JPH0824882A - Biological filtration device - Google Patents
Biological filtration deviceInfo
- Publication number
- JPH0824882A JPH0824882A JP6184170A JP18417094A JPH0824882A JP H0824882 A JPH0824882 A JP H0824882A JP 6184170 A JP6184170 A JP 6184170A JP 18417094 A JP18417094 A JP 18417094A JP H0824882 A JPH0824882 A JP H0824882A
- Authority
- JP
- Japan
- Prior art keywords
- ozone
- biological filtration
- activated carbon
- packed bed
- tank
- 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
Links
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
- Biological Treatment Of Waste Water (AREA)
- Water Treatment By Sorption (AREA)
Abstract
Description
【0001】[0001]
【産業上の利用分野】この発明は、有機物を含有する汚
水をオゾンで処理し、そのオゾン処理水を微生物によっ
て生物学的に処理するための生物濾過装置に関する。BACKGROUND OF THE INVENTION 1. Field of the Invention The present invention relates to a biological filtration apparatus for treating sewage containing organic matter with ozone and biologically treating the ozone-treated water with microorganisms.
【0002】[0002]
【従来の技術】汚水をオゾンで処理し、そのオゾン処理
水を生物濾過により生物学的に処理することは、従来か
ら周知である。その場合、オゾン処理水に残溜するオゾ
ンが生物濾過の濾材に付着した微生物の生物膜に接触す
ることによってオゾンの酸化殺菌作用で微生物は阻害さ
れ、充分な生物学的処理が行えなくなる。It is well known in the art to treat sewage with ozone and biologically treat the ozonated water with biofiltration. In that case, the ozone remaining in the ozone-treated water comes into contact with the biofilm of the microorganisms adhering to the filter material for biological filtration, whereby the microorganisms are inhibited by the oxidative sterilization action of ozone, and sufficient biological treatment cannot be performed.
【0003】[0003]
【発明が解決しようとする課題】このため、従来はオゾ
ン処理槽と、生物濾過槽との間にオゾン分解用の滞溜
槽、又は活性炭充填槽を設け、オゾン処理水に残溜する
オゾンを滞溜槽で自己分解するか、活性炭充填槽の活性
炭で残溜オゾンを分解したのち生物濾過槽に供給してい
る。従って、オゾン分解用の滞溜槽や、活性炭充填槽が
必要なので、設備コストが嵩むと共に、広い設置スペー
スを要する。For this reason, conventionally, a retention tank for ozone decomposition or an activated carbon filling tank is provided between the ozone treatment tank and the biological filtration tank to retain ozone remaining in the ozone-treated water. It is either self-decomposed in the storage tank, or the residual ozone is decomposed by the activated carbon in the activated carbon filling tank and then supplied to the biological filtration tank. Therefore, since a retention tank for ozone decomposition and an activated carbon filling tank are required, equipment costs increase and a large installation space is required.
【0004】[0004]
【課題を解決するための手段】本発明は、上記に鑑み開
発されたもので、汚水をオゾンで処理したオゾン処理水
を上向流で供給して生物濾過する生物濾過装置におい
て、オゾン処理水が上向流する生物濾過槽中に、活性炭
による下部充填層と、この下部充填層の上方に間隔を保
って微生物を付着した浮上性濾材による上部充填層と、
下部充填層の下に曝気手段とを設けたことを特徴とす
る。SUMMARY OF THE INVENTION The present invention was developed in view of the above, and is a biological filtration device for biologically filtering ozone-treated water obtained by treating wastewater with ozone in an upward flow. In the biological filtration tank that flows upward, a lower packing layer made of activated carbon, and an upper packing layer made of a buoyant filter medium having microorganisms attached at intervals above the lower packing layer,
An aeration means is provided below the lower packed bed.
