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Home > Pharmaceutical Intermediates > Blood Glucose Regulators > Tetrahydrofuran for Sale > Tetrahydrofuran | Pharmaceutical Grade | 99.99% Purity | 10mg 20mg 30mg Vials |CAS 109-99-9
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Tetrahydrofuran | Pharmaceutical Grade | 99.99% Purity | 10mg 20mg 30mg Vials |CAS  109-99-9 buy - image1
Tetrahydrofuran | Pharmaceutical Grade | 99.99% Purity | 10mg 20mg 30mg Vials |CAS  109-99-9 buy - image2
Tetrahydrofuran | Pharmaceutical Grade | 99.99% Purity | 10mg 20mg 30mg Vials |CAS  109-99-9 buy - image3
Tetrahydrofuran | Pharmaceutical Grade | 99.99% Purity | 10mg 20mg 30mg Vials |CAS  109-99-9 buy - image4
Tetrahydrofuran | Pharmaceutical Grade | 99.99% Purity | 10mg 20mg 30mg Vials |CAS  109-99-9 buy - image5
Tetrahydrofuran | Pharmaceutical Grade | 99.99% Purity | 10mg 20mg 30mg Vials |CAS  109-99-9 buy - image6

Tetrahydrofuran | Pharmaceutical Grade | 99.99% Purity | 10mg 20mg 30mg Vials |CAS 109-99-9

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CAS No.:

109-99-9

Grade:

Pharmaceutical Grade

Content:

99.99%

Port:

Shanghai

Brand:

Orient

Packaging:

Vial/Bottle/Bag/Carton

Price valid (until):

2026-07-25

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Trader
Location:
China
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Main Products:

pharmaceutical intermediates,peptides,electronic chemicals

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  • Description

    Tetrahydrofuran Basic information
    Product Name:
    Tetrahydrofuran
    Synonyms:
    TETRAMETHYLENE ETHER GLYCOL 2000 POLYMER;Tetrahydrofuran ,99.8% [Tetrahydrofuran,ACS/HPLC Certified];Tetrahydrofuran, 99.6%, stabilized with BHT, for analysis ACS;Tetrahydrofuran, 99+%, stabilized with BHT, extra pure;Tetrahydrofuran, 99.9%, anhydrous, stabilized, extra pure;Tetrahydrofuran, 99.5+%, for spectroscopy;Tetrahydrofuran, 99.8%, unstabilized, for HPLC;Tetrahydrofuran, 99.85%, water <50 ppm, stabilized, extra dry
    CAS:
    109-99-9
    MF:
    C4H8O
    MW:
    72.11
    EINECS:
    203-726-8
    Product Categories:
    Pharmaceutical intermediates;Pharmaceutical intermediate and medicine grade;Chemistry;Biotech;Biotech Solvents;Products;Returnable Containers;Sure/Seal Bottles;PVC Coated Bottles;Alternative Energy;Anhydrous;Electrolytes;Materials Science;Analytical Reagents;Anhydrous Solvents;Synthetic Organic Chemistry;Solvent Bottles;Solvent by Application;Solvent by Type;Solvent Packaging Options;Solvents;ReagentPlus;ReagentPlus Solvent Grade Products;NMR;Analytical/Chromatography;CHROMASOLV Plus;Chromatography Reagents &;HPLC &;HPLC Plus Grade Solvents (CHROMASOLV);HPLC/UHPLC Solvents (CHROMASOLV);Tetrahydrofuran (THF);ACS and Reagent Grade Solvents;ACS Grade;ACS Grade Solvents;Amber Glass Bottles;Carbon Steel Cans with NPT Threads;Closed Head Drums;Drums Product Line;Semi-Bulk Solvents;Spectrophotometric Solvents;Spectroscopy Solvents (IR;UV/Vis);Histological;Core Bioreagents;Histological Solvents;Life Science Reagents for Immunohistochemistry (IHC);Organic Solvents;Research Essentials;NOWPak Products;UHPLC Solvents (CHROMASOLV);Analytical Reagents for General Use;Puriss p.a.;T-Z;Pyridines ,Halogenated Heterocycles;research chemical;109-99-9;bc0001;TCI;1;bc0001
    Mol File:
    109-99-9.mol

