产品名称
Supelpak™-2SV, matrix styrene-divinylbenzene, 20-60 mesh, pkg of 250 g
form
beads
packaging
pkg of 250 g
Quality Level
sustainability
Greener Alternative Product
technique(s)
LPLC: suitable, NMR: suitable
surface area
~300 m2/g
matrix
styrene-divinylbenzene
matrix active group
polymer
particle size
20-60 mesh
pore size
~0.65 mL/g pore volume, 90 Å mean pore size
application(s)
environmental
greener alternative category
separation technique
reversed phase
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General description
We are committed to bringing you Greener AlternativeProducts. This product is a Design for Sustainability (DfS) developed product,which belongs to one of the four categories of greener alternatives. Click here to view its DfS scorecard.
Application
- Supelpak™-2SV resin was used as column packing material to extract sesquiterpenes.
- Supelpak™-2SV resin was used in glass column as packing material to capture limonene.
- Supelpak™-2SV resin was used as packing material to capture the off gas for NMR analysis.
- Used as adsorbent in the extraction of organochlorine compounds by Soxhlet extraction technique
- Adsorbent in the extraction of honey samples using column chromatography for HPLC analysis
- Used in adsorption chromatography
Legal Information
Supelpak is a trademark of Sigma-Aldrich Co. LLC
存储类别
11 - Combustible Solids
wgk
WGK 3
flash_point_f
Not applicable
flash_point_c
Not applicable
法规信息
新产品
此项目有
Sean A Agger et al.
Journal of bacteriology, 190(18), 6084-6096 (2008-07-29)
Cyanobacteria are a rich source of natural products and are known to produce terpenoids. These bacteria are the major source of the musty-smelling terpenes geosmin and 2-methylisoborneol, which are found in many natural water supplies; however, no terpene synthases have
Grayson T Wawrzyn et al.
Methods in enzymology, 515, 83-105 (2012-09-25)
Fungi produce a myriad of terpenoids with a broad range of biological activities, many of which can be adapted to human use. This requires knowledge of the enzymes responsible for the biosynthesis of these compounds. Herein, we describe strategies for
Engineering cyanobacteria for the production of a cyclic hydrocarbon fuel from CO2 and H2O
Halfmann, Charles, Liping Gu, and Ruanbao Zhou
Green Chemistry, 16, 3175-3185 (2014)
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