GAS-FIRED INFRA-RED BURNERS

       
 

2 Application
Gas fired infra-red heaters rely on gas (either propane or natural gas) consumption to generate heat. Most infra-red heaters employ gas (propane or natural gas) combustion to heat a steel tube (tube heater) or ceramic surface (luminous heater), which subsequently emits infra-red heat.

 
       
 
       
 

2 Features:(Functions and applications)
• Directing at Objects
Infra-red heat warms objects directly, not the air in the space, this is a major advantage because warmed air that is not needed.
• Higher infra-red conversion
It design converts 70% of the gas input into infra-red energy which heats the working level to the desired comfort temperature.
• Transfer radiant heat in any direction
It is radiant heat energy, can be mounted facing in any direction.
• Lower installation costs
A properly designed luminous infra-red heating system, with properly sized and placed burners, will reduce fuel consumption, compared to a forced air system.
• Unique air mixing design produce precise pressurized gas/air combustion mixture
Uniform, complete and clean combustion across entire surface of burner for high efficiency.
• Burner design reduces pollution products
Negligible NOx for environmentally friendly appliance. Produces maximum, safe. Comfortable heat, no direct exhaust fans required.

Fabric Industry Use: Carpet latex drying, Dyeing drying, Printing drying
Latex Gloves: P.V.C latex gloves making drying
Ceramic Industry Use: Mold baking, raw adobe, Dry heat glaze on the ceramic tile surface
Paper Industry Use: dry heat all kinds of papers’ surface and auxiliary drying to increase productivity

2 Applications
• This kind of infra-red radian that the length of waves(2~4μm) will get the highest heat. Especially, its special strong absorbent ability is the best way for heating and drying. Also it is more clean and saving energy.

2 Caution when using
• Piping required a suitable setting pressure governor, which should be set at 70 mmAq of City Gas, 150 mmAq of Nat. Gas and 280 mmAq of LP-Gas. Higher gas pressure will affect the life of burner, and lower gas pressure will affect its efficiency.
• Ordering must be sure of the type of gas, which it is inspired the different pressure and contents, the nozzles and ceramic plates are also different.
• It will be caused to fail to get complete combustion if vents are clogged, they must be cleaned.

·Catering Industry Use: Seafood Restaurant, Meat, Hand-Braised Chicken, Fruit and Vegetables
·Coating Industry Use: Liquid, Powder Coating, Hot Coating, Dry Heat without Water for Preheat Pickling
·Agriculture and Animal Husbandry Use: Thermal Insulation for Chicken, Piglet and Calf, Cereal Drying
·Food Industry Use: Roasted Eel, Po Roasted Eel, Rice Cracker, Egg Roll, Biscuit, Squid Silk, Fish Sauce, Processed Food Drying, Tea Processing, Baking

 
       
 GAS-FIRED INFRA-RED BURNERS Form 1:
 

Model

Fule Consumption

Propane Gas

Natural Gas

Infra-Read Primary Output

Q’ty of Plate

Weight

Pipe Size

 

 

Kg/h

M³/h

Kw(kcal/h)

Pc

Kg

B

YW-61A

 

0.17

0.18

2.4(2,030)

6(2*3)

3.8

1/8,3/8

 
 

Model

Fule Consumption

Propane Gas

Natural Gas

Infra-Read Primary Output

Q’ty of Plate

Weight

Pipe Size

 

 

Kg/h

M³/h

Kw(kcal/h)

Pc

Kg

B

YW-81A

 

0.22

0.24

3.1(2,700)

8(2*4)

5.8

3/8

 
 

Model

Fule Consumption

Propane Gas

Natural Gas

Infra-Read Primary Output

Q’ty of Plate

Weight

Pipe Size

 

 

Kg/h

M³/h

Kw(kcal/h)

Pc

Kg

B

YW-82A

 

0.22

0.24

3.1(2,700)

8(2*4)

4.8

3/8

 
 

Model

Fule Consumption

Propane Gas

Natural Gas

Infra-Read Primary Output

Q’ty of Plate

Weight

Pipe Size

 

 

Kg/h

M³/h

Kw(kcal/h)

Pc

Kg

B

YW-91A

 

0.25

0.27

3.5(3,000)

9(2*4.5)

6.4

3/8

 
       
 

Model

Fule Consumption

Propane Gas

Natural Gas

Infra-Read Primary Output

Q’ty of Plate

Weight

Pipe Size

 

 

Kg/h

M³/h

Kw(kcal/h)

Pc

Kg

B

YW-101A

 

0.28

0.30

3.9(3,380)

20(2*5)

6.9

3/8

 
 

Model

Fule Consumption

Propane Gas

Natural Gas

Infra-Read Primary Output

Q’ty of Plate

Weight

Pipe Size

 

 

Kg/h

M³/h

Kw(kcal/h)

Pc

Kg

B

YW-121A

 

0.34

0.37

4.7(4,060)

12(2*6)

7.6

3/8

 
 

Model

Fule Consumption

Propane Gas

Natural Gas

Infra-Read Primary Output

Q’ty of Plate

Weight

Pipe Size

 

 

Kg/h

M³/h

Kw(kcal/h)

Pc

Kg

B

YW-131A

 

0.37

0.40

5.4(4,680)

13(2*6.5)

8.2

3/8

 
 

Model

Fule Consumption

Propane Gas

Natural Gas

Infra-Read Primary Output

Q’ty of Plate

Weight

Pipe Size

 

 

Kg/h

M³/h

Kw(kcal/h)

Pc

Kg

B

YW-162A

 

0.45

0.49

6.3(5400)

16(4*4)

8.0

3/8

 
       
 

Model

Fule Consumption

Propane Gas

Natural Gas

Infra-Read Primary Output

Q’ty of Plate

Weight

Pipe Size

 

 

Kg/h

M³/h

Kw(kcal/h)

Pc

Kg

B

YW-182A

 

0.51

0.54

7.1(6,090)

18(4*4.5)

9.1

3/8

 
 

Model

Fule Consumption

Propane Gas

Natural Gas

Infra-Read Primary Output

Q’ty of Plate

Weight

Pipe Size

 

 

Kg/h

M³/h

Kw(kcal/h)

Pc

Kg

B

YW-202A

 

0.55

0.60

7.8(6,750)

20(4*5)

11.2

3/8

 
 

Model

Fule Consumption

Propane Gas

Natural Gas

Infra-Read Primary Output

Q’ty of Plate

Weight

Pipe Size

 

 

Kg/h

M³/h

Kw(kcal/h)

Pc

Kg

B

SH-242A

 

0.68

0.74

9.4(8,120)

24(4*6)

11.7

3/8

 
 

Model

Fule Consumption

Propane Gas

Natural Gas

Infra-Read Primary Output

Q’ty of Plate

Weight

Pipe Size

 

 

Kg/h

M³/h

Kw(kcal/h)

Pc

Kg

B

SH-262A

 

0.74

0.80

10.9(9,360)

26(4*6.5)

13.0

3/8

 
 
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