JPS62102898A - Dryer - Google Patents

Dryer

Info

Publication number
JPS62102898A
JPS62102898A JP60240771A JP24077185A JPS62102898A JP S62102898 A JPS62102898 A JP S62102898A JP 60240771 A JP60240771 A JP 60240771A JP 24077185 A JP24077185 A JP 24077185A JP S62102898 A JPS62102898 A JP S62102898A
Authority
JP
Japan
Prior art keywords
air
drying
tank
fermentation
dried
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
Application number
JP60240771A
Other languages
Japanese (ja)
Inventor
Takashi Toda
隆 戸田
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Individual
Original Assignee
Individual
Priority date (The priority date 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 date listed.)
Filing date
Publication date
Application filed by Individual filed Critical Individual
Priority to JP60240771A priority Critical patent/JPS62102898A/en
Publication of JPS62102898A publication Critical patent/JPS62102898A/en
Pending legal-status Critical Current

Links

Classifications

    • YGENERAL 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
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E50/00Technologies for the production of fuel of non-fossil origin
    • Y02E50/30Fuel from waste, e.g. synthetic alcohol or diesel

Landscapes

  • Treatment Of Sludge (AREA)
  • Solid Fuels And Fuel-Associated Substances (AREA)
  • Fertilizers (AREA)
  • Drying Of Solid Materials (AREA)
  • Processing Of Solid Wastes (AREA)

Abstract

PURPOSE:To utilize the heat generated by fermentation as a heat source for drying by conducting the high-temp. satd. air generated by the fermentation to a heat exchanger to heat the other drying air, further heating the air by heat exchange pipes provided through a fermentation vessel and conducting the heated air to a drying vessel. CONSTITUTION:A feed port 4 for a material to be dried, etc. and an air supplying machine 5 are provided to the fermentation vessel 1 to make fermentation of the material to be dried, etc. The material to be dried is intermittently moved to the drying vessel 2 by the rotation of the machine 5 and the drying is accelerated by an agitator 7. A perforated partition plate 23 having ejection ports 18 for the high- temp. air is attached to the boundary between the vessel 2 and a high temp. air vessel 3 so that the drying of the vessel 2 is executed by the above-mentioned high-temp. air. The material which is completed of drying and is dropped from a slit part 24 of the plate 23 is discharged by a conveyor 9. The high-temp. satd. air generated from the vessels 1, 2 is conducted to the heat exchanger 1 and the main flow of the other drying air heated therein is conducted to the many heat exchange pipes 16 and a high-temp. air pipe 17. The branch flow of the other drying air is supplied via the machine 5 into the vessel 1.

Description

【発明の詳細な説明】 イ 発明の目的 産業上の利用分野 本発明は汚泥、高濃度廃液、生ゴミ、農産廃棄物等の含
水率の高い物質の乾燥装置に関するものである。
DETAILED DESCRIPTION OF THE INVENTION A. Object of the Invention Industrial Application Field The present invention relates to an apparatus for drying substances with high moisture content such as sludge, highly concentrated waste liquid, garbage, and agricultural waste.

従来の技術とその問題点 上記した様な主として廃棄物となる物質は、乾燥するこ
とにより肥料や飼料として再利用できるものが多く、ま
た焼却処分するにしても乾燥させることが望まれるので
ある。
Conventional technology and its problems Most of the materials mentioned above, which are primarily waste, can be reused as fertilizer or feed by drying, and even if they are to be disposed of by incineration, it is desirable to dry them.

従来より、この様な含水率の高い物質の乾燥方法として
は火力を用いる手段と太陽熱を利用する手段とか一般に
行なわれている。
Conventionally, methods for drying such substances with a high moisture content include methods using thermal power and methods using solar heat.

しかし、火力は石油等の貴重な燃料を浪費し、一方、太
陽熱はコスト的には有利なものの雨期や冬季にはその能
力が著しく低下し、天候によるムラも大きくかつ広面積
が必要となるなと問題点の多い方法となっている。
However, thermal power wastes valuable fuels such as oil, while solar power, although advantageous in terms of cost, significantly reduces its capacity during the rainy season and winter, is subject to large fluctuations due to weather, and requires a large area. This is a method with many problems.

