JP4527232B2 - Rack type filter - Google Patents

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Publication number
JP4527232B2
JP4527232B2 JP2000088476A JP2000088476A JP4527232B2 JP 4527232 B2 JP4527232 B2 JP 4527232B2 JP 2000088476 A JP2000088476 A JP 2000088476A JP 2000088476 A JP2000088476 A JP 2000088476A JP 4527232 B2 JP4527232 B2 JP 4527232B2
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rack
housing
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circulating water
housing body
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JP2001269546A (en
JP2001269546A5 (en
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英彦 田中
伸彦 菅
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Asahi Kasei Chemicals Corp
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Asahi Kasei Chemicals Corp
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Description

【0001】
【発明の属する技術分野】
本発明は、中空糸膜を用いたラック式濾過装置に関する。さらに詳しくは、本発明は、河川水、湖沼水、地下水、海水、生活排水、あるいは工場排水等を原水として大量に除濁・除菌を行うラック式濾過装置に関するものである。
【0002】
【従来の技術】
従来のラック式濾過装置においては、中空糸膜モジュールは、モジュールハウジングと中空糸膜が接着剤で接着固定されており、モジュールの寿命が来ると、モジュール全てを廃棄していた。また、モジュールの使用条件によっては、耐食性、耐薬品性、耐圧強度の高い性能を要求される場合があり、高価なハウジングを使用する必要があり、経済的にも高くつき、廃棄物が増えるという環境問題も起こってくる。そのため、モジュールハウジングと中空糸膜とを分割できるカートリッジ型モジュールが提案されており、ハウジングを再使用して、中空糸膜カートリッジのみを廃棄する事が可能となった。これまでのラック式中空糸膜カートリッジ型モジュールは、全濾過運転型を前提にしているため、クロスフロー濾過運転を行う場合には、安定な運転が出来ないという問題があった。
【0003】
【発明が解決しようとする課題】
本発明は、上述のごとくラック式中空糸膜カートリッジ型モジュールで困難であったクロスフロー濾過運転を安定して行える様な、安価なラック式モジュール用ハウジングを備えたラック式濾過装置を提供するものであり、特に耐食性、耐候性及び強度の期待できる金属製材料を構成材料とした場合に有用となるラック式モジュール用ハウジングを備えたラック式濾過装置を提供せんとするものである。
【0004】
【課題を解決するための手段】
前記目的を達成するための本発明は、下記の通りである。
(1)複数本の中空糸膜を接着固定したカートリッジ型モジュールがラック式ハウジング内に挿入されて支持されるラック式濾過装置において、ラック式ハウジングのハウジング本体に連通する循環水流路が、外板をハウジング本体に溶接接合することによりハウジング本体の外周に鉢巻き状に液密的に設けられたことを特徴とするラック式濾過装置。
【0005】
(2)ハウジング本体に、径方向に複数の連通孔が形成され、循環水流路に、前記複数の連通孔を流通した循環水が集水されて、循環水口から流出するように構成されたことを特徴とする(1)記載のラック式濾過装置。
【0006】
(3)循環水流路の断面積が、循環水口に向かって大きくなるように構成されたことを特徴とする(1)または(2)記載のラック式濾過装置。
(4)連通孔が、ハウジング本体長手方向に長径を有するスリット状形状をしていることを特徴とする(1)、(2)または(3)記載のラック式濾過装置。
(5)循環水流路が、2分割の鋳物を溶接接合して形成されたことを特徴とする(1)記載のラック式濾過装置。
(6)ラック式ハウジングが、複数個の連通孔を有した円筒状のハウジング本体と、これより一回り径の大きな円筒状外板を各々鋳造により製作した後、円周溶接により2個の鋳物を液密的に溶接接合して製作されたことを特徴とする(1)記載のラック式濾過装置。
(7)ラック式ハウジングのハウジング本体に連通する循環水流路が、外板をハウジング本体に溶接接合することによりハウジング本体の外周に鉢巻き状に液密的に設けられたことを特徴とするラック式ハウジング。
【0007】
本発明に係るラック式濾過装置は、複数本の中空糸膜を接着固定したカートリッジ型モジュールがラック式ハウジング内に挿入されて支持されるラック式濾過装置において、前記ラック式ハウジング本体に連通する循環水流路が該ラック式ハウジング本体の外周に鉢巻き状に液密的に設けられたことを特徴とする。
