にも
散水部を配置することを提案する。Further, the present invention proposes that, in the above configuration, the biocontainers are arranged in a plurality of stages in the upper part in the filtration tank, and the sprinkling section is arranged between the biocontainer stages.
次に本発明では、濾過槽内の一側に構成した繁殖室内
に、微生物繁殖促進体を多段的に収納したバイオ容器を
配置、繁殖室の横方向に隣接してpH調節部と砂濾過部を
配置した魚類飼育水の濾過装置を提案する。Next, in the present invention, a bio-container in which a microorganism growth promoting body is stored in multiple stages is arranged in a breeding chamber formed on one side of the filtration tank, and a pH adjusting unit and a sand filtering unit are arranged adjacent to the breeding room in the lateral direction. We propose a filtration device for fish breeding water in which is disposed.
そして本発明では、以上の構成において、微生物繁殖
促進体は、ポリ塩化ビニリデン製の輪状糸体を多数長さ
方向に配置したものとすることを提案する。And in this invention, in the above structure, it is proposed that the microorganism growth promoting body is one in which a number of annular filaments made of polyvinylidene chloride are arranged in the length direction.
(作用) 魚類の飼育水は、まず微生物繁殖促進体を多段的に収
納したバイオ容器内において、効果的に繁殖している好
気性バクテリアにより水中浮遊物の窒素化合物が効率的
に分解処理される。(Function) In the breeding water of fish, nitrogen compounds in suspended matter in water are first efficiently decomposed by aerobic bacteria that are effectively breeding in a bio-container in which microbial growth promoters are stored in multiple stages. .
飼育水は、次いで、pH調節部においてpHが調節される
と共に、砂濾過部において、濾過という物理的処理と、
バクテリアによる生物的処理による窒素化合物の分解処
理が行われる。The breeding water is then pH-adjusted in a pH adjusting section, and in a sand filtration section, a physical treatment called filtration,
Decomposition treatment of nitrogen compounds by biological treatment with bacteria is performed.
このようにpH調節部、砂濾過部にはバイオ容器におい
て前処理としての窒素化合物の分解処理が行われた飼育
水が供給されるため、pH調節部、砂濾過部での水中浮遊
物による詰まりが減少する。Since the breeding water, which has been subjected to the nitrogen compound decomposition treatment as a pretreatment in the bio-container, is supplied to the pH control unit and the sand filtration unit in this way, the pH control unit and the sand filtration unit are clogged with suspended matter in the water. Decrease.
(実施例) 次に本発明の実施例を図を参照して説明する。(Example) Next, an example of the present invention will be described with reference to the drawings.
第1図(a),(b)において、符号1はバイオ容器
であって、このバイオ容器1は、その上部壁を多孔状壁
2に構成すると共にオーバーフロー管3を設けた構成で
ある。符号4は微生物繁殖促進体であり、この微生物繁
殖促進体4をバイオ容器1内に多段的に収納して繁殖部
を構成している。微生物繁殖促進体4は、例えば第2図
(a),(b)に示すように、ポリ塩化ビニリデン製の
輪状体8を多数長さ方向に配置して太い紐状としたもの
を使用し、この太い紐状体を横方向に配列して上述した
ように多段的にバイオ容器1内に収納している。In FIGS. 1 (a) and 1 (b), reference numeral 1 denotes a biocontainer. The biocontainer 1 has an upper wall formed of a porous wall 2 and an overflow pipe 3 provided. Reference numeral 4 denotes a microorganism propagation promoter, and the microorganism propagation promoter 4 is stored in the biocontainer 1 in multiple stages to form a propagation part. For example, as shown in FIGS. 2 (a) and 2 (b), a large number of annular bodies 8 made of polyvinylidene chloride are arranged in the length direction to form a thick string. The thick strings are arranged in the lateral direction and stored in the biocontainer 1 in a multi-stage manner as described above.
