28 Gas Detection Confi ned Space Entry Measuring Made Simple and Convenient
The Dräger X-am 8000 measures up to seven toxic or fl ammable gases and vapours as well as oxygen simultaneously - in pump or diffusion mode. Comprehensive process safety is assured by a clear signalling concept and convenient assistant functions.
The X-am 8000 supports diverse typical applications offering specially developed assistant functions that guide the user through the process step by step. During confi ned space entry measuring, for example, the device calculates parameters such as measurement gases, temperature limits and entered hose length the required fl ooding time for the probe used. Handy and robust, it can be intuitively operated via three function keys using only one hand. The clearly arranged colour display shows all information in a well-legible way. In the event of an alarm, the device issues its warning via coloured alarm LEDs, a loud horn sound, and clearly perceptible vibration. In addition, the X-am 8000 is equipped with a powerful pump. It can be connected to hoses of up to 45 metres in length. Changeover between diffusion and pump modes can easily be carried out anytime using a pump adapter. This makes sure that the pump is only operated when it is actually needed, saving energy, reducing wear and thus extending the service life of the pump.
With the integrated optional Bluetooth interface, the X-am 8000 is more than just a measuring instrument. In combination with the upcoming Cloud and App solution, CSE-Connect, it will be possible to manage and document measurement jobs and their results digitally.
For measuring of volatile hydrocarbons, the X-am 8000 can be fi tted with one of two new highly effi cient PID sensors. The PID HC covers a measuring range from 0 to 2,000 ppm (Isobutylene). The PID LC ppb is particularly suitable for a measuring range from 0 to 10 ppm (Isobutylene) with high resolution in the range below 1 ppm. For benzene-specifi c measurements,
the X-am 8000 can be operated with a fi rst tube. Users thus only need one device for this measurement, reducing the cost of device procurement, maintenance, and transport.
Thanks to its compact and robust design, the device is able to withstand the most demanding conditions. For example, it is equipped with a shock detector. The results report indicates when mechanical impacts occurred that could lead to functional impairment of the device or of the sensors. These events are documented in the data memory. The inductive charging process makes for easier handling, increasing the longevity of the device. Display test and adjustment can easily and quickly be performed using the Dräger X-dock calibration station. The low test gas consumption keeps the operating costs low.
Cost Effective Auto-sampler for Xplorer Combustion Analyser
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HORIBA Scientifi c announces a cost effective auto-sampler for the XPLORER Combustion Analyser, the ARCHIE-10. The ARCHIE-10 provides all of the benefi ts of an auto-sampler; including higher accuracy, accommodation of a broad range of liquid samples, and less cross contamination for repeatability. It also features extremely user friendly software, an extremely small footprint, high reliability, and has low maintenance costs.
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The ARCHIE-10 is designed to be easily mounted on the XPLORER Combustion Analyser from Trace Elemental Instruments. The EXPLORER is compatible with ASTM standards (D5453, D7183, D4629, D6069 and 4929) Sulfur, Nitrogen, and Chloride. With over 300 installations, it is rapidly gaining customer acceptance. Because the XPLORER is distributed as a HORIBA product, you know it is backed with HORIBA’s industry leading reputation for support and service.
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43514pr@reply-direct.com 44103pr@reply-direct.com Toxic Gas GC
With accuracies down into the sub-ppb range, the Series 9100 On-line Gas Chromatograph is ideal for low-level applications such as monitoring toxic gases in the workplace, indoor and outdoor air quality, environmental sources, ambient air networks, fence lines, and mud logging.
The MOCON® Inc. – Baseline Series 9100 on-line gas
chromatograph is specifi cally designed for sub-part-per-billion (sub- ppb) to percent levels analysis of a multitude of organic and inorganic compounds and utilises either a photoionisation detector (PID), high-sensitivity photoionisation detector (HS-PID), fl ame ionisation detector (FID), or a thermal conductivity detector (TCD).
Key features include fully integrated powerful GC software eliminating the need for an external PC, programmable touchscreen Interface and USB for memory stick, mouse or keyboard use; Remote access and control, automatic calibration, and internal data storage allow for unattended operation. Other features include a LAN connection, analog outputs, relays, multipoint sampling, and a graphical display of current or historic concentrations.
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MIRICO was formed as a result of cutting edge research and development at the Science and Technology Facilities Council’s Rutherford Appleton Laboratory Space division. The company consists of highly skilled engineering and scientifi c team that designs, develops, manufactures and deploys unique spectrometer products using mid-infrared light sources for high performance gas analysis.
The company’s technology portfolio is based on research carried out by Dr. Damien Weidmann and the Laser Spectroscopy team at the Rutherford Appleton Laboratory, part of the Science and Technology Facilities Council (STFC), a national laboratory in the U.K. The Laser Spectroscopy group are a team of senior researchers focused on developing unique spectroscopic techniques for earth observation and planetary landers for space missions. This lead to new analytical instruments for gas analysis that deliver laboratory standard performance in a highly compact, fi eld deployable form factor, and offer highly unique capabilities. These powerful techniques enable a host of exciting applications, by bringing measurements out of the laboratory and into the fi eld. MIRICO has turned these technologies into a suite of products, putting the requisite tools to industry and research professionals. Our innovative engineering team works with our customers to meet the requirements for different applications.
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Taking our fundamental technology MIRICO has turned innovative platform technologies into a suite of products, aimed at solving industry and research professional challenges. Our innovative engineering team consists of a combination of scientists, mechanical, electronic and software engineers that work alongside our commercial team to develop customer centric products. These tools take laboratory standard gas analysis out of the lab and into the fi eld.
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The JCT JFID-TOC TOC-Monitor for Steam Applications provides an easy to setup and cost effective solution for the continuous monitoring and control of contamination caused by hydrocarbons.
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For more information please visit
www.jct-cems.com (search for TOC) and see us on stand 38 at PEFTEC 2017.
7858ad@reply-direct.com AET October / November 2017
www.envirotech-online.com
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Bringing Measurements Out of the Lab
Real Time TOC Analysis in Steam and Condensate
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