上記構造によれば、循環水流路を該ラック式ハウジング本体の外周に鉢巻き状に液密的に設けた事で、循環水出口の流量を一定以上に確保する事が容易にできる。
また、前記ラック式ハウジング本体に径方向に複数の連通孔を形成し、前記ラック式ハウジング本体の外周に鉢巻き状に液密的に設けられた循環水流路に前記複数の連通孔を流通した循環水が集水されて、前記循環水流路の循環水口から流出するように構成することが望ましい。
【0008】
また、前記ラック式ハウジング本体の外周に鉢巻き状に液密的に設けられた循環流路の断面積が該循環流路の循環水口に向かって大きくなるように構成した場合には、循環水流路の循環水口に向かって下流側になるにつれて増量する循環水の流路抵抗を低減して、循環水口の流量を一定に確保する事が出来る。
また、前記ラック式ハウジング本体に径方向に複数個設けられた連通孔が、ハウジング長手方向に長径を有するスリット形状に構成した場合には、任意の長さの接着剤層の交換カートリッジに対応してハウジング内に装着する事が出来る。
また、前記ラック式ハウジング本体の外周に鉢巻き状に設けられた2重管構造部を2分割の鋳物で製作した後溶接接合して製造した場合には、安価なラック式ハウジングを製造する事が出来る。
【0009】
【発明の実施の形態】
図により本発明に係るラック式濾過装置の一実施形態を具体的に説明する。図1は本発明に係るラック式濾過装置の構成を示す断面説明図、図2はカートリッジ型モジュールを挿入した場合の連結部の構成を示す要部拡大図である。
以下、図1及び図2を用いて本発明に係るラック式濾過装置として原液を循環しながら濾過を行う、所謂クロスフロ−濾過方式のラック式濾過装置の一実施形態について説明する。
【0010】
図1において、1は原液を循環しながら濾過を行う所謂クロスフロー濾過方式のラック式濾過装置として構成されたものであり、例えば、河川水、湖沼水、地下水、海水、生活排水、あるいは工場排水等を原水として精密濾過または、限外濾過装置により浄化する水処理に適用可能である。
ラック式濾過装置1のラック式ハウジング2には、複数本の中空糸膜を接着固定したカートリッジ型モジュール3が挿入されて支持されている。
【0011】
ラック式ハウジング2は上下部に配置し図示しない支持手段により立設されるハウジング本体4とハウジングの上部に取り付けられるキャップ5及びナット6により構成されている。
カートリッジ型モジュール3は、カートリッジヘッド7のツバ部7aを、ハウジングヘッド8とキャップ5とではさみ、ナット6により固定する。カートリッジヘッドのツバ部7aとハウジングヘッド8の間にはパッキン9を、ツバ部7aとキャップ5との間にOリング10を挟んだ状態でナットのネジ5aを締め付けることにより、カートリッジ型モジュール3が液密的にラック式ハウジング2に取り付けられる。
【0012】
また、図3及び図4に示すように、循環水口11の側部でハウジング本体4の外周にはハウジング本体4内部に連通する循環水流路12を形成する縦断面コ字形状の外板13が鉢巻き状の液密的に設けられている。ハウジング本体4の壁面には該ハウジング本体の径方向にハウジング本体内部と循環水流路12とを連通する複数の連通孔14が形成されており、ハウジング本体4の外周に鉢巻き状に設けられた外板13により形成された循環水流路12に、ハウジング本体内部から複数の連通孔13を流通した循環水が集水されて循環水流路12の循環水口11から流出するように構成されている。
【0013】
ハウジング本体4の外周に鉢巻き状に液密的に設けられた循環水流路12の縦断面積は図4に示すように、該循環水流路12の循環水口11に向かって大きくなるように構成されており、これによって、循環水流路12の循環水口11に向かって下流側になるにつれて増量する循環水の流路抵抗を低減することが出来る。
尚、本実施形態では、循環水流路12の縦断面形状が方形状に形成された場合の一例について説明するが、循環水流路12の他の構成として断面半円形状や断面C字形状等、各種の形状に形成することが出来る。
【0014】
また、本実施形態では循環水流路12をハウジング本体4の外周に略水平に鉢巻き状に配置したが、必要に応じて所定の傾斜を設けて配置しても良い。
また、循環水流路12とハウジング本体4内部とを連通する連通孔14の数、口径形状及び口径面積も各種の数、口径形状及び口径面積に設定することが出来る。
特に、連通孔14の形状をハウジング本体4軸方向に対し長軸を有するスリット形状にした場合、接着剤層17の厚さが異なる種々のカートリッジ型モジュール3を装着する事が可能となる。
【0015】
キャップ5はOリング10を介してカートリッジヘッド7に水密的且つ液密的に固定され、キャップ5とカートリッジヘッド7とにより形成された空間により処理水室15が形成される。
本発明に用いられるハウジング本体4及びキャップ5及びナット6の素材は、特に限定されず、また、同一でも異なってもよいが、耐食性、耐候性及び強度信頼性の面から、ステンレス鋼が好ましく用いられる。
【0016】
一方、中空糸はその上端部が開口され、下端部が閉塞されており、図2に示すように、多数本の中空糸膜16は束ねられてその上端部外周が接着剤により接着された接着剤層17により一体的に結合され、更にその接着剤層は円筒形状のカートリッジヘッド7の内部に嵌挿して接着剤により該カートリッジヘッドに固着されている。