    Tetrahydrofuran Chemical Properties
    Melting point 
    -108°C
    Boiling point 
    66 °C
    density 
    0.887 g/mL at 20 °C
    vapor density 
    2.5 (vs air)
    vapor pressure 
    <0.01 mm Hg ( 25 °C)
    refractive index 
    n20/D 1.465
    Fp 
    >230 °F
    storage temp. 
    Store at +5°C to +30°C.
    solubility 
    water: soluble
    form 
    Liquid
    Specific Gravity
    0.89
    color 
    <10(APHA)
    Odor
    Ethereal, detectable at 2 to 50 ppm
    PH
    7-8 (200g/l, H2O, 20℃)
    PH Range
    7
    Relative polarity
    0.207
    explosive limit
    1.5-12.4%(V)
    Water Solubility 
    miscible
    Thermal Conductivity
    0.145 W/(m·K) at 25 ℃
    FreezingPoint 
    -108℃
    λmax
    λ: 245 nm Amax: ≤0.26
    λ: 275 nm Amax: ≤0.046
    λ: 315 μm Amax: ≤0.0044
    Sensitive 
    Air Sensitive & Hygroscopic
    Merck 
    14,9211
    BRN 
    102391
    Henry's Law Constant
    1.54 (static headspace-GC, Welke et al., 1998)
    Exposure limits
    ACGIH:TLV-TWA 50 ppm (147 mg/m3); TLV-STEL 100 ppm (295 mg/m3)
    OSHA:PEL-TWA 200 ppm (590 mg/m3)
    NIOSH:REL-TWA 200 ppm; REL-STEL 250 ppm
    Dielectric constant
    11.6(-70℃)
    Stability:
    Stable. Incompatible with halogens, strong oxidizing agents, strong reducing agents, strong bases, oxygen. May generate explosive peroxides in storage if in contact with air. Highly flammable. Store at room temperature under nitrogen. Hazardous polymerisation may occur. Light sensitive. May contain 2,6-di-tertbutyl-4-methylphenol (BHT) as a stabilizer.
    InChI
    1S/C4H8O/c1-2-4-5-3-1/h1-4H2
    InChIKey
    WYURNTSHIVDZCO-UHFFFAOYSA-N
    SMILES
    C1CCOC1
    LogP
    0.45 at 25℃
    Surface tension
    27.31mN/m at 293.15K
    CAS DataBase Reference
    109-99-9(CAS DataBase Reference)
    NIST Chemistry Reference
    Furan, tetrahydro-(109-99-9)
    IARC
    2B (Vol. 119) 2019
    EPA Substance Registry System
    Tetrahydrofuran (109-99-9)
    Absorption
    ≤0.0044 at 315nm
    ≤0.005 at 350nm
    ≤0.005 at 400nm
    ≤0.02 at 300nm
    ≤0.046 at 275nm
    ≤0.18 at 250nm
    ≤0.26 at 245nm
    ≤1.0 at 212nm
    Safety Information
    Hazard Codes 
    Xi,F,Xn
    Risk Statements 
    36/37/38-36/37-19-11-40
    Safety Statements 
    26-36-33-29-16-46-37-13
    RIDADR 
    UN 2056
    OEB
    A
    OEL
    TWA: 200 ppm (590 mg/m3), STEL: 250 ppm (735 mg/m3)
    WGK Germany 
    1
    RTECS 
    MD0916000

    3-10-23
    Autoignition Temperature
    610 °F
    TSCA 
    TSCA listed
    HazardClass 
    3
    PackingGroup 
    II
    HS Code 
    29321100
    Storage Class
    3 - Flammable liquids
    Hazard Classifications
    Acute Tox. 4 Oral
    Carc. 2
    Eye Irrit. 2
    Flam. Liq. 2
    STOT SE 3
    Hazardous Substances Data
    109-99-9(Hazardous Substances Data)
    Toxicity
    LD50 oral (rat) 2880 mg/kg
    LC50 inhal (rat) 21,000 ppm (3 h)
    PEL (OSHA) 200 ppm (590 mg/m3)
    TLV-TWA (ACGIH) 200 ppm (590 mg/m3)
    STEL (ACGIH) 250 ppm (737 mg/m3)
    IDLH
    2,000 ppm [10% LEL]

