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LC Centrifugal Chemical Process Pump

The Kingda LC industrial chemical pump employs a horizontal, end-suction centrifugal design for conveying abrasive and corrosive slurries in chemical processes. Appropriate materials can be selected for different media.

The LC chemical pump boasts excellent resistance to abrasion and corrosion, and particularly outstanding handling capabilities for slurries containing solids, enabling it to withstand harsh pumping environments.

LC Chemical Process Pump Overview

Horizontal, Single-Stage, End-Suction Design

The Kingda LC chemical process pump features a stable horizontal structure and a single-stage end-suction design, with a tangential discharge port further reducing unnecessary hydraulic losses and enhancing efficiency. Equipped with a heavy-duty, large-diameter shaft, it can withstand harsh operating environments, making it ideal for conveying abrasive or corrosive substances.

Available LC Configurations

LC chemical pumps offer a variety of impeller options, including closed, multi-bladed, open, and free-flow impellers, allowing selection of the appropriate model based on the medium being pumped.

To prevent media leakage, LC chemical pumps offer both packing seals and mechanical seals to meet the challenges of various operating conditions and eliminate leakage.

To address corrosion and abrasion phenomena in chemical processes, our engineers have developed a variety of synthetic materials, such as high-chromium alloys, elastic rubber, stainless steel, and ceramics, to achieve a longer service life.

LC chemical process pump structure showing the end-suction inlet, impeller, shaft, seal and bearing assembly

LC Pump Specifications and Performance Curves

Kingda LC horizontal centrifugal chemical process pump

LC Chemical Specifications

🔸Discharge Diameter (mm): 25 ~ 400

🔸Flow Rate (m³/h): 5 ~ 2600

🔸Head(m): 4 ~ 250

🔸Applications: Wastewater, breweries, paper, petroleum, construction 

Curves and Duty-Point Selection

LC Pump Selection Chart — 2950 rpm

LC chemical process pump selection chart at 1475 rpm showing flow and head ranges

LC Pump Selection Chart — 1475 rpm

LC chemical process pump selection chart at 2950 rpm showing flow and head ranges

This curve is for preliminary selection only. For more accurate pump selection, please provide information on flow rate, head, suction conditions, and medium so that our engineers can select the right pump for you.

Chemical Transfer and Process Applications

Evaporation and Crystallization

The evaporation and crystallization stage produces a large amount of sodium chloride and sodium carbonate crystals. This excessive crystal production can cause pump wear. Using an LC chemical transfer pump made of wear-resistant alloy materials will maximize the pump’s service life.

Filtration System

Filtration System: The waste slurry produced by the filtration system has a high solids concentration and is highly abrasive and corrosive. A chemical pump with strong anti-clogging and wear/corrosion resistance is required to handle this.

Neutralization System

The neutralization system contains a large amount of strong acids and alkalis. For these acid and alkali slurries, the corrosion resistance of the materials must be considered to prevent contact between the medium and metals, thus avoiding corrosion.

Bio-cellulose Slurry

In industries such as papermaking and pharmaceuticals, chemical agents and bio-cellulose are often added during the production stage. These polymers and fibers are prone to clogging; therefore, the solids throughput capacity of the chemical pump is a crucial indicator.

Kingda LC Chemical Pump Features

Corrosion Resistance

LC chemical process pumps are manufactured using corrosion-resistant materials to meet the demands of handling corrosive media in chemical production. This ensures the pump remains unaffected by the media during long-term operation, improving the equipment's durability and reliability.

High Efficiency

LC chemical pumps achieve higher delivery efficiency through improved impeller design, reduced friction loss, and optimized liquid flow channels, effectively reducing energy consumption and production costs.

High Temperature and High Pressure Resistance

Chemical processes often require operation in high-temperature and high-pressure environments. The pump's sealing system, materials, and heat dissipation mechanisms require careful design to ensure reliable operation under extreme conditions.

Diverse Models

Kingda offers a variety of models and specifications of chemical pumps to meet the needs of different operating conditions. This allows LC chemical pumps to be flexibly applied in various production environments.

LC Chemical Pump Manufacturer

Since 1948, Kingda Pump has been manufacturing pumps for decades, occupying an area of ​​over 200,000 square meters. It possesses comprehensive and outstanding manufacturing capabilities, encompassing raw material procurement, casting, machining, assembly, and performance testing. A dedicated quality inspection department ensures quality control from the source, with multiple layers of inspection to guarantee the highest quality pumps delivered to customers.

Kingda also boasts a professional maintenance team with extensive experience, ensuring that customers can receive immediate and robust assistance and guidance in the event of equipment malfunctions, preventing prolonged downtime.

Kingda technicians assembling industrial chemical pumps in the manufacturing workshop

FAQs

The LC series chemical pump is an industrial chemical transfer pump used in industrial applications. This section provides a brief overview of its structure and uses, and is not intended as a comprehensive guide to all types of chemical pumps.

Yes, that's our advantage. The LC series chemical process pump has excellent solid throughput. By improving impeller design, optimizing flow channels, and using wear-resistant materials, the LC chemical pump can efficiently pump fluids containing solid particles.

Through the suction of a gravel pump or a slurry pump, the mixture of sand and water at the bottom of the river can be pumped up and transported to a designated location.

You will need to provide data such as the concentration, temperature, presence of solid particles, flow rate, head, and outlet pressure of the medium. If possible, you can also provide specific information about the medium, such as density, viscosity, particle size, suction conditions, and power supply.

If you are not familiar with this, you can contact our engineers directly for specific model selection assistance.

Of course, Kingda has a complete pump manufacturing chain, from product design, raw material procurement, casting, assembly, performance testing, etc. We can provide you with accurate drawings, test documents, and subsequent replacement parts.

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