第4図において、符号5は濾過槽であり、この上部に
上記バイオ容器1を配置する。この実施例では、バイオ
容器1は上下2段に配置しており、夫々のバイオ容器1
の上方には整流板15を配置している。整流板15は多数の
孔を形成した板等により構成し、上方から落下した飼育
水を分散して下方に散水する散水部を構成するものであ
る。また上側のバイオ容器15の上方の整流板15の上方に
は飼育水導入パイプ14を配置している。In FIG. 4, reference numeral 5 denotes a filtration tank, on which the biocontainer 1 is disposed. In this embodiment, the biocontainers 1 are arranged in two upper and lower stages, and each biocontainer 1
A straightening plate 15 is arranged above. The flow straightening plate 15 is formed of a plate or the like having a large number of holes, and constitutes a water sprinkling section for dispersing breeding water dropped from above and spraying water downward. A breeding water introduction pipe 14 is disposed above the straightening plate 15 above the upper biocontainer 15.
また濾過槽5には、下側のバイオ容器1の下方にpH調
節部6を配置すると共に、その下方に砂濾過部7を配置
している。pH調節部6はサンゴやカキガラ又はセラミッ
クス等の濾材から成る通常のもので、上部にはフィルタ
ー18を配置している。また下側のバイオ容器1とpH調節
部6間には散水部を構成する整流板15を配置している。In the filtration tank 5, a pH adjusting section 6 is disposed below the lower biocontainer 1, and a sand filtering section 7 is disposed below the pH adjusting section 6. The pH adjusting section 6 is a normal one made of a filter medium such as coral, oyster or ceramics, and has a filter 18 disposed at an upper portion thereof. In addition, between the lower biocontainer 1 and the pH controller 6, a rectifying plate 15 constituting a sprinkler is disposed.
一方、濾過槽5の下部には、砂濾過部7の横側に隣接
して、ブロワ20に連なる散気部16を収納した曝気部19を
配置しており、この曝気部19は砂濾過部7の底部下方の
間隔を介して連通させている。また曝気部19の横側に隣
接して、飼育水を導出するための導出部23を構成してお
り、この導出部23と曝気部19とは、仕切板の上端を介し
てオーバーフローにより連通させている。On the other hand, at the lower part of the filtration tank 5, adjacent to the side of the sand filtration unit 7, an aeration unit 19 containing an aeration unit 16 connected to the blower 20 is arranged. 7 are communicated with each other via an interval below the bottom. Further, adjacent to the side of the aeration unit 19, a derivation unit 23 for deriving breeding water is configured, and the derivation unit 23 and the aeration unit 19 communicate with each other by overflow through the upper end of the partition plate. ing.
また、濾過槽5には、天井側に換気扇25を配置すると
共に、砂濾過部7とpH調節部6間の空間部に対応する側
壁に通気孔17を形成している。In the filtration tank 5, a ventilation fan 25 is arranged on the ceiling side, and a ventilation hole 17 is formed in a side wall corresponding to a space between the sand filtration unit 7 and the pH adjustment unit 6.
第6図は、以上に説明した濾過装置に含む魚類の飼育
水9の循環系統を示すものである。符号12は飼育水槽で
あり、循環ポンプ13により導入パイプ14を通して飼育水
槽12から濾過槽5の上部に導入された飼育水9は、濾過
槽5の上記各部を通って処理が行われた後、下部から導
出されて飼育水槽12に還流する。そこで、次にまず濾過
槽5内における飼育水9の流れを第4図について説明す
る。FIG. 6 shows a circulating system of fish breeding water 9 included in the above-described filtration device. Reference numeral 12 denotes a breeding aquarium, and the breeding water 9 introduced from the breeding aquarium 12 to the upper part of the filtration tub 5 through the introduction pipe 14 by the circulation pump 13 is processed through the above-described parts of the filtration tub 5, It is led out from the lower part and returns to the breeding aquarium 12. Therefore, the flow of the breeding water 9 in the filtration tank 5 will be described first with reference to FIG.
第4図において飼育水槽12から導入された飼育水9は
導入パイプ14により整流板15上に散水され、この整流板
15により上側のバイオ容器1上に均等に散水される。バ
イオ容器1上に散水された飼育水9は、多段に収納した
微生物繁殖促進体2を濡らしながら落下して、下部壁で
囲まれた溜り部に溜って行く。In FIG. 4, the breeding water 9 introduced from the breeding aquarium 12 is sprinkled on the rectifying plate 15 by the introduction pipe 14, and this rectifying plate
By 15, water is evenly sprayed on the upper biocontainer 1. The breeding water 9 sprinkled on the bio-container 1 falls while wetting the microbial growth promoter 2 stored in multiple stages, and accumulates in the pool surrounded by the lower wall.
