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УРАН

УРАН структура
7440-61-1
CAS №
7440-61-1
Химическое название:
УРАН
английское имя:
URANIUM
Синонимы:
U;uranium-238;Uran;Oxolinic Acid-d5;92U;Uranio;URANIUM;Ossian-d5;Oxoboi-d5;Pietil-d5
CBNumber:
CB4360038
Формула:
U
молекулярный вес:
238.03
MOL File:
7440-61-1.mol

УРАН атрибут

Температура плавления: 314-316°C (dec.)
Температура кипения: 4160.06°C (estimate)
плотность: 1.01 g/mL at 25 °C
температура хранения: Refrigerator
растворимость: Водная основа (немного)
форма: серебристо-белые орторомбические кристаллы
цвет: Бледно-коричневый
Стандарт первичной питьевой воды EPA: MCL:30μg/L,MCLG:zero
Рейтинг продуктов питания EWG: 6
FDA UNII: 4OC371KSTK
Система регистрации веществ EPA: Uranium (7440-61-1)
безопасность
  • Заявления о рисках и безопасности
  • код информации об опасности(GHS)
Коды опасности T+
Заявления о рисках 20-34-53-33-26/28
Заявления о безопасности 26-36/37/39-45-61-20/21
РИДАДР UN 3264 8/PG 3
OEB C
OEL TWA: 0.2 mg/m3, STEL: 0.6 mg/m3
WGK Германия 3
Класс опасности 7
Группа упаковки Commercial
кода HS 28441000
Банк данных об опасных веществах 7440-61-1(Hazardous Substances Data)
Токсичность Three isotopes (234U, 235U, 238U) exist, and a large number of uranium salts are known. They present both toxic and radiological hazards. The most important use of uranium is in the nuclear energy industry, but uranium compounds are also used in ceramics, as catalysts and in certain alloys. Entry into the body can occur during a variety of processes involved with the mining, processing or use of uranium and its compounds, and is probably largely by inhalation of dusts, fumes, etc. or by ingestion. Acute uranium toxicity is primarily nephrotoxicity. About 50% of plasma uranium is bound, as the uranyl ion, to bicarbonate (HCO23 ), which is filtered by the glomerulus. As a result of acidification in the proximal tubule, the bicarbonate complex dissociates followed by reabsorption of the HCO23 ; the released UO21 then becomes attached to the membrane of the proximal tubule cells. Loss of cell function follows, as evidenced by increased concentration of glucose, amino acids, and proteins in the urine. 2,3-Mercapto-1-propanol (British Anti-Lewisite, BAL) is ineffective as a therapeutic agent for uranium poisoning; CaEDTA is recommended. Chronic uranium toxicity appears to be radiation related, the effects being similar to those of ionizing radiation. In humans, cancer of the lung, bone, and lymphatic system are all known to occur.
ИДЛА 10 mg U/m3
символ(GHS) GHS hazard pictogramsGHS hazard pictograms
сигнальное слово Danger
Заявление об опасности
пароль Заявление об опасности Класс опасности категория сигнальное слово пиктограмма предупреждение
H330 Смертельно при вдыхании. Острая токсичность, ингаляционная Категория 1, 2 Опасность GHS hazard pictograms P260, P271, P284, P304+P340, P310,P320, P403+P233, P405, P501
H300 Смертельно при проглатывании. Острая токсичность, пероральная Категория 1, 2 Опасность GHS hazard pictograms P264, P270, P301+P310, P321, P330,P405, P501
H373 Может поражать органы (Нервная система) в результате многократного или продолжительного воздействия при вдыхании. Специфическая органная токсичность, многократное воздействие Категория 2 Предупреждение P260, P314, P501
H413 Может вызвать долгосрочные отрицательные последствия для водных организмов. Опасность для водной среды, долгосрочная опасность Категория 4
Внимание
P260 Не вдыхать газ/ пары/ пыль/ аэрозоли/ дым/ туман.
P264 После работы тщательно вымыть кожу.
P270 При использовании продукции не курить, не пить, не принимать пищу.
P271 Использовать только на открытом воздухе или в хорошо вентилируемом помещении.
P284 Использовать средства защиты органовдыхания.
P301+P310 ПРИ ПРОГЛАТЫВАНИИ: Немедленно обратиться за медицинской помощью. Прополоскать рот.
P304+P340 ПРИ ВДЫХАНИИ: Свежий воздух, покой.
P310 Немедленно обратиться за медицинской помощью.
P403+P233 Хранить в хорошо вентилируемом месте в плотно закрытой/герметичной таре.
P405 Хранить в недоступном для посторонних месте.
P501 Удалить содержимое/ контейнер на утвержденных станциях утилизации отходов.