本発明は、この様な従来の乾燥手段の諸欠点に鑑がみ、
有効な乾燥手段を得ることを目的としてなされたもので
、乾燥の熱源として有機物が発酵したときの発熱を利用
しようとするものである。この発酵による熱エネルギー
は単位時間鴎りの熱量は太陽熱より小ぎいものの、夜、
昼、気象に関係なく平均した熱量が得られ、循環利用す
ることにより時間の経過にしたがってその発生熱量はか
なり大きくなり、乾燥の熱源として充分に利用できるこ
とに着目し、その利用法に最も適した装置を得るべく研
究を重ねた結果、本発明が達成されたのである。
The present invention takes into consideration the drawbacks of such conventional drying means,
It was developed with the aim of obtaining an effective drying method, and aims to utilize the heat generated when organic matter is fermented as a heat source for drying. Although the heat energy generated by this fermentation is smaller than the solar heat per unit time, at night,
During the day, an average amount of heat is obtained regardless of the weather, and by recycling, the amount of heat generated increases considerably over time, and it can be used as a heat source for drying. The present invention was achieved as a result of repeated research to obtain a device.

口 発明の構成 本発明の構成は、上段に発酵槽、中段に乾燥槽、及び下
段に高温空気槽を順次設けてなる装置であって、前記発
酵槽には被乾燥物等の投入口と空気供給機が設けられて
前記被乾燥物等の発酵が行なわれる様になっており、前
記発酵槽と前記乾燥槽との境界にはヒレ板付きの前記空
気供給機が回転可能に多数設けられていてこれによって
断続的に被乾燥物を前記乾燥槽に移動せしめ 前記乾燥
槽には乾燥を促進する攪拌機か備えられていて、前記乾
燥槽と前記高温空気槽の境界には高温空気の噴出口を有
する有孔仕切板が取り付けられ前記高温空気により前記
乾燥槽の乾燥が行なわれる様になっていて、前記高温空
気槽内には前記有孔仕切板のスリント部から落下させた
乾燥完了物を排出させるための取り出しコンベヤーが備
えられており、前記発酵槽と前記乾燥槽とにはこれらか
ら発生する高温飽和空気を取り出すための排出管がそれ
ぞれ取り付けられていて、この高温飽和空気を途中で合
流させて排気ファンにより熱交換器に導き、前記熱交換
器によって加温された他の空気を1流と支流に分岐させ
、前記主流加温空気は供給ブロワーを備えた主流管内を
通して前記発酵槽に貫通して設けられた多数の熱交換パ
イプに導かれここで充分に加熱されてさらに前記乾燥槽
を貫通して前記高温空気槽に導入され、一方、前記支流
加温空気は給気ブロワーを備えた支Jlt管によって前
記空気供給機に連結されてその噴出口から前記発酵槽内
に供給される様になっていることを特徴とする乾燥装置
、を要旨とするものである。
Composition of the Invention The composition of the present invention is an apparatus comprising a fermentation tank in the upper stage, a drying tank in the middle stage, and a high-temperature air tank in the lower stage, in which the fermentation tank has an inlet for drying materials, etc., and an air tank. A feeder is provided to ferment the material to be dried, and a large number of air feeders with fin plates are rotatably provided at the boundary between the fermentation tank and the drying tank. The material to be dried is thereby intermittently moved to the drying tank.The drying tank is equipped with an agitator for promoting drying, and a high-temperature air jet is provided at the boundary between the drying tank and the high-temperature air tank. A perforated partition plate is attached so that the drying tank is dried by the high-temperature air, and dried products dropped from the slint portion of the perforated partition plate are discharged into the high-temperature air tank. The fermentation tank and the drying tank are each equipped with a discharge pipe for taking out high-temperature saturated air generated from them, and the high-temperature saturated air is merged on the way. is guided to a heat exchanger by an exhaust fan, and other air heated by the heat exchanger is branched into a first stream and a tributary stream, and the mainstream heated air passes through a main stream pipe equipped with a supply blower and penetrates into the fermenter. The tributary heated air is guided through a number of heat exchange pipes provided therein, where it is sufficiently heated, and then passed through the drying tank and introduced into the high-temperature air tank, while the tributary heated air is provided with a supply air blower. The gist of the present invention is a drying device, characterized in that the air is connected to the air supply machine through a branch Jlt pipe so that the air is supplied into the fermentation tank from its jet port.

