Bilingual edition: English is preserved and Chinese follows each unit. Terminology uses the confirmed v20260916 glossary; automated semantic review remains traceable.
中英双语版:英文原文完整保留,中文紧随对应单元;术语采用 v20260916 确认表,自动语义审校结果可追溯。

Strontium

Symbol
符号
SrAtomic number
原子序数
38
Atomic mass
原子质量
87.62
Thermal conductivity
热导率
0.353
Atomic radius
原子半径
2.45
Covalent radius
共价半径
1.91
Density
密度
2.6
Atomic volume
原子体积
33.7
Melting point
熔点
1041
Oxidation states
氧化态
2
Boiling point
沸点
1650
Stable isotopes
稳定同位素
4
Heat of vapor.
汽化热
144.0
Electronegativity
电负性
0.95
Heat of fusion
熔化热
8.30
First ionization
第一电离能
5.695
Specific heat
比热容
0.30
Electrical conduct.
电导率
...
Electron configuration
电子排布

General description
一般说明
Nuclear data
核数据
Index

Periodic Table

Chemistry concepts
索引 元素周期表 化学概念
 
HyperPhysicsR Nave
Go Back
返回





Strontium

Strontium is a metal, but as such has found little practical use. Most of its compounds are similar to those of calcium.

锶是一种金属,但作为金属其实际应用有限。它的大多数化合物与钙的化合物相似。

Strontium nitrate Sr(NO3)2 is mixed with carbon and sulfur to make red fire for use in fireworks, flares, and signal shells. Strontium chlorate, Sr(ClO3)2 can be used for the same purpose. One mineral form of strontium is a crystalline form of strontium sulfate called celestite. Others include the carbonate minerals strontianite and Weloganite. Strontium appears in the carbonate mineral Bensonite.

硝酸锶 Sr(NO₃)₂ 与碳和硫混合,用于制造烟花、信号弹和信号弹的红色火焰。氯酸锶 Sr(ClO₃)₂ 也可用于相同的目的。锶的一种矿物形式是称为 celestite 的硫酸锶结晶形式。其他形式包括碳酸盐矿物 strontianite 和 weloganite。锶也出现在碳酸盐矿物 Bensonite 中。

Strontium appears with boron in the oxide mineral tunellite and with barium in the silicate minerals Brewsterite and heulandite.

The radioisotope strontium-90 has been problematic in the fallout from nuclear weapons testing and nuclear accidents. Its intermediate halflife makes it quite radioactive, and since its compounds mimic those of calcium, it is taken up and reconcentrated in living organisms.

放射性同位素锶-90在核武器试验和核事故的 fallout 中造成了问题。其中间的半衰期使其具有相当强的放射性,而且由于其化合物与钙的化合物相似,它会被生物体吸收并重新集中。
Atomic data
原子数据
Nuclear data
核数据
锶出现在氧化物矿物 tunellite 中与硼共存,并在硅酸盐矿物 Brewsterite 和 heulandite 中与钡共存。
Index

Periodic Table

Chemistry concepts

Reference
Pauling
索引 元素周期表 化学概念 参考 Pauling
 
HyperPhysicsR Nave
Go Back
返回







Strontium Nuclear Data

锶核数据
Z
A
Atomic
Mass (u)
原子质量(u)
Nuclear
Mass(GeV/c2
核质量(GeV/c²)
Binding
Energy(MeV)
结合能(MeV)
Spin
自旋
Natural
Abund.
天然丰度
Half-life
半衰期
Decay
衰变
Q
MeV
Q值(MeV)
38
84
83.913430
78.1461
728.91
0
0.0056
stable
稳定
...
...
38
85
84.912937
79.0771
737.44
9/2
...
64.8d
b+
1.08
38
86
85.909267
80.0052
748.93
0
0.0986
stable
稳定
...
...
38
87
86.908884
80.9363
757.36
9/2
0.07
stable
稳定
...
...
38
88
87.905619
81.8648
768.47
0
0.8258
stable
稳定
...
...
38
90
89.907738
83.7298
782.64
0
...
29y
b-
0.55

The isotopes of strontium have an important role in geologic dating. The rubidium/strontium dating method uses the two isotopes 87Sr and 86Sr. The 86Sr is non-radiogenic in origin and is presumed to remain constant in the earth's minerals. The 87Sr is comparable in abundance at the present time, but 87Rb produces 87Sr with a half-life of 48.8 x 109 years. Plotting the ratios of 87Rb and 87Sr to 86Sr in a rock sample allows you to correct for the original concentration and allows you to detect the loss of one of the members of the process. It is therefore one of the processes of choice in estimating the age of the earth.

锶的同位素在地质年代测定中起着重要作用。铷/锶测年法使用两种同位素87Sr和86Sr。86Sr的来源是非放射性的,并且被认为在地球的矿物中保持恒定。87Sr在当前时间的丰度相当,但87Rb产生87Sr的半衰期为48.8×10⁹年。绘制岩石样本中87Rb和87Sr与86Sr的比值,可以校正原始浓度,并可以检测出该过程中的一个成员的损失。因此,它是估算地球年龄的一种优选方法。

Strontium-90 is one of the most dangerous of the radioactive fission fragments from nuclear fission since it has a relatively short half-life (29 yr) and tends to be taken up by living organisms. Vertibrates which need calcium will take up strontium-90 since it is so chemically similar to calcium, and it will therefore remain in bones and teeth to be a continuing source of ionizing radiation. It was one of the most troublesome constituents of the fallout from nuclear weapons testing.

锶-90是核裂变中产生的放射性裂变产物中最危险的一种,因为它具有相对较短的半衰期(29年),并且容易被生物体吸收。需要钙的生物体会吸收锶-90,因为它的化学性质与钙非常相似,因此它会残留在骨骼和牙齿中,持续产生电离辐射。它是核武器试验 fallout 中最令人困扰的组成部分之一。
Atomic data
原子数据
Index

Periodic Table

Chemistry concepts

Reference
Rohlf
索引 元素周期表 化学概念 参考 Rohlf
 
HyperPhysicsR Nave
Go Back
返回