УРАН химические свойства, назначение, производство

Химические свойства

Dense, silvery solid. Strongly electropositive, ductile and malleable, poor conductor of electricity. Forms solid solutions (for nuclear reactors) with molybdenum, niobium, titanium, and zirconium. The metal reacts with nearly all nonmetals. It is attacked by water, acids, and peroxides, but is inert toward alkalies. Green tetravalent uranium and yellow uranyl ion (UO2 ++) are the only species that are stable in solution.

Физические свойства

Uranium is the fourth metal in the actinide series. It looks much like other actinide metallicelements with a silvery luster. It is comparatively heavy, yet malleable and ductile. It reactswith air to form an oxide of uranium. It is one of the few naturally radioactive elementsthat is fissionable, meaning that as it absorbs more neutrons, it “splits” into a series of otherlighter elements (lower atomic weights) through a process of alpha decay and beta emissionthat is known as the uranium decay series, as follows: U-238→ Th-234→Pa-234→U-234→Th-230→Ra-226→Rn-222→Po-218→Pb-214 & At-218→Bi-214 & Rn-218→Po-214→Ti-210→Pb-210→Bi-210 & Ti-206→Pb-206 (stable isotope of lead, 82Pb).Uranium’s melting point is 1,135°C, its boiling point is about 4,100°C, and its density isabout 19g/cm3, which means it is about 19 times heavier than water.

Изотопы

There are total of 26 isotopes of uranium. Three of these are considered stablebecause they have such long half-lives and have not all decayed into other elements and thus still exist in the Earth’s crust. The three are uranium-234, with a half-life of2.455×10+5 years, which makes up 0.0054% of the uranium found on Earth; uranium-235, with a half-life of 703.8×10+6years, which accounts for 0.724% of the Earth’s uranium;and uranium-238m with a half-life of 4.468×10+9years, which makes up most ofthe Earth’s supply of uranium at 99.2742% of the uranium found naturally.

Происхождение имени

Named for the planet Uranus.

Использование

235U in nuclear power reactors and nuclear weapons. Uranium depleted of 235U to manufacture of armor-piercing ammunition, in inertial guidance devices and gyro compasses, as a counterweight for missile reentry vehicles, as radiation shielding material, and x-ray targets.

Определение

A toxic radioactive silvery element of the actinoid series of metals. Its three naturally occurring radioisotopes, 238U (99.283% in abundance), 235U (0.711%), and 234U (0.005%), are found in numerous minerals including the uranium oxides pitchblende, uraninite, and carnotite. The readily fissionable 235U is a major nuclear fuel and nuclear explosive, while 238U is a source of fissionable 239Pu. Symbol: U; m.p. 1132.5°C; b.p. 3745°C; r.d. 18.95 (20°C); p.n. 92; r.a.m. 238.0289.

Общее описание

A silver-gray radioactive metal. Radioactive materials emit ionizing radiation that can only be detected using special instruments. Exposure to intense levels of radiation or prolonged exposure to low levels is harmful. Film is also damaged by radiation.

Реакции воздуха и воды

Highly flammable. Ignites spontaneously in air.

Профиль реактивности

URANIUM is a reducing agent. Ignites spontaneously in air. Ignites in warm nitric oxide [Katz and Rabinowitch 1951]. Reacts with incandescence with hot selenium or with boiling sulfur [Mellor 12:31-2. 1946-47]. An explosion occurred when carbon tetrachloride was used to put out a fire involving a small amount of uranium [Allison 1970].

Опасность

All compounds as well as metallic uranium are radioactive—some more so than others. Themain hazard from radioactive isotopes is radiation poisoning. Of course, another potentialhazard is using fissionable isotopes of uranium and plutonium for other than peaceful purposes,but such purposes involve political decisions, not science.