問題点を解決するための手段 堆肥を作るときに発酵に伴って多着の熱が発生すること
を応用し、装置を縦型にして、上段に発酵槽、中段に乾
燥槽を設け、発酵槽に汚泥、高濃度廃液等の被乾燥物を
投入し、必要に応じて発酵しやすい様にオガクズ、モミ
ガラ、木材小片等の繊維素質系の小片を混合し、または
発酵乾燥した混合物の1部を繰返し混入したりして、こ
の発酵槽で発酵させるのである。そしてこの発酵によっ
て生じた高温飽和空気を熱交換器に導いて他の乾燥空気
を加温しこれをさらに発酵槽に貫通して設けられた熱交
換パイプにより加熱して乾燥槽に導き乾燥熱源として利
用したのである。またこの乾燥によって生じる高温飽和
空気も熱交換器に導き、その熱エネルギーを再循環させ
ると共に発酵槽へもその加温空気の1部を導入して発酵
が促進される様に工夫したのである。
Means to solve the problem Taking advantage of the fact that a large amount of heat is generated due to fermentation when making compost, the device was made vertical, with a fermentation tank in the upper stage and a drying tank in the middle. Materials to be dried such as sludge and highly concentrated waste liquid are added to the tank, and if necessary, small pieces of fibrous materials such as sawdust, rice hulls, and small pieces of wood are mixed in to facilitate fermentation, or a part of the fermented and dried mixture is added. It is mixed repeatedly and fermented in this fermenter. The high-temperature saturated air generated by this fermentation is guided to a heat exchanger to heat other dry air, which is further heated by a heat exchange pipe that penetrates the fermenter, and then guided to a drying tank as a drying heat source. I used it. In addition, the high-temperature saturated air generated by this drying was also introduced into a heat exchanger to recirculate the heat energy, and a portion of the heated air was also introduced into the fermenter to promote fermentation.

すなわち、本発明は発酵槽を縦に長く設計し、その中に
複数段に空気供給機を設けて効率的な発酵を行なわしめ
、この中を貫通する熱交換パイプを長くして伝熱面積を
大きくして乾燥能力を増大させなから熱エネルギーを効
率よく循環再利用し、他から何らの熱エネルギーを与え
ることなく、被乾燥物を乾燥させ、乾燥物の有効利用を
可能とすると共に、縦長設計により装置の設置面積を小
さくできるなど種々なる大きな特徴を有しているのであ
る。
That is, in the present invention, the fermenter is designed to be long vertically, and air supply devices are provided in multiple stages to perform efficient fermentation, and the heat exchange pipe passing through the tank is lengthened to increase the heat transfer area. It is possible to efficiently circulate and reuse heat energy without increasing the drying capacity by increasing the size, dry the material to be dried without applying any heat energy from other sources, and enable effective use of the dried material. It has various great features such as the ability to reduce the installation area of the device due to its design.

/を発明を1実施例をあげて図面を参照しながら説明す
る。
The invention will be explained by giving one embodiment and referring to the drawings.

第1図は本発明装置の1実施例を透視状に示した斜視略
図である。
FIG. 1 is a schematic perspective view of one embodiment of the device of the present invention.

この図の様に本発明は、発酵槽(1)を上段に設け、中
段に乾燥槽(2)を設置し、さらに下段に高温空気槽(
3)が連設されていて、全体として縦に長い設置面積の
小さい装置としてやるのである。
As shown in this figure, in the present invention, a fermentation tank (1) is installed in the upper stage, a drying tank (2) is installed in the middle stage, and a high-temperature air tank (2) is installed in the lower stage.
3) are installed in series, and the whole device is long vertically and has a small footprint.

この発酵槽(1)には被乾燥物等を投入するための投入
口(4)が上面に設けられていて、内部には例えば2段
に空気供給fi (5)群が1没けられているのである
。この空気供給機(5)は後述する様にパイプ状のもの
で回転可能となっており、多数並列して水モに設けられ
ているものである。
This fermenter (1) is provided with an input port (4) on the top surface for inputting materials to be dried, etc., and inside, for example, one air supply fi (5) group is placed in two stages. There is. As will be described later, the air supply devices (5) are pipe-shaped and rotatable, and a large number of air supply devices (5) are arranged in parallel and installed in the water pump.

また、この発酵槽(1)には多数の熱交換パイプ(16
)が貫通して垂直に設けられており、この熱交換パイプ
(16)は中段の乾燥槽(2)を貫通する高温空気管(
17)に連結されて下段の高温空気槽(3)へと連通し
ているのである。
In addition, this fermenter (1) has a large number of heat exchange pipes (16
) is provided vertically through the drying tank (2), and this heat exchange pipe (16) is connected to the high temperature air pipe (
17) and communicates with the lower high temperature air tank (3).

この発酵槽(1)と乾燥槽(2)との境界部は、前述の
空気供給機(5)群の下方位置となっており、この位置
の空気供給機(5)群はその設置密度が高くしかも後述
する様にその外側にヒレ板が突設されているのである。
The boundary between the fermentation tank (1) and the drying tank (2) is located below the above-mentioned air supply machine (5) group, and the air supply machine (5) group at this position has a low installation density. It is tall and has a fin plate protruding from its outside as will be described later.