こうして飼育水9が次第にバイオ容器1の下部に溜っ
ていってオーバーフロー管3の水位を越えると、飼育水
9はバイオ容器1を溢れ、オーバーフロー管3を通して
下方の整流水板15上に落下する。そして整流板15により
均等に下側のバイオ容器1上に散水される。As the breeding water 9 gradually accumulates in the lower portion of the bio-container 1 and exceeds the water level of the overflow pipe 3, the breeding water 9 overflows the bio-container 1 and falls onto the lower rectifying water plate 15 through the overflow pipe 3. Then, the water is evenly sprayed onto the lower biocontainer 1 by the current plate 15.
下側のバイオ容器1においても、上側のバイオ容器1
と同様な過程を経て飼育水9が溜り、オーバーフロー管
3を経てpH調節部6の上方の整流板15上に落下する。In the lower bio container 1, the upper bio container 1
The breeding water 9 accumulates through the same process as described above, and falls onto the straightening plate 15 above the pH control unit 6 via the overflow pipe 3.
整流板15上に落下した飼育水9はフィルター18上に満
遍なく散水され、サンゴやカキガラ又はセラミックス等
の濾材の層を通った後、砂濾過部7上に落下する。こう
して砂濾過部7に至った飼育水9は、砂濾過部7を通
り、曝気部19、導出部20を経て導出される。The breeding water 9 that has fallen on the current plate 15 is evenly sprayed on the filter 18, passes through a layer of a filter medium such as coral, oyster or ceramics, and then falls onto the sand filtration unit 7. The breeding water 9 that has reached the sand filtration unit 7 in this way passes through the sand filtration unit 7, and is led out through the aeration unit 19 and the lead-out unit 20.
次に以上の流れにおいて飼育水が受ける処理について
説明する。Next, the processing that the breeding water receives in the above flow will be described.
まず、濾過槽5内の空間部は、換気扇25により通気孔
17から流入する空気と散気部16から流入する空気によ
り、新鮮空気の環境に維持されているため、上述したよ
うに導入パイプ14からバイオ容器1内に導入された飼育
水9は、その際に新鮮空気と接触して酸素が補給され
る。尚、このような空気の流通が行われるために、濾過
槽5は適所において上下方向の空気の流通が行われる構
成となっている。First, the space inside the filtration tank 5 is vented by a ventilation fan 25.
The breeding water 9 introduced into the biocontainer 1 from the introduction pipe 14 as described above is maintained at the fresh air environment by the air flowing from the air 17 and the air flowing from the diffuser 16. Oxygen is supplied by contact with fresh air. In addition, since such air circulation is performed, the filtration tank 5 has a configuration in which air is vertically circulated in appropriate places.
バイオ容器1は上述したとおり、上部壁を多孔状壁に
構成しており、オーバーフロー管3により所定水位に維
持されるので、第3図に示すように、バイオ容器1内の
下部に位置する微生物繁殖促進体4は飼育水によって浸
水状態であるが、上部に位置する微生物繁殖促進体4は
浸水状態ではなく、空気中に露出して、次々に散水され
る飼育水によって濡れた状態、即ち散水状態に維持され
る。As described above, the biocontainer 1 has an upper wall formed of a porous wall and is maintained at a predetermined water level by the overflow pipe 3. Therefore, as shown in FIG. The breeding promoter 4 is submerged by the breeding water, but the microbial breeding promoter 4 located above is not in the submerged state, but is exposed to the air and wet by the breeding water that is sprinkled one after another, ie, watering. Maintained in state.
従って、上部の微生物繁殖促進体4は常に強い好気性
の状態に維持され、また下部の微生物繁殖促進体4は上
部よりは弱いものの、上述したように補給される酸素に
より好気性の状態に維持される。Therefore, the upper microbial growth promoter 4 is always maintained in a strong aerobic state, and the lower microbial growth promoter 4 is maintained in an aerobic state by the supplemental oxygen as described above, although it is weaker than the upper one. Is done.
