JAS is a single-stage, double-suction, axially split horizontal centrifugal pump. The product design complies with GB/T5656-2008 standards and meets the energy efficiency standards of EU 2009/EC and GB/T13007-2011. The JAS pump delivers high efficiency and pumping performance to meet current and future demands, offering enhanced durability, extended service life, and easier maintenance. Compared to the energy-saving performance specified in the national standard GB 19762-2007 “Energy Efficiency Limit Values and Energy Saving Evaluation Values for Clean Water Centrifugal Pumps”, the pump achieves an average efficiency increase of 3%.
Application Scope:
Suitable for water supply and treatment, industrial water circulation, power stations, thermal power plants, pipeline network heating, and distribution of hot and cold water in industrial systems. Used in desalination systems of water treatment plants employing reverse osmosis and multi-effect distillation methods, meeting firefighting, irrigation, and drainage requirements where high-efficiency axial split double-suction pumps are needed.
Product Details:
| Max.Capacity | 150~25000m³/H | Max.Head | 10~260 |
| Impeller Number | Single-Stage Pump | Driving Type | Motor |
| Influent Type of Impeller | Double-Suction Pump | Working Pressure | High Pressure Pump |
| Pump Casing Combined | Horizontal Split Pumps | Position of Pump Shaft | Horizontal Pump |
| Impeller | Closed | Mounting Height | Suction Centrifugal |
| Diameter | 150~1000mm | Usage | Pump, Pumps |
| Pressure | 2.5MPa~3.5MPa | Flow | 150~25000m³/H |
| Temperature | -30℃~140℃ | Head | 10~260m |
| Specification | Customizable | Transport Package | Export Wooden Packaging |
| Origin | China |
API 610 BB2 Pump for High-Efficiency Industrial Water and Chemical Applications
The API 610 BB2 centrifugal pump is a single-stage, double-suction, axially split horizontal pump designed for industrial and water applications. Compliant with GB/T5656-2008 standardsand EU 2009/EC energy efficiency regulations, the BB2 pump delivers high efficiency, enhanced durability, and extended service life. Its explosion-proof BB series design ensures safe operation in hazardous environments while maintaining stable pumping performance.
This pump is ideal for industrial water circulation, thermal power plants, and pipeline network heating, providing reliable performance under medium to high flow conditions. Compared with conventional energy-saving pumps specified in GB 19762-2007, the BB2 pump achieves an average efficiency increase of 3%, offering significant energy savings for large-scale industrial and municipal applications. Its modular construction simplifies maintenance, reduces downtime, and ensures long-term operational reliability.
Explosion-Proof High-Efficiency BB Series Pump for Water Treatment and Desalination
The explosion-proof high-efficiency BB series pump is engineered to meet modern industrial and water treatment demands. Featuring a double-suction, axially split horizontal configuration, the pump is suitable for desalination systems using reverse osmosis and multi-effect distillation, firefighting systems, irrigation, and industrial water distribution. Its design adheres to international energy efficiency standards, delivering high pumping efficiency and reliability.
With a focus on long-term durability and ease of maintenance, the API 610 BB2 pump ensures consistent performance in hot and cold water systems, industrial process water, and power station applications. The pump’s robust materials and precision-engineered components make it resistant to wear, corrosion, and thermal stress. For engineers and facility managers, the BB2 pump represents a reliable, high-efficiency, and explosion-proof solution for demanding industrial and water management environments.
API 610 BB2 Centrifugal Pump – Explosion Proof High-Efficiency Industrial Pump
The API 610 BB2 centrifugal pump is a single-stage, double-suction, axially split horizontal pump engineered for high-efficiency industrial and water treatment applications. As part of the Explosion Proof BB Series Pumps, this pump is designed to meet stringent energy efficiency standards, including EU 2009/EC and GB/T13007-2011, providing improved pumping performance while reducing energy consumption. Its robust BB2 design ensures reliable operation in demanding environments, making it a trusted solution for engineers and facility managers seeking a high-performance industrial pump.
This API 610 BB2 pump is suitable for a wide range of applications, including industrial water circulation, thermal power plants, pipeline network heating, and hot or cold water distribution in industrial systems. It is also ideal for desalination systems using reverse osmosis and multi-effect distillation, as well as firefighting, irrigation, and drainage applications where high-efficiency, axially split double-suction pumps are required. Compared to conventional energy-saving pumps specified in GB 19762-2007, the BB2 pump achieves an average efficiency increase of 3%, delivering tangible energy savings for large-scale industrial operations.
Manufactured with precision engineering, the API 610 BB2 pump offers enhanced durability, extended service life, and reduced maintenance requirements. Its modular construction ensures easy disassembly, rapid component replacement, and long-term reliability. As a chemical process and industrial pump, the BB2 design can handle a variety of clean or slightly particulate-laden fluids under medium to high pressure, providing consistent performance in harsh industrial environments.
Trusted by API 610 pump suppliers, the BB2 pump combines explosion-proof safety, energy efficiency, and high reliability, making it an essential choice for engineers in chemical plants, power stations, and water treatment facilities. With its optimized design and adherence to international standards, the API 610 BB2 centrifugal pump delivers superior performance, reduced operational costs, and long-term operational security, solidifying its position as a leading industrial pump solution for modern process engineering.












