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Carbotrap® Carbon Adsorbent

matrix Carbotrap® C, 20-40 mesh, bottle of 10 g

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About This Item

Código UNSPSC:
23201100
En este momento no podemos mostrarle ni los precios ni la disponibilidad

Nombre del producto

Carbotrap® Adsorbent, matrix Carbotrap® C, 20-40 mesh, bottle of 10 g

Línea del producto

Carbotrap®

Nivel de calidad

Formulario

granular

envase

bottle of 10 g

técnicas

LPLC: suitable

Matriz

Carbotrap® C

grupo activo de la matriz

carbon

tamaño de partícula

20-40 mesh

tamaño de poro

~0 cm3/g macroporosity
~0 cm3/g mesoporosity
~0 cm3/g microporosity
~0 Å pore diameter

densidad

~0.70 g/mL (free fall density)

técnica de separación

reversed phase

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Descripción general

A graphitized carbon black (GCB) can be non-porous or porous. The graphitization process results in a highly pure surface with great adsorption and desorption (if required) properties. Surface interactions depend solely on dispersion (London) forces. These particles are:
  • Granular
  • Friable
  • Used for molecules with an analyte size relative to C3-C20+ n-alkanes
  • Hydrophobic (can be used in high humidity environments)

Generally, GCB adsorbents offer weaker relative adsorptive strength compared to carbon molecular sieve (CMS) adsorbents, and similar relative adsorptive strength compared to spherical graphitized polymer carbon (SGPC) adsorbents. Our Carbotrap products are a type of GCB adsorbent.
  • Particles are 20/40 mesh
  • These large particles allow high flow rates without excessive pressure drops

For more information about any of our specialty carbon adsorbents, please visit sigma-aldrich.com/carbon

Información legal

Carbotrap is a registered trademark of Merck KGaA, Darmstadt, Germany

Código de clase de almacenamiento

11 - Combustible Solids

Clase de riesgo para el agua (WGK)

nwg

Punto de inflamabilidad (°F)

Not applicable

Punto de inflamabilidad (°C)

Not applicable


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Evaluation of adsorbents for sampling and quantitative analysis of microbial volatiles using thermal desorption-gas chromatography.
Sunesson A, et al.
Journal of Chromatography A, 699 (1), 203-214 (1995)
Plant Volatile Analysis.
Linskens HF and Jackson JF.
Modern Methods of Plant Analysis, 19, 54-56 (1997)
Florian Gahleitner et al.
Bioanalysis, 5(18), 2239-2247 (2013-09-24)
In-community non-invasive identification of asthma-specific volatile organic compounds (VOCs) in exhaled breath presents opportunities to characterize phenotypes, and monitor disease state and therapies. The feasibility of breath sampling with children and the preliminary identification of childhood asthma markers were studied.
S Ghittori et al.
Giornale italiano di medicina del lavoro, 10(4-5), 201-205 (1988-07-01)
A laboratory study, using generated atmosphere containing 0.14/23.3 mg/m3 of Benzene, was conducted to adapt an existing industrial hygiene monitoring method for measuring low concentrations of Benzene. This method was developed to determine concentrations of Benzene in the ambient air
S Ghittori et al.
Journal of toxicology and environmental health, 38(3), 233-243 (1993-03-01)
Benzene concentrations in urine samples (Cu, ng/L) from 110 workers exposed to benzene in chemical plants and gasoline pumps were determined by injecting urine supernate into a gas chromatograph. The urine was saturated with anhydrous N2SO4 to facilitate the passage

Artículos

Synthetic CMS carbons offer tailored adsorbents for specific applications.

Synthetic CMS carbons offer tailored adsorbents for specific applications.

Synthetic CMS carbons offer tailored adsorbents for specific applications.

Synthetic CMS carbons offer tailored adsorbents for specific applications.

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