    MSDS Information
    Provider
    Language
    1,4-Epoxybutane
    English
    SigmaAldrich
    English
    Tetrahydrofuran Usage And Synthesis
    Description
    Tetrahydrofuran (THF) is a colorless, volatile liquid with an ethereal or acetonelike smell and is miscible in water and most organic solvents.It is highly flammable and may thermally decompose to carbon monoxide and carbon dioxide. Prolonged storage in contact with air and in the absence of an antioxidant may cause THF to decompose into explosive peroxides.

    Tetrahydrofuran is used in the manufacture of polymers as well as agricultural, pharmaceutical, and commodity chemicals. Manufacturing activities commonly occur in closed systems or under engineering controls that limit worker exposure and release to the environment. THF is also used as a solvent (e.g., pipe fitting) that may result in more significant exposures when used in confined spaces without sufficient ventilation. Although THF is naturally present in coffee aroma, floured chickpeas, and cooked chicken, natural exposures are not anticipated to pose a significant hazard.
    Chemical Properties
    Tetrahydrofuran (THF) is an industrial solvent widely recognized for its unique combination of useful properties. DuPont THF is better than 99.9% pure with a small (0.025-0.040 wt % ) amount of butylated hydroxytoluene (BHT, 4-methyl-2,6-di-tertbutyl phenol) added as an antioxidant. Tetrahydrofuran is a cycloaliphatic ether and is not "photochemically reactive" as defined in Section k of Los Angeles County's Rule 66 (equivalent to Rule 442 of the Southern California Air Pollution Control District). THF has an ethereal odor. The Odor Threshold is listed @ 3.8 (3M), 20-50ppm, and 31ppm. It is also a common laboratory reagent and an intermediate in chemical syntheses of consumer and industrial products such as nutritionals, pharmaceuticals, and insecticides (HSDB, 2011).
    Physical properties
    Tetrahydrofuran is a clear, colourless liquid with a strong ether-like odour. Odor threshold concentration is 2 ppm (quoted, Amoore and Hautala, 1983). It is highly flammable. Contact of tetrahydrofuran with strong oxidising agents may cause explosions. Tetrahydrofuran may polymerise in the presence of cationic initiators. Contact with lithium–aluminium hydride, with other lithium–aluminium alloys, or with sodium or potassium hydroxide can be hazardous.
    Uses
    Butylene oxide is used as a fumigant and inadmixture with other compounds. It is usedto stabilize fuel with respect to color andsludge formation.
    Uses
    Tetrahydrofuran is used as a solvent forresins, vinyls, and high polymers; as a Grignardreaction medium for organometallic,and metal hydride reactions; and in the synthesisof succinic acid and butyrolactone.
    Uses
    Solvent for high polymers, especially polyvinyl chloride. As reaction medium for Grignard and metal hydride reactions. In the synthesis of butyrolactone, succinic acid, 1,4-butanediol diacetate. Solvent in histological techniques. May be used under Federal Food, Drug & Cosmetic Act for fabrication of articles for packaging, transporting, or storing of foods if residual amount does not exceed 1.5% of the film: Fed. Regist. 27, 3919 (Apr. 25, 1962).
    Uses
    Tetrahydrofuran is used primarily (80%) to make polytetramethylene ether glycol, the base polymer used primarily in the manufacture of elastomeric fibers (e.g., spandex) as well as polyurethane and polyester elastomers (e.g., artificial leather, skateboard wheels). The remainder (20%) is used in solvent applications (e.g., pipe cements, adhesives, printing inks, and magnetic tape) and as a reaction solvent in chemical and pharmaceutical syntheses.
    Definition
    ChEBI: A cyclic ether that is butane in which one hydrogen from each methyl group is substituted by an oxygen.
    General Description
    A clear colorless liquid with an ethereal odor. Less dense than water.Flash point 6°F. Vapors are heavier than air.
    Air & Water Reactions
    Highly flammable. Oxidizes readily in air to form unstable peroxides that may explode spontaneously [Bretherick, 1979 p.151-154, 164]. Soluble in water.
    Reactivity Profile
