713716
Basosiv™ M050
produced by BASF
Synonym(s):
Magnesium formate
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About This Item
Recommended Products
grade
produced by BASF
form
crystals
surface area
400-600 m2/g
bulk density
0.30‑0.40 g/cm3
SMILES string
O=CO[Mg]OC=O
InChI
1S/2CH2O2.Mg/c2*2-1-3;/h2*1H,(H,2,3);/q;;+2/p-2
InChI key
GMDNUWQNDQDBNQ-UHFFFAOYSA-L
General description
MOF (metal organic framework)
Legal Information
Basosiv is a trademark of BASF SE
Storage Class Code
11 - Combustible Solids
WGK
WGK 3
Flash Point(F)
Not applicable
Flash Point(C)
Not applicable
Regulatory Information
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Journal of chromatography. B, Analytical technologies in the biomedical and life sciences, 915-916, 28-32 (2013-01-15)
This paper described a sensitive and rapid method based on ultra-performance liquid chromatography coupled to tandem mass spectrometry (UPLC-MS/MS) for the determination of phenylephrine in human plasma. Plasma samples were pre-purified by solid-phase extraction (SPE). The chromatographic separation was achieved
Applied biochemistry and biotechnology, 169(7), 2038-2048 (2013-01-30)
The use of lignocellulosic materials as substrate for bioethanol production is considered a cost-effective approach to make the biofuel production process economically sustainable. However, lignocellulosic hydrolysis releases toxic compounds such as weak acids which inhibit microorganism growth and ethanol production.
mBio, 4(2), doi:10-doi:10 (2013-02-28)
Hydrogenotrophic methanogenic Archaea require reduced ferredoxin as an anaplerotic source of electrons for methanogenesis. H(2) oxidation by the hydrogenase Eha provides these electrons, consistent with an H(2) requirement for growth. Here we report the identification of alternative pathways of ferredoxin
Journal of bacteriology, 195(7), 1456-1462 (2013-01-22)
Hydrogenotrophic methanogenic Archaea are defined by an H2 requirement for growth. Despite this requirement, many hydrogenotrophs are also capable of growth with formate as an electron donor for methanogenesis. While certain responses of these organisms to hydrogen availability have been
Extremophiles : life under extreme conditions, 17(2), 251-263 (2013-01-25)
A novel sulfate-reducing bacterium designated OPF15(T) was isolated from Obsidian Pool, Yellowstone National Park, Wyoming. The phylogeny of 16S rRNA and functional genes (dsrAB) placed the organism within the family Thermodesulfobacteriaceae. The organism displayed hyperthermophilic temperature requirements for growth with
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