また、カートリッジ型モジュール3の下端部には一体的に束ねられた中空糸膜16の外周に嵌挿されるカートリッジ筒18が溶接や接着等により固着されている。
【0017】
本発明に用いられる中空糸膜の孔径は、特に限定されず、限外濾過膜や精密濾過膜の範囲の孔径の中空糸膜が好ましく用いられる。また、中空糸膜の材質も特に限定されず、合成高分子やセラミック、及びそれらの複合材料の膜が用いることが出来る。
本発明のカートリッジ型モジュールに用いられる接着剤は、特に限定されず、エポキシ樹脂、ウレタン樹脂、シリコン樹脂等を用いることが出来る。また、カートリッジヘッド、カートリッジ筒及びスカートの材質は、同一でも異なっていても良く、特に限定されず、成形性、耐圧性、耐薬品性及び経済性から選択される。好ましい材料としては、熱可塑性樹脂である、ポリ塩化ビニル、ポリエチレン、ポリプロピレン、ポリアミド、ABS樹脂、AS樹脂、PVDF、及び、機械的強度の強いステンレス鋼が用いられる。
【0018】
図1に示すように、カートリッジ型モジュール3の上端から該カートリッジヘッドに接続されたカートリッジ筒18の下端までの長さは中空糸膜の全長よりも長くなるように設定されており、中空糸膜16の下端よりも更に下方に伸びるカートリッジ筒のスカート18aにより供給水室21から供給される原水やエアバブリング用の空気が各カートリッジ型モジュール3の中空糸膜16に効率よく導かれるようになっている。
上記構成において、ラック式濾過装置1による濾過運転時には、図示しないポンプによりハウジング本体4の下部に設けられた原水口22から供給水室21に供給された原水はカートリッジ型モジュール3のスカート部18aに導かれる。
【0019】
カートリッジ型モジュール3の中空糸膜16の外周部を通過した原水はその一部が該中空糸膜16の外表面から中空部に加圧濾過されて該中空糸膜の開口された上端部から処理水室15に導かれる濾水となり、一部が中空糸膜16の外周部をそのまま通過する。
処理水室15に収容された濾水はキャップ上部の処理水口23からラック式濾過装置1の外部に取り出され、中空糸膜16の外周部をそのまま通過した原水はハウジング本体4の側面壁部に周方向に所定ピッチで形成された複数の連通孔14から鉢巻き状の循環水流路12に流通して集水され、下流側の循環水口11からラック式濾過装置1の外部に導かれる。
【0020】
このように、供給水の一部をハウジング本体4の外周部に鉢巻き状に設けた循環水流路12に流通させて集水することにより高い膜面流速を維持しつつ安定的に高い透水量を保ったクロスフロー濾過運転が可能となる。
一方、逆洗時は処理水口23から例えば濾水を供給して、循環水流路12及び供給水室21に逆流させ、中空糸膜16に蓄積した懸濁物質をはぎ取り、濾過装置1の系外に排除する。
【0021】
上記構成によれば、ハウジング本体4内部に連通する循環水流路12をハウジング本体4の外周に鉢巻き状に液密的に設けたことで、循環水出口11の流量を一定以上に確保する事が容易にできる。
また、前記ラック式ハウジング本体4に径方向に複数個設けられた連通孔14がハウジング長手方向に長径を有するスリット形状に構成した場合には、任意の長さの接着剤層17のカートリッジ型モジュール3に対応してハウジング2内に装着する事が出来る。
【0022】
また、耐食性、耐候性及び強度を向上させる手段として、ハウジング2に金属材料を適用することを考えた場合、前記ハウジング本体4の外周に鉢巻き状に設けられたハウジングヘッド8と外板13の2重管構造部を複数個の部品に分け、各部品を切削により製造した場合、非常なコストアップとなる。また、二重管部を一体物として鋳造及び成形で製作する事も困難である。
図5に示すように、二重管部を上部に連通孔14を有するハウジング本体4と外板13部の2個の部品に分けて、各々を鋳物あるいは成形で製作した後、溶接接合する事により、比較的安価で寸法制度の高いハウジング本体を製造する事ができる。
【0023】
この場合、ハウジング本体4に関しては、その全長が短い場合は一個の鋳物として準備しても良い。また、ハウジング本体4が長い場合は、ハウジング本体をヘッド部、胴部及び原水口部22の3部分に分割し、ヘッド部及び原水口部は鋳物で製作した後、市販配管の胴部とを溶接接合して、ハウジング本体4を製作しても良い。
【0024】
【発明の効果】
本発明は、ハウジング本体内部に連通する循環水流路をラック式ハウジング本体の外周に鉢巻き状に液密的に設けたことで、循環水口の流量を一定以上に確保する事が容易にできる。
また、前記ラック式ハウジング本体の外周に鉢巻き状に液密的に設けられた循環流路の断面積が該循環流路の循環水口に向かって大きくなるように構成した場合には、循環水流路の循環水口に向かって下流側になるにつれて増量する循環水の流路抵抗を低減して循環水口の流速を一定に確保する事が出来る。
【0025】
また、前記ラック式ハウジング本体に径方向に複数個設けられた連通孔がハウジング長手方向にスリット形状に構成した場合には、任意の長さの接着剤層のカートリッジ型モジュールに対応してハウジング内に装着する事が出来る。
また、前記ラック式ハウジング本体の外周に鉢巻き状に設けられた2重管構造部を2分割の鋳物で製作した後溶接接合して製造した場合には、安価なラック式ハウジングを製造する事が出来る。
【図面の簡単な説明】
【図1】本発明に係るラック式濾過装置の構成を示す断面説明図である。
【図2】カートリッジ型モジュールを、ラック式ハウジング内に挿入した場合の連結部の構成を示す要部拡大図である。
【図3】ハウジング本体の外周に鉢巻き状に設けた循環水流路の構成を示す斜視図である。
