CN211903288U - Methanol heating furnace - Google Patents

Methanol heating furnace Download PDF

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Publication number
CN211903288U
CN211903288U CN201922392998.5U CN201922392998U CN211903288U CN 211903288 U CN211903288 U CN 211903288U CN 201922392998 U CN201922392998 U CN 201922392998U CN 211903288 U CN211903288 U CN 211903288U
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CN
China
Prior art keywords
pipe
lead
communicated
furnace body
heated
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Expired - Fee Related
Application number
CN201922392998.5U
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Chinese (zh)
Inventor
姜泽众
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Individual
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Individual
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Publication date
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Priority to CN201922392998.5U priority Critical patent/CN211903288U/en
Application granted granted Critical
Publication of CN211903288U publication Critical patent/CN211903288U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

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Abstract

The utility model discloses a to the discharge that traditional boiler exists not totally, defects such as the thermal efficiency is low, design one kind and use methyl alcohol as fuel, the boiler structure of closed burning in the stove, methyl alcohol heating furnace promptly. A certain amount of solid adsorbent with concave holes is added into a boiler flue, so that flame burning in a boiler body is adsorbed and filtered by the adsorbent and then exhaust waste gas is discharged, and the effects of clean discharge, high heat efficiency, low operation cost and safe use are achieved.

