Showing posts with label real time monitoring. Show all posts
Showing posts with label real time monitoring. Show all posts
Thursday, March 2, 2017
Sunday, April 26, 2015
AIHce 2015
HNU PID Analyzers, LLC will be exhibiting at the 2015 American Industrial Hygiene Conference and Exposition #AIHce in Salt Lake City, UT at booth 941. We are also participating in the technical program in the Real Time Detection Systems podium session addressing real time detection of ppb levels of benzene in industrial atmospheres. See the full Real Time Detection Systems program below.
PO123
Real-Time Detection Systems
Topic:
Real-Time Detection Systems
Real-Time Detection Systems
Arrangers: W. Groves, Energy and Mineral Engineering, Penn State University, University Park, PA; P. Smith, U.S. Department of Labor – OSHA, Sandy, UT. Moderator: T. Pearce, OSHA, Edmond, OK. Monitor: L. Monteith, Environmental and Occupational Health Sciences, University of Washington, Seattle, WA.
10:00 AM – 10:20 AMCS-123-01 NIOSH Center for Direct Reading and Sensor Technologies: Enabling a New Era of Safety, Health, Well-being, and Productivity. D. DeBord, NIOSH, Cincinnati, OH; M. Hoover, Morgantown, WV.
10:20 AM – 10:40 AMSR-123-02 Field-portable Fourier Transform infrared (FTIR) Spectroscopy for the Measurement of 1-bromopropane Concentrations in Air. P. Smith, U.S. Department of Labor – OSHA, Sandy, UT.
10:40 AM – 11:00 AM SR-123-03 Real-Time Detection of ppb Levels of Benzene in Industrial Atmospheres. J. Maclachlan, J. Driscoll, PID Analyzers, LLC, Sandwich, MA.
11:00 AM – 11:20 AMCS-123-04 Worker Exposure Assessment Strategies for Tank Gauging Operations Conducted in the Bakken Oilfields (North Dakota). J. Hill, P. Smith, D. Pearce, U.S. Department of Labor – OSHA, Sandy, UT.
11:20 AM – 11:40 AMSR-123-05 Real-Time Detection System for Measuring VOCs, Temperature, Humidity, and Location. K. Brown, K. Mead, R. Kovein, P. Shaw, NIOSH, Cincinnati, OH; R. Voorhees, Univ. Cincinnati, Cincinnati, OH; A. Brandes, MeasureNet LLC, Cincinnati, OH.
11:40 AM – NoonSR-123-06 Combatting Humidity and Other Matrix Gases on the Response Hand-held PIDs. W. Haag, Ion Science USA, Stafford, TX.
Wednesday, September 24, 2014
Real time air monitoring system for personnel protection at a TCA cleanup site
Real time air monitoring system for personnel protection at a trichloroethane cleanup site
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| Remediation site aerial |
1,1,1 Trichloroethane has been used as a solvent in industry, in home cleaning products and as a fumigant. We are involved in the development of a real time monitoring system for the cleanup of a closed chemical plant that had manufactured 1,1,1 trichloroethane (TCA). More precisely, we were concerned with minimizing the exposure of personnel and neighbors during this cleanup.
Continuous Analyzer Requirements
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| Sensor: PID detector |
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| Model 112 |
Sensor Technology
•The technology
employed is photoionization
•The ionization
potential (IP) of TCA
is 10.70 eV, As a
result, we would need an 11.7 eV lamp for this application.
•The IP’s of major
components of air are:
•O2= 12.08 eV
•N2=15.60 eV
•H2O=12.59eV
•CO2=13.79eV
Data Acquisition
These sensors use an integrated, 2.4GHz - 802.11b/g, FCC/CE
certified radio transmitter that work with new and existing Wi-Fi networks. One of these
transmitters is located in each of the 8 analyzers as well as the weather
station.
Monnit’s MoWi sensors communicate
through existing Wi-Fi networks to iMonnit, the online data monitoring system, which agrigates sensor information
and sends notifications via text or email if user defined conditions are met or
exceeded.
Central Computer
A
PC at the site will collect the
data, process it and store it locally.
The data will then be sent via the internet to a protected website.
Any change in weather conditions or TCA concentrations and/or alarm levels will
be immediately sent to a mobile phone.
Data Collection Schematic
Summary
•A battery operated
Model 112 uses photoionization to detect low MW
chlorinated HC during remediation.
•The HW site has homes
and a small town nearby so a fast responding analyzer with weather stations and
wireless data logging connected to the internet is used to monitor the site at
the remote location during the remediation.
•The remediation site
can be shut down remotely by mobile phone if there is a combination of
unacceptable levels of chlorinated HC or wind conditions that could affect the
workers or residents in the local area
•This automated system
will maximize safety at the plant/ fence line and the remote industrial
hygienist can control the activities/problems at the plant.
Our Model 112 analyzers are available with choice of PID or FID (flame ionization detector) sensors. Learn more by viewing the brochure here. Have an application you would like to discuss? Then email us or use the online quote request system.
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