JP5595816B2 - Waste steam recovery device - Google Patents

Waste steam recovery device Download PDF

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JP5595816B2
JP5595816B2 JP2010160775A JP2010160775A JP5595816B2 JP 5595816 B2 JP5595816 B2 JP 5595816B2 JP 2010160775 A JP2010160775 A JP 2010160775A JP 2010160775 A JP2010160775 A JP 2010160775A JP 5595816 B2 JP5595816 B2 JP 5595816B2
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waste steam
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gas
jet scrubber
liquid
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JP2012021725A (en
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直樹 松川
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Tlv Co Ltd
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本発明は、例えばシュリンクトンネルやスチーマーやゴムの加硫器等の各種蒸気使用装置から廃棄される廃蒸気を、熱交換して回収することにより、工場建屋の内部あるいは外部でモヤモヤと立ち込める廃蒸気を無くすことのできる廃蒸気回収装置に関する。   The present invention is, for example, waste steam discarded from various steam-using devices such as shrink tunnels, steamers, rubber vulcanizers, etc., and is recovered by exchanging heat so that it can be trapped inside and outside the factory building. It is related with the waste steam recovery device which can eliminate.

廃蒸気回収装置は、蒸気使用装置としてのシュリンクトンネルと、エゼクターと液体タンクと循環ポンプで構成された真空吸引手段とを、廃蒸気回収パイプで接続したもので、シュリンクトンネルからの廃蒸気を真空吸引手段で吸引することによって、モヤモヤと立ち込める廃蒸気を無くすことができるものである。   The waste steam recovery unit is a shrink tunnel that uses steam, and vacuum suction means that consists of an ejector, a liquid tank, and a circulation pump connected by a waste steam recovery pipe. By sucking with the sucking means, it is possible to eliminate waste steam that can get trapped.

この廃蒸気回収装置においては、エゼクターのノズル部で大量の冷却水を吐出しなければならず、エゼクター内で混合された廃蒸気と冷却水の混合流体の温度が低くなってしまい、この混合流体の使用用途が限られてしまう問題があった。   In this waste steam recovery device, a large amount of cooling water must be discharged from the nozzle part of the ejector, and the temperature of the mixed fluid of waste steam and cooling water mixed in the ejector becomes low, and this mixed fluid There was a problem that the usage of was limited.

特開2002−5582号公報Japanese Patent Laid-Open No. 2002-5582

解決しようとする課題は、廃蒸気と冷却水の混合流体の温度を比較的高く維持することのできる廃蒸気回収装置を提供すること。   The problem to be solved is to provide a waste steam recovery device that can maintain the temperature of the mixed fluid of waste steam and cooling water at a relatively high temperature.

本発明は、蒸気装置から流下してくる廃蒸気を所定箇所へ排出するものにおいて、廃蒸気の流下する廃蒸気通路に、熱交換手段と気液分離器を介在して、吸引手段としての2段式ジェットスクラバーを接続して、当該2段式ジェットスクラバーの1段目の吸引口を、上記気液分離器の液体出口と接続し、2段式ジェットスクラバーの2段目の吸引口を気液分離器の気体出口と接続すると共に、2段式ジェットスクラバーの出口部に、蒸気と液体の混合を促進するための貫通した多孔からなるメッシュ部材を取り付けたものである。   According to the present invention, waste steam flowing down from a steam device is discharged to a predetermined location. A heat exchange means and a gas-liquid separator are interposed in a waste steam passage through which the waste steam flows, and 2 as a suction means. A stage jet scrubber is connected, the first stage suction port of the two stage jet scrubber is connected to the liquid outlet of the gas-liquid separator, and the second stage suction port of the two stage jet scrubber is vented. In addition to being connected to the gas outlet of the liquid separator, a mesh member made of a perforated hole for promoting mixing of vapor and liquid is attached to the outlet of the two-stage jet scrubber.

本発明の廃蒸気回収装置は、熱交換手段で廃蒸気の一部を熱交換して凝縮させて復水とし、気液分離器の液体出口から2段式ジェットスクラバーの1段目の吸引口へ吸引することによって、気液分離器の気体出口から2段式ジェットスクラバーの吸引口へ吸引される廃蒸気の量が少なくなり、ジェットスクラバーで吐出する冷却水の量を大幅に減少することができ、したがって、廃蒸気と冷却水の混合流体の温度を比較的高く維持することができる。   The waste steam recovery apparatus according to the present invention heat-condenses a part of waste steam by heat exchange means to condense it into condensate, and from the liquid outlet of the gas-liquid separator, the first stage suction port of the two-stage jet scrubber Can reduce the amount of waste steam sucked from the gas outlet of the gas-liquid separator to the suction port of the two-stage jet scrubber, and can greatly reduce the amount of cooling water discharged by the jet scrubber. Therefore, the temperature of the mixed fluid of waste steam and cooling water can be kept relatively high.