    Tetrahydrofuran reacts violently with oxidizing agents leading to fires and explosions [Handling Chemicals Safely 1980. p. 891]. Subject to peroxidation in the air. Peroxides or their products react exothermically with lithium aluminum hydride [MCA Guide for Safety 1973]. Thus, use as a solvent for lithium aluminum hydride has led to fires. Using potassium hydroxide or sodium hydroxide to dry impure Tetrahydrofuran that contains peroxides has resulted in explosions. A violent explosion occurred during the preparation of sodium aluminum hydride from sodium and aluminum in a medium of Tetrahydrofuran [Chem. Eng. News 39(40):57. 1961]. THF forms explosive products with 2-aminophenol [Lewis 3227].
    Health Hazard
    The toxicity of tetrahydrofuran is of loworder in animals and humans. The targetorgans are primarily the respiratory systemand central nervous system. It is an irritantto the upper respiratory tract and eyes.At high concentrations it exhibits anestheticproperties similar to those of many loweraliphatic ethers. Exposure to concentrationsabove 25,000 ppm in air can cause anesthesiain humans. Other effects noted were strongrespiratory stimulation and fall in bloodpressure (ACGIH 1986). Kidney and liverinjuries occurred in experimental animalsexposed to 3000 ppm for 8 hours/day for20 days (Lehman and Flury 1943). Inhalationof high concentrations of vapors or ingestionof the liquid also causes nausea, vomiting,and severe headache. The acute oraltoxicity is low; the LD50 value in rats is in therange of 2800 mg/kg. The inhalation LC50value in rats is 21,000 ppm/3 h.
    Flammability and Explosibility
    THF is extremely flammable (NFPA rating = 3), and its vapor can travel a considerable distance to an ignition source and "flash back." A 5% solution of THF in water is flammable. THF vapor forms explosive mixtures with air at concentrations of 2 to 12% (by volume). Carbon dioxide or dry chemical extinguishers should be used for THF fires.
    THF can form shock- and heat-sensitive peroxides, which may explode on concentration by distillation or evaporation. Always test samples of THF for the presence of peroxides before distilling or allowing to evaporate. THF should never be distilled to dryness.
    Chemical Reactivity
    Reactivity with Water No reaction; Reactivity with Common Materials: No data; Stability During Transport: Stable; Neutralizing Agents for Acids and Caustics: Not pertinent; Polymerization: May occur when the product is in contact with strong acids and bases; Inhibitor of Polymerization: No data.
    Industrial uses
    Tetrahydrofuran (THF), the saturated derivative of furan, when used as a solvent for high molecular weight polyvinyl chloride (PVC), vinyl chloride copolymers, and polyvinylidene chloride copolymers at ambient temperatures yields solutions of high solids content. Blends of THF and methyl ethyl ketone are often used for increased solvency in certain polymer compositions. Applications for THF polymer solutions include PVC top coatings of automotive upholstery, audio tape coatings of polyurethane/metal oxides on polyester tape, polyurethane coatings for fabric finishes, water-vapor barrier film coatings of PVC, and polyvinylidene chloride copolymers onto cellophane film. Tetrahydrofuran is an excellent solvent for many inks used for printing on PVC film and on PVC plastic articles. Polyvinyl chloride pipe welding cements are made by dissolving the resin in THF solvent. Other adhesive applications include cements for leather, plastic sheeting, and for molded plastic assemblies. Other uses of THF are as a chemical intermediate and as a complexing solvent for various inorganic, organometallic, and organic compounds. These THF complexes are important as Grignard reagents, catalysts for organic reactions, and in stereo-specific polymerizations. Tetrahydrofuran is the solvent of choice in many pharmaceutical reactions and applications. The excellent solvency of THF makes this solvent ideal for solvent cleaning of polymer manufacturing and processing equipment.
    Safety Profile