Description

Methanol heating furnace
Technical Field
The utility model relates to a heat supply boiler structure, in particular to a methanol heat supply furnace which is suitable for using methanol as fuel.
Background
At present, due to the requirement of environmental protection, the use of coal-fired boilers is limited, and the traditional boilers taking diesel oil and the like as fuels adopt open-fire combustion, so that the defects of unclean discharge, low heat efficiency and the like still exist.
Disclosure of Invention
The utility model discloses a to the discharge that traditional boiler exists not totally, defects such as the thermal efficiency is low, design one kind and use methyl alcohol as fuel, the boiler structure of closed burning in the stove. A certain amount of solid adsorbent with concave holes is added into a boiler flue, so that flame burning in a boiler body is adsorbed and filtered by the adsorbent and then exhaust waste gas is discharged, and the effects of clean discharge, high heat efficiency, low operation cost and safe use are achieved.
The utility model provides a technical scheme that its technical problem adopted is: the device consists of a furnace body, a heated pipe, an adsorbent, a sieve plate I, a water drain valve, a channel pipe, a combustion furnace, a preheating chamber, a heated pipe inlet, a temperature sensor I, a pressure pump, a temperature sensor II, a waste gas pipe, a sieve plate II, a temperature sensor III, a heated pipe outlet, a temperature sensor IV, a methanol tank, an alcohol delivery pipe, a partition plate, a connecting pipe, an igniter, a methanol pump, a flange plate, a flange pipe, an atomizer, a lead I, a lead II, a lead III, a lead IV, a lead V, a lead VI, a lead VII, a lead VIII, a console, a blower, an air duct, a support frame and a concave hole, wherein the furnace body is divided into an upper layer and a lower layer by the partition plate, the spiral heated pipe is arranged in the upper layer of the furnace body, the adsorbent is arranged around the heated pipe, the heated pipe outlet extends out of the furnace body, the lower end of the heated pipe is communicated, the waste gas pipe is communicated with the upper layer of the furnace body through a sieve plate II, a combustion furnace is arranged in a preheating chamber, the upper part of the combustion furnace is communicated with the upper layer of the furnace body through a communicating pipe, the sieve plate I is arranged at the upper end of the communicating pipe, the lower part of the combustion furnace is communicated with an air channel, the air channel is provided with a flange pipe, a flange pipe opening is sealed by trying to arrange a flange plate, an alcohol conveying pipe and an igniter are sequentially arranged on the flange plate and extend into the air channel, the alcohol conveying pipe is provided with a methanol pump, one end of the alcohol conveying pipe extending into the air channel is provided with an atomizer, the other end of the alcohol conveying pipe is communicated with a methanol tank, the air channel is provided with a blower, the preheating chamber is communicated with an inlet of a heated pipe, an inlet of the heated pipe is provided with a pressure pump, the pressure pump is communicated with a lead VI and a temperature sensor I through a, The air blower is respectively connected with the control console through a lead VIII, and the furnace body is arranged on the supporting frame.
The waste gas pipe at the top of the furnace body is obliquely arranged, and the waste gas outlet end of the waste gas pipe is lower than the inlet end.
The outlet at the upper end of the channel pipe is higher than the upper plane of the clapboard, and the bottom of the upper layer of the furnace body is provided with a water drain valve.
The adsorbent is solid and is provided with concave holes.
The utility model has the advantages that: the exhaust emission is clean, the thermal efficiency is high, the operation cost is low, and the use is safe.
Drawings
The present invention will be further explained with reference to the drawings and examples.
Fig. 1 is a schematic structural diagram of the present invention.
Fig. 2 is a schematic view of the structure of the adsorbent 3.
In the figure: 1. the furnace comprises a furnace body, 2 heated pipes, 3 adsorbents, 4 sieve plates I, 5 water drain valves, 6 channel pipes, 7 combustion furnaces, 8 preheating chambers, 9 heated pipe inlets, 10 temperature sensors I, 11 pressure pumps, 12 temperature sensors II, 13 exhaust gas pipes, 14 sieve plates II, 15 temperature sensors III, 16 heated pipe outlets, 17 temperature sensors IV, 18 methanol tanks, 19 alcohol conveying pipes, 20 partition plates, 21 connecting pipes, 22 igniters, 23 methanol pumps, 24 flanges, 25 flange pipes, 26 atomizers, 27 leads I, 28 leads II, 29 leads III, 30 leads IV, 31 leads V, 32 leads VI, 33 leads VII, 34 leads VIII, 35 control consoles, 36 blowers, 37 air ducts, 38 support frames and 39 concave holes.
Detailed Description
In figure 1, a furnace body (1) is divided into an upper layer and a lower layer by a partition plate (20), a spiral heated tube (2) is arranged in the upper layer of the furnace body (1), an adsorbent (3) is arranged around the heated tube (2), a heated tube outlet (16) at the upper end of the heated tube (2) extends out of the furnace body (1), the lower end of the heated tube (2) is communicated with a preheating chamber (8) at the lower layer of the furnace body (1) through a connecting tube (21), a waste gas tube (13) is arranged at the top of the furnace body (1), the waste gas tube (13) is communicated with the upper layer of the furnace body (1) through a sieve plate II (14), a combustion furnace (7) is arranged in the preheating chamber (8), the upper part of the combustion furnace (7) is communicated with the upper layer of the furnace body (1) through a communicating tube (6), the upper end of the communicating tube (6) is provided with a sieve plate I (4), the lower part of the combustion, the opening of a flange pipe (25) is sealed by a flange plate (24), an alcohol delivery pipe (19) and an igniter (22) are sequentially arranged on the flange plate (24) and extend into an air duct (37), the alcohol delivery pipe (19) is provided with a methanol pump (23), one end of the alcohol delivery pipe (19) extending into the air duct (37) is provided with an atomizer (26), the other end of the alcohol delivery pipe (19) is communicated with a methanol tank (18), the air duct (37) is provided with a blower (36), a preheating chamber (8) is communicated with a heated pipe inlet (9), the heated pipe inlet (9) is provided with a pressure pump (11), the pressure pump (11) is communicated with a lead VI (32), a temperature sensor I (10) is communicated with a lead V (31), a temperature sensor II (12) is communicated with a lead IV (30), a temperature sensor III (15) is communicated with a lead III (29), the temperature sensor IV (17) is communicated with a lead II (28), the igniter (22) is communicated with a lead I (27, The methanol pump (23) is respectively connected with the console (35) through a lead VII (33) and the blower (36) through a lead VIII (34), and the furnace body (1) is arranged on the supporting frame (38).
In fig. 1, the exhaust gas pipe (13) at the top of the furnace body (1) is obliquely arranged, and the exhaust gas outlet end is lower than the inlet end.
In the figure 1, the outlet at the upper end of the channel pipe (6) is higher than the upper plane of the clapboard (20), and the bottom of the upper layer of the furnace body (1) is provided with a water drain valve (5).
In fig. 2, the adsorbent (3) is a solid body provided with a concave hole (39).