本発明の廃蒸気回収装置の実施例を示す構成図。The block diagram which shows the Example of the waste steam recovery apparatus of this invention.

本発明は、2段式のジェットスクラバーを用いるものであるが、このジェットスクラバーは従来周知のものを適宜用いることができる。   In the present invention, a two-stage jet scrubber is used, and a conventionally known jet scrubber can be appropriately used.

本実施例においては図1に示すように、廃蒸気通路1と、この廃蒸気通路1に接続した熱交換手段2と気液分離器3、吸引手段としての2段式ジェットスクラバー4、及び、2段式ジェットスクラバー4の出口部に取り付けたメッシュ部材16,17とで廃蒸気回収装置を構成する。   In this embodiment, as shown in FIG. 1, a waste steam passage 1, a heat exchange means 2 and a gas-liquid separator 3 connected to the waste steam passage 1, a two-stage jet scrubber 4 as a suction means, and A waste steam recovery apparatus is constituted by the mesh members 16 and 17 attached to the outlet of the two-stage jet scrubber 4.

廃蒸気通路1に接続した熱交換手段2を、冷却水注入管5とインラインミキサー6で構成する。冷却水注入管5には冷却水供給管7を接続すると共に、図示はしないが、冷却水供給管7の冷却水注入管5側端部には冷却水噴射ノズルを取り付けて、廃蒸気通路1から供給される廃蒸気に冷却水を噴射して、廃蒸気の一部を凝縮させて復水にさせることができるものである。   The heat exchange means 2 connected to the waste steam passage 1 is composed of a cooling water injection pipe 5 and an in-line mixer 6. A cooling water supply pipe 7 is connected to the cooling water injection pipe 5, and although not shown, a cooling water injection nozzle is attached to the end of the cooling water supply pipe 7 on the cooling water injection pipe 5 side, and the waste steam passage 1. The cooling water is jetted onto the waste steam supplied from the water, and a part of the waste steam is condensed to be condensed water.

冷却水注入管5の出口側にインラインミキサー6を接続する。このインラインミキサー6は、冷却水注入管5から供給される廃蒸気と冷却水の混合流体を螺旋状に流下させることによって、混合流体の更なる混合を促進することができるものである。  An in-line mixer 6 is connected to the outlet side of the cooling water injection pipe 5. The in-line mixer 6 can promote further mixing of the mixed fluid by causing the mixed fluid of the waste steam and the cooling water supplied from the cooling water injection pipe 5 to flow down spirally.

インラインミキサー6の出口側に気液分離器3を接続する。この気液分離器3は、インラインミキサー6から供給される蒸気と冷却水と復水の混合流体を、旋回流とすることによって、気体としての蒸気と、液体としての水とに気液分離することができるものである。  The gas-liquid separator 3 is connected to the outlet side of the in-line mixer 6. This gas-liquid separator 3 gas-liquid separates into the vapor | steam as gas and the water as a liquid by making into a swirl | flow the mixed fluid of the vapor | steam supplied from the in-line mixer 6, cooling water, and condensate. It is something that can be done.

気液分離器3の右側側方に気体出口8を取り付けて、2段式ジェットスクラバー4の2段目の吸引口10と連通し、また、気液分離器3の下端部に液体出口9を取り付けて、2段式ジェットスクラバー4の1段目の吸引口11と連通する。  A gas outlet 8 is attached to the right side of the gas-liquid separator 3 to communicate with the second-stage suction port 10 of the two-stage jet scrubber 4, and a liquid outlet 9 is connected to the lower end of the gas-liquid separator 3. It attaches and communicates with the first stage suction port 11 of the two-stage jet scrubber 4.

2段式ジェットスクラバー4は、1段目のジェットスクラバー12と2段目のジェットスクラバー13を直列に配置したもので、1段目のジェットスクラバー12の上部に高圧水供給管14を接続すると共に、2段目のジェットスクラバー13の下部にタンク18と排出ポンプ19を介して温水排出管15を接続する。  The two-stage jet scrubber 4 includes a first-stage jet scrubber 12 and a second-stage jet scrubber 13 arranged in series. A high-pressure water supply pipe 14 is connected to the upper part of the first-stage jet scrubber 12. A hot water discharge pipe 15 is connected to the lower part of the second-stage jet scrubber 13 via a tank 18 and a discharge pump 19.

