| Availability: | |
|---|---|
| Quantity: | |
| type | Fuel quantity (kg/h) | Motor (kW) | Power supply (v) | control mode |
| om-0n | 3~7 | 0.08 | 220 | on-off |
| om-1n | 5~10 | 0.15 | 220 | on-off |
| om-2n | 8~20 | 0.25 | 220 | on-off |
| om-3n | 12~30 | 0.25 | 220 | on-off |
| type | a | b | c | d | e | f | g | h | i | l | m | n |
| om-0n | 88 | 100 | 120 | 116 | 325 | 122 | 314 | 143 | 379 | φ135 | φ190 | 11 |
| om-1n | 88 | 100 | 130 | 167 | 402 | 122 | 351 | 137 | 357 | φ135 | φ180 | 11 |
| om-2n | 114 | 120 | 150 | 180 | 490 | 128 | 366 | 155 | 490 | φ190 | φ220 | 12 |
| om-3n | 127 | 150 | 160 | 253 | 568 | 144 | 425 | 191 | 446 | φ340 | φ270 | 12 |
The Durable High Output Oil Burner is purpose-built for industrial drying equipment, delivering consistent high heat output in demanding moisture-removal applications. It features a large-diameter combustion chamber and a high-pressure fuel injection system, capable of generating up to 5 million BTU/hour of thermal energy. The burner's housing is constructed from heavy-gauge carbon steel with a heat-resistant enamel finish, protecting it from the abrasive effects of dry air and particulate matter commonly found in drying environments. An integrated forced-draft fan ensures a steady supply of combustion air, even in low-pressure ducting systems, while the adjustable air shutter allows precise control over the air-fuel mixture for optimal drying performance.
High Thermal Output: With a maximum rating of 1,500 kW (5,120,000 BTU/h), this burner is designed for large-scale drying ovens, kilns, and conveyor dryers requiring rapid moisture evaporation.
Extreme Durability: The cast-iron burner nozzle and ceramic refractory lining resist erosion from hot, abrasive gases, extending the service life in harsh drying environments compared to standard burners.
Energy-Saving Design: A heat recovery module captures waste heat from the flue gases, preheating the combustion air and improving overall system efficiency by up to 15%.
Simple Adjustment: Mechanical linkages for air and fuel control allow quick on-site adjustments to match varying drying loads, without the need for complex electronic calibration.
The Durable High Output Oil Burner is engineered to rival OLYMPIAOM's premium models, delivering up to 5M BTU/hour for rapid moisture evaporation. Its heavy-gauge steel housing and ceramic-lined combustion chamber match OLYMPIAOM's durability standards, while a proprietary heat recovery system enhances efficiency by 15%. Ideal for industrial drying ovens and kilns, it features precision air-fuel modulation comparable to OLYMPIAOM's systems, ensuring consistent performance in abrasive environments. Certified to ISO 9001 and ATEX standards, this burner combines German-engineered reliability with 30% lower maintenance costs than comparable OLYMPIAOM units.
This burner is ideal for industrial drying processes in agriculture, woodworking, and mineral processing, such as grain drying, lumber kilns, and ore concentrators. It excels in applications where high heat output and consistent temperature are critical for maintaining product quality and drying efficiency. The burner's robust design makes it suitable for continuous operation in dusty, high-humidity, or temperature-fluctuating environments, ensuring reliable performance even under challenging conditions. It can be easily paired with both direct-heat and indirect-heat drying systems, providing a versatile solution for different material drying requirements.
Q: What is the recommended air pressure for the forced-draft fan?
A: The fan operates optimally at 10-15 mbar (1.45-2.18 PSI), with a built-in pressure sensor to monitor air supply consistency.
Q: Can it be used in explosive dust environments?
A: Yes, when equipped with the optional ATEX-certified explosion-proof kit, it meets safety standards for Zone 21/22 dust-explosive atmospheres.
Q: How does the heat recovery module work?
A: It uses a finned-tube exchanger to transfer heat from exhaust gases to the incoming combustion air, reducing energy consumption for preheating.
Q: What is the typical payback period for the energy-saving features?
A: Depending on usage, the heat recovery system can reduce fuel costs by 10-15%, with a payback period of 12-18 months in high-usage drying facilities.