JP3207497U - Exhaust gas combustion equipment for magnetic pyrolysis sinter furnace - Google Patents
Exhaust gas combustion equipment for magnetic pyrolysis sinter furnace Download PDFInfo
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Abstract
【課題】廃棄物を処理する際の可燃性排気ガスを燃焼により煙、悪臭をクリアーする排気ガス燃焼装置である。【解決手段】磁気熱分解燻焼炉からの可燃性ガスの処理に当たり、インナーセラミックパイプ2内にシーズヒーター3を押入して800℃に熱し、360度四方に熱放射してアウトセラミックパイプ1迄熱し、排気ガスがこのインナーセラミックパイプ2とアウトセラミックパイプ1間を通過する際にほぼ完全に無煙無臭として放出される。インナーセラミックパイプ2を一定温度に保つためにセンサー棒9をシーズヒーター3と一緒の処すなわちインナーセラミックパイプ2内に押入し、常に設定した温度を保持し排気ガスを確実に燃焼処理する。800℃に温度設定するには、常にセンサー棒9からくる温度差をリアルタイムで表示するコントロールボックス11により常に一定温度を自動的に検出しコントロールする。【選択図】図1An exhaust gas combustion apparatus that clears smoke and bad odor by burning combustible exhaust gas when treating waste. In processing a combustible gas from a magnetic pyrolysis sinter furnace, a sheathed heater 3 is pushed into an inner ceramic pipe 2 and heated to 800 ° C., and is radiated 360 degrees to the out ceramic pipe 1. When heated, the exhaust gas passes between the inner ceramic pipe 2 and the out ceramic pipe 1 and is almost completely discharged as smokeless and odorless. In order to keep the inner ceramic pipe 2 at a constant temperature, the sensor rod 9 is pushed together with the sheathed heater 3, that is, the inner ceramic pipe 2 is pressed into the inner ceramic pipe 2, so that the set temperature is always maintained and the exhaust gas is reliably burned. In order to set the temperature to 800 ° C., a constant temperature is always automatically detected and controlled by the control box 11 which always displays the temperature difference coming from the sensor rod 9 in real time. [Selection] Figure 1
Description
本考案は有機廃棄物の磁気熱分解燻焼炉での燻焼による排気ガスの燃焼装置に関する物である。 The present invention relates to an apparatus for combusting exhaust gas by calcination of organic waste in a magnetic pyrolysis calcination furnace.
一般に有機物を焼却処分することで、どうしてもダイオキシンの有害ガスが発生しやすく又、プラスチック系の燃えにくいものが混ざることから不完全燃焼状態が発生しやすく、結果として悪臭や煙が発生される。この問題を対処するために第1図のような処理手段の燃焼装置で処分することができる。 Generally, by incinerating organic substances, harmful gases of dioxins are inevitably generated, and incombustible conditions are likely to occur because plastic incombustible materials are mixed, resulting in generation of bad odors and smoke. In order to cope with this problem, it can be disposed of with a combustion device of the processing means as shown in FIG.
可燃ゴミの熱処理によるダイオキシン等の有害ガスの発生とその水分を蒸発させる処理を行うような熱による手段を用い、水分を含んだガス体の処理を容易に解決しようとするものである。 An object of the present invention is to easily solve the treatment of a gas body containing moisture by using a heat-based means for generating a harmful gas such as dioxin by heat treatment of combustible waste and evaporating the moisture.
本考案は磁気熱分解燻焼炉から排煙導管及び水槽を経由した可燃ガスを燃焼装置を通して悪臭、煙を除きその後に外気に排出する。この燃焼装置においてはインナーセラミックパイプの中にシーズヒーターを設け360度四方アウトセラミックパイプに向かって熱を放射するとアウトセラミックパイプも加熱され、インナーセラミックパイプとアウトセラミックパイプの間に入ってくる可燃性ガスを燃焼処理することができる。 The present invention removes malodorous and smoke from the magneto-pyrolysis sinter-burning furnace via the smoke exhaust pipe and water tank through the combustion device, and then discharges it to the outside air. In this combustion device, when a sheathed heater is provided in the inner ceramic pipe and heat is radiated toward the 360-degree four-way out ceramic pipe, the out ceramic pipe is also heated and combustible that enters between the inner ceramic pipe and the out ceramic pipe. Gas can be burned.
従来、排気管内に直接シーズヒーターを取り付けて可燃性ガスを燃焼するため、管内に斑ができるのとシーズヒーターが損傷しやすく、交換の手間やランニングコストがかさむ割に効果があまりない。本考案はシーズヒーターが直接可燃性ガスに当らず、インナーセラミックパイプ内に押入してこのインナーセラミックパイプを800℃以上に加熱し、360度四方から輻射熱を発するのでアウトセラミックパイプも加熱することができるのでこの間を通過する可燃性ガスは完全燃焼する。また、熱効率が良いため消費電力を抑えることができる。 Conventionally, since a sheathed heater is attached directly in the exhaust pipe and combustible gas is burned, the sheathed heater is easily damaged when spots are formed in the pipe, and there is not much effect on the replacement labor and running cost. In the present invention, the sheathed heater does not directly hit the flammable gas, but it is pushed into the inner ceramic pipe to heat the inner ceramic pipe to 800 ° C. or more, and radiant heat is emitted from 360 degrees on all sides, so the out ceramic pipe can also be heated. Since it is possible, the combustible gas which passes between these burns completely. In addition, since heat efficiency is good, power consumption can be suppressed.