    Moderately toxic by ingestion and intraperitoneal routes. Mildly toxic by inhalation. Human systemic effects by inhalation: general anesthesia. Mutation data reported. Irritant to eyes and mucous membranes. Narcotic in high concentrations. Reported as causing injury to liver and kidneys. Flammable liquid. A very dangerous fire hazard when exposed to heat, flames, oxidizers. Explosive in the form of vapor when exposed to heat or flame. In common with ethers, unstabilized tetrahydrofuran forms thermally explosive peroxides on exposure to air. Stored THF must always be tested for peroxide prior to distdlation. Peroxides can be removed by treatment with strong ferrous sulfate solution made slightly acidic with sodium bisulfate. Caustic alkalies deplete the inhibitor in THF and may subsequently cause an explosive reaction. Explosive reaction with KOH, NaAlH2, NaOH, sodium tetrahydroaluminate. Reacts with 2-aminophenol + potassium dioxide to form an explosive product. Reacts with lithium tetrahydroaluminate or borane to form explosive hydrogen gas. Violent reaction with metal halides (e.g., hafnium tetrachloride, titanium tetrachloride, zirconium tetrachloride). Vigorous reaction with bromine, calcium hydride + heat. Can react with oxidizing materials. To fight fire, use foam, dry chemical, COa. When heated to decomposition it emits acrid smoke and irritating fumes. See also 2TETRAHYDROFURYL HYDROPEROXIDE
    Potential Exposure
    The primary use of tetrahydrofuran is as a solvent to dissolve synthetic resins, particularly polyvinyl chloride and vinylidene chloride copolymers. It is also used to cast polyvinyl chloride films, to coat substrates with vinyl and vinylidene chloride; and to solubilize adhesives based on or containing polyvinyl chloride resins. A second large market for THF is as an electrolytic solvent in the Grignard reaction-based production of tetramethyl lead. THF is used as an intermediate in the production of polytetramethylene glycol.
    Carcinogenicity
    THF showed little evidence of mutagenic activity in a variety of in vitro and in vivo assays.
    Source
    Leaches from PVC cement used to join tubing (Wang and Bricker, 1979)
    storage
    THF should be used only in areas free of ignition sources, and quantities greater than 1 liter should be stored in tightly sealed metal containers in areas separate from oxidizers. Containers of THF should be dated when opened and tested periodically for the presence of peroxides.
    Shipping
    UN2056 Tetrahydrofuran, Hazard Class: 3; Labels: 3-Flammable liquid.
    Purification Methods
    It is obtained commercially by catalytic hydrogenation of furan from pentosan-containing agricultural residues. It was purified by refluxing with, and distilling from LiAlH4 which removes water, peroxides, inhibitors and other impurities [Jaeger et al. J Am Chem Soc 101 717 1979]. Peroxides can also be removed by passage through a column of activated alumina, or by treatment with aqueous ferrous sulfate and sodium bisulfate, followed by solid KOH. In both cases, the solvent is then dried and fractionally distilled from sodium. Lithium wire or vigorously stirred molten potassium have also been used for this purpose. CaH2 has also been used as a drying agent. Several methods are available for obtaining the solvent almost anhydrous. Ware [J Am Chem Soc 83 1296 1961] dried it vigorously with sodium-potassium alloy until a characteristic blue colour was evident in the solvent at Dry-ice/cellosolve temperatures. The solvent is kept in contact with the alloy until distilled for use. Worsfold and Bywater [J Chem Soc 5234 1960], after refluxing and distilling from P2O5 and KOH, in turn, refluxed the solvent with sodium-potassium alloy and fluorenone until the green colour of the disodium salt of fluorenone was well established. [Alternatively, instead of fluorenone, benzophenone, which forms a blue ketyl, can be used.] The tetrahydrofuran was then fractionally distilled, degassed and stored above CaH2. p-Cresol or hydroquinone inhibit peroxide formation. The method described by Coetzee and Chang [Pure Appl Chem 57 633 1985] for 1,4-dioxane also applies here. Distillations should always be done in the presence of a reducing agent, e.g. FeSO4. [Beilstein 17 H 10, 17 I 5, 17 II 15, 17 III/IV 24, 17/1 V 27.] It irritates the skin, eyes and mucous membranes, and the vapour should never be inhaled. It is HIGHLY FLAMMABLE, and the necessary precautions should be taken. Rapid purification: Purification as for diethyl ether.