2段目のジェットスクラバー13の内部中心軸上で、吸引口10とほぼ同じ高さに図示しないが2段目ジェットスクラバー13用のノズルを取り付けて、このノズルの内部に螺旋状の通路を形成することで、2段目ジェットスクラバー13を流下する液体の流れが螺旋状態となり、2段目ジェットスクラバー13内での蒸気と液体の混合を促進することができる。   A nozzle for the second-stage jet scrubber 13 is attached to the inner central axis of the second-stage jet scrubber 13 at approximately the same height as the suction port 10, but a spiral passage is formed inside the nozzle. By doing so, the flow of the liquid flowing down the second stage jet scrubber 13 becomes a spiral state, and the mixing of the vapor and the liquid in the second stage jet scrubber 13 can be promoted.

2段目のジェットスクラバー13の出口部に、円板状のメッシュ部材16,17を取り付ける。メッシュ部材16,17には、図示しないが多数の貫通孔を設けることで、2段式ジェットスクラバー4内を流下してくる蒸気と水の混合を促進して、廃熱回収の効率を高めることができる。   Disc-shaped mesh members 16 and 17 are attached to the outlet of the second-stage jet scrubber 13. The mesh members 16 and 17 are provided with a large number of through holes (not shown), thereby promoting the mixing of steam and water flowing down in the two-stage jet scrubber 4 and increasing the efficiency of waste heat recovery. Can do.

2段式ジェットスクラバー4の下方に、蒸気と水の混合流体を一旦溜め受ける円筒状のタンク18を配置する。タンク18の上部には円板状のタンク用メッシュ部材20,21を取り付ける。このタンク用メッシュ部材20,21にも多数の貫通孔を設け、中間部には冷却水を斜め下方向に噴射する冷却水スプレー22,23を取り付ける。   A cylindrical tank 18 that temporarily stores a mixed fluid of steam and water is disposed below the two-stage jet scrubber 4. Disc-shaped tank mesh members 20 and 21 are attached to the upper portion of the tank 18. The tank mesh members 20 and 21 are also provided with a large number of through holes, and cooling water sprays 22 and 23 for injecting cooling water obliquely downward are attached to the middle part.

2段式ジェットスクラバー4から排出される蒸気と水の混合流体は、タンク18内に溜まり、一部の蒸気がタンク18を上昇するが、タンク用メッシュ部材20,21を通過する間に、冷却水スプレー22,23から噴射される冷却水によって凝縮され水となってタンク18内へ滴下する。タンク18内の水は、排出ポンプ19と温水排出管15から別途の温水使用箇所へと供給される。 The mixed fluid of steam and water discharged from the two-stage jet scrubber 4 accumulates in the tank 18, and a part of the steam rises in the tank 18, but is cooled while passing through the tank mesh members 20 and 21. The water is condensed by the cooling water sprayed from the water sprays 22 and 23, becomes water, and drops into the tank 18. The water in the tank 18 is supplied from the discharge pump 19 and the hot water discharge pipe 15 to a separate hot water use location.

廃蒸気通路1を左から右方向へ流下する廃蒸気は、冷却水注入管5で一部が凝縮されて復水となり、インラインミキサー6で更に混合を促進されて、気液分離器3で気液が分離され、分離された復水と冷却水は液体出口9から1段目の吸引口11へ吸引されると共に、水の分離された蒸気は気体出口8から2段目の吸引口10へ吸引される。 A part of the waste steam flowing down from the left to the right in the waste steam passage 1 is condensed in the cooling water injection pipe 5 to become condensate, further mixed by the in-line mixer 6, and then separated by the gas-liquid separator 3. The liquid is separated, and the separated condensate and cooling water are sucked from the liquid outlet 9 to the first stage suction port 11, and the water-separated vapor is fed from the gas outlet 8 to the second stage suction port 10. Sucked.

