酸化ほう素(1303-86-2)

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酸化ほう素 製品概要
化学名:酸化ほう素
英語化学名:Boron oxide
别名:boricoxide(b2o3);Boron oxide (B2O3);BORON OXIDE;BORON (III) TRI-OXIDE;BORIC ACID-ANHYDRIDE;BORIC ACID, ANHYDROUS;DI-BORON TRIOXIDE;boronoxide(b2o3)
CAS番号:1303-86-2
分子式:B2O3
分子量:69.62
EINECS:215-125-8
カテゴリ情報:Inorganics;Industrial/Fine Chemicals;metal oxide;Fertilizer
Mol File:1303-86-2.mol
酸化ほう素
酸化ほう素 物理性質
融点 450 °C(lit.)
沸点 1860 °C
比重(密度) 2.46 g/mL at 25 °C(lit.)
蒸気密度>1 (vs air)
蒸気圧1Pa
闪点 1860°C
貯蔵温度 Inert atmosphere,Room Temperature
溶解性36g/l
外見 pellets
比重2.46 +/- 0.01
White
臭い (Odor)Odorless
PH4 (10g/l, H2O, 25℃)
水溶解度 36 g/L (25 ºC)
Sensitive Hygroscopic
Merck 14,1337
暴露限界値ACGIH: TWA 10 mg/m3
OSHA: TWA 15 mg/m3
NIOSH: IDLH 2000 mg/m3; TWA 10 mg/m3
安定性:Stable. Moisture sensitive. Incompatible with water.
InChIKeyJKWMSGQKBLHBQQ-UHFFFAOYSA-N
CAS データベース1303-86-2(CAS DataBase Reference)
NISTの化学物質情報Diboron trioxide(1303-86-2)
EPAの化学物質情報Boric oxide (1303-86-2)
安全性情報
主な危険性 Xi,T
Rフレーズ 36/37/38-61-60
Sフレーズ 26-37/39-45-53
WGK Germany 1
RTECS 番号ED7900000
3-10
TSCA Yes
HSコード 28100010
有毒物質データの1303-86-2(Hazardous Substances Data)
毒性LD50 orally in Rabbit: 3150 mg/kg
IDLA2,000 mg/m3
MSDS Information
ProviderLanguage
Boron oxide English
SigmaAldrich English
ACROS English
ALFA English
酸化ほう素 Usage And Synthesis
外観白色〜褐色, 結晶性粉末〜粉末
溶解性水に可溶 (2.8g/100ml, 20℃), エタノールに可溶。
解説

酸化ホウ素(Ⅲ):B2O3(69.62).無水ホウ酸,三酸化二ホウ素ともいう.オルトホウ酸を赤熱すると無色のガラス状のものが得られる.密度1.84 g cm-3.融点577 ℃,沸点1500 ℃ 以上.水に溶けてメタホウ酸を経てオルトホウ酸を生じる.両性酸化物で,硫酸,リン酸に溶けてB(HSO4)3,BPO4を生じるが,加水分解するとB2O3を沈殿する.フッ素とは常温で反応してBF3と O2 とを生じるが,ほかのハロゲンとは反応しない.アルカリ金属,マグネシウム,アルミニウムなどで還元される.ギ酸ナトリウムと加熱しても,ホウ素に還元される.炭素では赤熱しても還元されない.耐熱ガラス,光学ガラス,窯業材料,顔料,電子セラミックスなどの原料として用いられる.

