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Fuel Transfer Pressure Units are used to transfer diesel or HVO from a main tank to different consumption points through the pressurization of a line, often for generators.
HYTEK/INPRO Agreement: Madrid, March, 2025 – The Spanish-German Inpro Group, a leading provider of fuel transfer and energy solutions for critical infrastructure for over 50 years, has signed a strategic commercial agreement with the UK-based Hytek GB Ltd to cover their range of products suitable for suitable for critical power installations.
Fuel Type
Diesel, HVO
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This product is covered by a 1 year manufacturer warranty.
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Get in touch with our knowledgeable experts in fluid transfer solutions for personalised advice and solutions, always tailored to meet your specific fluid transfer needs.
These Fuel Transfer Pressure Units are used to transfer liquid fuel such as diesel or HVO from a main tank to different consumption points through the pressurization of a line, for the supply of machinery that requires these fuels, such as generators (power generators) or burners for boilers in buildings.
They are a great addition to the Hytek Critical Power Solutions product range and we are delighted to offer these Inpro Fuel Transfer Pressure Units that are used to transfer fuel as part of our solution for generator gensets. We believe depending on your client’s specification we can tailor a bespoke solution if our standard offering is not suitable. Just email us at solutions@hytekgb.com with your requirements.
Also, we offer a complete range of equipment for diesel powered generator sets, not just these Fuel Transfer Pressure Units that are used to transfer liquid fuel such as diesel or HVO from a main tank to different consumption points through the pressurization of a line control. Because we have the backing of Inpro and our own product range we can offer you the best solution for your requirements.
There are several sizes and configurations available, in which the flow rate that can control the equipment can vary from 30,00 litres per hour to 12,000 litres per hour, the maximum pressure at which they can work, with the possibility of redundancy in some components, and other parameters such as the type of power supply.