つまりこの下位の空気供給機(5)群は加温空気を供給
すると共に発酵槽(1)から被乾燥物を適宜にすなわち
必要に応じて断続的に乾燥槽(2)へと移動させるもの
となっている。
In other words, this lower air supply machine (5) group supplies heated air and moves the material to be dried from the fermentation tank (1) to the drying tank (2) intermittently as needed. It has become.

この乾燥槽(2)には攪拌羽根(8)を有する攪拌機(
7)が備えられておりモーター(図示せず)によって回
転する様になっている。
This drying tank (2) has a stirrer (
7) and is rotated by a motor (not shown).

この乾燥+PV(2)と下段の高温空気槽(3)との境
界部には有孔仕切板(23)が設けられており、これに
多数の高温空気噴出口(18)が穿設されているのであ
る。
A perforated partition plate (23) is provided at the boundary between this drying + PV (2) and the lower high temperature air tank (3), and a large number of high temperature air outlets (18) are perforated in this. There is.

この有孔仕切板(23)には乾燥完了物を落下させるだ
めのスリント部(24)があって、その下方つまり高温
空気槽(3)内に取り出しコンベヤー(9)が設けられ
ているのである。
This perforated partition plate (23) has a slint part (24) for dropping the dried products, and a take-out conveyor (9) is provided below it, that is, in the high-temperature air tank (3). .

そして、発酵槽(1)の排出口(19)と乾燥槽(2)
の排出口(20)からは排出管(22)によってそれぞ
れ高温飽和空気が排出されるようになっており、これら
が途中で合流して排気ファン(21)によって熱交換器
(l l)に送り込まれる様になっている。この高温飽
和空気が熱交換器(11)内で他の空気を加温するので
ある。
Then, the discharge port (19) of the fermenter (1) and the drying tank (2)
High-temperature saturated air is discharged from the discharge ports (20) of the exhaust pipes (22), and these airs meet in the middle and are sent to the heat exchanger (l l) by the exhaust fan (21). It looks like it will be. This high temperature saturated air heats other air within the heat exchanger (11).

この加温された他の空気が送り管(13)に導かれ、こ
の送り管(13)は途中で主流管(25)と支流管(2
6)とに分岐しており。
This heated other air is guided to the feed pipe (13), which has a main pipe (25) and a branch pipe (25) on the way.
6) It is branched into.

主流v(25)内の気流は供給ブロワー(15)によっ
て前記した多数の熱交換パイプ(16)に並列的に連通
してざらに高温空気’l?(17)を通って下段の高温
空気槽(3)へと導かれるのである。一方、支流管(2
6)内の気流は給気ブロワー(14)によって前記した
空気供46@(5)へと案内されて行くのである。
The air flow in the main stream V (25) is communicated in parallel with the aforementioned plurality of heat exchange pipes (16) by a supply blower (15), so that the air flow in the main stream V (25) is roughly heated. (17) and is led to the lower high temperature air tank (3). On the other hand, the tributary pipe (2
The air flow in 6) is guided by the air supply blower (14) to the above-mentioned air supply 46@(5).

第2図は本発明における空気供給機の1例を表わした部
分斜視図で、(a)は一端側。
FIG. 2 is a partial perspective view showing one example of the air supply device according to the present invention, and (a) shows one end side.

(b)は他端側を示している。(b) shows the other end side.

この図の様に空気供給機(5)は供給管(27)に多数
の空気噴出口(28)が設けられていてここから加温空
気が噴出するのである。またこの供給管(27)の外側
にはヒレ板(29)が突設されていて一端側の駆動軸(
30)により全体が回転できる様になっているのである
。つまりこの空気供給機(5)が停止しているときは、
ヒレ板(29)同志が接近して被乾燥物の落下を防止し
、必要に応じて発酵槽(1)から乾燥槽(2)へと被乾
燥物を移動させるに際してはこの空気供給機(5)を一
時的に回転させると、ヒレ板(29)がカキ落し作用を
発揮して任意の量だけその移動を行なわしめるのである
As shown in this figure, the air supply device (5) has a supply pipe (27) provided with a large number of air ejection ports (28) from which heated air is ejected. Furthermore, a fin plate (29) is protruded from the outside of this supply pipe (27), and a drive shaft (
30) allows the whole to rotate. In other words, when this air supply machine (5) is stopped,
The fin plates (29) come close together to prevent the material to be dried from falling, and when necessary, the air supply device (5) is used to move the material to be dried from the fermentation tank (1) to the drying tank (2). ) is temporarily rotated, the fin plate (29) exerts an oyster-dropping action and moves by a desired amount.