Угроза здоровью

Radiation presents minimal risk to transport workers, emergency response personnel and the public during transportation accidents. Packaging durability increases as potential hazard of radioactive content increases. Undamaged packages are safe. Contents of damaged packages may cause higher external radiation exposure, or both external and internal radiation exposure if contents are released. Low radiation hazard when material is inside container. If material is released from package or bulk container, hazard will vary from low to moderate. Level of hazard will depend on the type and amount of radioactivity, the kind of material it is in, and/or the surfaces it is on. Some material may be released from packages during accidents of moderate severity but risks to people are not great. Released radioactive materials or contaminated objects usually will be visible if packaging fails. Some exclusive use shipments of bulk and packaged materials will not have "RADIOACTIVE" labels. Placards, markings and shipping papers provide identification. Some packages may have a "RADIOACTIVE" label and a second hazard label. The second hazard is usually greater than the radiation hazard; so follow this GUIDE as well as the response GUIDE for the second hazard class label. Some radioactive materials cannot be detected by commonly available instruments. Runoff from control of cargo fire may cause low-level pollution.

Возможный контакт

The primary use of natural uranium is in nuclear energy as a fuel for nuclear reactors, in plutonium production, and as feeds for gaseous diffusion plants. It is also a source of radium salts. Uranium compounds are used in staining glass, glazing ceramics; and enameling; in photographic processes; for alloying steels; and as a catalyst for chemical reactions; radiation shielding; and aircraft counterweights. Uranium presents both chemical and radiation hazards, and exposures may occur during mining, processing of the ore, and production of uranium metal.

Канцерогенность

Smoking Interaction in Lung Cancer. Generally, exposure response curves for nonsmokers were linear for both respiratory cancer and “other respiratory disease”; cigarette smoking by both whites and nonwhites elevates and distorts the linearity and raises respiratory cancer/1000 person-years from 1.5 for nonsmokers at WLM of 2100 to 8.2 for those who smoked 1–19 cigarettes/ day and to 13 for those who smoked more than 20 a day for the same WLM of 2100.

Экологическая судьба

Uranium is a naturally occurring element that can be found in trace amounts in soil, water, air, and food. It is estimated that a world average level of uranium in soil is 2.8 mg kg1, however, much higher concentrations may be present in some locations. If these concentrations are high enough they may be considered ore and mined and processed. Levels of uranium in water, air, and food largely derive from transfer from soil. The movement of uranium in the environment depends heavily on the solubility of the compound in which it is found. More soluble uranium compounds, including some specifically mentioned in the selected uraniumcontaining compounds listed above, move easily with water through the environment. In the body, uranium acts similar to calcium, but it is poorly absorbed from the intestines. It is deposited in bone where it can be relatively well retained, with 80–90% removal in 1.5 years.

Перевозки

UN2979 Uranium metal, pyrophoric, requires a shipping label of “RADIOACTIVE, SPONTANEOUSLY COMBUSTIBLE.” It falls in Hazard Class 7. UN2909 Radioactive material, excepted package-articles manufactured from natural uranium or depleted uranium or natural thorium, Hazard class: 7-Radioactive material; Labels: None. Uranyl nitrate, solid, requires a shipping label of “RADIOACTIVE, OXIDIZER.” It falls in Hazard Class 7. Uranyl nitrate hexahydrate solution, requires a shipping label of “CORROSIVE.” It falls in Hazard Class 7.

Несовместимости

Uranium: Metal powder is radioactive, pyrophoric (ignites spontaneously in air), and a strong reducing agent. Keep away from chlorine, fluorine, nitric acid; nitric oxide; selenium, sulfur, carbon dioxide; carbon tetrachloride. Complete coverage of uranium metal scrap or turnings with oil is essential for prevention of fire.

Утилизация отходов

Disposal of wastes containing uranium (uranium and compounds) should follow guidelines set forth by the nuclear regulatory commission. Contact the nuclear regulatory commission regarding disposal notification. Recovery for reprocessing is the preferred method. Processes are available for uranium recovery from process wastewaters and process scrap. Burial at an authorized radioactive burial site.

УРАН препаратная продукция и сырье

сырьё

препарат


УРАН поставщик

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