Global pharmaceutical demand boosts Heat Transfer Fluids industry

The global Thermic Fluids Market was estimated to be worth $2.4 billion in 2017 and is expected to hit $4 billion by 2025, registering an CAGR of 6.5%, according to a report published by Global Market insights Inc., available to read in full here.

The accelerated growth of the pharmaceutical sector is driving huge demand for specialist heat transfer fluids as pharmaceutical manufacturers look to improve the efficiency of their processing plants and strengthen their environmental footprint. Temper Technology is meeting this demand, providing solutions for manufacturers across the world. Its environmentally adapted products, with exceptional heat transfer properties, provide outstanding results where extreme operating conditions prevail.

Traditional pharmaceutical batch processing sees the various components of a drug brought together through a step-by-step process. At each stage, one batch must finish before a subsequent batch can be processed. There may be upwards of six or seven steps in the process that are completed across the same number of equipment pieces before a product is complete.

?Temper Technology has developed a range of Transfer Fluids to meet the unique characteristics of the pharmaceuticals industry,? explains Roger Rosander, Product and Sales Manager, Temper Technology. ?These fluids must perform effectively for prolonged periods and often at a specific pre-determined temperature. Utilising Temper Technology products and our extensive market knowledge can lead to major long-term cost savings.?

Heat transfer fluids offer safety, low maintenance and extended operating lifetimes when compared against traditional technologies. While beneficial to batch manufacturing processes, the technology is just as crucial and generally more commonly utilised within in a closed circuit and continuous cycles, offering highly efficient non-corrosive heating and cooling while allowing for accurate ongoing temperature regulation and uniformity across entire systems.

Temper Technology?s top of the line heat transfer fluids are a product of choice for a wide range of applications. The ready-mixed and non-toxic organic solution is combined with an effective corrosion inhibitor package, making it readily biodegradable. The products are available in several different versions, with temperatures ranging from -10?C down to -60?C. To find out more?click here.

Traditional pharmaceutical batch processing sees the various components of a drug brought together through a step-by-step process. At each stage, one batch must finish before a subsequent batch can be processed. There may be upwards of six or seven steps in the process that are completed across the same number of equipment pieces before a product is complete.

?Temper Technology has developed a range of Transfer Fluids to meet the unique characteristics of the pharmaceuticals industry,? explains Roger Rosander, Product and Sales Manager, Temper Technology. ?These fluids must perform effectively for prolonged periods and often at a specific pre-determined temperature. Utilising Temper Technology products and our extensive market knowledge can lead to major long-term cost savings.?

Heat transfer fluids offer safety, low maintenance and extended operating lifetimes when compared against traditional technologies. While beneficial to batch manufacturing processes, the technology is just as crucial and generally more commonly utilised within in a closed circuit and continuous cycles, offering highly efficient non-corrosive heating and cooling while allowing for accurate ongoing temperature regulation and uniformity across entire systems.

Temper Technology?s top of the line heat transfer fluids are a product of choice for a wide range of applications. The ready-mixed and non-toxic organic solution is combined with an effective corrosion inhibitor package, making it readily biodegradable. The products are available in several different versions, with temperatures ranging from -10?C down to -60?C. To find out more?click here.

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