なお、この空気供給機(5)が回転しても空気が導入さ
れる様に、他端側において中空軸(31)が、軸封部(
32)やリング状パー2キン(33)を介して、空気漏
れを防止しつつ固定空気管(34)に対して回転可能に
連結されているのである。
In addition, the hollow shaft (31) has a shaft sealing portion (
32) and a ring-shaped perkin (33), it is rotatably connected to the fixed air pipe (34) while preventing air leakage.

第3図は本発明における熱交換パイプの部分切欠き斜視
図である。
FIG. 3 is a partially cutaway perspective view of the heat exchange pipe according to the present invention.

この図の様に熱交換パイプ(16)はその外周に螺旋状
フィン(35)を備え、内部には螺旋状羽根(36)を
有するものとなっている。
As shown in this figure, the heat exchange pipe (16) has spiral fins (35) on its outer periphery and spiral vanes (36) inside.

なお、この螺旋状羽根(36)は支持棒(37)に取り
付けられているのである。
Note that this spiral blade (36) is attached to a support rod (37).

この螺旋状フィン(35)の接触面積拡大作用で熱交換
が効率的に行なわれると同時に1発酵によって発生した
高温飽和空気がこのフィン(35)の下側を伝たいなが
ら上昇し発酵槽(1)のと部へと案内されるのである。
The contact area of the spiral fins (35) is expanded to efficiently exchange heat, and at the same time, the high-temperature saturated air generated during one fermentation rises while traveling along the bottom of the fins (35). ).

また内部の螺旋状羽根(36)は伝熱性を高めると同時
に気流の逆流を防止しているのである。
Moreover, the internal spiral vanes (36) enhance heat transfer and at the same time prevent backflow of airflow.

作用 本発明は以上の様な構成であり、その使用法と作用につ
いて説明する。
Function The present invention has the above-mentioned configuration, and its usage and function will be explained.

まず発酵槽(1)の投入口(4)から被乾燥物を投入す
るのであるが、農産廃棄物の様な水分が多くても通気性
の良いものはそのまま投入し、汚泥や高濃度廃液の様に
粘度が高く通気性の悪いもの、及び有機物が少なくその
ままでは発酵しないもの等は、前述した繊維素質系の小
片やまたは発酵乾燥物の1部と混合し、水分を発酵可能
な適量の50〜70%としてから投入するのである。
First, the material to be dried is input from the input port (4) of the fermenter (1). Items with good ventilation even if they contain a lot of moisture, such as agricultural waste, are input as is, and sludge and highly concentrated waste liquid are input as is. For those with high viscosity and poor air permeability, and those that are low in organic matter and cannot be fermented as they are, mix them with the aforementioned fibrous pieces or a part of the fermented dry material, and mix them with an appropriate amount of 50 ml that can ferment the moisture. It is then added after bringing it up to 70%.

そして、発酵させ発熱が始まりやがて温度が70′C程
度に上昇すれば空気供給機(5)を断続的に回転させて
下層に移動させ乾燥槽(2)に落下させて乾燥するので
ある。
Then, when fermentation begins and the temperature rises to about 70'C, the air supply device (5) is intermittently rotated to move the material to the lower layer and drop it into the drying tank (2) for drying.

この発酵によって生じた高温飽和空気と乾燥によって水
分を吸収した高温飽和空気を排出口(19)(20)か
ら排気管(22)に取り出し合流させて排気ファン(2
1)によって熱交換器(11)へと導くのである。
The high-temperature saturated air generated by this fermentation and the high-temperature saturated air that has absorbed moisture through drying are taken out from the exhaust ports (19) and (20) into the exhaust pipe (22) and combined with the exhaust fan (2).
1) leads to the heat exchanger (11).

この熱交換器(11)において高温飽和空気は他の空気
を加温して排出され、水分の1部は凝結水となってドレ
ン管(12)より排水されるのである。
In this heat exchanger (11), the high-temperature saturated air heats other air and is discharged, and a portion of the water becomes condensed water and is drained from the drain pipe (12).

この熱交換器(11)によって加温された他の空気は、
送り管(13)と連結している主波管(25)と支流管
(26)とに分岐して流れるのである。
Other air heated by this heat exchanger (11) is
The water branches into a main wave pipe (25) and a tributary pipe (26), which are connected to the feed pipe (13).