    Toxicity evaluation
    The principal target organs in rodents receiving repeated exposures to THF are the central nervous system (CNS), kidney, and liver. The CNS effects caused by THF are thought to be mediated via the THF metabolites tetrahydro-2-furanone and 4-hydroxybutanoic acid. This is consistent with the CNS effects associated with these metabolites as well as the higher narcotic potency of THF in mice than in comparably exposed rats and the shorter half-life of THF in the presence of mouse versus rat hepatic microsomes. In contrast to the CNS effects, the male rat kidney tumors and female mouse liver tumors appear to be induced by the parent compound, not a metabolite. Lifetime exposures of rodents to tetrahydro-2-furanone, 4-hydroxybutanoic acid, and sodium succinate have not resulted in treatment-related carcinogenic effects, and a mechanistic study demonstrated that hepatocellular proliferation in female mice exposed to THF is actually enhanced by CYP450 inhibition, not decreased as one would predict if proliferation is mediated by a THF metabolite. The THF database has been reviewed against potential mode of action (MoA) candidates including direct DNA reactivity, cytotoxicity followed by regenerative cell proliferation, excessive accumulation of alpha 2u-globulin, exacerbation of rat chronic progressive nephropathy (CPN), and nuclear receptor (e.g., constitutive androstane receptor) activation leading to enzyme induction and enhanced cell proliferation. While the tumorigenic MoAs have not been identified, exacerbation of CPN (rat kidney) and nuclear receptor activation (mouse liver) are currently the more favored. BothMoAs are thought to involve nongenotoxic (i.e., threshold) events. CPN has no known counterpart in humans.
    Incompatibilities
    Forms thermally explosive peroxides in air on standing (in absence of inhibitors). Peroxides can be detonated by heating, friction, or impact. Reacts violently with strong oxidizers, strong bases and some metal halides. Attacks some forms of plastics, rubber and coatings.
    Toxics Screening Level
    The Initial Threshold Screening Level (ITSL) for tetrahydrofuran (THF) is 8000 μg/m3 with annual averaging time.
    Waste Disposal
    Consult with environmental regulatory agencies for guidance on acceptable disposal practices. Generators of waste containing this contaminant (≥100 kg/mo) must conform with EPA regulations governing storage, transportation, treatment, and waste disposal. Concentrated waste containing peroxides-perforation of a container of the waste from a safe distance followed by open burning.
    Tetrahydrofuran Preparation Products And Raw materials
    Raw materials
    Hydrogen-->Nickel-->Gamma Butyrolactone-->1,4-Butanediol-->Polychloroprene-->2-chloro-1,3-butadiene-->Metallic oxides-->PALLADIUM-CATALYSTS-->cis-1,4-Dichloro-2-butene-->IRISH MOSS
    Preparation Products
    N-(2-Aminoethyl)piperidine-->Cyclopropylacetic acid-->2,3-Difluorophenylboronic acid-->3-Cyanophenylboronic acid-->(4-AMINO-PYRIDIN-3-YL)-METHANOL-->BENZO[B]THIOPHENE-2-CARBOXALDEHYDE-->(S)-(-)-α,α-Diphenyl-2-pyrrolidinemethanol-->L-Tryptophanol-->2,3,4-Tribromothiophene-->2-(4-tert-Butylphenyl)ethanol-->3-tert-butyl-1H-1,2,4-triazole-5-thiol-->Erythromycin ethylsuccinate-->L(+)-Leucinol-->2-Chloroisonicotinaldehyde-->4-TERT-BUTYLBENZYL ALCOHOL-->Dioctyl(maleate)tin-->Chiral 2,2-Disubstituted thiaprolinol derivatives-->1,4-Butane sultone-->2,2'-DIPYRIDYLAMINE-->Benzyldimethylhexadecylammonium chloride-->4-Amino-5-bromo-2-chloropyrimidine-->SODIUM PHENOLATE TRIHYDRATE-->1-(2-NAPHTHYL)METHANAMINE-->Vinylferrocene-->(R)-TERT-LEUCINOL-->(1,5-DIMETHYL-1H-PYRAZOL-3-YL)METHANOL-->9-Anthracenemethanol-->7-Fluoroindole-->(S)-(-)-4-tert-Butyloxazolidine-2,5-dione-->TERT-BUTYLMAGNESIUM CHLORIDE-->2,5-Dimethylpiperazine-->Allylmagnesium chloride-->Norethindrone-->Levonorgestrel-->4-Chlorobutylbenzoate-->Quinestrol-->Jiuma plate amino-acid surfactant-->1,4-Diiodobutane-->N-methylaminoethanol sodium phosphate-->Tetrahydrothiophene

