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  • Trace Arsenic Analysis
    Arsenic Speciation Analysis
    Arsenic Speciation in Rice
    Arsenic Speciation in Clams
    Arsenic Speciation in Algae
    Arsenic Speciatin in Kelp
    Arsenic Speciation in Milk
    Arsenic Speciation in Soil
    Arsenic Speciation in Plants
    Arsenic Speciation of FGD Influent
    Arsenic Speciation in Constructed Wetlands
    Arsenic Speciation in Agricultural Runoff
    Arsenic Speciation in Groundwater
    Arsenic Speciation in Lake and River Water
    Arsenic Speciation in Poultry Litter
    Arsenic Speciation in Blood Serum
    Arsenic Speciation in Urine
    Arsenic Speciation in Brain Matter
    Arsenic Speciation in Nutraceuticals
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  • Trace Selenium Analysis
    Selenium Speciation Analysis
    Selenium Speciation in FGD Wastewater
    Selenium Speciation in yeast
    Selenium Speciation of Fish eggs
    Selenium Speciation of Soil
    Selenium Speciation of Blood Serum
    Selenium Speciation of Urine
    Selenium Speciation of Agricultural Runoff
    Selenium Speciation of Oil Refinery Wastewater
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  • Trace Total Mercury Analysis
    Mercury Speciation of River Water
    Mercury Speciation of Lake Water
    Mercury Speciation of Soil
    Mercury Speciation of Tissue
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  • Hexavalent Chromium
    EPA Method 6800 (SIDMS)
    Hexavalent Chromium in Soils
    Hexavalent Chromium in Sediments
    Hexavalent Chromium in Pharmaceuticals
    Hexavalent Chromium in Neutraceuticals
    Hexavalent Chromium in Fish
    Hexavalent Chromium in Cosmetics
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  • Thallium Speciation of Pond Water
    Thallium Speciation of Tissue
    Vanadium Speciation of Pond Water
    Manganese Speciation of Groundwater
    Metal Cyanide Speciation Analysis of Mine Runoff
    Total Cyanide Analysis of FGD Wastewater
    Available Cyanide Analysis of FGD Wastewater



 

 

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Total Mercury Analysis Applied Speciation offers ultra trace mercury analysis by cold vapor inductively coupled plasma mass spectrometry (CV-ICP-MS). Employing the cold vapor reaction prior to introduction into the ICP-MS yields an almost spectral free interference ion beam while reaching an almost 100% transfer efficiency of the mercury into the system. This equates to ultra trace detection limits (0.5ng/L) without the need for sample dilution in most cases. Samples with as much as 10,000mg/L total dissolved solids (flue gas desulfurization wastewater) do not require dilution prior to analysis. This robust method of analysis allows for maximum automation which significantly decreases the per sample cost for analysis.

Ultra low level total mercury analysis of routine water samples has been well established using EPA Method 1631 using cold vapor atomic fluorescence spectrometry (CV-AFS). The capacity of Method 1631 to maintain low detection limits is hindered upon the presence of organic compounds and elevated concentrations of trace metals. Although EPA Method 1631 may achieve detection limits of 0.5ng/L for river water complex waste from industrial process necessitate dilution which may increase the detection limit as much as 10,000x.

The CV-ICP-MS method at Applied Speciation has been fully validated in accordance with EPA requirements for alternate test methods. A robust mercury method with ultra trace detection limits at a fraction of the cost…that’s Applied Speciation.

 

 

 

 

 

 

 

 

 

 

 

Applied Speciation and Consulting 2009