Oil in Water Analysers –
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Introducing the HT Portable Meter, a handheld oil in water analyser that provides a convenient measurement solution to the Oil and Gas industry for produced water measurement.

The all-in-one Hand Held Portable & Benchtop Device offers full real time Spectrometry for measurement and analysis and continuous real-time measurements with Immediate results.

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Inline Probe Series

Measure directly in-situ

  • The most advanced yet simple to use inline oil in water probe available.
  • Flexible probe length and no expensive conduit.
  • Extremely robust, compact and lightweight.
  • Low cost in terms of capital and operational expenditure.

Bypass systems

Flow through measurement

  • The most advanced yet simple to use sidestream oil in water analyser available.
  • No sample conditioning required.
  • Extremely robust, compact and lightweight.
  • Low cost in terms of capital and operational expenditure.

Inov8 are specialists in developing solutions for customers, in a broad spectrum of industries, who need to measure hydrocarbons in water

We provide clients with online oil in water analysers for the purposes of overboard discharge compliance, oil leak detection in water systems, process control in water systems, and in any scenario where accurate measurement of oil content in water are required

We work with businesses across a broad range of industries including Oil and Gas, Cooling Water, Environmental, Manufacturing & Chemical Processing, Municipal Wastewater, PAH Monitoring, Marine Bilge Monitoring, Municipal Drinking Water & Offshore Wind Power.

Our online oil in water analysers are designed to provide real-time monitoring and analysis of oil content in water, which allows for quick and efficient detection of any oil leaks or spills. This is crucial for maintaining compliance with environmental regulations and for ensuring the safety and efficiency of water systems. Additionally, our analysers can be integrated into existing systems and processes, providing businesses with a comprehensive and cost-effective solution for oil in water analysis.

The EXP Controller provides in-situ measurement capability that eliminates the need for any sampling system, for use in hazardous zones.
The EXS Controller provides a bypass measurement capability, for use in hazardous zones.
The GPP Controller provides in-situ measurement capability that eliminates the need for any sampling system, for use in non-hazardous zones.
The GPS Controller provides a bypass measurement capability, for use in non-hazardous zones.
The HH Portable Meter provides a quick measurement capability for fast manual sampling.

Our products are underpinned by our range of core technologies:

RapidWave Ultrasonic Cleaning is an advanced cleaning method that ensures the measurement window remains clean. Unlike traditional ultrasonic cleaning methods, RapidWave uses a unique cleaning process that is much less abrasive and less likely to cause damage to the measurement window. This means that the measurement window will last longer and be able to withstand even the most challenging environments. Additionally, RapidWave ultrasonic cleaning is able to clean more thoroughly than other methods, resulting in a higher level of precision and accuracy in your measurements. Overall, RapidWave Ultrasonic Cleaning is a highly effective and efficient way to keep your measurement window clean and in optimal working condition.

Spectrometry is a powerful analytical technique that is used in fluorescence analysis to provide highly accurate results. This is achieved by using a spectrometer that separates light into its individual wavelengths or colours, to eliminate chemical interference that can skew the results of the analysis. This is done by measuring the specific wavelengths of light that are emitted by a sample when it is excited by a light source. The analyser then uses this information to determine the makeup of the sample, which allows for accurate identification and quantification of the oil content present.

Spectrometry is a powerful tool that enables the fluorescence analysers to work with multiple different hydrocarbon types at a time, and it also enables the possibility of analysing samples that have very low concentration.

Laser Induced Fluorescence (LIF) is an advanced analytical technique that is used to provide highly accurate and repeatable results in a wide range of applications. This is achieved by using a laser to excite specific wavelengths of light within a sample, which in turn causes the sample to emit its own light, known as fluorescence. The fluorescence is then measured by a detector, which provides information about the oil content of the sample.
Because the laser is able to excite specific wavelengths of light with such precision, the fluorescence signal produced is highly consistent, even when measuring the same sample multiple times. This makes LIF an ideal technique for applications that require highly accurate and repeatable results.

Deep UV Fluorescence is a technique that utilizes a light source with a lower wavelength than traditional UV fluorescence methods. This allows the analyser to detect a wider range of oil types.

This technique is based on the principle that different types of oil have unique fluorescence spectra. When excited by a specific wavelength of light, these oils emit light at different wavelengths, which can be used to identify them. By using a lower wavelength light source, the analyser is able to detect a wider range of oil types, including those that are not detectable with traditional UV fluorescence methods.  Deep UV Fluorescence can detect a wider range of oil types, including light oil and heavy oil, which is a significant advantage over other techniques. Additionally, this technique is able to detect the presence of oil in water and other liquids more effectively, which is critical in many industrial and environmental applications.

Deep UV Fluorescence is a useful technique in the field of oil and gas exploration, as it allows for the detection of light hydrocarbons (gas condensate) which would typically not be detectable with conventional fluorescence techniques.

Our oil in water analysers are designed to provide accurate and reliable measurements of hydrocarbons in water, which is critical for a variety of applications such as compliance with environmental regulations, process control, and leak detection. We understand the importance of accurate and timely measurements and our analysers are designed to provide real-time monitoring, allowing for quick and efficient detection of any oil leaks or spills.

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