【図4】ハウジング本体の外周に鉢巻き状に設けた循環水流路の構成を示す平面説明図である。
【図5】図5は、循環水流路の2重管構造部を2分割の鋳物で製作する場合の各部の斜視図であり、(a)は外板部、(b)はハウジング本体部を示す斜視図である。
【符号の説明】
1…ラック式濾過装置
2…ラック式ハウジング
3…カートリッジ型モジュール
4…ハウジング本体
5…キャップ
6…ナット
6a…ネジ部
7…カートリッジヘッド
7a…ツバ部
8…ハウジングヘッド
9…パッキン
10…Oリング
11…循環水口
12…循環水流路
13…外板
14…連通孔
15…処理水室
16…中空糸膜
17…接着剤層
18…カートリッジ筒
18a…スカート
19…接着剤層
20…貫通穴
21…供給水室
22…原水口
23…処理水口
[0001]
BACKGROUND OF THE INVENTION
The present invention relates to a rack type filtration apparatus using a hollow fiber membrane. More specifically, the present invention relates to a rack-type filtration device that removes and sterilizes a large amount of raw water such as river water, lake water, groundwater, seawater, domestic wastewater, or factory wastewater.
[0002]
[Prior art]
In the conventional rack-type filtration device, the hollow fiber membrane module has the module housing and the hollow fiber membrane bonded and fixed with an adhesive, and when the module reaches the end of its life, the entire module is discarded. Also, depending on the usage conditions of the module, it may be required to have high corrosion resistance, chemical resistance, and high pressure resistance, and it is necessary to use an expensive housing, which is economically expensive and increases waste. Environmental problems also arise. Therefore, a cartridge type module that can divide the module housing and the hollow fiber membrane has been proposed, and it has become possible to reuse the housing and discard only the hollow fiber membrane cartridge. The conventional rack type hollow fiber membrane cartridge type module is based on the premise of an all-filtration operation type, and therefore there is a problem that a stable operation cannot be performed when a cross-flow filtration operation is performed.
[0003]
[Problems to be solved by the invention]
The present invention provides a rack-type filtration device having an inexpensive rack-type module housing that can stably perform the cross-flow filtration operation that has been difficult with the rack-type hollow fiber membrane cartridge type module as described above. In particular, it is an object of the present invention to provide a rack type filtration apparatus provided with a rack type module housing that is useful when a metal material that can be expected to have corrosion resistance, weather resistance and strength is used as a constituent material.
