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Merck
CN

147591

2-硝基-1-丙醇

≥95%

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线性分子式:
CH3CH(NO2)CH2OH
化学文摘社编号:
分子量:
105.09
UNSPSC Code:
12352100
NACRES:
NA.22
PubChem Substance ID:
EC Number:
220-797-0
Beilstein/REAXYS Number:
1748592
MDL number:
Assay:
≥95%
Form:
liquid
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InChI key

PCNWBUOSTLGPMI-UHFFFAOYSA-N

InChI

1S/C3H7NO3/c1-3(2-5)4(6)7/h3,5H,2H2,1H3

SMILES string

CC(CO)[N+]([O-])=O

assay

≥95%

form

liquid

refractive index

n20/D 1.439 (lit.)

bp

72-74 °C/1 mmHg (lit.)

density

1.185 g/mL at 25 °C (lit.)

General description

2-Nitro-1-propanol inhibits methane production during in vitro ruminal fermentation. It is a useful antimicrobial supplement which reduces carriage of certain food-borne pathogens in animals.

Application

用于通过改进的方法合成 2,2,2-三硝基乙基醚。

存储类别

10 - Combustible liquids

wgk

WGK 3

flash_point_f

213.8 °F - closed cup

flash_point_c

101 °C - closed cup

ppe

Eyeshields, Gloves


历史批次信息供参考:

分析证书(COA)

Lot/Batch Number

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Synthetic Communications, 20, 3303-3303 (1990)
Y S Jung et al.
Letters in applied microbiology, 39(5), 471-476 (2004-10-16)
To test the inhibitory activity of 2-nitro-1-propanol (2NPOH) against Salmonella Typhimurium, Escherichia coli O157:H7 and Enterococcus faecalis. Specific growth rates (h(-1)) of S. Typhimurium, E. coli O157:H7 and Ent. faecalis were determined during culture in tryptic soya broth (TSB) supplemented
Robin C Anderson et al.
Bioresource technology, 99(18), 8655-8661 (2008-06-10)
Ruminal methane (CH(4)) production results in the loss of up to 12% of gross energy intake and contributes nearly 20% of the United States' annual emission of this greenhouse gas. We report the effects of select nitrocompounds on ruminal fermentation
M Dimitrijevic et al.
Journal of food protection, 69(5), 1061-1065 (2006-05-24)
We report the effects of 2-nitro-1-propanol (2NPOH), 2-nitroethanol (2NEOH), and nitroethane (NE) on growth and survivability of Listeria monocytogenes. In all cases, inhibition was greatest with 2NPOH and least with NE. For example, specific growth rates of L. monocytogenes strain
L A Donaldson et al.
Journal of microscopy, 259(3), 228-236 (2015-05-01)
A novel approach to nanoscale detection of cell wall porosity using confocal fluorescence microscopy is described. Infiltration of cell walls with a range of nitrophenyl-substituted carbohydrates of different molecular weights was assessed by measuring changes in the intensity of lignin

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