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petroleum monitoring Applications

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    Monitoring of oil and petroleum hydrocarbons in cooling water

    By Lumex Instruments Group based in Mission, BRITISH COLUMBIA (CANADA).

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    Monitoring petroleum hydrocarbons in wastewater

    The Situation:

    A wastewater treatment company operated an oil/water separation facility on a multi-acre industrial site in Northern California. Its purpose was to recycle oil products for profit while at the same time providing a wastewater treatment service for industries based in Northern California.

    By Turner Designs Hydrocarbon Instruments, Inc. based in Fresno, CALIFORNIA (USA).

  • Cloud software solutions for bulk petroleum storage

    Mitigate regulatory risk. Run your AST facilities at peak efficiency. Bulk petroleum facilities face onerous environmental demands. Demands that if not met consistently and with precision, could cost you tens of thousands of dollars per day and even threaten to hobble your operation. Titan automates even the most thorny areas of AST regulatory compliance, from spill prevention and ground water protection, to alarm monitoring and testing that meets API standards. So you`ll be on top of every test & inspection date, every critical document and equipment spec, and every maintenance activity to ensure your business keeps pace with its opportunity for growth.

    By Titan Cloud Software Company, LLC based in Brentwood, TENNESSEE (USA).

  • Perimeter Monitoring and Area Monitoring

    GasFinder2 can be permanently installed to monitor chemical and petroleum plants for both combustible and toxic gases. GasFinder2 can be used to replace arrays of point sensors for perimeter monitoring. A single light path will replace many point sensors. With GasFinder2 perimeter monitoring, all gas dispersed from a facility is detected and logged.

    By Boreal Laser Inc. based in Edmonton, ALBERTA (CANADA).

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    TPH in Soil Remediation

    InfraCal TOG/TPH Analyzers allow for TPH (Total Petroleum Hydrocarbons) in soil testing at remediation sites such as leaking underground storage tanks and produced water evaporation ponds. Site managers can avoid having costly soil remediation equipment sit idle while waiting for off-site lab results. Sampling requires a few simple steps that can be performed by non-technical personnel. The soil is mixed with the extraction solvent, shaken, filtered, and then presented to the InfraCal Analyzer for measurement. Features include: - Results in under 15 minutes, including extraction ¨ Detect levels as low as 10 ppm ¨ Portable, rugged, lightweight, easy-to-use ¨ Battery operable ¨ Ideal for field or laboratory applications ¨ Factory calibration available

    By Spectro Scientific based in Chelmsford, MASSACHUSETTS (USA).

  • Measurement solution for liquid TiCl4 vanadium oxychloride monitor

    The chloride process of titanium dioxide (TiO2) pigment manufacture first converts titania-containing ores to TiCl4 via a carbochlorination reaction at a high temperature in a chlorinator in the presence of chlorine gas and petroleum coke added as a reductant.

    By Protea Limited based in Middlewich, UNITED KINGDOM.

  • Total Reduced Sulfur (S) monitoring

    Total reduced sulfur(s), which include hydrogen sulfide (H2S), methyl mercaptan (methanethiol, CH3SH), dimethyl sulfide (CH3SCH3), and dimethyl disulfide (CH3S2CH3), occur naturally in the environment and can also be present in numerous industrial gaseous streams – petroleum refining, natural gas extraction, and chemical operations like the pulp/paper industry. Hydrogen sulfide is the most prevalent of the total reduced sulfurs, and is commonly found in volcanic gases, marshes and swamps, wetlands and mud flats, sulfur springs and decaying organic matter. Additionally, hydrogen sulfide is produced by living organisms, including human beings, through the digestion and metabolization of sulfur-containing materials. It must be noted that sulfur dioxide (SO2), sulfur trioxide (SO3) and sulfuric acid mist are not included in the determination of TRS, as these are oxidized sulfur compounds and are permitted and monitored separately from TRS.

    By Ecotech Pty Ltd based in Knoxfield, AUSTRALIA.

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    Monitoring of leaks in heat exchangers

    The Situation

    A California refinery produces xylene for use as commercial product and a precursor for petrochemical manufacturing. A primary component to the production of xylene is the isolation and purification of the chemical from a complex mixture of petroleum hydrocarbons. Steam based heat exchangers are used to process the xylene. Inherent to the design and rough duty heat exchangers face during their operation, leaks can and do develop. When a heat exchanger leaks, xylene contaminates the steam and produces a number of problems ranging from loss of final product, contamination and fouling of steam transfer piping, and ultimately bio-fouling of cooling towers. Consistent and reliable monitoring for xylene or other petroleum hydrocarbons in cooling water or steam condensate can alleviate product loss and process equipment down time.

    By Turner Designs Hydrocarbon Instruments, Inc. based in Fresno, CALIFORNIA (USA).

  • Industrial Meshes for Sand Control Screens

    Modern petroleum exploration technologies operate with filtration technologies that are actually put through in the well. As a basic component of these sand control screens, SolidWEAVE stainless steel mesh is used for the filtration because they meet the most extreme requirements.

    By GKD - Gebr. Kufferath AG based in Düren, GERMANY.

  • Mining Applications Testing TPH in Soil

    Testing contaminated soils on-site for total petroleum hydrocarbons (TPH) is performed to monitor the progress of bioremediation activities at mining sites. Results only take a few minutes.

    By Sitelab Corporation based in West Newbury, MASSACHUSETTS (USA).

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    EDXRF spectrometers for ultra low sulfur

    Compliance with the ASTM method at low concentrations sulfur. Sulfur is a major element of importance because it forms sulfuric acid in the atmosphere when burned and has harmful impact on the human health and on the environment. In the mid-2000`s, the Environmental Protection Agency (EPA) began a program to greatly reduce the amount of Sulfur in petroleum products. The current allowable sulfur limit in vehicle fuel is 15 ppm (parts per million). To reduce the pollution coming from vessels the international maritime Organization (IMO) established new limits on emission of sulfur oxides. In Emission Controlled Areas the sulfur limit will be 0.1 % starting 2015. The continued strategy by EPA and IMO to reduce the amount of sulfur in petroleum products put a great demand on sulfur monitoring in fuel and oil products.

    By Xenemetrix Ltd. based in Migdal Haemek, ISRAEL.

  • Cloud software solutions for C-stores

    If you are compliance director, fuel executive, or facilities manager in the retail petroleum industry, we have the solutions to help you manage your world. Over 25,000 convenience store locations use Titan best-practices cloud software every day to monitor tens-of-thousands of ATGs for inventory & alarms, stay on top of voluminous compliance documentation & recurring testing dates, and optimize maintenance lifecycles to finally get a handle on facility operations. Use of the Titan cloud elevates you to a whole new realm of management efficiency. A place where there`s no more binders or spreadsheets. No more lost documents or missed deadlines. No more gaping blind spots in your ATG and tank management efforts. No more daunting piles of work orders and invoices to sort through. And no more fines or NOVs that threaten to tarnish your reputation and encroach upon already slim margins. Replacing all this is one dashboard-driven, centrally-accessible system in which to manage it all. This includes optimizing your in-ground fuel. You`ll quickly wonder how you ran your business without it.

    By Titan Cloud Software Company, LLC based in Brentwood, TENNESSEE (USA).

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