フッ化ウラン

フッ化ウラン 化学構造式
7783-81-5
CAS番号.
7783-81-5
化学名:
フッ化ウラン
别名:
六ふっ化ウラン;ウラン(VI)ヘキサフルオリド;六ふっ化ウラニウム;ヘキサフルオロウラン(VI);ふっ化ウラン(VI);フッ化ウラン(VI)(低活性);フッ化ウラン(VI)(分裂性);ふっ化ウラン;ふっ化ウラン;ヘキサフルオロウラン
英語名:
Uranium hexafluoride
英語别名:
[Uf6];Chebi:30235;Hexafluorouranium;Hexafluorouran(VI);Hexafluoridouranium;Uranium(VI) fluoride;Uran(VI)hexafluoride;Uranium hexafluoride;Uranium(6+) fluoride;URANIUM(VI)FLUORIDE(FISSILE)
CBNumber:
CB4852261
化学式:
F6U
分子量:
352.0193292
MOL File:
7783-81-5.mol

フッ化ウラン 物理性質

融点 :
64.8°
沸点 :
56.5°C (estimate)
比重(密度) :
d420.7 5.09; d70 (liq) 3.595
溶解性:
reacts with H2O; soluble in ctc, chloroform
外見 :
白い単斜晶系固体
色:
white monoclinic solid
水溶解度 :
可溶性液体 Cl2、Br2; ニトロベンゼンを含む暗赤色発煙溶液; 可溶性 CCl4、CH3Cl[MER06]
EPAの化学物質情報:
Uranium fluoride (UF6), (OC-6-11)- (7783-81-5)

安全性情報

RIDADR  2978
国連危険物分類  7
容器等級  II
有毒物質データの 7783-81-5(Hazardous Substances Data)

フッ化ウラン 価格

メーカー 製品番号 製品説明 CAS番号 包装 価格 更新時間 購入

フッ化ウラン 化学特性,用途語,生産方法

解説

フッ化ウラン(Ⅵ):UF6(352.0).六フッ化ウランともいう.フッ化ウラン(Ⅳ),酸化ウラン(Ⅳ),ウラン金属などとフッ素とを反応させると得られる.工業的にはUF4にフッ素を反応させる.無色の斜方晶系結晶.三重点は64.01 ℃(1517 hPa).常温では固相-気相平衡状態にあり,18 ℃ における蒸気圧は約130 hPa.たやすく揮発させることのできる唯一のウラン化合物で,ウラン同位体の分離に利用される.容易に加水分解して,フッ化ウラニルとフッ化水素を生じる.水素と常温で反応し,フッ化ウラン(Ⅳ)とフッ化水素を生成し,またリン,ヒ素,炭素なども還元剤として作用し,フッ化ウラン(Ⅳ)を生成する.水銀,ナトリウムなどの金属と常温で反応する.通常の有機溶媒と反応する.

説明

Uranium hexafluoride has a molecular formula of UF6. It is a colorless, volatile crystal that sublimes and reacts vigorously with water. It is highly corrosive and is a radiation risk. The four-digit UN identification number for fissile material containing more than 1% of uranium 235 is 2977; for lower specific activity, the number is 2978. Uranium hexafluoride is used in a gaseous diffusion process for separating isotopes of uranium.

化学的特性

Colorless, volatile crystals. Sublimes, triple point 64.0C (1134mmHg). Soluble in liquid bromine, chlorine, carbon tetrachloride, sym-tetrachloroethane, and fluorocarbons. Reacts vigorously with water, alcohol, ether, and most metals. Vapor behaves as nearly perfect gas.

物理的性質

White monoclinic crystals; density 5.09 g/cm3; melts at 64°C (triple point); sublimes at 56.6°C; critical temperature 232.65°C; critical pressure 46 atm; critical volume 250 cm3/mol; reacts with water forming UO2F2 and HF; soluble in chloroform, carbon tetrachloride and fluorocarbon solvents; soluble in liquid chlorine and bromine; dissolves in nitrobenzene to form a dark red solution that fumes in air.

使用

Uranium hexafluoride is used in uranium processing because its unique properties make it very convenient. It can conveniently be used as a gas for processing, as a liquid for filling or emptying containers or equipment, and as a solid for storage, all at temperatures and pressures commonly used in industrial processes.

定義

A crystalline volatile compound, used in separating uranium isotopes by differences in the rates of gas diffusion.