Claims (4)

1. A methanol heat supply furnace is composed of a furnace body (1), a heated tube (2), an adsorbent (3), a sieve plate I (4), a water drain valve (5), a channel tube (6), a combustion furnace (7), a preheating chamber (8), a heated tube inlet (9), a temperature sensor I (10), a pressure pump (11), a temperature sensor II (12), an exhaust gas tube (13), a sieve plate II (14), a temperature sensor III (15), a heated tube outlet (16), a temperature sensor IV (17), a methanol tank (18), an alcohol delivery tube (19), a partition plate (20), a connecting tube (21), an igniter (22), a methanol pump (23), a flange plate (24), a flange tube (25), an atomizer (26), a lead I (27), a lead II (28), a lead III (29), a lead IV (30), a lead V (31), a lead VI (32), a lead VII (33), Wire VIII (34), control cabinet (35), air-blower (36), wind channel (37), support frame (38), shrinkage pool (39) are constituteed, characterized by: a furnace body (1) is divided into an upper layer and a lower layer by a partition plate (20), a spiral heated pipe (2) is arranged in the upper layer of the furnace body (1), an adsorbent (3) is arranged around the heated pipe (2), a heated pipe outlet (16) at the upper end of the heated pipe (2) extends out of the furnace body (1), the lower end of the heated pipe (2) is communicated with a preheating chamber (8) at the lower layer of the furnace body (1) through a connecting pipe (21), a waste gas pipe (13) is arranged at the top of the furnace body (1), a sieve plate II (14) communicates the waste gas pipe (13) with the upper layer of the furnace body (1), a combustion furnace (7) is arranged in the preheating chamber (8), the upper part of the combustion furnace (7) is communicated with the upper layer of the furnace body (1) through a channel pipe (6), a sieve plate I (4) is arranged at the upper end of the channel pipe (6), the lower part of the combustion furnace (7) is communicated with an air duct (37), the air duct (, an alcohol delivery pipe (19) and an igniter (22) are sequentially arranged on a flange plate (24) and extend into an air duct (37), a methanol pump (23) is arranged on the alcohol delivery pipe (19), an atomizer (26) is arranged at one end of the alcohol delivery pipe (19) extending into the air duct (37), the other end of the alcohol delivery pipe (19) is communicated with a methanol tank (18), an air blower (36) is arranged on the air duct (37), a preheating chamber (8) is communicated with a heated pipe inlet (9), the heated pipe inlet (9) is provided with a pressure pump (11), the pressure pump (11) is communicated with the methanol tank (18) through a lead VI (32), a temperature sensor I (10) is communicated with a lead V (31), a temperature sensor II (12) is communicated with a heated pipe inlet (30), a temperature sensor III (15) is communicated with a lead III (29), a temperature sensor IV (17) is communicated with a lead II (28), an igniter (22) is communicated with a lead I (27), and the methanol pump (, The air blowers (36) are respectively connected with the control console (35) through leads VIII (34), and the furnace body (1) is arranged on the support frame (38).
2. The methanol heating furnace as claimed in claim 1, wherein: the waste gas pipe (13) at the top of the furnace body (1) is obliquely arranged, and the waste gas outlet end is lower than the inlet end.
3. The methanol heating furnace as claimed in claim 1, wherein: the outlet at the upper end of the channel pipe (6) is higher than the upper plane of the clapboard (20), and the bottom of the upper layer of the furnace body (1) is provided with a water drain valve (5).
4. The methanol heating furnace as claimed in claim 1, wherein: the adsorbent (3) is solid and is provided with a concave hole (39).
CN201922392998.5U 2019-12-20 2019-12-20 Methanol heating furnace Expired - Fee Related CN211903288U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201922392998.5U CN211903288U (en) 2019-12-20 2019-12-20 Methanol heating furnace

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201922392998.5U CN211903288U (en) 2019-12-20 2019-12-20 Methanol heating furnace

Publications (1)

Publication Number Publication Date
CN211903288U true CN211903288U (en) 2020-11-10

Family

ID=73294774

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201922392998.5U Expired - Fee Related CN211903288U (en) 2019-12-20 2019-12-20 Methanol heating furnace

Country Status (1)

Country Link
CN (1) CN211903288U (en)

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Granted publication date: 20201110