PUBLISHER: Stratistics Market Research Consulting | PRODUCT CODE: 1787860
PUBLISHER: Stratistics Market Research Consulting | PRODUCT CODE: 1787860
According to Stratistics MRC, the Global Dosing Pump Market is accounted for $6.11 billion in 2025 and is expected to reach $10.83 billion by 2032 growing at a CAGR of 8.5% during the forecast period. A dosing pump is a precise and controlled pump used to inject a specific amount of fluid (such as chemicals or additives) into a system or process. Commonly used in industries like water treatment, pharmaceuticals, and food processing, dosing pumps ensure accurate delivery of substances at predetermined rates. These pumps are often adjustable and can be operated manually or automated, ensuring consistent and accurate dosing for various applications.
Rising demand for water & wastewater treatment
Dosing pumps are essential in maintaining accurate chemical dosages in treatment plants, ensuring effective disinfection and purification. Governments and municipalities are investing in modern infrastructure to meet rising water quality standards. Strict environmental regulations concerning effluent discharge are encouraging industries to adopt advanced dosing systems. The food & beverage and pharmaceutical sectors are also witnessing higher adoption of dosing technologies for hygienic water management. As sustainability goals grow stronger, the demand for reliable dosing pump solutions continues to escalate.
Skilled workforce requirement
The installation and operation of dosing pump systems demand specialized knowledge and technical expertise. These systems often integrate with automated control platforms and require precise calibration and maintenance. A shortage of skilled technicians can delay implementation timelines and increase operational risks. Companies struggle to scale their systems effectively across industries due to training gaps and limited qualified manpower. In developing regions, knowledge transfer and workforce development lag behind technological advancement. This skills gap acts as a major restraint to full market penetration of dosing pumps.
Rising awareness of hygienic processing systems
Hygiene is becoming a top priority in industries such as food processing, pharmaceuticals, and water treatment. Dosing pumps are increasingly used for controlled delivery of sanitizers, disinfectants, and other process chemicals. Global awareness of contamination risks is driving the demand for closed-loop dosing systems with minimal human contact. Companies are investing in smart dosing technologies to ensure precision and safety across applications. Technological innovations, such as integrated monitoring and remote control features, are gaining traction. These trends present exciting opportunities for manufacturers offering hygienic dosing solutions.
Availability of alternative technologies
Emerging technologies such as peristaltic pumps and diaphragm metering systems offer competitive dosing solutions with different advantages. Some alternatives are more energy-efficient or easier to maintain in specific applications. Rapid innovations in digital fluid control systems may reduce the dependency on traditional mechanical dosing pumps. Cost-effective automation solutions are disrupting the dosing landscape in smaller facilities. Buyers are increasingly evaluating multi-functional equipment to consolidate operations. This shift poses a threat to traditional dosing pump manufacturers who fail to innovate.
The COVID-19 pandemic disrupted the dosing pump market due to halted infrastructure projects and supply chain breakdowns. Lockdowns led to reduced industrial activity and delays in procurement and commissioning of new systems. However, the importance of sanitation and water hygiene received amplified attention during the crisis. Remote monitoring and predictive maintenance saw increased adoption to ensure continuity. As markets stabilized post-pandemic, demand rebounded strongly, signalling long-term growth for dosing pump manufacturers.
The hydraulic dosing pumps segment is expected to be the largest during the forecast period
The hydraulic dosing pumps segment is expected to account for the largest market share during the forecast period, due to their robustness and precision under high-pressure conditions. Their ability to handle viscous and aggressive fluids makes them suitable for challenging industrial applications. These pumps are preferred in water treatment, chemical processing, and oil & gas operations. Enhanced accuracy, low maintenance, and adaptability across fluctuating operating environments drive their demand. Continued innovation in actuator mechanisms and control interfaces further strengthen their market position.
The water treatment segment is expected to have the highest CAGR during the forecast period
Over the forecast period, the water treatment segment is predicted to witness the highest growth rate, owing to increasing demand for clean water across residential and industrial sectors. Dosing pumps play a critical role in chemical addition processes like chlorination, pH control, and coagulation. Infrastructure upgrades in emerging economies are fueling demand for effective water management solutions. Rising water scarcity concerns are encouraging reuse and recycling, requiring precise dosing mechanisms. Technological advancements and government initiatives toward sustainable water treatment are accelerating growth.
During the forecast period, the Asia Pacific region is expected to hold the largest market share, due to massive industrial growth, urbanization, and government-led environmental initiatives. Countries like China, India, and Southeast Asian nations are prioritizing water quality improvement and infrastructure modernization. Investments in smart cities and clean energy projects are further driving the need for dosing technologies. Rapid population growth and economic expansion are straining existing water systems.
Over the forecast period, the North America region is anticipated to exhibit the highest CAGR, due to strong regulatory frameworks and adoption of advanced automation technologies. The United States and Canada are investing heavily in modernizing water and wastewater treatment systems. Environmental agencies enforce strict standards, driving replacement demand for outdated pumping systems. Innovations in precision dosing, remote monitoring, and predictive analytics are being embraced across industries. Growing awareness of environmental sustainability and resource optimization is spurring rapid market expansion.
Key players in the market
Some of the key players in Dosing Pump Market include Grundfos Holding A/S, Verder Group, ProMinent GmbH, Lutz-Jesco GmbH, Watson-Marlow Fluid Technology Solutions, SPX Flow Inc., IDEX Corporation, Blue-White Industries, Ltd., Milton Roy Company, NETZSCH Pumpen & Systeme GmbH, SEKO S.p.A., Iwaki Co., Ltd., Dover Corporation, LEWA GmbH, and Nikkiso Co., Ltd.
In June 2025, Grundfos has signed an agreement to acquire the Pittsburgh based water and wastewater treatment solutions company Newterra from the Chicago-based Private Equity firm, Frontenac. The signing follows a series of strategic acquisitions made by Grundfos in recent years and will further strengthen the company's growing portfolio within water treatment.
In September 2024, Verder announced the acquisition of Sauermann, a leading supplier in the HVAC-R market. This strategic acquisition marks a significant step forward for Verder, as it continues to expand its product portfolio and strengthen its position in the global pump and equipment industry.
In September 2024, IDEX Corporation has completed its previously-announced acquisition of Mott Corporation and its subsidiaries ("Mott"), expanding IDEX's applied material science technology capabilities in high-value end markets. Mott is a leader in the design and manufacturing of sintered porous material structures and flow control solutions, with deep applied material science knowledge and process control capabilities.
Note: Tables for North America, Europe, APAC, South America, and Middle East & Africa Regions are also represented in the same manner as above.