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    Certificates

    Basic Info
    Product Name:

    Tetrahydrofuran

    Other Name:

    Furan,tetrahydro-;Tetrahydrofuran;Butane,1,4-epoxy-;Butane α,δ-oxide;Cyclotetramethylene oxide;Furanidine;Oxacyclopentane;Oxolane;Tetramethylene oxide;THF;NSC 57858;2,3,4,5-Tetrahydrofuran;77392-70-2

    CAS No.:

    109-99-9

    UN No.:

    2924

    Molecular Formula:

    C4H8O

    InChIKeys:

    InChIKey=WYURNTSHIVDZCO-UHFFFAOYSA-N

    Molecular Weight:

    72.1057

    Exact Mass:

    72.11

    EC Number:

    203-726-8

    Freezing Point:

    −108.5 °C

    HScode:

    2932110000

    Characteristics
    PSA:

    9.23

    XLogP3:

    0.7968

    Appearance:

    Colorless etheric transparent liquid

    Density:

    0.8892 g/cm3 @ Temp: 20 °C

    Melting Point:

    -108.3 °C

    Boiling Point:

    65 °C @ Press: 760 Torr

    Flash Point:

    −14 °C

    Refractive Index:

    n20/D 1.465

    Water Solubility:

    Easily miscible

    Storage Conditions:

    Treasury ventilation low temperature drying, and oxidants, acid and alkali separate storage

    Vapor Pressure:

    7.15E-05mmHg at 25°C

    Vapor Density:

    2.5 (vs air)

    Toxicity:

    LD50 oral (rat) 2880 mg/kg LC50 inhal (rat) 21,000 ppm (3 h) PEL (OSHA) 200 ppm (590 mg/m3) TLV-TWA (ACGIH) 200 ppm (590 mg/m3) STEL (ACGIH) 250 ppm (737 mg/m3)

    Flammability characteristics:

    Class IB Flammable Liquid: Fl.P. below 73°F and BP at or above 100°F.

    Explosive limit:

    vol% in air: 21.8

    Odor:

    Ether-like odor

    Taste:

    PUNGENT TASTE

    Hazard Identification

    Classification of the substance or mixture

    Flammable liquids, Category 2

    Eye irritation, Category 2

    Specific target organ toxicity – single exposure, Category 3

    Carcinogenicity, Category 2

    GHS label elements, including precautionary statements

    Pictogram(s)
    Signal word

    Danger

    Hazard statement(s)

    H225 Highly flammable liquid and vapour

    H319 Causes serious eye irritation

    H335 May cause respiratory irritation

    H351 Suspected of causing cancer

    Precautionary statement(s)
    Prevention

    P210 Keep away from heat, hot surfaces, sparks, open flames and other ignition sources. No smoking.

    P233 Keep container tightly closed.

    P240 Ground and bond container and receiving equipment.

    P241 Use explosion-proof [electrical/ventilating/lighting/...] equipment.

    P242 Use non-sparking tools.

    P243 Take action to prevent static discharges.

    P280 Wear protective gloves/protective clothing/eye protection/face protection/hearing protection/...

    P264 Wash ... thoroughly after handling.

    P261 Avoid breathing dust/fume/gas/mist/vapours/spray.

    P271 Use only outdoors or in a well-ventilated area.

    P203 Obtain, read and follow all safety instructions before use.

    Response

    P303+P361+P353 IF ON SKIN (or hair): Take off immediately all contaminated clothing. Rinse affected areas with water [or shower].