このように、バイオ容器1内の複数の微生物繁殖促進
体4は、一部は浸水状態であるが、他の一部は空気中に
露出した散水状態であって、環境が一様でないので、繁
殖するバクテリアの種類が広範囲となり、特に、空気中
に露出した微生物繁殖促進体4においてニトロモナスや
ニトロバクター等の窒素化合物の分解に有効な好気性の
バクテリアが良好に繁殖する。また、微生物繁殖促進体
4として、ポリ塩化ビニリデン製の輪状糸体8を多数長
さ方向に配置して太い紐状としたものを使用すると、そ
の材質により飼育水中の微小浮遊物を速やかに付着する
と共にバクテリアの単位容積あたりの繁殖が著しく増加
する。例えば、外径40mmφの微生物繁殖促進体4で1mあ
たり最大80gまでバクテリアが繁殖付着した。この繁殖
付着量は空気中に露出したもの、浸水させたものほぼ同
程度であった。また、繁殖したバクテリアの種類は広範
囲にわたっていた。As described above, some of the plurality of microorganism propagation promoters 4 in the biocontainer 1 are in a submerged state, while others are in a watered state exposed to the air, and the environment is not uniform. The types of bacteria that propagate are widespread, and in particular, aerobic bacteria that are effective in decomposing nitrogen compounds such as Nitromonas and Nitrobacter in the microbial growth promoter 4 exposed to the air satisfactorily propagate. In addition, when a large number of annular filaments 8 made of polyvinylidene chloride are arranged in the length direction to form a thick string as the microbial growth promoting body 4, minute suspended matter in the breeding water is quickly adhered depending on the material. At the same time, the growth of bacteria per unit volume is significantly increased. For example, in the microorganism growth promoter 4 having an outer diameter of 40 mmφ, bacteria propagated and adhered to a maximum of 80 g per 1 m. The amount of the attached breeding was almost the same as that exposed in the air and immersed in the water. Also, the types of bacteria that propagated were widespread.
この結果、バイオ容器1内に導入された飼育水9中の
魚類の排泄物や餌の残渣における窒素化合物等は、微生
物繁殖促進体4により繁殖する好気性のバクテリアによ
り効果的に分解処理され、この部分が嫌気性の状態に移
行して有害なメタンガス、硫化水素等の発生を防止する
ことができる。As a result, excrement of fish in the breeding water 9 introduced into the biocontainer 1 and nitrogen compounds in the residue of the food are effectively decomposed by the aerobic bacteria propagated by the microorganism growth promoter 4, This portion shifts to an anaerobic state, and generation of harmful methane gas, hydrogen sulfide, and the like can be prevented.
特に、本実施例においては、バイオ容器1は上下2段
に構成しているので、上述した微生物による分解処理も
2段に行われ、飼育水9の分解処理がさらに良好に行わ
れる。In particular, in the present embodiment, since the biocontainer 1 is configured in two stages, upper and lower, the decomposition treatment by the above-described microorganisms is also performed in two stages, and the decomposition treatment of the breeding water 9 is performed more favorably.
このようにして2段又は1段或いは3段以上のバイオ
容器1において窒素化合物等を分解処理した飼育水を、
続いてpH調節部6、そして砂濾過部7に導入するため、
これらのpH調節部6、砂濾過部7における水中浮遊物に
よる詰まりが減少し、従って洗浄までの期間が長くなる
と共に、洗浄水に含まれる窒素化合物の量が少ないた
め、水質汚濁防止法の排水規制に対しても有利である。The breeding water obtained by decomposing nitrogen compounds and the like in the two-stage, one-stage, or three-stage or more biocontainers 1 in this manner,
Then, in order to introduce into pH control part 6 and sand filtration part 7,
Since the clogging of the pH control unit 6 and the sand filtration unit 7 with suspended matter in the water is reduced, the time required for cleaning is increased, and the amount of nitrogen compounds contained in the cleaning water is small. It is also advantageous for regulation.
