- Product Details
Keywords
- 99%min Glycine
- API Manufacturer
- For Nutritional Supplements
Quick Details
- ProName: Glycine Manufacturer For Nutritional S...
- CasNo: 56-40-6
- Molecular Formula: C2H5NO2
- Appearance: White Powder
- Application: For Pharmaceutical Intermediates
- DeliveryTime: 2-4 days after confirming your payment...
- PackAge: 100g/ bag, 2 kg/ bag, 25kg/ carton or ...
- Port: ShangHai
- ProductionCapacity: 1000 Metric Ton/Month
- Purity: 99%min
- Storage: Dry and cool place
- Transportation: By DHL, TNT, FedEx, HKEMS, UPS, Etc
- LimitNum: 10 Gram
Superiority
Advantages:
Hubei XinRunde Chemical Co., Ltd is a renowned pharmaceutical manufacturer. We can offer high quality products at competitive price in quick delivery with 100% custom pass guaranteed. Never stop striving to offer our best service is our philosophy. We have Flexible and Untraceable payment terms. As a leading manufacture, our products have been exported to Germany, Norway, Poland, Finland, Spain, UK, France, Russia, USA, Brazil, Mexico, Australia, Japan, Korea, Thailand, Indonesia, Uruguay and many other countries.
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Details
Glycine Basic information |
Product Name: | Glycine |
Synonyms: | GLYCINE (13C2,2,2-D2,15N);L-Gly;Gly-OH;Glycine, Animal-Free;H-GLY-OH;GLYCIN DAB, PH. EUR., B. P., PH. FRA;GLYCINE BIOXTRA;GLYCINE, REAGENTPLUS(TM), >= 99% (HP |
CAS: | 56-40-6 |
MF: | C2H5NO2 |
MW: | 75.07 |
EINECS: | 200-272-2 |
Product Categories: | Benzothiazoles,Thiazoles;Glycine [Gly, G];Amino Acids and Derivatives;alpha-Amino Acids;Amino Acids;Biochemistry;omega-Aminocarboxylic Acids;omega-Functional Alkanols, Carboxylic Acids, Amines & Halides;Reagents for Electrophoresis;Amino Acids;API's;GABA/Glycine receptor;Glycine;Amino Acids & Derivatives;Aminoacid;amino;Glycine ada@tuskwei.com whatsapp;8618031153937 |
Mol File: | 56-40-6.mol |
Glycine Chemical Properties |
Melting point | 240 °C (dec.)(lit.) |
Boiling point | 233°C |
density | 1.595 |
FEMA | 3287 | GLYCINE |
Fp | 176.67°C |
storage temp. | 2-8°C |
solubility | H2O: 100 mg/mL |
form | powder |
pka | 2.35(at 25℃) |
color | <5 (200 mg/mL)(APHA) |
PH | 4(0.2 molar aqueous solution) |
Water Solubility | 25 g/100 mL (25 ºC) |
Merck | 14,4491 |
BRN | 635782 |
Stability: | Stable. Combustible. Incompatible with strong oxidizing agents. |
CAS DataBase Reference | 56-40-6(CAS DataBase Reference) |
NIST Chemistry Reference | Glycine(56-40-6) |
EPA Substance Registry System | Glycine(56-40-6) |
Safety Information |
Risk Statements | 33 |
Safety Statements | 22-24/25 |
WGK Germany | 2 |
RTECS | MB7600000 |
TSCA | Yes |
HS Code | 29224910 |
Hazardous Substances Data | 56-40-6(Hazardous Substances Data) |
Provider | Language |
---|---|
Monazol | English |
Glycine Usage And Synthesis |
Amino acids with the simplest structure | Glycine is of the simplest structure in the 20 members of amino acid series, also known as amino acetate. It is a non-essential amino acid for the human body and contains both acidic and basic functional group inside its molecule. It exhibits as a strong electrolyte an aqueous solution, and has a large solubility in strong polar solvents but almost insoluble in non-polar solvents. Moreover, it also has a relative high melting point and boiling point. The adjustment of the pH of the aqueous solution can make glycine exhibit different molecular forms. The side chain of glycine contains only a hydrogen atom. Owing to another hydrogen atom connecting to the α-carbon atom, the glycine is not optical isomer. Since the side bond of glycine is very small, it can occupy space which can’t be occupied by other amino acids, such as those amino acids located within the collagen helix. At room temperature, it exhibits as white crystal or light yellow crystalline powder and has a unique sweet taste which can ease the taste of acid and alkaline taste, masking the bitter taste of saccharin in food and enhance the sweetness. However, if an excessive amount of glycine is absorbed by body, they not only can’t be totally absorbed by the body, but will also break the balance of the body's absorption of amino acids as well as affect the absorption of other kinds of amino acids, leading to nutrient imbalances and negatively affected health. The milk drink with glycine being the major raw material can easily does harm to the normal growth and development of young people and children. It has a density of 1.1607, melting point of 232~236 °C (decomposition). It is soluble in water but insoluble in alcohol and ether. It is capable of acting together with hydrochloric acid to form hydrochloride salt. It is presented in the muscles of animals. IT can be produced from the reaction between monochloro acetate and ammonium hydroxide as well as from the hydrolysis of gelation with further refining. |
