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12-1300

Sigma-Aldrich

乙醇酸 溶液

CP, 70% in H2O

同義詞:

羟基乙酸

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About This Item

線性公式:
HOCH2COOH
CAS號碼:
分子量::
76.05
Beilstein:
1209322
MDL號碼:
分類程式碼代碼:
12352106
PubChem物質ID:

等級

CP

形狀

liquid

存貨情形

available only in Japan

濃度

70% in H2O

SMILES 字串

OCC(O)=O

InChI

1S/C2H4O3/c3-1-2(4)5/h3H,1H2,(H,4,5)

InChI 密鑰

AEMRFAOFKBGASW-UHFFFAOYSA-N

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象形圖

Corrosion

訊號詞

Danger

危險聲明

危險分類

Skin Corr. 1B

儲存類別代碼

8A - Combustible corrosive hazardous materials

水污染物質分類(WGK)

WGK 3

閃點(°F)

Not applicable

閃點(°C)

Not applicable


分析證明 (COA)

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W H Porter et al.
Journal of toxicology. Clinical toxicology, 39(6), 607-615 (2002-01-05)
To correlate serum glycolic acid levels with clinical severity and outcome in ethylene glycol poisoning and to determine if glycolic acid levels are predictive of renal failure and the need for hemodialysis. We measured serum ethylene glycol and glycolic acid
Thea R Pick et al.
Proceedings of the National Academy of Sciences of the United States of America, 110(8), 3185-3190 (2013-02-06)
Photorespiratory carbon flux reaches up to a third of photosynthetic flux, thus contributes massively to the global carbon cycle. The pathway recycles glycolate-2-phosphate, the most abundant byproduct of RubisCO reactions. This oxygenation reaction of RubisCO and subsequent photorespiration significantly limit
Ingela Bjurhager et al.
Biomacromolecules, 13(8), 2521-2527 (2012-07-10)
In 1628, the Swedish warship Vasa capsized on her maiden voyage and sank in the Stockholm harbor. The ship was recovered in 1961 and, after polyethylene glycol (PEG) impregnation, it was displayed in the Vasa museum. Chemical investigations of the
D Jacobsen et al.
The American journal of medicine, 84(1), 145-152 (1988-01-01)
Ethylene glycol and glycolate kinetics were studied in two cases of ethylene glycol intoxication with maximal ethylene glycol/glycolate concentrations of 40.9/26.8 and 56.4/22.4 mmol/liter, respectively. Both patients survived, but with prolonged renal failure, upon treatment with bicarbonate, ethanol, and hemodialysis.
Genqiang Zhang et al.
Advanced materials (Deerfield Beach, Fla.), 24(34), 4609-4613 (2012-06-26)
Novel ZnMn(2)O(4) ball-in-ball hollow microspheres are fabricated by a facile two-step method involving the solution synthesis of ZnMn-glycolate hollow microspheres and subsequent thermal annealing in air. When evaluated as an anode material for lithium-ion batteries, these ZnMn(2)O(4) ball-in-ball hollow microspheres

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