Submersible pumps
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Submersible pumps

Submersible pumps
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Submersible pump Vortex - KIN pumps BKL 1.5 M/A - with floating floater - cast iron - 230 volt (Max. capacity 10,8m³/h)

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Submersible pump Vortex - KIN pumps BKL 1.0 M/VV - with dirty water floater - cast iron - 230 volt (Max. capacity 8,1m³/h)

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Submersible pump Vortex - KIN pumps BKL 1.5 M/VV - with dirty water floater - cast iron - 230 volt (Max. capacity 10,8m³/h)

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Submersible pump - KIN pumps AS 400 - cast iron - 230 volt (Max. capacity 16,8m³/h)

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Submersible pump - KIN pumps AS 400A - with floating floater - cast iron - 230 volt (Max. capacity 16,8m³/h)

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Submersible pump - KIN pumps AS 400 incl. press hose - cast iron - 230 volt (Max. capacity 16,8m³/h)

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Submersible pump - KIN pumps AS 400A incl. press hose - with floating floater - cast iron - 230 volt (Max. capacity 16,8m³/h)

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Submersible pump - KIN pumps HNB 400 AUTO A - with dirty water floater - plastic - 230 volt (Max. capacity 9m³/h)

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Submersible pump - KIN pumps HKH 1A comfort - with floating floater - SS - 230 volt (Max. capacity 9,6m³/h)

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Submersible pump - KIN pumps HKH 2 - SS - 230 volt (Max. capacity 15m³/h)

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Submersible pump - KIN pumps HKH 2T - SS - 400 volt (Max. capacity 15m³/h)

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Submersible pump - KIN pumps HKH 2A - with floating floater - SS - 230 volt (Max. capacity 15m³/h)

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Submersible pump - KIN pumps HKH 3 - SS - 230 volt (Max. capacity 16m³/h)

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Submersible pump - KIN pumps HKH 3T - SS - 400 volt (Max. capacity 16m³/h)

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Submersible pump - KIN pumps HKH 3A - with floating floater - SS - 230 volt (Max. capacity 16m³/h)

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Submersible pump - KIN pumps HKH 4 - SS - 230 volt (Max. capacity 19m³/h)

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Submersible pump - KIN pumps HKH 4T - SS - 400 volt (Max. capacity 19m³/h)

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Submersible pump - KIN pumps HKH 4A - with floating floater - SS - 230 volt (Max. capacity 19m³/h)

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Submersible pump - KIN pumps HKH 5T - SS - 400 volt (Max. capacity 21m³/h)

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Submersible pump SOS Kit - Lowara - 220-240 volt - incl. slang en krat (Max. capacity 8m³/h)

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Submersible pumps are an essential device for many industries, including agriculture, construction, mining, and wastewater management.

These pumps are designed to operate while fully submerged in liquid, making them ideal for applications where the liquid level constantly changes. In this comprehensive guide, we will discuss the various types of submersible pumps, their benefits, and how to choose the right pump for your application.

Types of Submersible Pumps:

Submersible pumps are available in different configurations for various applications. Some common types of submersible pumps include:

  1. Sump Pumps: Sump pumps are designed to remove water from basements or other areas where stagnant water can accumulate. They are commonly used in residential applications but can also be used in commercial and industrial settings.

  2. Wastewater Pumps: Wastewater pumps are designed to handle untreated sewage and wastewater. They are often used in municipal wastewater treatment plants but can also be used in residential or commercial environments where sewage needs to be pumped to a septic tank or sewer line.

  3. Dewatering Pumps: Dewatering pumps are designed to quickly remove water from construction sites, mines, and other areas where rapid water removal is required. They are often used in conjunction with other pumps to control water levels.

  4. Well Pumps: Well pumps are used to bring water from underground sources to the surface. They are commonly used in residential and agricultural applications.

Benefits of Submersible Pumps:

Submersible pumps offer several advantages over other types of pumps, including:

  1. Energy Efficiency: Submersible pumps are typically more energy-efficient than other types of pumps because they do not have to work as hard to move fluid, resulting in potential cost savings over time.

  2. Durability: Submersible pumps are designed to withstand harsh conditions and have a longer lifespan compared to other pump types. They are less prone to mechanical issues and require less frequent maintenance.

  3. Space Saving: Submersible pumps are compact and do not take up much space because they are either submerged in liquid or installed inside wells.

How to Choose the Right Submersible Pump:

When selecting a submersible pump, consider the following factors:

  1. Flow Rate: The flow rate is the amount of liquid the pump can move within a specified time. It determines how quickly the pump can move fluid in your application.

  2. Head Pressure: Head pressure is the force the pump needs to generate to move fluid to its destination. It is determined by the height and distance the fluid needs to be pumped.

  3. Type of Liquid: Consider the type of liquid you need to pump, as some submersible pumps are designed to handle specific types of fluids, such as sewage or clean water.

  4. Power Source: Submersible pumps can be powered by electricity or hydraulics. Choose the power source based on availability and cost in your region.

In conclusion, submersible pumps are a crucial part of equipment for many industries due to their energy efficiency, durability, and space-saving design. When choosing a submersible pump, consider factors like flow rate, head pressure, the type of liquid, and the power source to ensure you select the right pump for your application.


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