History of discovery |
Amino acids are organic acids containing an amino group and are the basic units of protein. They are generally colorless crystals with a relative high melting point (over 200 °C). It is soluble in water with amphiprotic ionization characteristics and can have sensitive colorimetric reaction with ninhydrin reagent. In 1820, glycine with the simplest structure was first discovered in a protein hydrolysis product. Until 1940, it has been found that there were about 20 kinds of amino acids in nature. They are necessary for the protein synthesis of both human and animal. They are mostly α-L-type amino acids. According to the different number of amino groups and carboxyl groups contained in amino acids, we classify amino acids into neutral amino acids (glycine, alanine, leucine, isoleucine, valine, cystine, cysteine, A methionine, threonine, serine, phenylalanine, tyrosine, tryptophan, proline and hydroxyproline, etc.) with the amino acid molecules containing only one amino group and a carboxyl group; acidic amino acid (glutamate, aspartate) which contains two carboxyl and one amino group; alkaline amino acids (lysine, arginine) which molecularly contains one carboxyl group and two amino groups; Histidine contains a nitrogen ring which exhibits weakly alkaline and thus also belonging to alkaline amino acids. Amino acids can be obtained both from protein hydrolysis and from chemical synthesis. Since the 1960s, industrial production mainly applied microbial fermentation, such as monosodium glutamate factory has been widely applied fermentation method for production of glutamate. In recent years, people has also applied petroleum hydrocarbons and other chemical products as raw materials of fermentation for production of amino acids. The above information is edited by the Chemicalbook of Dai Xiongfeng. |
Content Analysis | Accurately weigh 175 mg of sample which has undergone drying for 2 h at 105 °C and place it in a 250m1 flask, add 50 mL of glacial acetic acid for dissolving; add 2 drops of crystal violet test solution (TS-74); titrate with 0.1ml/L perchloric acid to blue-green endpoint. At the same time carry out a blank test, and make the necessary corrections. Each mL of 0.1mol/L perchloric acid is equivalent to glycine (C2H5NO2) 7.507mg. |
Biosynthesis of glycine production |
In the late 1980s, Japan's Mitsubishi Corporation added the screened aerobic Agrobacterium, Brevibacterium, Corynebacterium genus to the medium containing carbon, nitrogen and inorganic nutrient solution for cultivation, and then applied this class of bacteria for converting ethanolamine to glycine in 25~45 °C and pH value from 4 to 9 and further applied concentration, neutralization ion exchange treatment to get the glycine product. After entering the 1990s, there had been new progress on the production technology of glycine in foreign countries. The Nitto Chemical Industry Co (Japan) add cultured pseudomonas genus, casein bacteria genus, and alcaligenes genus and other species in 0.5% (mass fraction, dry weight) to the glycine amine-containing matrix for reaction of 45 h under 30 °C and pH value of 7.9 to 8.1 with almost all glycine amine being hydrolyzed into glycine with the conversion rate of 99%. Although biological methods are still in the research stage, however, owing to its high selectivity, non-pollution property, it will be a synthetic route with highly development potential. |
Uses |
|
Chemical Properties | White crystalline powder |
Uses | Non-essential amino acid for human development. An inhibitory neurotransmitter in spinal cord, allosteric regulator of NMDA receptors. |
Uses | Glycine is a non-essential amino acid for human development. Glycine is an inhibitory neurotransmitter in spinal cord, allosteric regulator of NMDA receptors. |
Definition | ChEBI: The simplest (and the only achiral) proteinogenic amino acid, with a hydrogen atom as its side chain. |