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workplace exposure Applications

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    Measurement solution for hospital workplace exposure monitoring

    In taking a responsible stance on the exposure of workers to any potentially hazardous gases, there is a need for workplaces using anaesthetic gases, such as hospital operating rooms or research laboratories, to control the level of waste anaesthetic gas in the ambient air.

    By Protea Limited based in Middlewich, UNITED KINGDOM.

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    Measurement of diacetyl in ambient air to monitor workplace exposure limits.

    The Series 8900 Diacetyl Analyzer provides direct measurement of Diacetyl in ambient air. This instrument is utilized for environmental monitoring and to monitor workplace exposure limits. The Series 8900 Analyzer for Diacetyl employs a photoionization detector (PID) as the sensing element. A dual column configuration with timed backflush to vent is used to strip off moisture and heavier hydrocarbons. A pre-cut column is used in series with the analytical column. At sample injection a fixed volume of sample is carried to the pre-cut column. Backflush is timed so that only the Diacetyl and other similar components are eluted to the analytical column. Contaminants on the pre-cut column are backflushed to vent. The Diacetyl is separated from potentially interfering components on the analytical column and elute to the detector for analysis.

    By MOCON, Inc. - Baseline based in Lyons, COLORADO (USA).

  • Air monitoring equipments for workplace and personal exposure monitoring

    Many occupations involve the use of hazardous substances or processes, where pollutants may be ingested, inhaled or absorbed through the skin. General ambient pollutants can also have health implications in otherwise non-hazardous workplaces. Occupational exposure limits regulate many pollutants based on an eight-hour working day. Personal exposure assessments can be made over an eight-hour period (Time Weighted Average (TWA) exposure) using our simple to use monitoring equipment.

    By Gradko International Ltd based in Winchester, UNITED KINGDOM.

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    Measurement of ethylene oxide for monitoring workplace exposure limits

    The Series 8900 Ethylene Oxide Analyzer combines the selectivity of gas chromatography with the sensitivity of a Photoionization Detector (PID) providing interference free response to Ethylene Oxide (EtO) at levels below 0.05 ppm. This analytical method is referenced in OSHA`s `Occupational Exposure to Ethylene Oxide: Final Standard` 29 CFR Part 1910. The system documents exposure levels including: time-weighted averages (TWA), short-term exposure limits (STEL) and instantaneous alarms. Areas that are typically monitored include; EtO Sources - gas storage areas, sterilizer doors, aeration doors, and the General Work Area - decontamination, packaging and preparation and sterile product storage areas.

    By MOCON, Inc. - Baseline based in Lyons, COLORADO (USA).

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    Noise monitoring for workplaces

    Measurement of the noise exposure of an individual over the working day. They should be used for mobile workforces where it is not always practical to measure with a hand held Sound Level Meter.

    By Casella based in Kempston, UNITED KINGDOM.

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    Measurement of naphthalene in ambient air to monitor workplace exposure limits & at remediation & Superfund sites

    The Series 8900 Naphthalene Analyzer provides direct measurement of Naphthalene in ambient air. This instrument is utilized in industrial plants to monitor workplace exposure limits and at remediation and Superfund sites. The Series 8900 Naphthalene Analyzer employs a photoionization detector (PID) as the sensing element. A dual column configuration with timed backflush to vent is used to strip off moisture and heavier hydrocarbons. A pre-cut column is used in series with the analytical column. At sample injection a fixed volume of sample is carried to the pre-cut column. Backflush is timed so that only the Naphthalene and other similar components are eluted to the analytical column. Contaminants on the pre-cut column are backflushed to vent. Naphthalene is separated from potentially interfering components on the analytical column and elute to the detector for analysis.

    By MOCON, Inc. - Baseline based in Lyons, COLORADO (USA).

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    Measurement of methyl bromide in ambient air for monitoring workplace exposure limits in fumigation facilities

    The Series 8900 Methyl Bromide Monitoring System provides an automated, direct measurement of Methyl Bromide in ambient air. This instrument can meet and exceed the requirements for ambient methyl bromide monitoring. It is utilized in fumigation facilities and industrial plants to detect potential worker exposure to methyl bromide, resulting from mechanical failure, human error or product off gassing. Multipoint sampling options allow the analyzer to monitor multiple sample locations for greater coverage.

    By MOCON, Inc. - Baseline based in Lyons, COLORADO (USA).

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    Measurement of formaldehyde in ambient air for monitoring workplace exposure limits

    The Series 8900 Formaldehyde Analyzer provides direct measurement of Formaldehyde in ambient air. This instrument is utilized in industrial plants to monitor workplace exposure limits. The Series 8900 Formaldehyde Analyzer employs a flame ionization detector (FID) as the sensing element. A dual column configuration with timed backflush to vent is used to strip off moisture and heavier hydrocarbons. A pre-cut column is used in series with the analytical column. At sample injection a fixed volume of sample is carried to the pre-cut column. Backflush is timed so that only the Formaldehyde and other similar components are eluted to the analytical column. Contaminants on the pre-cut column are backflushed to vent. Formaldehyde is separated from potentially interfering components on the analytical column and elute to the detector for analysis.

    By MOCON, Inc. - Baseline based in Lyons, COLORADO (USA).