製造方法

There are many ways of making UF6. Although reaction of uranium and fluorine was first noted by Henri Moissan, first isolator of fluorine, c.1900, UF6 was originally reported by Ruff (pioneer of syntheses of many metal fluorides) and Heinzelmann in 1911. They made it by fluorination of uranium, and also by fluorination of UC2; fluorine needs to be heated to react with uranium, unless it is finely divided.
U (s) + 3 F2 (g)---> UF6 (g)
UC2 (s) + 7 F2 (g) ---> UF6 (g) + 2 CF4 (g) (at 350°C)
An unusual reaction which does not use fluorine (but which has not been employed commercially) is:-
2 UF4 (g) + O2 (g)---> UF6 (g) + UO2F2 (g)
The main process used industrially employs fluorination of UF4 at around 500°C. It is a very exothermic process; temperatures can reach 1100°C in reactors with capacities of up to 380 kg per hour.
UF4 (g) + F2 (g)---> UF6 (g)

一般的な説明

A colorless volatile radioactive crystalline solid. Highly toxic and corrosive. Radioactive. Emits high energy rays which may be harmful and are detectable only by special instruments. Chemically irritates skin, eyes and mucous membranes. Used to make fuel for nuclear power plants.

空気と水の反応

Reacts vigorously with water to form uranyl fluoride (UO2F2) and corrosive hydrogen fluoride (hydrofluoric acid).

反応プロフィール

URANIUM HEXAFLUORIDE in which the uranium has been depleted of the isotope U-235. Naturally occurring uranium contains 0.7% U-235 and 99.3% U-238 (lower radioactivity). Thus, a depleted uranium material with some U-235 removed by the enrichment process is less radioactive. Emits fumes of highly toxic metallic uranium and uranium fluorides when heated to decomposition [Lewis, 3rd ed., 1993, p. 1301]. Reacts vigorously with aromatic hydrocarbons (benzene, toluene, xylenes), undergoes a violent reaction with water or alcohols (methanol, ethanol) [Bretherick, 5th ed., 1995, p. 1439]. Reacts with most metals.

危険性

Uranium hexafluoride is a corrosive substance and also presents radiation hazard.

健康ハザード

Radiation presents minimal risk to transport workers, emergency response personnel and the public during transportation accidents. Packaging durability increases as potential radiation and criticality hazards of the content increase. Chemical hazard greatly exceeds radiation hazard. Substance reacts with water and water vapor in air to form toxic and corrosive hydrogen fluoride gas and an extremely irritating and corrosive, white-colored, water-soluble residue. If inhaled, may be fatal. Direct contact causes burns to skin, eyes, and respiratory tract. Low-level radioactive material; very low radiation hazard to people. Runoff from control of cargo fire may cause low-level pollution.

火災危険

Substance does not burn. The material may react violently with fuels. Containers in protective overpacks (horizontal cylindrical shape with short legs for tie-downs), are identified with "AF", "B(U)F" or "H(U)" on shipping papers or by markings on the overpacks. They are designed and evaluated to withstand severe conditions including total engulfment in flames at temperatures of 800°C (1475°F) for a period of 30 minutes. Bare filled cylinders, identified with UN2978 as part of the marking (may also be marked H(U) or H(M)), may rupture in heat of engulfing fire; bare empty (except for residue) cylinders will not rupture in fires. Radioactivity does not change flammability or other properties of materials.

安全性プロファイル

Radioactive poison. A corrosive irritant to skin, eyes, and mucous membranes. Violent reaction with hydroxy compounds (e.g., ethanol, water). Vigorous reaction with aromatic hydrocarbons (e.g., benzene, toluene, xylene). When heated to decomposition it emits toxic fumes of F-. See also FLUORIDES and URANIUM.

純化方法

Purify uranium hexafluoride by fractional distillation to remove HF. Also purify it by low-temperature trap-to-trap distillation over pre-dried NaF [Anderson & Winfield J Chem Soc, Dalton Trans 337 1986].

フッ化ウラン 上流と下流の製品情報

原材料

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フッ化ウラン 生産企業

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7783-81-5(フッ化ウラン)キーワード:


  • 7783-81-5
  • Uranium hexafluoride
  • Uranium hexafluoride: (Uranium fluoride)
  • uranium hexafluoride, fissile
  • Hexafluorouran(VI)
  • Uran(VI)hexafluoride
  • Uranium(VI) fluoride
  • URANIUM(VI)FLUORIDE(LOWSPECIFICACTIVITY)
  • URANIUM(VI)FLUORIDE(FISSILE)
  • [Uf6]
  • Chebi:30235
  • Hexafluoridouranium
  • Hexafluorouranium
  • Uranium(6+) fluoride
  • 六ふっ化ウラン
  • ウラン(VI)ヘキサフルオリド
  • 六ふっ化ウラニウム
  • ヘキサフルオロウラン(VI)
  • ふっ化ウラン(VI)
  • フッ化ウラン(VI)(低活性)
  • フッ化ウラン(VI)(分裂性)
  • ふっ化ウラン
  • ふっ化ウラン
  • ヘキサフルオロウラン
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