砂濾過部7においては、水中浮遊物の濾過という物理
的処理と共に、ここでもバクテリアによるアンモニア等
の窒素化合物の生物的処理が行われる。そして砂濾過部
7を経た飼育水9は上述したとおり曝気部19に入り、こ
こでブロワ20により散気部16から導入される微細な空気
粒により酸素が補給され、導出部23から第6図に示す導
出パイプ24を経て飼育水槽12に還流される。In the sand filtration unit 7, biological treatment of nitrogen compounds such as ammonia by bacteria is performed together with physical treatment of filtering suspended matter in water. The breeding water 9 that has passed through the sand filtration unit 7 enters the aeration unit 19 as described above, where oxygen is replenished by fine air particles introduced from the air diffusion unit 16 by the blower 20, and FIG. The water is returned to the breeding aquarium 12 through the outlet pipe 24 shown in FIG.
以上説明した実施例では、濾過槽5内にバイオ容器1
による繁殖部、pH調節部6及び砂濾過部7等を上下方向
に設置して、いわば縦型に構成しているが、第5図に示
す実施例は横型に構成したものである。In the embodiment described above, the biocontainer 1 is placed in the filtration tank 5.
The breeding section, the pH control section 6 and the sand filtration section 7 are installed in the vertical direction to form a vertical type. The embodiment shown in FIG. 5 is a horizontal type.
即ち、第5図において、符号1′は上記バイオ容器1
の上部壁と同様な多孔状壁2′により構成したバイオ容
器であり、このバイオ容器1′には縦方向に配列した微
生物繁殖促進体4を多段的に収納している。That is, in FIG.
This is a biocontainer constituted by a porous wall 2 'similar to the upper wall of the present invention. In this biocontainer 1', microbial growth promoters 4 arranged in a longitudinal direction are stored in multiple stages.
このバイオ容器1′を濾過槽5′の一側に構成した繁
殖室10に配置し、この繁殖室10の上部に整流板15′と、
その上方に飼育水導入パイプ14′を配置している。そし
て繁殖室10の横方向に隣接してpH調節部11と砂濾過部22
を配置しており、繁殖室10からpH調節部11への飼育水の
導入は、それらの仕切板の下端の導入部21から行い、ま
たpH調節部11から砂濾過部22への飼育水の導入は、仕切
板の上端を経てオーバーフローにより行う構成としてい
る。また砂濾過部22の横側に隣接して、ブロワ20′に連
なる散気部16′を設置している曝気部19′を配置してお
り、この曝気部19′は砂濾過部22の底部下方の間隔を介
して連通させている。また曝気部19′の横側に隣接し
て、飼育水を導出するための導出部23′を構成してお
り、この導出部23′と曝気部19′とは、仕切板の上端を
介してオーバーフローにより連通させている。以上の構
成の濾過装置は、上述のろ過装置と同様に第6図の循環
系統において使用することができる。This biocontainer 1 'is arranged in a breeding room 10 arranged on one side of a filtration tank 5', and a rectifying plate 15 'is provided on the upper part of the breeding room 10;
Above this, a breeding water introduction pipe 14 'is arranged. The pH control unit 11 and the sand filtration unit 22 are adjacent to the breeding room 10 in the lateral direction.
The introduction of breeding water from the breeding room 10 to the pH control unit 11 is performed from the introduction unit 21 at the lower end of the partition plate, and the breeding water from the pH control unit 11 to the sand filtration unit 22 is introduced. The introduction is performed by overflow through the upper end of the partition plate. In addition, adjacent to the side of the sand filtration unit 22, an aeration unit 19 'having an aeration unit 16' connected to the blower 20 'is arranged. The aeration unit 19' is located at the bottom of the sand filtration unit 22. It communicates through the lower space. Further, adjacent to the side of the aeration unit 19 ', a derivation unit 23' for deriving breeding water is configured, and the derivation unit 23 'and the aeration unit 19' are connected via the upper end of the partition plate. Communication is caused by overflow. The filtering device having the above configuration can be used in the circulation system shown in FIG. 6 similarly to the above-described filtering device.
以上の構成の濾過装置においては、繁殖室10内の微生
物繁殖促進体4は全て浸水状態にあるが、飼育水9′の
深さが1m以内であれば好気性に維持され、従って微生物
繁殖促進体4の作用により、好気性のバクテリアが十分
に繁殖付着するので飼育水9′中の窒素化合物を良好に
分解処理することができ、以後のpH処理部11、砂濾過部
22においても上述の濾過装置と同様に処理を行うことが
できる。In the filter device having the above-mentioned structure, the microorganism growth promoting bodies 4 in the breeding room 10 are all in a flooded state, but if the breeding water 9 'is 1 m or less in depth, it is maintained in an aerobic state, and thus the microorganism growth promotion is promoted. Due to the action of the body 4, aerobic bacteria sufficiently propagate and adhere, so that nitrogen compounds in the breeding water 9 'can be satisfactorily decomposed, and the pH treatment unit 11, sand filtration unit
The processing can also be performed in 22 in the same manner as in the above-described filtration device.