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    Measurement of acrylonitrile in ambient air for monitoring workplace exposure limits

    The Series 8900 Acrylonitrile Analyzer provides direct measurement of Acrylonitrile in ambient air. This instrument is utilized in industrial plants to monitor workplace exposure limits. The Series 8900 Acrylonitrile Analyzer employs a flame ionization detector (FID) as the sensing element. A dual column configuration with timed backflush to vent is used to strip off moisture and heavier hydrocarbons. A pre-cut column is used in series with the analytical column. At sample injection a fixed volume of sample is carried to the pre-cut column. Backflush is timed so that only the Acrylonitrile and other similar components are eluted to the analytical column. Contaminants on the pre-cut column are backflushed to vent. Acrylonitrile is separated from potentially interfering components on the analytical column and elute to the detector for analysis.

    By MOCON, Inc. - Baseline based in Lyons, COLORADO (USA).

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    Sound level measurement for safety regulations

    Hand held instruments for the measurement of an employee`s noise exposure. Frequency analysis within Sound Level Meters can also be used to determine the correct selection of hearing protection.

    By Casella based in Kempston, UNITED KINGDOM.

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    Air sampling & monitoring systems for occupational health & safety industry

    HI-Q considers the responsibility for worker health and safety to be of paramount importance. This is a responsibility that requires good documentation of facts. Many studies are conducted to evaluate workplace health and safety conditions as they relate to workers exposure to radiation, chemicals, and biological hazards during the normal work day. HI-Qs wide line of air sampling equipment, systems and accessories are used in the monitoring then documentation of these workplaces.

    By HI-Q Environmental Products Company based in San Diego, CALIFORNIA (USA).

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    Measurement solution for medical workplace monitoring

    In taking a responsible stance on the exposure of workers to any potential hazardous gases, there is a need for workplaces using anaesthetic gases, such as hospital operating rooms or research laboratories, to control the level of waste anaesthetic gas in the ambient air. Anaesthesia machines, ventilators, breathing systems and waste gas scavenging systems will all contribute to te background level of he anaesthetic gases that are present in the environment within a facility, whether those machines are in a good state of repair or not. Recovery rooms can become polluted, for example from gas exhaled by the patient, and clean-up from any spills can remain in the background air for long periods.

    By Protea Limited based in Middlewich, UNITED KINGDOM.

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    Measurement of methyl ethyl ketone, chloroform & carbon tetrachloride in air for remediation & super fund sites

    The Series 8900 Analyzer provides direct measurement of Methyl Ethyl Ketone, Chloroform and Carbon Tetrachloride in ambient air. This instrument is utilized for remediation and Super Fund sites and to monitor workplace exposure limits.

    By MOCON, Inc. - Baseline based in Lyons, COLORADO (USA).

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    Air sampling & monitoring systems for biomedical, chemical & pharmaceutical industry

    HI-Q Environmental Product Company provides air sampling instrumentation & systems for several niche applications in a number of disciplines in the broad area of `Life Sciences`. In the Biomedical, Chemical, & Pharmaceutical industries, HI-Q has marketed instrumentation for certain applications for many years. Our ambient, in-door breathing level air samplers, commonly known in the industry as `Goose-Neck` or `Giraffe` air samplers have been instrumental in analyzing workplace exposure. HI-Q has also developed accurate pre & post heap filtration stack sampling systems to aid laboratories in inventory control & atmospheric exposure monitoring for chemicals such as Radio Iodine.

    By HI-Q Environmental Products Company based in San Diego, CALIFORNIA (USA).

  • Q-EHS Enterprise Application

    The Q EHS Enterprise system is a fully integrated, Environmental, Health and Safety (EH&S) analytical platform that simplifies your corporation-wide EH&S information management, increases workplace safety, and reduces risk exposure to regulatory citations. Q EHS Enterprise can help you: • Protect your employees’ health and safety in the workplace • Reduce your risk exposure associated with noncompliance through improved transparency of EHS management • Improve the efficiency of your current EH&S information management processes Q EHS Enterprise centralizes, tracks, and analyzes your EH&S data and practices across all facilities to provide a reliable audit of your EH&S compliance status. The metrics and graphs you retrieve from Q EHS Enterprise enable quick responses to compliance issues and to other EH&S risks (operational, maintenance, safety, audit tasks, etc.). Q EHS Enterprise is built on a foundation that incorporates your company’s fundamental data—

    By Quantum Compliance based in Ann Arbor, MICHIGAN (USA).

  • Oil Mist and VOC Collection

    Oil Mist is Unbreathable. Oil based cutting fluids are often used in CNC milling, machining and metalworking. During production, these processes can produce a mist that can threaten sensitive electronic circuitry and presents serious physical risks to employees (accidents from slipping, breathing hazards).? What are the risks in a workshop with oil mist? Exposure to oil mist for a prolonged period of time can cause a number of health issues. Dermatitis Eye, nose and throat irritation Damage to the respiratory system Bronchitis Bronchial asthma Chronic cough Slip hazards (falling, dropping of tools/materials)? How can you protect yourself?? Mist collectors are effective at capturing and filtering harmful oil mist pollution. They can either be installed on individual machines or to a central location. Having the correct oil mist filtration equipment installed will protect your employees from unnecessary health risks. In addition to this, it will also help to protect your business from long term liability and healthcare costs related to workplace air contamination.?

    By DiversiTech based in Montreal, QUEBEC (CANADA).

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