主流管(25)の気流は供給ブロワー(15)によって
発酵槽(1)を貫通している多数の熱交換パイプ(16
)に導かれるのである。
The airflow in the main pipe (25) is transferred by a supply blower (15) to a number of heat exchange pipes (16) passing through the fermenter (1).
).

この熱交換パイプ(16)の外側には螺旋状フィン(3
5)が設けられていて、発酵槽(1)内で発生した高温
飽和空気はこの螺旋状フィン(35)の下を伝だいなが
ら上昇するのでパイプ内部の気流を効率良く加熱し、こ
の気流はここで充分に加熱されて高温空気管(17)を
通って下段の高温空気槽(3)へと導入され、有孔仕切
板(23)の噴出口(18)から乾燥槽(2)へ吹き込
んで被乾燥物と接触してその水分を吸収してこれらを乾
燥させ飽和空気となって再び排出口(20)から排出さ
れ、以下同様にして熱エネルギーを循環させるのである
The heat exchange pipe (16) has spiral fins (3
5), and the high-temperature saturated air generated in the fermenter (1) rises while passing under the spiral fins (35), efficiently heating the airflow inside the pipe, and this airflow Here, the heated air is sufficiently heated and introduced into the lower high-temperature air tank (3) through the high-temperature air pipe (17), and then blown into the drying tank (2) through the outlet (18) of the perforated partition plate (23). It comes into contact with the material to be dried, absorbs its moisture, dries it, becomes saturated air, and is again discharged from the discharge port (20), whereupon the thermal energy is circulated in the same manner.

なお、この主流管(25)に流れる気流の量つまり乾燥
に使用する風量は200〜50011/分が望ましいも
のである。
Note that the amount of airflow flowing through this main pipe (25), that is, the amount of air used for drying, is preferably 200 to 50011/min.

一方、支I&管(26)の気流は1給気ブロワー(14
)によって乾燥槽(1)に複数段(第1図の場合は2段
)に棚状に設けられた空気供給機(5)へ導かれこの噴
出口(28)から発酵槽(1)内へ吹込んで発酵を促進
し、高温飽和空気となって排出口(19)から排出され
、以下同様にして循環し熱エネルギーの再利用が図られ
るのである。
On the other hand, the airflow of the branch I&pipe (26) is controlled by one air supply blower (14
), the air is guided to the air supply machine (5) installed in multiple stages (two stages in the case of Figure 1) in the form of shelves in the drying tank (1), and from this spout (28) into the fermenter (1). The air is blown in to promote fermentation, becomes high-temperature saturated air, and is discharged from the outlet (19), which is then circulated in the same manner to reuse thermal energy.

なお、この支流管(26)の風量つまり発酵促進空気は
50〜100文/分が望ましいものである。
Note that the air volume of this tributary pipe (26), that is, the fermentation promoting air, is preferably 50 to 100 g/min.

発酵が促進すれば空気供給機(5)を前述の様にして断
続的に回転させ乾燥槽(2)へ被乾燥物を適当量づつ移
動させ、乾燥槽(2)における乾燥が促進すれば取り出
しコンベヤー(9)を駆動させて取出口(10)から乾
燥完了物を排出するのである。
If the fermentation is promoted, the air supply device (5) is rotated intermittently as described above to move the material to be dried in appropriate amounts to the drying tank (2), and if the drying in the drying tank (2) is promoted, the material is taken out. The conveyor (9) is driven to discharge the dried product from the outlet (10).

なお、発酵槽(1)から乾燥槽(2)へ落下させて減少
した分だけ投入口(4)から新しい被乾燥物を供給する
ことは勿論である。
Of course, new material to be dried can be supplied from the input port (4) by the amount reduced by dropping from the fermentation tank (1) to the drying tank (2).

また、熱交換パイプ(16)と高温空気管(17)との
間には仕切板(6)が固定されており、これによって発
酵4f!(1)で発生した高温飽和空気が乾燥槽(2)
へ逆流するのを防止しているのである。
In addition, a partition plate (6) is fixed between the heat exchange pipe (16) and the high temperature air pipe (17), which allows for 4f of fermentation! The high temperature saturated air generated in (1) is transferred to the drying tank (2).
This prevents the water from flowing backwards.