このように、気液分離器3の気体出口8から2段目の吸引口10へ吸引される廃蒸気の量が少なくなり、ジェットスクラバー4で吐出する高圧水としての冷却水の量を大幅に減少することができ、したがって、温水排出管15から排出される廃蒸気と冷却水の混合流体の温度を比較的高く維持することができる。   In this way, the amount of waste steam sucked from the gas outlet 8 of the gas-liquid separator 3 to the second-stage suction port 10 is reduced, and the amount of cooling water as high-pressure water discharged by the jet scrubber 4 is greatly increased. Therefore, the temperature of the mixed fluid of waste steam and cooling water discharged from the hot water discharge pipe 15 can be kept relatively high.

本発明は、各種蒸気使用装置から廃棄される廃蒸気を、熱交換して回収するものに利用することができる。   INDUSTRIAL APPLICATION This invention can be utilized for what collect | recovers waste steam discarded from various steam use apparatuses by heat exchange.

1 廃蒸気通路
2 熱交換手段
3 気液分離器
4 2段式ジェットスクラバー
5 冷却水注入管
6 インラインミキサー
8 気体出口
9 液体出口
10 2段目の吸引口
11 1段目の吸引口
14 高圧水供給管
15 温水排出管
16,17 メッシュ部材
18 タンク
19 排水ポンプ
20,21 タンク用メッシュ部材
22,23 冷却水スプレー
DESCRIPTION OF SYMBOLS 1 Waste steam passage 2 Heat exchange means 3 Gas-liquid separator 4 Two-stage jet scrubber 5 Cooling water injection pipe 6 In-line mixer 8 Gas outlet 9 Liquid outlet 10 Second-stage suction port 11 First-stage suction port 14 High-pressure water Supply pipe 15 Hot water discharge pipes 16 and 17 Mesh member 18 Tank 19 Drain pumps 20 and 21 Mesh members 22 and 23 for tank Cooling water spray

Claims (1)

蒸気装置から流下してくる廃蒸気を所定箇所へ排出するものにおいて、
廃蒸気の流下する廃蒸気通路に、冷却水が供給される気化冷却室により前記廃蒸気を復水にさせる熱交換手段と、前記熱交換手段から供給される前記廃蒸気と前記復水との混合流体を、気体としての蒸気と液体としての水とに気液分離する気液分離器を介在して、吸引手段としての2段式ジェットスクラバーを接続して、
前記2段式ジェットスクラバーの1段目の上部に高圧水供給管を接続し、
前記2段式ジェットスクラバーの1段目の吸引口を前記気液分離器の液体出口と接続し、
前記2段式ジェットスクラバーの2段目の吸引口を前記気液分離器の気体出口と接続すると共に、
前記2段式ジェットスクラバーの出口部に、蒸気と液体の混合を促進するための貫通した多孔からなるメッシュ部材を取り付けたこと
を特徴とする廃蒸気回収装置。
In what discharges the waste steam flowing down from the steam device to a predetermined place,
A heat exchange means for converting the waste steam into condensate by a vaporization cooling chamber to which cooling water is supplied to a waste steam passage through which the waste steam flows, and the waste steam and the condensate supplied from the heat exchange means the mixed fluid, the water as a vapor and liquid as the gas interposed between the gas-liquid separator for gas-liquid separation, to connect the two-stage jet scrubber as suction means,
A high-pressure water supply pipe is connected to the upper part of the first stage of the two-stage jet scrubber;
The first stage of the suction port of the two-stage jet scrubber connected to the liquid outlet of the gas-liquid separator,
The second-stage suction port of the two-stage jet scrubber with connecting the gas outlet of the gas-liquid separator,
Wherein the outlet portion of the two-stage jet scrubber, the waste vapor recovery apparatus is characterized in that mounting the mesh member made of a penetrating porous to promote mixing of vapor and liquid.
JP2010160775A 2010-07-15 2010-07-15 Waste steam recovery device Active JP5595816B2 (en)

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Family Cites Families (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH0727381A (en) * 1993-07-09 1995-01-27 Nkk Corp Regulating apparatus ice fraction of ice water slurry
JP3340396B2 (en) * 1999-02-09 2002-11-05 賢 塚田 Gas-liquid mixing device
JP2001234709A (en) * 2000-02-25 2001-08-31 Toshiba Corp Mixed medium power generating system
JP3931226B2 (en) * 2002-03-12 2007-06-13 独立行政法人産業技術総合研究所 Ejector type refrigeration apparatus and ejector used in the apparatus
JP4628934B2 (en) * 2005-11-15 2011-02-09 株式会社テイエルブイ Waste steam recovery device
JP2009019835A (en) * 2007-07-13 2009-01-29 Tlv Co Ltd Waste steam recovery device

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