【0005】[0005]
【実施例】図示の実施例において、1はオゾン処理槽
で、槽内の水面上に適宜の充填層2を設け、有機物を含
む汚水は散布管3で充填層2上に散布し、オゾンは槽内
底部に給気管4で吹込む。これによって、充填層2中を
下向流する汚水は、該充填層中を上向流するオゾンと向
流接触し、オゾンで酸化、殺菌される。オゾン処理水
は、ポンプピット6及びポンプを経由して生物濾過槽1
0の槽底に供給される。余剰のオゾンはオゾン処理槽の
上壁の排気口5から逃出する。DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS In the illustrated embodiment, 1 is an ozone treatment tank, in which an appropriate packing layer 2 is provided on the water surface in the tank, and sewage containing organic substances is sprayed on the packing layer 2 by a spraying pipe 3 to remove ozone. Blow by the air supply pipe 4 into the bottom of the tank. As a result, the sewage flowing downward in the packed bed 2 comes into countercurrent contact with ozone flowing upward in the packed bed, and is oxidized and sterilized by the ozone. The ozone-treated water passes through the pump pit 6 and the pump, and the biological filtration tank 1
0 is supplied to the bottom of the tank. Excess ozone escapes from the exhaust port 5 on the upper wall of the ozone treatment tank.
【0006】オゾン処理水が上向流する生物濾過槽10
の内部には活性炭による下部充填層11と、この下部充
填層の上方に間隔12を保ち微生物を付着した浮上性濾
材による上部充填層13と、下部充填層の下に曝気手段
としての散気管14とが設けてある。下部充填層11の
活性炭は、例えばクラレケミカル(株)製のクラレコー
ル2GG(2.0mmφ×3.0mmL)で、予め活性
汚泥処理水を連続通水し、活性炭本体のCOD吸着能を
ほゞ飽和したものを使用する。又、上部充填層13の浮
上性濾材には平均粒径3mm程度の球状の発泡スチロー
ル粒(比重0.03〜0.08)を使用する。尚、上部
充填層13の上面には浮上性濾材の粒径よりも目開きの
小さい通水性の集水板15を設け、濾材の流出を防止す
る。Biological filtration tank 10 in which ozone-treated water flows upward
Inside, the lower packing layer 11 made of activated carbon, the upper packing layer 13 made of a buoyant filter medium having microorganisms adhered to the lower packing layer at intervals 12 and the diffusing pipe 14 as an aeration means under the lower packing layer. And are provided. The activated carbon of the lower packed bed 11 is, for example, Kuraray Coal 2GG (2.0 mmφ × 3.0 mmL) manufactured by Kuraray Chemical Co., Ltd., and the activated sludge treated water is continuously passed in advance to obtain the COD adsorption capacity of the activated carbon body. Use saturated ones. Further, spherical styrofoam particles (specific gravity 0.03 to 0.08) having an average particle diameter of about 3 mm are used as the floating filter material of the upper filling layer 13. A water-permeable water collecting plate 15 having a mesh size smaller than that of the floating filter medium is provided on the upper surface of the upper filling layer 13 to prevent the filter medium from flowing out.
【0007】運転に際しては散気管14に空気を供給し
て気泡を濾過槽内で浮上させ、上部充填層13に付着す
る微生物に酸素を供給する。これにより濾過槽の槽底に
供給されて槽内を上向流するオゾン処理水は下部充填層
11中で溶解しているオゾンを活性炭によって効率的に
分解される。そして、浮上性濾材による上部充填層13
中を上向流する際には、該濾材に付着した微生物の生物
膜により含有する有機物を生物学的に分解され、有機物
を含まない処理水となって排水管16から流出する。During operation, air is supplied to the air diffuser 14 to cause air bubbles to float in the filtration tank, and oxygen is supplied to the microorganisms adhering to the upper packed bed 13. As a result, the ozone-treated water supplied to the bottom of the filtration tank and flowing upward in the tank efficiently decomposes the ozone dissolved in the lower packed bed 11 by the activated carbon. Then, the upper filling layer 13 made of the floating filter material
When flowing upward, the organic matter contained in the filter medium is biologically decomposed by the biofilm of microorganisms attached to the filter medium, and treated water containing no organic matter is discharged from the drain pipe 16.
