December 2024
The global single-use pump market was evaluated at US$ 451.81 million in 2023 and is expected to attain around US$ 2133.2 million by 2034, growing at a CAGR of 15.95% from 2024 to 2034. The market continues to expand due to the widespread use of single-use pumps, allowing biopharmaceutical companies to increase the cost of cleaning and cleaning validation. The result is a manufacturing process that delivers the desired product purity and sterility level without cross-batch or product contamination.
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The single-use pump market is growing rapidly because the single-use pump has many advantages, such as reducing sterilization and cleaning costs, eliminating contamination, easy coating replacement, and faster pumps operation. Single-use pumps are available for a variety of applications based on customer needs. Consistency and accuracy, proper pressure and flow, low energy and low shear, low heat input, and reliable pump equipment to ensure consistent equipment. This can be achieved by using a single-use quadruple diaphragm in biopharmaceutical production. The main advantage of these pumps, whether used in stainless steel or single-use setups, is their specific mode of operation. Single-use pumps allow major biopharmaceutical companies to eliminate the high costs of cleaning and operating pumps and systems.
The use of single-use pumps has successfully reduced the time and costs associated with post-production cleaning and recycling. Still, there is also an additional reducing the time required for head replacement. The use of single-use pumps in the pharmaceutical production process effectively eliminates the costs and downtime previously needed for the cleaning and maintenance of pumps. The most widespread biopharmaceutical processes involve the handling, transferring, processing, and purification of large molecule drugs produced in living organisms such as animal cell culture, bacterial cells, or yeast.
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Single-use pump technology is increasingly being used in the pharmaceutical and biotechnology industries due to the need for faster and more cost-effective manufacturing processes, particularly with the rise of bioderived medicines. Single-use pumps eliminate the need for pump cleaning, sterilization, and reuse, providing significant cost savings and reducing time to market. This technology ensures optimum product purity and sterility and prevents contamination or cross-contamination. It also eliminates issues associated with pump changeover time, further improving performance. As manufacturers look to optimize throughput and accelerate drug development, the single-use pump market continues to grow due to their ability to reduce operating costs, shorten time to market, and deliver premium products.
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Automation and artificial intelligence (AI) have changed business and will support business growth through increased productivity. A new generation of highly capable autonomous systems is emerging in various environments, from traditional industrial automation to advanced robots. Artificial intelligence has made great strides in recent years as machine learning algorithms become smarter, making it possible to take advantage of the increasing use of electricity and develop knowledge to guide algorithms. Next-generation AI advances, including techniques for solving classification, prediction, and separation problems, promise to deliver even more value. Automation using artificial intelligence (AI) and other technologies has opened up new possibilities, driving the growth of the single-use pump market.
Recent advancements in pumping solutions present significant opportunities for the single-use pump market, particularly in the biopharmaceutical sector. Developing a multilayer membrane diaphragm pump with a disposable polypropylene pump head that uses 40% less material than traditional disposable pumps encourages more sustainable manufacturing practices. Furthermore, technological advances in peristaltic dispensing pumps have increased their speed and accuracy, bringing them in line with single-use pumps. These pumps are also compatible with single-use fluids, making single-use filling an important solution for biopharmaceutical applications and manufacturing. With sustainability and performance becoming more important, these innovations are paving the way for further growth and adoption in the single-use pump market.
Despite the many advantages of single-use pumps, some challenges may hinder the market's growth. A major problem is the lack of self-priming centrifugal pumps, which generally require larger openings and volutes to improve product handling and self-priming capacity. These pumps also face issues in continuous operation, especially on the suction side, which causes difficulties and high costs. Single-use pumps also suffer from poor control and high shear and heat damage build-up, which can affect performance and product quality. These factors lead to significant interventions that need to be addressed to unlock the full potential of the single-use pump market.
North America dominated the global single-use pump market by 41% in 2023, due to abundant medical supplies, extensive medical procedures, and widespread use of medical technology. The region's mature biopharmaceutical industry has also created a huge demand for disposables, which has led to the growth of the single-use pump market. Significant research and development efforts and spending are taking place in the region, leading to several breakthroughs.
The Asia Pacific region is anticipated to witness the fastest growth during the forecast period due to high investment in healthcare, expanding pharmaceutical industry, and positive government initiatives to support research and development in biotechnology. Increasing health awareness, increasing disposable income, and developing healthcare services. Furthermore, healthcare services and increased costs led to the growth of the single-use pump market.
The equipment segment held the majority share of the single-use pump market because single-use disposal equipment is cheaper and saves time and money. Not only do they have lower initial costs, but Single-use pumps reduce equipment costs and are quick and easy to replace. They can be replaced in less than a minute, and their simple design requires only a single tool.
The Polypropylene (PP) pump segment held the largest share in the single-use pump market because pumps made out of polypropylene are very durable and can be used with many fluids such as caustic soda (or sodium hydroxide) and liquid acids. Polypropylene is reinforced with other materials, such as fiberglass and talc, to make the end product more durable and resistant. Pumps of polypropylene are corrosion-resistant and can withstand many acids, solvents, and alkalis. This product is safe and suitable for chemical use, electroplating, and water treatment. Polypropylene is known for its flexibility and durability and is resistant to many acids. Common applications include effluent treatment, corrosive liquid management, scrubbing, and electroplating.
The biopharmaceutical & pharmaceutical companies segment held the largest market share due to the development of quadruple diaphragm pumps, a major success for biopharmaceutical companies. The integration of single-use technologies is a major trend in the pharmaceutical and biotechnology industries due to the continued development of bio-derived drugs. Single-use pumps allow biopharmaceutical companies to optimize cleaning and cleaning validation costs. Implementing a single-view and complete process can increase the efficiency of the lean process and eliminate waste in the manufacturing process. Be consistent and make a positive impact on the bottom line. Single-use technology has become an important part of biopharmaceutical manufacturing and offers several advantages over stainless steel systems.
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December 2024
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