[0004]
[Means for Solving the Problems]
To achieve the above object, the present invention is as follows.
(1) In the rack type filtration apparatus a plurality of cartridges type module of hollow fiber membrane was bonded fixed is supported by being inserted into the rack type housing, circulating water passage which communicates with the housing body of the rack-type housing, the outer panel A rack-type filtration device characterized in that it is liquid-tightly provided in a headband shape on the outer periphery of the housing body by welding and joining the housing to the housing body.
[0005]
(2) The housing body is formed with a plurality of communication holes in the radial direction, and the circulating water flowing through the plurality of communication holes is collected in the circulating water flow path and flows out from the circulating water port. (1) The rack type filtration device according to (1).
[0006]
(3) The rack type filtration device according to (1) or (2), characterized in that the cross-sectional area of the circulating water passage is configured to increase toward the circulating water port.
(4) The rack type filtration device according to (1), (2) or (3), wherein the communication hole has a slit shape having a major axis in the longitudinal direction of the housing body.
(5) The rack type filtration device according to (1), wherein the circulating water flow path is formed by welding and joining a two-part casting.
(6) A rack-type housing is manufactured by casting a cylindrical housing body having a plurality of communication holes and a cylindrical outer plate having a larger diameter than the cylindrical housing body, and then casting two castings by circumferential welding. The rack type filtration device according to (1), wherein the rack type filtration device is manufactured by liquid-tight welding.
(7) A rack type characterized in that the circulating water flow path communicating with the housing main body of the rack type housing is liquid-tightly provided in a headband shape on the outer periphery of the housing main body by welding the outer plate to the housing main body. housing.
[0007]
The rack-type filtration apparatus according to the present invention is a rack-type filtration apparatus in which a cartridge-type module in which a plurality of hollow fiber membranes are bonded and fixed is inserted and supported in a rack-type housing. A water flow path is provided in a liquid-tight manner in a headband shape on the outer periphery of the rack-type housing body.
According to the above-described structure, the circulating water flow path is provided in a bowl-like liquid-tight manner on the outer periphery of the rack-type housing main body, so that it is easy to ensure the flow rate at the circulating water outlet at a certain level or more.
In addition, a plurality of communication holes in the radial direction are formed in the rack-type housing body, and the circulation is made by circulating the plurality of communication holes in a circulating water flow path that is liquid-tightly provided on the outer periphery of the rack-type housing body. It is desirable that the water is collected and flows out from the circulating water port of the circulating water channel.
[0008]
In addition, when the cross-sectional area of the circulation channel provided in a bowl-like liquid-tight manner on the outer periphery of the rack-type housing body is increased toward the circulation water port of the circulation channel, the circulation water channel The flow resistance of the circulating water that increases as it becomes downstream toward the circulating water port can be reduced, and the flow rate of the circulating water port can be kept constant.
Further, when the plurality of communication holes provided in the radial direction in the rack type housing body are formed in a slit shape having a long diameter in the longitudinal direction of the housing, it corresponds to an exchange cartridge for an adhesive layer having an arbitrary length. Can be installed in the housing.
In addition, when a double pipe structure portion provided in a bowl shape on the outer periphery of the rack type housing body is manufactured by two-piece casting and then welded and manufactured, an inexpensive rack type housing may be manufactured. I can do it.
[0009]
DETAILED DESCRIPTION OF THE INVENTION
An embodiment of a rack-type filtration device according to the present invention will be specifically described with reference to the drawings. FIG. 1 is an explanatory cross-sectional view showing a configuration of a rack type filtration apparatus according to the present invention, and FIG. 2 is an enlarged view of a main part showing a configuration of a connecting portion when a cartridge type module is inserted.
Hereinafter, an embodiment of a so-called cross-flow filtration type rack type filtration apparatus that performs filtration while circulating a stock solution as a rack type filtration apparatus according to the present invention will be described with reference to FIGS. 1 and 2.
[0010]
In FIG. 1, reference numeral 1 denotes a so-called cross-flow filtration type rack type filtration device that performs filtration while circulating a stock solution. For example, river water, lake water, groundwater, seawater, domestic wastewater, or factory wastewater. Etc. can be applied to water treatment for purifying by microfiltration using ultrafiltration or ultrafiltration equipment.
A cartridge-type module 3 in which a plurality of hollow fiber membranes are bonded and fixed is inserted and supported in a rack-type housing 2 of the rack-type filtration device 1.
[0011]
The rack-type housing 2 includes a housing main body 4 that is arranged on the upper and lower parts and is erected by support means (not shown), a cap 5 and a nut 6 that are attached to the upper part of the housing.