(発明の効果) 本発明は以上のとおりであるので、次のような効果が
ある。(Effects of the Invention) The present invention is as described above, and has the following effects.
微生物繁殖促進体を多段的に収納しているバイオ容器
内において、効果的に繁殖している好気性バクテリアに
より、魚類の飼育水中の窒素化合物を効率的に分解処理
することができる。Nitrogen compounds in fish breeding water can be efficiently decomposed by aerobic bacteria that are effectively breeding in a biocontainer in which the microorganism breeding promoters are stored in multiple stages.
好気性のバクテリアにより飼育水中の水中浮遊物の窒
素化合物を分解処理する繁殖部を、pH調節部、砂濾過部
の上流側に構成しているので、pH調節部、砂濾過部にお
ける水中浮遊物による詰まりが減少し、洗浄までの期間
が長くなると共に、洗浄水に含まれる窒素化合物の量が
少ないため、水質汚濁防止法の排水規制に対しても有利
である。The breeding part, which decomposes nitrogen compounds in the water suspended in the breeding water by aerobic bacteria, is configured on the upstream side of the pH control part and the sand filtration part. This reduces clogging, increases the time required for washing, and reduces the amount of nitrogen compounds contained in the washing water, which is advantageous for drainage regulations under the Water Pollution Control Law.
繁殖部、pH調節部、砂濾過部等は、濾過槽内に縦型又
は横型に配置して一体に構成したので、濾過装置を非常
にコンパクト化することができる。Since the breeding section, the pH control section, the sand filtration section, and the like are arranged vertically and horizontally in the filtration tank and integrally formed, the filtration device can be made very compact.
第1図(a)はバイオ容器の説明的斜視図、(b)は同
説明的側面図、第2図(a)は微生物繁殖促進体の説明
的側面図、(b)は同説明的正面図、第3図はバイオ容
器内における微生物繁殖促進体の配置説明図、第4図は
本発明を適用した濾過装置の一例を示す説明的縦断面
図、第5図は本発明を適用した濾過装置の他例を示す説
明的縦断面図、第6図は濾過装置を含む飼育水の循環系
統を示す系統図である。 符号1,1′…バイオ容器、2,2′…多孔状壁、3…オーバ
ーフロー管、4…微生物繁殖促進体、5,5′…濾過槽、
6,11…pH調節部、7,22…砂濾過部、8…輪状糸体、9,
9′…飼育水、10…繁殖室、12…飼育水槽、13…循環ポ
ンプ、14,14′…循環ポンプ、15,15′…整流板、16…散
気部、17…通気孔、18…フィルター、19,19′…曝気
部、20,20′…ブロワ、21…導入部、23,23′…導出部、
24…導出パイプ、25…換気扇。1 (a) is an explanatory perspective view of a biocontainer, (b) is an explanatory side view thereof, FIG. 2 (a) is an explanatory side view of a microorganism propagation promoter, and (b) is an explanatory front view thereof. Fig. 3, Fig. 3 is an explanatory view of the arrangement of the microorganism propagation promoter in the biocontainer, Fig. 4 is an explanatory longitudinal sectional view showing an example of a filtering device to which the present invention is applied, and Fig. 5 is a filtration to which the present invention is applied. FIG. 6 is an explanatory longitudinal sectional view showing another example of the device, and FIG. 6 is a system diagram showing a circulation system of breeding water including a filtration device. Reference numeral 1, 1 ': biocontainer, 2, 2': porous wall, 3: overflow tube, 4: microorganism growth promoter, 5, 5 ': filtration tank,
6,11… pH adjustment part, 7,22… Sand filtration part, 8… Helix thread, 9,
9 '... breeding water, 10 ... breeding room, 12 ... breeding aquarium, 13 ... circulation pump, 14,14' ... circulation pump, 15,15 '... rectifier plate, 16 ... aeration part, 17 ... vent, 18 ... Filters, 19, 19 '... aeration unit, 20, 20' ... blower, 21 ... introduction unit, 23, 23 '... outlet unit,
24 ... outlet pipe, 25 ... ventilation fan.