乾燥槽(2)における攪拌機(7)は乾燥が促進すると
その負荷が軽減し回転数を増加してさらに乾燥を促進さ
せるのである。乾燥物の1部または全部を取り出しコン
ベヤー(9)によって取り出すと、それと同量の被乾燥
物を空気供給機(5)を回転させてそのヒレ板(29)
で発酵槽(1)からカキ落しながら乾燥槽(2)へと移
動させることは前述した通りである。この空気供給機(
5)の回転は通常1回の作動が3〜10分間でその回転
数もパツキンにかかる負荷を小さくする様に3〜15回
/分と少なく、その回転させる度合は通常1日に数回位
である。
When the drying is accelerated, the load on the agitator (7) in the drying tank (2) is reduced and the number of revolutions is increased to further accelerate the drying. When part or all of the dried material is taken out by the conveyor (9), the same amount of the dried material is transferred to the fin plate (29) by rotating the air supply device (5).
As described above, the oysters are removed from the fermentation tank (1) and transferred to the drying tank (2). This air supply machine (
5) Normally, each operation takes 3 to 10 minutes, and the number of rotations is as low as 3 to 15 times/minute to reduce the load on the gasket, and the degree of rotation is usually several times a day. It is.

以上の結果、発酵槽(1)における被乾燥物は発酵によ
る作用で水分率が50〜60%となって乾燥槽(2)に
移行し、この乾燥槽(2)では約24時間で水分率が約
20%に乾燥するのである。
As a result of the above, the material to be dried in the fermentation tank (1) has a moisture content of 50 to 60% due to fermentation and transfers to the drying tank (2). dries to about 20%.

ハ 発明の効果 本発明の効果は、含゛水率の高い被乾燥物をそれ自体の
発酵熱によって乾燥させることにあり、昼夜、気象に関
係なく平均した乾燥能力が得られ、発酵熱の循環利用に
よって効率的な乾燥が達成されることである。
C. Effects of the Invention The effects of the present invention are that the material to be dried with a high moisture content is dried using its own fermentation heat, and an average drying capacity can be obtained regardless of day or night or weather, and the fermentation heat can be circulated. Efficient drying can be achieved through its use.

しかも本発明装置は縦長に設置されるものであるため、
設置面積は小さく経済的で、熱交換パイプも長くなって
伝熱面積を犬きくすることができ高温乾燥空気を多く作
り出しているのである。また、この様に縦長であるため
発酵槽に空気供給機を複数段に設置でき加温空気を均等
に供給し発酵を促進させることができるのである。
Moreover, since the device of the present invention is installed vertically,
The installation area is small and economical, and the heat exchange pipes are also long, increasing the heat transfer area and producing a large amount of high-temperature dry air. Moreover, since it is vertically long, air supply machines can be installed in multiple stages in the fermenter, and heated air can be uniformly supplied to promote fermentation.

また熱交換パイプの外側に設けられた螺旋状フィンによ
り熱交換を促進させると同時に発生した高温飽和空気を
発酵槽の上部へ伝たい上昇させる効果があり、スムーズ
な空気の流れを得ているのである。
In addition, the spiral fins installed on the outside of the heat exchange pipe promote heat exchange and at the same time have the effect of raising the generated high-temperature saturated air to the top of the fermenter, resulting in a smooth air flow. be.

さらに本発明装置は発酵と乾燥が連続して行なわれ、発
酵槽から乾燥槽への移動もヒレ板付きの回転可能な空気
供給機により任意にかつ非常に円滑に達成されるものと
なっている。
Furthermore, in the device of the present invention, fermentation and drying are performed continuously, and movement from the fermenter to the dryer can be achieved arbitrarily and very smoothly using a rotatable air supply device with a fin plate. .

かくして、乾燥された処理物は肥料、飼料、または燃料
として再利用が可能であり、焼却処理等の取扱いも容易
となるのである。
In this way, the dried processed material can be reused as fertilizer, feed, or fuel, and can be easily handled by incineration, etc.

【図面の簡単な説明】[Brief explanation of drawings]

第1図は本発明装置の1実施例を透視状に示した斜視略
図である。 第2図は本発明における空気供給機の1例を表わした部
分斜視図で、(a)は一端側、(b)は他端側を示して
いる。 :J、3図は本発明における熱交換パイプの部分切欠き
斜視図である。
FIG. 1 is a schematic perspective view of one embodiment of the device of the present invention. FIG. 2 is a partial perspective view showing one example of the air supply device according to the present invention, in which (a) shows one end side and (b) shows the other end side. :J, Figure 3 is a partially cutaway perspective view of the heat exchange pipe in the present invention.