In the cartridge type module 3, the flange portion 7 a of the cartridge head 7 is sandwiched between the housing head 8 and the cap 5 and fixed by the nut 6. By tightening the nut 9a with the packing 9 between the flange 7a of the cartridge head and the housing head 8 and the O-ring 10 between the flange 7a and the cap 5, the cartridge-type module 3 is It is liquid-tightly attached to the rack-type housing 2.
[0012]
Further, as shown in FIG. 3 and FIG. 4, an outer plate 13 having a U-shaped longitudinal section that forms a circulating water flow path 12 communicating with the inside of the housing body 4 on the outer periphery of the housing body 4 at the side of the circulating water port 11. Headband-like liquid-tight. A plurality of communication holes 14 are formed in the wall surface of the housing body 4 in the radial direction of the housing body so as to communicate the inside of the housing body and the circulating water flow path 12. Circulating water that has circulated through the plurality of communication holes 13 from the inside of the housing body is collected in the circulating water channel 12 formed by the plate 13 and flows out from the circulating water port 11 of the circulating water channel 12.
[0013]
As shown in FIG. 4, the longitudinal cross-sectional area of the circulating water passage 12 provided in a bowl-like liquid-tight manner on the outer periphery of the housing body 4 is configured to increase toward the circulating water port 11 of the circulating water passage 12. Thus, the flow resistance of the circulating water that increases as it goes downstream toward the circulating water port 11 of the circulating water flow path 12 can be reduced.
In addition, in this embodiment, although an example when the longitudinal cross-sectional shape of the circulating water flow path 12 is formed in a square shape is demonstrated, a cross-sectional semicircle shape, a cross-sectional C-shape, etc. as other structures of the circulating water flow path 12, It can be formed in various shapes.
[0014]
Further, in this embodiment, the circulating water flow path 12 is disposed in a headband shape substantially horizontally on the outer periphery of the housing body 4, but may be disposed with a predetermined inclination as necessary.
Further, the number, the diameter shape, and the diameter area of the communication holes 14 communicating the circulating water flow path 12 and the inside of the housing body 4 can be set to various numbers, the diameter shapes, and the diameter areas.
In particular, when the shape of the communication hole 14 is a slit shape having a long axis with respect to the axial direction of the housing body 4, various cartridge type modules 3 having different thicknesses of the adhesive layer 17 can be mounted.
[0015]
The cap 5 is fixed in a water-tight and liquid-tight manner to the cartridge head 7 via the O-ring 10, and a treated water chamber 15 is formed by a space formed by the cap 5 and the cartridge head 7.
The materials of the housing body 4 and the cap 5 and nut 6 used in the present invention are not particularly limited and may be the same or different, but stainless steel is preferably used in terms of corrosion resistance, weather resistance and strength reliability. It is done.
[0016]
On the other hand, the hollow fiber has an upper end opened and a lower end closed, and as shown in FIG. 2, a plurality of hollow fiber membranes 16 are bundled and the outer periphery of the upper end is bonded by an adhesive. The adhesive layer 17 is integrally bonded, and the adhesive layer is fitted into the cylindrical cartridge head 7 and fixed to the cartridge head with an adhesive.
In addition, a cartridge cylinder 18 fitted to the outer periphery of the hollow fiber membrane 16 that is integrally bundled is fixed to the lower end portion of the cartridge type module 3 by welding or adhesion.
[0017]
The pore diameter of the hollow fiber membrane used in the present invention is not particularly limited, and a hollow fiber membrane having a pore diameter in the range of an ultrafiltration membrane or a microfiltration membrane is preferably used. Moreover, the material of the hollow fiber membrane is not particularly limited, and a membrane of a synthetic polymer, ceramic, or a composite material thereof can be used.
The adhesive used in the cartridge type module of the present invention is not particularly limited, and an epoxy resin, a urethane resin, a silicon resin, or the like can be used. The material of the cartridge head, cartridge cylinder and skirt may be the same or different, and is not particularly limited, and is selected from moldability, pressure resistance, chemical resistance and economy. Preferred materials include thermoplastic resins such as polyvinyl chloride, polyethylene, polypropylene, polyamide, ABS resin, AS resin, PVDF, and stainless steel having high mechanical strength.
[0018]
As shown in FIG. 1, the length from the upper end of the cartridge type module 3 to the lower end of the cartridge cylinder 18 connected to the cartridge head is set to be longer than the total length of the hollow fiber membrane, The raw water or air bubbling air supplied from the supply water chamber 21 is efficiently guided to the hollow fiber membrane 16 of each cartridge type module 3 by the skirt 18a of the cartridge cylinder extending further downward than the lower end of the cartridge 16. Yes.
