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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



 


 


Metal-cyanide complexes exist as a natural function of geology and chemistry. Often times, most individuals are concerned with total cyanide or weak acid dissociable cyanide to identify risk assessment. Unfortunately, the basic analytical methods to supply these measurements do not provide ample information to make educated decisions. Metal-cyanide complexes are an inherent function of mining operations, especially for gold extraction. The released cyanide will react with naturally occurring compounds containing metals. The availability of these metals and other parameters can dictate the mobility, risk assessment, and identification if remediation efforts are necessary.

Cyanide itself can not be determined using ICP-MS but when it is complexed with a metal, ICP-MS becomes an excellent detector considering its sensitivity for metals. Determination of cyanide complexes of Ag, Au, Cu, Co, Ni, Fe, and Se at sub-ppb levels is possible when these species are chromatographically separated and detected by ICP-DRC-MS. It should be noted that identification of AgCN and CuCN complexes are typically qualitative due to the weak dissociable bonds.

If you have any questions or would like a quotation, please feel free to email us at info@appliedspeciation.com or call (206) 219-3779.

Feel free to visit our website on a regular basis as we will be providing scientific discussions and useful links to save you time and money.

 

 

 

 

 

 

 

 

 

 

Applied Speciation and Consulting 2009