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Fluoride Monitoring Applications

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    Determination of water-soluble forms of inorganic and organic anions in soils, clays, peat, wastewater silt, activated sludge, and bottom sediments

    The method allows determination of water-soluble forms of inorganic (chlorides, sulfates, nitrates, fluorides and phosphates) and organics (acetates, formates, and oxalates) anions in soils, clays, peats, wastewater silts, activated sludges and bottom sediments by capillary electrophoresis method. 

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

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    Determination of inorganic anions in aqueous matrices according to EPA 6500 and ASTM D6508-10 test methods

    This test method is applicable for determination of the dissolved inorganics anions; fluoride, bromide, chloride, nitrite, nitrate, ortho-phosphate, and sulfate in aqueous matrices using capillary ion electrophoresis with indirect UV detection. The method can be applied to drinking water, wastewater and ground water. 

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

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    Determination of inorganic anions in water samples

    Introduction

    The method allows determination of inorganic anions (chloride, nitrite, sulfate, nitrate, fluoride, and phosphate as soluble ortho-phosphate) in samples of natural, potable, and cleaned waste water.

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

  • Hydrogen Fluoride (HF) Monitoring in Air

    Hydrogen Fluoride (HF) is a colorless gas that is used extensively in industrial applications. Fluoride monitoring is especially needed for aluminum plants that need to convert HF into fluorine for use in their processes. Any HF that escapes is a cost to the plant, so an HF analyzer is essential to keep track of and prevent the losses.

    By Unisearch Associates Inc. based in Concord, ONTARIO (CANADA).

  • Laboratory equipments for calcium fluoride in fluorspar

    Measuring Fluorine Content in Mineral Powders and Ores using the MQC Benchtop NMR Analyser. Fluorine-containing minerals such as fluorspar (fluorite) and cryolite are natural sources of fluorine that are widely used in the chemical industry (manufacturing of hydrofluoric acid and fluoropolymers for example), metallurgy (steel and alumina processing), the pharmaceutical industry and others. The fluorine content often has a significant effect on the processing of such mineral powders. Therefore, it is essential to know the fluorine concentration in order to ensure optimal processing and monitor/control emissions of toxic fluorine gases, for example in the Hall–Héroult process used to produce aluminium.

    By Oxford Instruments plc based in Abingdon, UNITED KINGDOM.

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