Shandong Zhongjie Special Equipment Co., Ltd.VIP

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Jinzhou 6-ton gas boiler

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  • Unit Price

    $10000.00/Tai

  • Brand

    Zhong Jie

  • MOQ

    1Tai

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山东中杰特种装备股份有限公司

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  • Shandong
  • 于秋波 (Mr.)   业务经理
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  • Brand:

    Zhong Jie

  • Unit Price:

    $10000.00 / Tai

  • MOQ:

    MOQ1Tai

  • Total:

    9999Tai

  • Address:

    Shandong

  • Delivery:

    3days

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Description

Shandong Zhongjie Special Equipment (formerly Heze Boiler Factory Co., Ltd.) was established in 2001, located at No. 2218 Jinnan Road, Development Zone, Heze City, with a registered capital of 50 million yuan and total assets of 500 million yuan. The company has 7 business centers: boilers, deep-freeze containers, pressure vessels, central air conditioning, engineering installation, international trade, and the Internet of Things. It has three factory areas on Jinnan Road, East Changjiang Road, and Bohai Road, covering a total of 200,000 square meters, with the main workshop area being 83,000 square meters. It currently employs 710 people, including 247 engineers and technicians and 82 intermediate-level technical personnel. In December 2016, it was recognized as a "High-Tech Enterprise" by the Science and Technology Department. In June 2021, it was identified as a "Specialized and New Enterprise in Shandong Province" by the Department of Industry and Information Technology. In June 2022, it was recognized as a "Gazelle Enterprise in Shandong Province" and in August 2022, it was identified as a "Specialized and New Small Giant Enterprise" by the Ministry of Industry and Information Technology.
Properly utilizing fuel-gas boilers can enhance energy efficiency and reduce consumption. Here are some suggestions: 1. Select the right boiler model: Choose a suitable fuel-gas boiler based on actual needs, considering factors like heat load, fuel type, and combustion efficiency. 2. Regular inspection and maintenance: Conduct regular checks and maintenance to ensure the boiler operates smoothly. This includes cleaning burners, inspecting the combustion system, adjusting parameters, and promptly repairing or replacing damaged parts. 3. Control the combustion process: Manage the combustion process to ensure it's thorough, stable, and efficient. Adjust burner parameters like air flow and fuel supply to improve combustion efficiency and reduce waste. 4. Heat recovery: Utilize waste heat recovery systems to capture and reuse excess heat from flue gases, for heating water or other heat-intensive processes, to boost energy efficiency. 5. Control operating parameters: Adjust boiler operating parameters like water level, pressure, and temperature based on actual needs and conditions, avoiding extremes to enhance efficiency and safety. 6. Regularly clean heat exchangers: Clean the heat exchangers of fuel-gas boilers regularly to remove dirt and sediment, maintaining their heat transfer efficiency and reducing energy loss. 7. Energy management: Establish an energy management system, monitor and analyze energy consumption, and develop rational energy use plans and energy-saving measures to improve efficiency and reduce consumption. These are common methods and suggestions, but specific applications should be determined based on actual conditions and boiler characteristics. Also, comply with relevant laws, regulations, and safety procedures to ensure safe operation of fuel-gas boilers.
锦州6吨燃气锅炉
Yes, thermal oil boilers typically come with some self-protection features to ensure safe operation and extend their service life. Here are some common self-protection functions: Overheat Protection: Thermal oil boilers are equipped with overheat protection devices that automatically shut off the burner's gas supply when the thermal oil temperature exceeds the set safe range, preventing overheating of the thermal oil and avoiding equipment damage and safety accidents. Overpressure Protection: Thermal oil boilers also have overpressure protection devices that automatically shut off the burner's gas supply when the thermal oil pressure exceeds the set safe range, preventing the thermal oil system from exploding or leaking. Burner Automatic Control: The burners of thermal oil boilers are usually equipped with automatic control systems that can automatically adjust the gas supply and combustion effect based on set operating parameters, maintaining a stable combustion state and avoiding incomplete or excessive combustion. Temperature Control and Adjustment: Thermal oil boilers are typically equipped with temperature control and adjustment devices that can automatically regulate the circulation and heating of the thermal oil based on the set operating