Claims (4)
ーフロー管を設けたバイオ容器内に微生物繁殖促進体を
多段的に収納し、このバイオ容器を濾過槽内の上部に配
置すると共に、バイオ容器の上方に散水部を配置し、濾
過槽内の下部にpH調節部と砂濾過部を配置したことを特
徴とする魚類飼育水の濾過装置。The present invention provides a biocontainer having an upper wall formed of a porous wall and a multi-stage biocontainer provided with an overflow pipe. The biocontainer is disposed in an upper part of a filtration tank. A filter device for fish breeding water, wherein a water sprinkling unit is arranged above the container, and a pH adjusting unit and a sand filtering unit are arranged below the filter tank.
したことを特徴とする請求項1記載の魚類飼育水の濾過
装置。2. The apparatus for filtering fish breeding water according to claim 1, wherein a plurality of biocontainers are arranged in an upper portion of the inside of the filtration tank.
生物繁殖促進体を多段的に収納したバイオ容器を配置す
ると共に、繁殖室の横方向に隣接してpH調節部と砂濾過
部を配置したことを特徴とする魚類飼育水の濾過装置。3. A breeding chamber formed on one side of a filtration tank, wherein a biocontainer in which a multiplicity of microbial growth promoters are stored is arranged, and a pH control unit and a sand filter are provided adjacent to the breeding chamber in a lateral direction. A filter device for fish breeding water, wherein a part is disposed.
製の輪状糸体を多数長さ方向に配置したものであること
を特徴とする請求項1〜3までのいずれか1項に記載の
魚類飼育水の濾過装置。4. The fish according to any one of claims 1 to 3, wherein the microbial propagation promoting body is formed by arranging a number of annular filaments made of polyvinylidene chloride in the length direction. Breeding water filtration device.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
JP1058796A JP2712132B2 (en) | 1989-03-10 | 1989-03-10 | Fish culture water filter |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
JP1058796A JP2712132B2 (en) | 1989-03-10 | 1989-03-10 | Fish culture water filter |
Publications (2)
Publication Number | Publication Date |
---|---|
JPH02238835A JPH02238835A (en) | 1990-09-21 |
JP2712132B2 true JP2712132B2 (en) | 1998-02-10 |
Family
ID=13094543
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
JP1058796A Expired - Fee Related JP2712132B2 (en) | 1989-03-10 | 1989-03-10 | Fish culture water filter |
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JP (1) | JP2712132B2 (en) |
Families Citing this family (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
JP2618330B2 (en) * | 1994-02-26 | 1997-06-11 | 有限会社オーディーアイ | Seawater fish aquarium equipment |
JP2618331B2 (en) * | 1994-02-26 | 1997-06-11 | 有限会社オーディーアイ | Breeding of saltwater fish |
WO1996036219A1 (en) * | 1995-05-17 | 1996-11-21 | Jifas Corporation | Fish culture equipment |
JP6339877B2 (en) * | 2014-07-02 | 2018-06-06 | 大成建設株式会社 | Filter and filter tank |
Citations (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
JPS63177749A (en) * | 1987-01-16 | 1988-07-21 | 株式会社イナックス | Water recirculation type breeding method |
JPS63310614A (en) * | 1987-06-12 | 1988-12-19 | Nippon Doubutsu Yakuhin Kk | Method and apparatus for purification of aquarium fish vessel |
-
1989
- 1989-03-10 JP JP1058796A patent/JP2712132B2/en not_active Expired - Fee Related
Patent Citations (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
JPS63177749A (en) * | 1987-01-16 | 1988-07-21 | 株式会社イナックス | Water recirculation type breeding method |
JPS63310614A (en) * | 1987-06-12 | 1988-12-19 | Nippon Doubutsu Yakuhin Kk | Method and apparatus for purification of aquarium fish vessel |
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Publication number | Publication date |
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JPH02238835A (en) | 1990-09-21 |
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