用途ほう素化合物及びガラス加工品原料
用途ガラス、ガラスファイバ、フリット、セラミック、難燃剤、触媒、産業用オイル、殺生物剤、殺虫剤
用途発光ダイオード素材?ホウ素化合物原料、ケイ素塩化学分析試薬
用途吹管分析、ガラス及びセラミック等の原料、無機合成原料、触媒。
説明Boron oxide is a noncombustible, colorless,semitransparent lumps or hard, white, odorless crystals,with slightly bitter taste. Molecular weight=69.64; Boilingpoint=about 1860℃; Freezing/Melting point=about450℃. Hazard Identification (based on NFPA-704 MRating System): Health 2, Flammability 0, Reactivity 0.Moderately soluble in water; solubility=(moderate) 3%;slow reaction.
化学的特性Boron oxide is a noncombustible, colorless, semitransparent lumps or hard, white, odorless crystals, with slightly bitter taste.
Boron oxide
化学的特性white powder or glassy flakes
物理的性質Colorless glassy solid or vitreous crystal; hexagonal crystal system; slightly bitter taste; hygroscopic; density 2.55 g/cm3; melts at 450°C; vaporizes at 1,500°C; slightly soluble in cold water (3.3%), soluble in alcohol and boiling water (20%).
使用In preparation of fluxes; component of enamels and glass; catalyst in organic reaction
使用A saturated solution of H3BO3 contains about 2% of the compound at 0 C, increasing to about 39% at 100 C. The compound also is soluble in alcohol. In preparations, solutions of boric acid are nonirritating and slightly astringent with antiseptic properties. Although no longer used as a preservative for meats, boric acid finds extensive use in mouthwashes, nasal sprays, and eye-hygiene formulations. Boric acid (sometimes with borax) is used as a fire-retardant. A commercial preparation of this type (Minalith) consists of diammonium phosphate, ammonium sulfate, sodium tetraborate, and boric acid. The tanning industry uses boric acid in the deliming of skins where calcium borates, soluble in H2O, are formed. As sold commercially, boric acid is B3O3·3H2O, prepared by adding HCl or H2SO4 to a solution of borax.
使用Boron oxide was used as the intermediate glass layer at a bonding temperature of 450°C. In preparation of fluxes; component of enamels and glass; catalyst in organic reaction.
In metallurgy; in analysis of silicates to determine SiO2 and alkalies; in blowpipe analysis.
製造方法Boric oxide is produced by treating borax with sulfuric acid in a fusion furnace. At temperatures above 750°C, the molten boric acid layer separates out from sodium sulfate. It then is decanted, cooled, and obtained in 96-97% purity. Boric acid above 99% purity may be obtained by fusing granular material.
Boric oxide may be prepared by heating boric acid.
2B(OH)3 → B2O3 + 3H2O
定義ChEBI: Diboron trioxide is a boron oxide with formula B2O3.
調製方法Boric oxide is produced by thermal fusion of boric acid, forming a clear transparent glass-like solid that is subsequently ground into white vitreous granules. It is used principally in the manufacture of glass and vitreous products.
一般的な説明Colorless, semi-transparent glassy lumps or hard white odorless crystals. Mp 450°C; bp: 1860°C. Density: 2.46 g cm-3. Moderately soluble in water. Used as an insecticide; as the starting material for the synthesis of other boron compounds; as a fluxing agent in enamels and glasses; and in mixture with 2-6% boron nitride, as a bonding agent in the hot isostatic pressing of boron nitride ceramics.
反応プロフィールBoron oxide is non-combustible. Of generally low chemical reactivity. Reacts exothermically but slowly with water to form boric acid, a weak acid. Reacts exothermically with strong bases. May react with strong reducing agents such as metal hydrides, metal alkyls to generate flammable or explosive gases. May react violently on contact with bromine pentafluoride. Corrosive to metals in the presence of air.
危険性Eye and upper respiratory tract irritant.
健康ハザードBoron oxide is an eye and respiratory irritant. In 113 workers exposed to boron oxide and boric acid dusts, there were statistically significant increases in symptoms of eye irrita- tion; dryness of the mouth, nose, and throat; sore throat; and productive cough compared with controls. The mean exposure level was 4.1mg/m3 , with a range of 1.2–8.5mg/m3 . Exposures may occasionally have exceeded 10 mg/m3 . Because of mixed exposures, the study does not indicate whether boron oxide or boric acid dust is more important in causing symp- toms, nor does it indicate the minimum duration of exposure necessary to produce symptoms.
Excessive absorption of boron oxide may lead to cardiovascular collapse, alterations in temperature regulation, and coma.
Biochem/physiol ActionsBoric anhydride is an oxide of boron that shows antimicrobial property along with lower aminoalcohols.
職業ばく露Boron oxide is used in glass manufacture and the production of other boron compounds. It is used in fluxes, enamels, drying agents, and as a catalyst.
応急処置If this chemical gets into the eyes, remove anycontact lenses at once and irrigate immediately for at least15 min, occasionally lifting upper and lower lids. Seekmedical attention immediately. If this chemical contactsthe skin, remove contaminated clothing and wash immediately with soap and water. Seek medical attention immediately.If this chemical has been inhaled, remove fromexposure, begin rescue breathing (using universal precautions, including resuscitation mask) if breathing hasstopped and CPR if heart action has stopped. Transferpromptly to a medical facility. When this chemical hasbeen swallowed, get medical attention. Give large quantities of water and induce vomiting. Do not make an unconscious person vomit.
貯蔵Color Code—Green: General storage may be used.Store in tightly closed containers in a dry, well-ventilatedarea away from incompatible materials listed above andwater.
輸送方法UN3077 Environmentally hazardous substances, solid, n.o.s., Hazard class: 9; Labels: 9—Miscellaneous hazardous material, Technical Name Required.
不和合性Incompatible with bromine pentafluoride, calcium oxide. Reacts slowly with water, forming boric acid. Reacts exothermically with alkaline material and strong bases. May react with strong reducing agents such as metal hydrides, metal alkyls to generate flammable or explosive gases. May react violently on contact with bromine pentafluoride. Corrosive to metals in the presence of air.
Tags:1303-86-2