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Trace CO and CO2 In Hydrogen and Light Gaseous GC Gas Chromatagraph UOP603

Trace CO and CO2 In Hydrogen and Light Gaseous GC Gas Chromatagraph UOP603

    • Trace CO and CO2 In Hydrogen and Light Gaseous GC Gas Chromatagraph UOP603
    • Trace CO and CO2 In Hydrogen and Light Gaseous GC Gas Chromatagraph UOP603
    • Trace CO and CO2 In Hydrogen and Light Gaseous GC Gas Chromatagraph UOP603
  • Trace CO and CO2 In Hydrogen and Light Gaseous GC Gas Chromatagraph UOP603

    Detalhes do produto:

    Lugar de origem: CHINA
    Marca: AI
    Certificação: ISO
    Número do modelo: GC8890A

    Condições de Pagamento e Envio:

    Quantidade de ordem mínima: 1 conjunto
    Preço: Negociável
    Detalhes da embalagem: Cartão duro
    Tempo de entrega: 20 dias
    Termos de pagamento: L/C, T/T, Western Union
    Habilidade da fonte: 20 séries por mês
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    Descrição de produto detalhada
    Padrões de teste: ASTM UOP603 Aplicativo: Medir vestígios de CO e CO2 em hidrogênio e gases leves
    Método de teste: Cromatógrafo Gasoso Garantia: 1 ano
    Fonte de energia: AC220V ± 10% 50Hz palavra-chave: Cromatógrafo de gás UOP603

     

    Trace CO and CO2 In Hydrogen and Light Gaseous GC Gas Chromatagraph UOP603

     

     

    Trace CO and CO2 In Hydrogen and Light Gaseous GC Gas Chromatagraph UOP603Trace CO and CO2 In Hydrogen and Light Gaseous GC Gas Chromatagraph UOP603

    Spectrogram of UOP603 

     
    1.Principle
    Trace CO and CO2 in the gas sample is injected into the packed column of GC,and methane is generated by the converter. The FID is used to detect the methane product, and the CO and CO2 contents are quantified by the external standard method.
     
    2.Analysis instruments
    2.1 Column A:9.1m1/16 inch OD,0.050 inch ID stainless steel pipe filled 80-100 mesh “TDX-01
    2.2 Column B: 3m1/16 inch OD,0.050 inch ID stainless steel pipe filled 60-80 mesh 13X Molecular sieve;
    2.3 Gas Chromatagraph: constant temperature,FID detector;
    2.4 Gas converter
     
    3 Operation steps
    Repeat to inject standard gas sample to obtain the peak area, and calculate the correction factor of each component with the standard gas content;Re-inject the sample and calculate the sample content from the peak area of each component of the sample.
    R=A/B
    In the formula: A---Content of each component;
    R---Correction factor of each component;
    B---Average peak area of each component,
     
    4 Calculation
    Use below formula to calculate content of each component:
    Content of each component: mass-ppm=E·R
    In the formula: E=peak area of each component;
    R=Correction factor of each component;
     
     

    Contacto
    Advanced Instruments Co.,Ltd

    Pessoa de Contato: Mrs. Sandy

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