    P370+P378 In case of fire: Use ... to extinguish.

    P305+P351+P338 IF IN EYES: Rinse cautiously with water for several minutes. Remove contact lenses, if present and easy to do. Continue rinsing.

    P304+P340 IF INHALED: Remove person to fresh air and keep comfortable for breathing.

    P319 Get medical help if you feel unwell.

    P318 IF exposed or concerned, get medical advice.

    Storage

    P403+P235 Store in a well-ventilated place. Keep cool.

    P403+P233 Store in a well-ventilated place. Keep container tightly closed.

    P405 Store locked up.

    Disposal

    P501 Dispose of contents/container to an appropriate treatment and disposal facility in accordance with applicable laws and regulations, and product characteristics at time of disposal.

    Other hazards which do not result in classification

    no data available

    Handling and Storage

    Precautions for safe handling

    NO open flames, NO sparks and NO smoking. Closed system, ventilation, explosion-proof electrical equipment and lighting. Do NOT use compressed air for filling, discharging, or handling. Handling in a well ventilated place. Wear suitable protective clothing. Avoid contact with skin and eyes. Avoid formation of dust and aerosols. Use non-sparking tools. Prevent fire caused by electrostatic discharge steam.

    Conditions for safe storage, including any incompatibilities

    Fireproof. See Chemical Dangers. Store only if stabilized.

  • Seller Information
    Business Type:

    Trader

    Main Products:

    pharmaceutical intermediates,peptides,electronic chemicals

    Location:

    Room 102, 1st Floor, East Office Building, No. 45 Pengwan Road, Qianwan Bonded Port Area, Qingdao Zone, China (Shandong) Pilot Free Trade Zone

    Payment Terms:

    100% TT in advance

    Average lead Time:

    10

    Total Annual Revenue:

    $10 million-$25 million

    Total Employees:

    51-100

    Year of Establishment:

    2024

    A reliable supplier is like insurance.

    We are mainly specilized in supply of pharmaceutical intermediates, electronic chemicals,food additives, and other fine chemical products.
    Integrity is the foundation, quality is life. We would like to work together with you to build a greener and brighter future.

    Website: orientchem.cc
    Email: scarlett@orientchem.cc
    WhatsApp: +86 17753254221

  • Inquiry History
    62 Inquiries
    Country Product Purchase Quantity Date Posted
    Zimbabwe

    TETRAHYDROFURAN

    1 MT Mar 7, 2025
    India

    Tetrahydrofuran

    2000.00 MT Jul 21, 2023
    Italy

    Tetrahydrofuran

    100.00 KG Jun 8, 2025
    India

    Tetrahydrofuran

    25.00 MT Feb 23, 2024
    India

    Tetrahydrofuran

    20.00 MT Dec 18, 2023
    Saudi Arabia

    tetrahydrofuran

    5.00 MT Mar 28, 2025
    India

    TETRAHYDROFURAN

    2.00 20' Fcl Jan 21, 2025
    India

    Tetrahydrofuran

    50 TON Nov 13, 2024
    Egypt

    Tetrahydrofuran

    1 20' Fcl Nov 4, 2024
    United Arab Emirates

    Tetrahydrofuran

    2.00 20' Fcl Oct 18, 2024
    India

    Tetrahydrofuran

    10.00 MT Oct 8, 2024
    Thailand

    Tetrahydrofuran

    1.00 MT Sep 25, 2024
    Cameroon

    Tetrahydrofuran

    1 20' Fcl Jul 9, 2024
    India

    Tetrahydrofuran

    2 MT May 13, 2024
    India

    Polytetramethylene Ether Glycol 1000

    20.00 MT Mar 21, 2024
    India

    Tetrahydrofuran

    350.00 KG Jan 5, 2024
    India

    thf

    50 MT Sep 12, 2023
    India

    Tetrahydrofuran

    14.4 MT Jul 21, 2023
    South Korea

    THF(Tetrahydrofuran)

    500.00 KG Feb 6, 2026
    Philippines

    Tetrahydrofuran

    1 MT Jun 13, 2025
    Post an enquiry for this product
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