What is Nitrogen?
Nitrogen (symbol N) is element 7 on the periodic table, a nonmetal in period 2, group 15. 78% of the air you are breathing right now, held together by one of the strongest bonds in chemistry. At room temperature it is a gas.
Structure
Not a diagram of dots on rings — a Monte-Carlo sample of the actual probability density |ψ|² for each occupied subshell. Drag to rotate. Blue and violet mark opposite signs of the wavefunction, which is what makes bonding possible.
Measured values
Every bar shows where nitrogen sits among all 118 elements for that property.
Sources: IUPAC 2021 standard atomic weights · CRC Handbook of Chemistry and Physics · NIST. Values marked ~ are predicted rather than measured.
Size, to scale
Radius 65 pm — that is 0.065 nm, so about 7692 million of them side by side would span a millimetre.
Thermal range
Nitrogen is liquid over a 14 K window, from 63 K to 77 K.
The story
Nitrogen is the most abundant element in Earth's atmosphere, comprising approximately 78% of the air we breathe. This colorless, odorless, and generally inert gas is fundamental to all living organisms, forming the backbone of amino acids, proteins, and nucleic acids like DNA and RNA.
Despite its abundance, nitrogen in its molecular form (N₂) is remarkably unreactive due to the extremely strong triple bond between the two nitrogen atoms. This chemical inertness makes nitrogen useful as an inert atmosphere for industrial processes, but also means that most organisms cannot directly use atmospheric nitrogen for biological processes.
Fun Fact: The nitrogen cycle is one of the most important biogeochemical cycles on Earth, involving the conversion of nitrogen between its various chemical forms through biological, chemical, and physical processes.Nitrogen compounds are essential for agriculture, with nitrogen-based fertilizers being crucial for modern food production. However, nitrogen can also form dangerous compounds - nitrogen oxides contribute to air pollution and acid rain, while nitrogen-containing explosives have shaped military history.
In industry, liquid nitrogen (at -196°C) serves as an ultra-cold refrigerant, used in everything from food preservation to medical procedures. The element's dual nature - essential for life yet potentially dangerous in certain forms - makes nitrogen one of the most fascinating elements on the periodic table.
Applications
The largest industrial use of nitrogen is in the Haber-Bosch process, which converts atmospheric nitrogen into ammonia (NH₃). This significant process, developed in the early 20th century, involves reacting nitrogen with hydrogen under high pressure (150-200 atm) and temperature (400-500°C) using an iron catalyst:
N₂ + 3H₂ → 2NH₃
This process produces over 150 million tons of ammonia annually, with approximately 80% used to manufacture nitrogen-based fertilizers including:
Nitrogen serves as a critical feedstock for producing numerous industrial chemicals:
Liquid nitrogen at -196°C (-321°F) provides ultra-low temperature cooling for:
Nitrogen creates inert atmospheres to prevent oxidation during:
High-purity nitrogen is essential for:
Where it comes from
19 mg/kg of Earth's crust · more abundant than 71% of elements
Nitrogen dominates Earth's atmosphere, comprising approximately 78.08% of the air by volume. This massive reservoir contains an estimated 3.9 × 10¹⁵ tons of nitrogen gas (N₂), making it the most abundant uncombined element accessible to life on Earth.
The atmospheric nitrogen exists primarily as diatomic molecules (N₂) held together by an extremely strong triple bond (941 kJ/mol), making it one of the most chemically inert substances under normal conditions. This stability explains why atmospheric nitrogen has accumulated over billions of years.
Nitrogen is formed in the cores of massive stars through stellar nucleosynthesis via two primary processes:
In the universe, nitrogen ranks as the 7th most abundant element, with an estimated cosmic abundance of about 1 part per 1,000 hydrogen atoms.
Within Earth's crust, nitrogen is relatively rare, comprising only about 0.002% by weight. Natural nitrogen-bearing minerals include:
The nitrogen cycle represents one of Earth's most crucial biogeochemical processes:
Special bacteria convert atmospheric N₂ into biologically available forms:
Soil bacteria continuously transform nitrogen between various oxidation states:
Ocean and freshwater systems contain significant dissolved nitrogen:
Human activities have dramatically altered the global nitrogen cycle:
Handling
Nitrogen gas toxicity: While nitrogen itself is low-toxicity, it poses severe asphyxiation risks:
Cryogenic safety measures:
OSHA regulations and workplace limits:
Safe handling procedures:
Immediate response procedures:
Environmental impact and regulations:
Quick answers
Nitrogen (symbol N) is element 7 on the periodic table, a nonmetal in period 2, group 15. 78% of the air you are breathing right now, held together by one of the strongest bonds in chemistry. At room temperature it is a gas.
[He] 2s² 2p³, giving 2 occupied shells holding 2, 5 electrons respectively. Its outer shell holds 5 electrons, which is what sets its bonding behaviour.Nitrogen melts at 63.2 K (-210 °C) and boils at 77.4 K (-195.8 °C).
The standard atomic weight of Nitrogen is 14.007 u. That is a weighted average across its naturally occurring isotopes, which is why it is rarely a whole number.
Nitrogen is a gas at room temperature; its density is about 1.3 g/L at 0 °C and 1 atm — roughly heavier than air.
Nitrogen has a Pauling electronegativity of 3.04. The scale runs from 0.70 (francium, the least greedy for electrons) to 3.98 (fluorine, the most). A value this high means it tends to pull electrons away from almost anything it bonds with.
Nitrogen was discovered in 1772 by Daniel Rutherford. It is named after greek nitron + genes, "niter-forming".
Nitrogen makes up about 19 mg/kg of the Earth's crust — uncommon, but not rare.