第1図に示すように、煙及びダイオキシン類は通常800℃以上あれば燃焼処理される。尚インナーセラミックパイプ内に温度センサー棒を押入し、これを自動温度調節装置を持つコントローラーボックスにつなぎ、常に一定の温度を保つようにした装置で最良の状態で処理できる。 As shown in FIG. 1, smoke and dioxins are usually burned at 800 ° C. or higher. A temperature sensor rod is inserted into the inner ceramic pipe, and this is connected to a controller box with an automatic temperature control device so that it can be processed in the best condition with a device that always maintains a constant temperature.
以下添付図面に従って実施例を説明する。
1は耐久性抜群のアウトセラミックパイプ
2はシーズヒーター3及びセンサー棒9が押入しているインナーセラミックパイプ
3はシーズヒーターで、インナーセラミックパイプ2を熱しその熱放射でアウトセラミックパイプ1迄熱する。
4は断熱材でアウトセラミックパイプ1の放熱を防止する。
5は外板箱で断熱材4を囲み一体化して支える。Embodiments will be described below with reference to the accompanying drawings.
Reference numeral 1 denotes an out-ceramic pipe with excellent durability. Reference numeral 2 denotes an inner ceramic pipe 3 into which a sheathed heater 3 and a sensor rod 9 are inserted.
Reference numeral 4 denotes a heat insulating material that prevents heat radiation of the out ceramic pipe 1.
Reference numeral 5 denotes an outer plate box that surrounds and supports the heat insulating material 4.
インナーセラミックパイプ2を一定温度に保つためにセンサー棒9をシーズヒーター3と一緒の処すなわちインナーセラミックパイプ2内に押入し、常に設定した温度を保持し排気ガスを確実に燃焼処理する。 In order to keep the inner ceramic pipe 2 at a constant temperature, the sensor rod 9 is pushed together with the sheathed heater 3, that is, the inner ceramic pipe 2 is pressed into the inner ceramic pipe 2, so that the set temperature is always maintained and the exhaust gas is reliably burned.
仮に800℃に温度設定するには、常にセンサー棒9からくる温度差をリアルタイムで表示するコントロールボックス11により常に一定温度を自動的に検出しコントロールする。 To set the temperature to 800 ° C., a constant temperature is always automatically detected and controlled by the control box 11 that always displays the temperature difference from the sensor rod 9 in real time.
本考案の一実施例は上述の如き構成からなるものであるから、可燃ガス燃焼装置を一体物にまとめ、燻焼炉からくる排気ガスを排煙導管6及び水槽7を経由して誘導し、燃焼装置へ導き無煙無臭として放出する。 Since one embodiment of the present invention is configured as described above, the combustible gas combustion apparatus is integrated into one unit, and exhaust gas coming from the smoldering furnace is guided through the smoke exhaust pipe 6 and the water tank 7, Lead to combustion equipment and emit as smokeless and odorless.
1 アウトセラミックパイプ
2 インナーセラミックパイプ
3 シーズヒーター
4 断熱材
5 外板箱
6 排煙導管
7 水槽
8 保護パイプ
9 センサー棒
10 シーズヒーター線
11 コントロールボックス(温度調節器)
12 コンセントコードDESCRIPTION OF SYMBOLS 1 Out ceramic pipe 2 Inner ceramic pipe 3 Seed heater 4 Heat insulation material 5 Outer box 6 Smoke exhaust pipe 7 Water tank 8 Protection pipe 9 Sensor rod 10 Seed heater wire 11 Control box (temperature controller)
12 Outlet cord
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| Application Number | Priority Date | Filing Date | Title |
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| JP2016002048U JP3207497U (en) | 2016-04-15 | 2016-04-15 | Exhaust gas combustion equipment for magnetic pyrolysis sinter furnace |
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| JP2016002048U JP3207497U (en) | 2016-04-15 | 2016-04-15 | Exhaust gas combustion equipment for magnetic pyrolysis sinter furnace |
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Cited By (2)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| WO2020217587A1 (en) * | 2019-04-25 | 2020-10-29 | 株式会社 日省エンジニアリング | Organic matter treatment device |
| JPWO2020261612A1 (en) * | 2019-06-28 | 2020-12-30 |
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2016
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Cited By (6)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| WO2020217587A1 (en) * | 2019-04-25 | 2020-10-29 | 株式会社 日省エンジニアリング | Organic matter treatment device |
| JPWO2020217587A1 (en) * | 2019-04-25 | 2020-10-29 | ||
| JP7142393B2 (en) | 2019-04-25 | 2022-09-27 | 株式会社日省エンジニアリング | Organic matter processing equipment |
| JPWO2020261612A1 (en) * | 2019-06-28 | 2020-12-30 | ||
| WO2020261612A1 (en) * | 2019-06-28 | 2020-12-30 | 株式会社 日省エンジニアリング | Organic matter treatment apparatus having steam generation function |
| JP7142394B2 (en) | 2019-06-28 | 2022-09-27 | 株式会社日省エンジニアリング | Organic matter treatment equipment with steam generation function |
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