temperature, maintaining a stable working temperature and avoiding excessive or low temperatures. Water Level Protection: Some thermal oil boilers, especially water-tube thermal oil boilers, are also equipped with water level protection devices that can monitor the water levels of the thermal oil and water. When the water level is abnormal, the protection device will automatically shut off the burner's gas supply, preventing dry burning and thermal oil leakage. It is important to note that although thermal oil boilers have self-protection features, they still require regular inspections and maintenance to ensure the normal operation and reliability of these protection devices. Additionally, operators need to understand and master the working principles and operation methods of these self-protection features to ensure safe operation.
锦州6吨燃气锅炉
A thermal oil furnace is a device that uses thermal oil as a heat medium to transfer heat energy generated by combustion or electric heating to the equipment or process requiring heating. The working principle of a thermal oil furnace involves heating the thermal oil to a certain temperature and then circulating it through a pump to the heated equipment or process, transferring heat to the heated object. The thermal oil exchanges heat with the heated object in the heat exchanger, raising the temperature of the object while cooling the oil, which then returns to the furnace for reheating. The heat transfer process in a thermal oil furnace primarily relies on the thermal conductivity of the oil. Thermal oil has high thermal conductivity, enabling rapid heat transfer to the heated object for effective heating. Additionally, it boasts high thermal stability, allowing stable operation at high temperatures without decomposition or oxidation. A thermal oil furnace typically consists of the furnace body, combustion system, flue gas system, heat exchanger, circulating pump, and control system. The furnace body is the main part of the thermal oil furnace, used to contain the thermal oil and the combustion system. The combustion system is responsible for burning fuel to produce heat and heat the thermal oil. The flue gas system is used to exhaust the combustion gases. The heat exchanger is the equipment where the thermal oil exchanges heat with the heated object. The circulating pump is responsible for circulating the thermal oil back to the furnace for reheating. The control system monitors and controls the operation of the thermal oil furnace to ensure safe and stable operation. Thermal oil furnaces offer high temperature control accuracy, fast heating speed, low energy consumption, and easy operation, and are widely used in industrial fields such as chemicals, textiles, food processing, papermaking, as well as in some special heating processes.
锦州6吨燃气锅炉
The reasons for uneven heat distribution in steam boilers may include the following aspects: - Inconsistent combustion: During the combustion process, uneven mixing of fuel and air, or an improperly designed and adjusted burner, can lead to inconsistent combustion. This results in some areas producing more heat while others produce less. - Pipe blockage: In the transmission pipes of a steam boiler, the presence of blockages or scale can cause uneven heat transfer. Blockages or scale hinder steam flow, limiting heat transfer in certain areas while allowing it to flow more freely in others. - Heat exchanger issues: If a steam boiler's heat exchanger has problems such as scaling, corrosion, or blockage, it can lead to uneven heat transfer. These issues can affect the heat conduction efficiency of the heat exchanger, impacting heat transfer in some areas. - Water level problems: Inaccurate or unstable water level control in a steam boiler can result in uneven steam generation. Both high and low water levels can affect steam production and distribution, leading to uneven heat distribution. - Boiler load changes: Variations in boiler load can also cause uneven heat distribution. Sudden increases or decreases in load may prevent the boiler from adjusting heat production and distribution in time, resulting in uneven heat distribution. To address the issue of uneven heat distribution in steam boilers, regular inspection and maintenance of the boiler equipment are necessary to ensure the normal operation of combustion and heat exchange processes. Additionally, adjusting burners and control systems, maintaining stable water levels, cleaning pipes and heat exchangers, and other measures should be taken to improve efficiency.
Shandong Zhongjie Special Equipment, welcome customers to visit our factory for business discussions.

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Unit Price $10000.00 / Tai
Sales None
Delivery Shandong3dayswithin
Stock 9999TaiMOQ1Tai
Brand Zhong Jie
Brand He锅
Condition (New/Used) Brand New
Location of Equipment Heze
Expiry Long Valid
Update 2025-06-23 17:12
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