【0008】実際には、直径400mm、高さ3500
mmの生物濾過槽内に平均粒径3mmの球状の発泡スチ
ロール(比重0.03〜0.05)によって層高2.0
mの上部充填層と、活性炭(前述の直径2mm、長さ3
mmのクラレコール2GG)によって層高0.8mの下
部充填層とを設けた。そして、浮上性濾材に生物膜を生
成させるためと、活性炭のCOD吸着能をほゞ飽和させ
るための準備運転として、散気管から空気をLV=10
m/時で散気しながら食品加工工場の総合排水の活性汚
泥処理水を槽底に供給し、LV=20m/時の上向流で
1週間通水した。尚、その間、散気管から洗浄用の空気
(LV=50m/時)を吹込み、上部充填層に上から逆
洗水を供給し、逆洗排水を上下の充填層の間隔から排水
する逆洗工程を1回/日の頻度で行った。Actually, the diameter is 400 mm and the height is 3500.
In a biological filtration tank of mm, a layer height of 2.0 is obtained by using spherical styrofoam (specific gravity 0.03 to 0.05) having an average particle diameter of 3 mm.
m top packed bed and activated carbon (diameter 2 mm, length 3 above)
mm lower layer with a bed height of 0.8 m. Then, as a preparatory operation for producing a biofilm on the levitation filter medium and for almost saturating the COD adsorption capacity of the activated carbon, air was passed from the air diffuser to LV = 10.
The activated sludge treated water of the general waste water of the food processing factory was supplied to the tank bottom while being diffused at m / hour, and water was passed for one week in an upward flow of LV = 20 m / hour. Meanwhile, during that time, cleaning air (LV = 50 m / hr) is blown from the air diffuser, backwash water is supplied to the upper packed bed from above, and backwash drainage is drained from the space between the upper and lower packed beds. The process was performed once per day.
【0009】同じ活性汚泥処理水をオゾン処理槽に供給
し、オゾン吹込量30mg/立で処理したオゾン処理水
(O3 として0.6〜2.2mg/立のオゾンが残溜)
を生物処理槽の槽底に供給し、LV=20m/時で上向
流させて生物学的処理を行った所、連続して1.5カ月
間、安定した処理が行えた(図2参照)。尚、逆洗は前
述したように上部充填層13上に逆洗水を散水管17で
散水し、散気管14からは逆洗用空気を散気し、逆洗廃
水は上下の充填層の間隔12から抜出管18で排水す
る。散気管14は上部充填層の浮上性濾材に付着する微
生物への酸素の供給と、逆洗用空気の供給を兼ね、上下
の充填層間の間隔12は逆洗排水の抜出し用になる。The same activated sludge treated water was supplied to the ozone treatment tank, and the ozone treated water was treated at an ozone injection amount of 30 mg / vertical (0.6 to 2.2 mg of O 3 / vertical ozone remains).
Was supplied to the bottom of the biological treatment tank, and the biological treatment was carried out by upward flow at LV = 20 m / hour. Stable treatment could be performed for 1.5 consecutive months (see Fig. 2). ). In the backwash, as described above, the backwash water is sprayed on the upper packed bed 13 by the sprinkling pipe 17, the backwash air is sparged from the air diffusing tube 14, and the backwash wastewater is separated from the space between the upper and lower packed beds. The water is drained from the pipe 12 through the pipe 18. The air diffuser 14 serves both to supply oxygen to the microorganisms adhering to the floatable filter medium of the upper packing layer and to supply air for backwashing, and the space 12 between the upper and lower packing layers serves for draining backwashing drainage.