In the above configuration, during the filtration operation by the rack type filtration device 1, the raw water supplied to the supply water chamber 21 from the raw water port 22 provided in the lower part of the housing body 4 by a pump (not shown) is supplied to the skirt portion 18 a of the cartridge type module 3. Led.
[0019]
A portion of the raw water that has passed through the outer periphery of the hollow fiber membrane 16 of the cartridge type module 3 is pressure filtered from the outer surface of the hollow fiber membrane 16 to the hollow portion, and treated from the open upper end of the hollow fiber membrane. The filtrate is led to the water chamber 15, and a part thereof passes through the outer periphery of the hollow fiber membrane 16 as it is.
The filtrate contained in the treated water chamber 15 is taken out of the rack type filtration device 1 from the treated water port 23 at the upper part of the cap, and the raw water that has passed through the outer periphery of the hollow fiber membrane 16 is directly applied to the side wall portion of the housing body 4. Water is collected from the plurality of communication holes 14 formed at a predetermined pitch in the circumferential direction through the head-circulated circulating water flow path 12 and is led from the circulating water port 11 on the downstream side to the outside of the rack filtration device 1.
[0020]
In this way, a portion of the supplied water is circulated through the circulating water flow path 12 provided in a bowl shape on the outer periphery of the housing body 4 to collect water, thereby maintaining a high membrane surface flow rate and stably increasing the water permeability. The maintained cross flow filtration operation becomes possible.
On the other hand, at the time of backwashing, for example, filtered water is supplied from the treated water port 23 and backflowed to the circulating water flow path 12 and the supply water chamber 21, and suspended substances accumulated in the hollow fiber membrane 16 are stripped off. To eliminate.
[0021]
According to the above configuration, the circulating water flow path 12 communicating with the inside of the housing body 4 is liquid-tightly provided on the outer periphery of the housing body 4 in a bowl-like shape, so that the flow rate of the circulating water outlet 11 can be secured above a certain level. Easy to do.
Further, when the plurality of communication holes 14 provided in the radial direction in the rack type housing body 4 are formed in a slit shape having a long diameter in the longitudinal direction of the housing, the cartridge type module of the adhesive layer 17 having an arbitrary length is used. 3 can be mounted in the housing 2 correspondingly.
[0022]
Further, when considering applying a metal material to the housing 2 as means for improving corrosion resistance, weather resistance and strength, the housing head 8 and the outer plate 13 provided in a headband shape on the outer periphery of the housing body 4 are considered. If the heavy pipe structure is divided into a plurality of parts and each part is manufactured by cutting, the cost will be very high. In addition, it is difficult to manufacture the double pipe portion as a single body by casting and molding.
As shown in FIG. 5, the double pipe portion is divided into two parts, a housing body 4 having a communication hole 14 in the upper portion and an outer plate 13 portion, and each is manufactured by casting or molding and then welded. Thus, it is possible to manufacture a housing body that is relatively inexpensive and has a high dimensional system.
[0023]
In this case, the housing body 4 may be prepared as a single casting if the overall length is short. When the housing body 4 is long, the housing body is divided into three parts, a head part, a body part, and a raw water port part 22, and the head part and the raw water port part are made of cast metal, and then the body part of a commercial pipe is used. The housing body 4 may be manufactured by welding.
[0024]
【The invention's effect】
In the present invention, the circulating water flow path communicating with the inside of the housing body is provided in a liquid-tight manner like a headband on the outer periphery of the rack-type housing body, so that the flow rate of the circulating water port can be easily secured above a certain level.
In addition, when the cross-sectional area of the circulation channel provided in a bowl-like liquid-tight manner on the outer periphery of the rack-type housing body is increased toward the circulation water port of the circulation channel, the circulation water channel The flow resistance of the circulating water that increases as it goes downstream toward the circulating water port can be reduced, and the flow rate of the circulating water port can be kept constant.
[0025]
Further, when a plurality of communication holes provided in the radial direction in the rack type housing main body are formed in a slit shape in the longitudinal direction of the housing, the inside of the housing corresponds to the cartridge type module of the adhesive layer having an arbitrary length. Can be attached to.
In addition, when a double pipe structure portion provided in a bowl shape on the outer periphery of the rack type housing body is manufactured by two-piece casting and then welded and manufactured, an inexpensive rack type housing may be manufactured. I can do it.