Claims (1)

【特許請求の範囲】 1、上段に発酵槽、中段に乾燥槽、及び下段に高温空気
槽を順次設けてなる装置であっ て、前記発酵槽には被乾燥物等の投入口と 空気供給機が設けられて前記被乾燥物等の 発酵が行なわれる様になっており、前記発 酵槽と前記乾燥槽との境界にはヒレ板付き の前記空気供給機が回転可能に多数設けら れていてこれによって断続的に被乾燥物を 前記乾燥槽に移動せしめ、前記乾燥槽には 乾燥を促進する攪拌機が備えられていて、 前記乾燥槽と前記高温空気槽の境界には高 温空気の噴出口を有する有孔仕切板が取り 付けられ前記高温空気により前記乾燥槽の 乾燥が行なわれる様になっていて、前記高 温空気槽内には前記有孔仕切板のスリット 部から落下させた乾燥完了物を排出させる ための取り出しコンベヤーが備えられてお り、前記発酵槽と前記乾燥槽とにはこれら から発生する高温飽和空気を取り出すため の排出管がそれぞれ取り付けられていて、 この高温飽和空気を途中で合流させて排気 ファンにより熱交換器に導き、前記熱交換 器によって加温された他の空気を主流と支 流に分岐させ、前記主流加温空気は供給ブ ロワーを備えた主流管内を通して前記発酵 槽に貫通して設けられた多数の熱交換パイ プに導かれここで充分に加熱されてさらに 前記乾燥槽を貫通して前記高温空気槽に導 入され、一方、前記支流加温空気は給気ブ ロワーを備えた支流管によって前記空気供 給機に連結されてその噴出口から前記発酵 槽内に供給される様になっていることを特 徴とする、乾燥装置。 2、熱交換パイプが、その外側に螺旋状フィンを有しそ
の内部に螺旋状羽根を有してな る特許請求の範囲第1項記載の乾燥装置。
[Claims] 1. An apparatus comprising a fermentation tank in the upper stage, a drying tank in the middle stage, and a high-temperature air tank in the lower stage, in which the fermentation tank has an inlet for drying materials, etc., and an air supply machine. A number of air supply machines each having a fin plate are rotatably provided at the boundary between the fermentation tank and the drying tank. The material to be dried is intermittently moved to the drying tank, the drying tank is equipped with an agitator for promoting drying, and a boundary between the drying tank and the high-temperature air tank has a hot air outlet. A perforated partition plate is attached so that the drying tank is dried by the high-temperature air, and the dried material dropped from the slit of the perforated partition plate is discharged into the high-temperature air tank. The fermentation tank and the drying tank are each equipped with a discharge pipe for taking out the high-temperature saturated air generated from them, and the high-temperature saturated air is combined in the middle. The other air heated by the heat exchanger is led to a heat exchanger by an exhaust fan, and the other air is divided into a main stream and a tributary stream, and the main stream heated air passes through a main stream pipe equipped with a supply blower and penetrates into the fermenter. The heated air is guided through a plurality of heat exchange pipes provided, where it is sufficiently heated, and then passed through the drying tank and introduced into the high temperature air tank, while the tributary heated air is passed through a tributary pipe equipped with a supply air blower. A drying device, characterized in that the drying device is connected to the air supply device so that the air is supplied into the fermentation tank from its spout. 2. The drying device according to claim 1, wherein the heat exchange pipe has spiral fins on the outside and spiral blades on the inside.
JP60240771A 1985-10-28 1985-10-28 Dryer Pending JPS62102898A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP60240771A JPS62102898A (en) 1985-10-28 1985-10-28 Dryer

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP60240771A JPS62102898A (en) 1985-10-28 1985-10-28 Dryer

Publications (1)

Publication Number Publication Date
JPS62102898A true JPS62102898A (en) 1987-05-13

Family

ID=17064464

Family Applications (1)

Application Number Title Priority Date Filing Date
JP60240771A Pending JPS62102898A (en) 1985-10-28 1985-10-28 Dryer

Country Status (1)

Country Link
JP (1) JPS62102898A (en)

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2007062520A1 (en) * 2005-12-01 2007-06-07 James Wright Method and apparatus for drying organic material
CN105618466A (en) * 2016-03-18 2016-06-01 安徽国孚润滑油工业有限公司 Dry distillation tower based on heat tube
EP3134494A4 (en) * 2014-04-24 2017-11-15 Torrec OY Torrefaction apparatus

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2007062520A1 (en) * 2005-12-01 2007-06-07 James Wright Method and apparatus for drying organic material
EP3134494A4 (en) * 2014-04-24 2017-11-15 Torrec OY Torrefaction apparatus
CN105618466A (en) * 2016-03-18 2016-06-01 安徽国孚润滑油工业有限公司 Dry distillation tower based on heat tube

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