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Buoy online monitoring and early warning system of radioactive Radiation in Air and Seawater with online water monitoring Unit.

General Discription

We clearly understand the end-user requirements and we intend to install a state-of-the-art real-time Radiation Monitoring System. We have incorporated all of our experience, especially from previous installations, in order to meet the environmental condition and requirements for such a project 100% - also with regard to longevity, sustainability and future developments.

The objective of the early warning system is to protect people from contamination by establishing and fixing an early warning system to signal for any presence and future radioactive contamination of the air or sea. The early warning system should consider all the possible radioactive contamination. Our proposal meets the requirements in accordance with the latest international, regional standards / regulations as well as current best practices around the world using the latest technology.

A system that is of the utmost importance for the protection of the health of its citizens must first and foremost function reliably: 24 hours a day, 7 days a week 365/366 days a year - without interruption for a full planned duration of 10 years. With this in mind, we have not made any compromises in terms of quality, redundancy, measurement accuracy, transmission and communication security and durability for this proposal. To realize such a delicate and important system we work with the best partners in their fields to fulfill 100% the requirements.

Only a leading manufacturer, MOBILIS is considered for the buoy, who is known for not making any compromises in the quality of its products and can also prove this: 5-year guarantee on all parts of the buoy, 10-year guarantee on color fastness, 20-year product life cycle, 273% buoyancy, etc.

MOBILIS, with best references and decades of experience is using the highest quality materials and equipment and is a certified member of the IALA. For secure and redundant data transmission, not only a reliable GSM connection is used, but also a backup system on satellite communication via Iridium.

For the best possible detection of dangerous radioactive radiation in water, we are cooperating with the world-renown GSI - Gesellschaft für Schwerionenforschung (also known as the sister of CERN) in the supporting us scientifically to deliver the best detectors for this project. About 1,520 employees are working at GSI. In addition, every year approximately 1,000 researchers from universities and other research institutes around the world come to GSI to use the facility for experiments.

Mission: Construction and operation of accelerator facilities and research with heavy ions.

Large facillity equipment: Linear Accelerator UNILAC, Heavy Ion Synchrotron SIS, Experimental Storage Ring ESR, Fragment separator FRS, Highenergy-/Highperformance Laser PHELIX, Several large spectrometer and detector systems, Medical irradiation facility for cancer therapy, Participation in the ALICE detector of the European Organization for Nuclear Research CERN.

In the event that the detectors on the buoy detect dangerous radioactive activity, we work together with the Austrian Institute for Meteorology and Geodynamics, the ZAMG, which can use its software to make predictions when this danger is likely to hit land. ZAMG is one of ten crisis data centers worldwide and has been named a fully-fledged "Regional Specialized Meteorological Center for Nuclear Emergency Response Activities (RSMC ERA)" by the World Meteorological Organization (WMO).

If increased radioactivity is measured somewhere on earth or if an accident has happened in a nuclear power plant, the ZAMG (Central Institute for Meteorology and Geodynamics) starts to calculate where the radioactive cloud comes from or where it is going. There are ten RSMCs worldwide, the ZAMG is now mainly responsible for Europe and Africa.

To guarantee 10 years of uninterrupted operation, it is imperative to carry out proactive and active maintenance work - with a competent, accredited local partner to receive the best service possible: first-level local support, and second level remote support - direct from GIHMM.

In our proposal we have chosen the highest quality materials which are all European origin to ensure the highest quality of our system together with our more than 45 years of experience in manufacturing such of systems. We have chosen the best detectors/crystals with special configurations for such a special job to give the highest possible sensitivity in the radiation measurements.
Our extensive experience designing, manufacturing, installing and maintaining such systems around the world has given us important feedback on how to improve our design and construction of our units.

Our detectors have become almost maintenance-free, and our systems are very robust against all types of weather stress. Our systems work in the Arabian region at high temperatures of up to +50 ° C, in the Southeast Asian region with heavy rainfall during the monsoons, near the coast in aggressive, salty sea air and on the highest mountains in Europe and Russia, where the harshest weather conditions in winter up to -50 degrees Celsius occur. We can confirm that BITT products and systems from GIHMM are robust and work autonomously around the clock all year round.

For the Gamma Spectroscopy Detectors GIHMM will offer in response for utilizing most updated technology a novel development - a highly improved scintillation detector. This novel concept will improve the measuring possibilities for environmental monitoring, especial for water and offering additional features like direction sensitivity.

To measure water from the intake of the sea we offer Online Water Unit System containing a flow-through-chamber and a water sampling unit for measuring Beta/Gamma.

This system is designed to monitor autonomous and continuous, fast and precise beta and gamma activity in water (mainly drinking water). If one of the measured radiation exceeds the warning/alarm trigger, a visual and/or acoustic alarm is triggered at the station, as all measured values can also be sent to another, higher-level device/system (central station, sub-central station, etc.).

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