[Brief description of the drawings]
FIG. 1 is a cross-sectional explanatory view showing a configuration of a rack type filtration apparatus according to the present invention.
FIG. 2 is an enlarged view of a main part showing a configuration of a connecting portion when a cartridge type module is inserted into a rack type housing.
FIG. 3 is a perspective view showing a configuration of a circulating water flow path provided in a headband shape on the outer periphery of the housing body.
FIG. 4 is an explanatory plan view showing a configuration of a circulating water flow path provided in a headband shape on the outer periphery of the housing body.
FIG. 5 is a perspective view of each part when the double pipe structure part of the circulating water flow path is made of a two-part casting, wherein (a) is an outer plate part, and (b) is a housing body part. It is a perspective view shown.
[Explanation of symbols]
DESCRIPTION OF SYMBOLS 1 ... Rack type filtration apparatus 2 ... Rack type housing 3 ... Cartridge type module 4 ... Housing main body 5 ... Cap 6 ... Nut
6a ... Screw part 7 ... Cartridge head
7a ... brim 8 ... housing head 9 ... packing
10 ... O-ring
11 ... Circulating water outlet
12 ... Circulating water flow path
13… Shell
14 ... Communication hole
15 ... treated water chamber
16 ... Hollow fiber membrane
17… Adhesive layer
18 ... cartridge cylinder
18a ... Skirt
19… Adhesive layer
20 ... through hole
21 ... Supply water chamber
22 ... Haramizuguchi
23 ... treated water outlet

Claims (7)

複数本の中空糸膜を接着固定したカートリッジ型モジュールがラック式ハウジング内に挿入されて支持されるラック式濾過装置において、ラック式ハウジングのハウジング本体に連通する循環水流路が、外板をハウジング本体に溶接接合することによりハウジング本体の外周に鉢巻き状に液密的に設けられたことを特徴とするラック式濾過装置。  In a rack type filtration device in which a cartridge type module in which a plurality of hollow fiber membranes are bonded and fixed is inserted and supported in a rack type housing, a circulating water flow path communicating with the housing main body of the rack type housing has an outer plate as a housing main body. A rack-type filtration device characterized in that it is liquid-tightly provided in a bowl-like shape on the outer periphery of the housing body by being welded to the housing. ハウジング本体に、径方向に複数の連通孔が形成され、循環水流路に、前記複数の連通孔を流通した循環水が集水されて、循環水口から流出するように構成されたことを特徴とする請求項1記載のラック式濾過装置。  A plurality of communication holes are formed in the housing body in a radial direction, and the circulating water that has circulated through the plurality of communication holes is collected in the circulating water flow path and flows out from the circulation water port. The rack type filtration apparatus according to claim 1. 循環水流路の断面積が、循環水口に向かって大きくなるように構成されたことを特徴とする請求項1または2記載のラック式濾過装置。  The rack-type filtration device according to claim 1 or 2, wherein a cross-sectional area of the circulating water channel is configured to increase toward the circulating water port. 連通孔が、ハウジング本体長手方向に長径を有するスリット状形状をしていることを特徴とする請求項1、2または3記載のラック式濾過装置。  The rack-type filtration device according to claim 1, 2 or 3, wherein the communication hole has a slit shape having a major axis in the longitudinal direction of the housing body. 循環水流路が、2分割の鋳物を溶接接合して形成されたことを特徴とする請求項1記載のラック式濾過装置。  The rack-type filtration device according to claim 1, wherein the circulating water flow path is formed by welding and joining a two-part casting. ラック式ハウジングが、複数個の連通孔を有した円筒状のハウジング本体と、これより一回り径の大きな円筒状外板を各々鋳造により製作した後、円周溶接により2個の鋳物を液密的に溶接接合して製作されたことを特徴とする請求項1記載のラック式濾過装置。  A rack-type housing is manufactured by casting a cylindrical housing body having a plurality of communication holes and a cylindrical outer plate having a larger diameter than the cylindrical housing body, and then liquid-tightening two castings by circumferential welding. 2. The rack type filtration apparatus according to claim 1, wherein the rack type filtration apparatus is manufactured by welding jointly. ラック式ハウジングのハウジング本体に連通する循環水流路が、外板をハウジング本体に溶接接合することによりハウジング本体の外周に鉢巻き状に液密的に設けられたことを特徴とするラック式ハウジング。A rack-type housing characterized in that a circulating water flow path communicating with a housing body of the rack-type housing is liquid-tightly provided in a headband shape on the outer periphery of the housing body by welding and joining an outer plate to the housing body .
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