【0010】[0010]
【発明の効果】以上で明らかなように、本発明によれば
生物濾過槽内に、浮上性濾材による生物処理用の上部充
填層から下に離して活性炭の下部充填層を設けたので、
残溜オゾンを含むオゾン処理水を槽内に上向流させる
と、下部充填層の活性炭がオゾンを有効に分解する。従
って上部充填層の浮上性濾材に付着する微生物はオゾン
で阻害されることなく水中の有機物を生物学的に分解で
きる。そして、オゾン分解用の滞流槽や、活性炭充填層
を別に設置する必要がないので設備コストは嵩まず、且
つスペースも節約できる。As is clear from the above, according to the present invention, since the lower packing layer of activated carbon is provided below the upper packing layer for biological treatment by the floatable filter medium in the biological filtration tank,
When ozone-treated water containing residual ozone is allowed to flow upward into the tank, activated carbon in the lower packed bed effectively decomposes ozone. Therefore, the microorganisms adhering to the floating filter material of the upper packing layer can biologically decompose organic matter in water without being inhibited by ozone. Further, since it is not necessary to separately install a stagnant tank for ozone decomposition and an activated carbon packed bed, equipment cost does not increase and space can be saved.
【図1】本発明の一実施例のフローシートである。FIG. 1 is a flow sheet of an embodiment of the present invention.
【図2】処理状況のグラフである。FIG. 2 is a graph of processing status.
1 オゾン処理槽 2 充填層 3 散布管 4 給気管 5 排気口 6 ポンプピット 10 オゾン処理層 11 活性炭による下部充填層 12 間隔 13 浮上性濾材による上部充填層 14 散気管(曝気手段) 15 集水板 16 排水管 17 逆洗水散水管 18 逆洗排水抜出管 1 Ozone Treatment Tank 2 Filled Bed 3 Dispersion Pipe 4 Air Supply Pipe 5 Exhaust Port 6 Pump Pit 10 Ozone Treatment Layer 11 Lower Filled Layer with Activated Carbon 12 Interval 13 Upper Filled Layer with Floating Filter Media 14 Diffuser Pipe (Aeration Means) 15 Water Collection Plate 16 Drain pipe 17 Backwash water sprinkling pipe 18 Backwash drainage pipe
Claims (1)
上向流で供給して生物濾過する生物濾過装置において、
オゾン処理水が上向流する生物濾過槽中に、活性炭によ
る下部充填層と、この下部充填層の上方に間隔を保って
微生物を付着した浮上性濾材による上部充填層と、下部
充填層の下に曝気手段とを設けたことを特徴とする生物
濾過装置。1. A biological filtration device for biologically filtering ozone-treated water obtained by treating wastewater with ozone in an upward flow,
In a biological filtration tank in which ozonated water flows upward, a lower packed bed of activated carbon, an upper packed bed of buoyant filter media with microorganisms attached at intervals above the lower packed bed, and a lower packed bed of the lower packed bed. A biological filtration device characterized in that an aeration means is provided in the.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
JP6184170A JPH0824882A (en) | 1994-07-14 | 1994-07-14 | Biological filtration device |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
JP6184170A JPH0824882A (en) | 1994-07-14 | 1994-07-14 | Biological filtration device |
Publications (1)
Publication Number | Publication Date |
---|---|
JPH0824882A true JPH0824882A (en) | 1996-01-30 |
Family
ID=16148595
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
JP6184170A Pending JPH0824882A (en) | 1994-07-14 | 1994-07-14 | Biological filtration device |
Country Status (1)
Country | Link |
---|---|
JP (1) | JPH0824882A (en) |
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
EP2508488A1 (en) * | 2011-04-04 | 2012-10-10 | Veolia Water Solutions & Technologies Support | Improved biological waste water purification reactor and method |
-
1994
- 1994-07-14 JP JP6184170A patent/JPH0824882A/en active Pending
Cited By (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
EP2508488A1 (en) * | 2011-04-04 | 2012-10-10 | Veolia Water Solutions & Technologies Support | Improved biological waste water purification reactor and method |
WO2012136654A1 (en) * | 2011-04-04 | 2012-10-11 | Veolia Water Solutions & Technologies Support | Improved biological waste water purification reactor and method |
CN103547535A (en) * | 2011-04-04 | 2014-01-29 | 威立雅水务解决方案与技术支持公司 | Improved biological waste water purification reactor and method |
RU2606435C2 (en) * | 2011-04-04 | 2017-01-10 | Веолия Уотер Солюшнз Энд Текнолоджиз Саппорт | Reactor for biological treatment of waste water and method |
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