Modern Australian
The Times

What is uranium enrichment and how is it used for nuclear bombs? A scientist explains

  • Written by Kaitlin Cook, DECRA Fellow, Department of Nuclear Physics and Accelerator Applications, Australian National University
What is uranium enrichment and how is it used for nuclear bombs? A scientist explains

Late last week, Israel targeted three of Iran’s key nuclear facilities – Natanz, Isfahan and Fordow, killing several Iranian nuclear scientists. The facilities are heavily fortified and largely underground, and there are conflicting reports of how much damage has been done.

Natanz and Fordow are Iran’s uranium enrichment sites, and Isfahan provides the raw materials, so any damage to these sites would limit Iran’s ability to produce nuclear weapons.

But what exactly is uranium enrichment and why does it raise concerns?

To understand what it means to “enrich” uranium, you need to know a little about uranium isotopes and about splitting the atom in a nuclear fission reaction.

What is an isotope?

All matter is made of atoms, which in turn are made up of protons, neutrons and electrons. The number of protons is what gives atoms their chemical properties, setting apart the various chemical elements.

Atoms have equal numbers of protons and electrons. Uranium has 92 protons, for example, while carbon has six. However, the same element can have different numbers of neutrons, forming versions of the element called isotopes.

This hardly matters for chemical reactions, but their nuclear reactions can be wildly different.

The difference between uranium-238 and uranium-235

When we dig uranium out of the ground, 99.27% of it is uranium-238, which has 92 protons and 146 neutrons. Only 0.72% of it is uranium-235 with 92 protons and 143 neutrons (the remaining 0.01% are other isotopes).

For nuclear power reactors or weapons, we need to change the isotope proportions. That’s because of the two main uranium isotopes, only uranium-235 can support a fission chain reaction: one neutron causes an atom to fission, which produces energy and some more neutrons, causing more fission, and so on.

This chain reaction releases a tremendous amount of energy. In a nuclear weapon, the goal is to have this chain reaction occur in a fraction of a second, producing a nuclear explosion.

In a civilian nuclear power plant, the chain reaction is controlled. Nuclear power plants currently produce 9% of the world’s power. Another vital civilian use of nuclear reactions is for producing isotopes used in nuclear medicine for the diagnosis and treatment of various diseases.

What is uranium enrichment, then?

To “enrich” uranium means taking the naturally found element and increasing the proportion of uranium-235 while removing uranium-238.

There are a few ways to do this (including new inventions from Australia), but commercially, enrichment is currently done with a centrifuge. This is also the case in Iran’s facilities.

Centrifuges exploit the fact that uranium-238 is about 1% heavier than uranium-235. They take uranium (in gas form) and use rotors to spin it at 50,000 to 70,000 rotations per minute, with the outer walls of the centrifuges moving at 400 to 500 metres per second.

This works much like a salad spinner that throws water to the sides while the salad leaves stay in the centre. The heavier uranium-238 moves to the edges of the centrifuge, leaving the uranium-235 in the middle.

This is only so effective, so the spinning process is done over and over again, building up the percentage of the uranium-235.

Most civilian nuclear reactors use “low enriched uranium” that’s been enriched to between 3% and 5%. This means that 3–5% of the total uranium in the sample is now uranium-235. That’s enough to sustain a chain reaction and make electricity.

What level of enrichment do nuclear weapons need?

To get an explosive chain reaction, uranium-235 needs to be concentrated significantly more than the levels we use in nuclear reactors for making power or medicines.

Technically, a nuclear weapon can be made with as little as 20% uranium-235 (known as “highly enriched uranium”), but the more the uranium is enriched, the smaller and lighter the weapon can be. Countries with nuclear weapons tend to use about 90% enriched, “weapons-grade” uranium.

According to the International Atomic Energy Agency (IAEA), Iran has enriched large quantities of uranium to 60%. It’s actually easier to go from an enrichment of 60% to 90% than it is to get to that initial 60%. That’s because there’s less and less uranium-238 to get rid of.

This is why Iran is considered to be at extreme risk of producing nuclear weapons, and why centrifuge technology for enrichment is kept secret.

Ultimately, the exact same centrifuge technology that produces fuel for civilian reactors can be used to produce nuclear weapons.

Inspectors from the IAEA monitor nuclear facilities worldwide to ensure countries are abiding by the rules set out in the global nuclear non-proliferation treaty. While Iran maintains it’s only enriching uranium for “peaceful purposes”, late last week the IAEA board ruled Iran was in breach of its obligations under the treaty.

Authors: Kaitlin Cook, DECRA Fellow, Department of Nuclear Physics and Accelerator Applications, Australian National University

Read more https://theconversation.com/what-is-uranium-enrichment-and-how-is-it-used-for-nuclear-bombs-a-scientist-explains-259031

What’s Trending in Men’s Jewellery This Father’s Day!

Finding a Father’s Day gift that feels personal, stylish and genuinely wearable is not always easy. While socks and novelty mugs have traditionall...

Road Signs: Understanding Their Role in Clear and Effective Signage

Effective signage and display hardware can help businesses communicate information, promote products and organise customer or visitor movement. Road...

Bottle Label Printing: Key Factors to Consider Before Your Next Packaging Run

Effective packaging begins with understanding the product, bottle material, artwork and production requirements when planning bottle label printing. H...

Planning a Long-Distance Move With Interstate Movers Melbourne

Moving between states involves more planning than a typical local relocation. Along with packing and transporting household belongings, you need to...

Understanding the Role of an I/O Controller in Industrial Automation

Modern industrial systems depend on accurate communication between sensors, machines and control systems. An I/O controller can help manage this commu...

How the Right Mining Hose Supports Demanding Operations

Mining environments place considerable demands on equipment used for material transfer, water management and processing. Hoses operating in these co...

Simple Ideas for Making Social Gatherings More Memorable

We have all been to those parties where everyone just stands around the kitchen island, staring at their phones, waiting for someone else to make a mo...

Outdoor Wall Lights: Improving Exterior Lighting Around Your Home

Lighting can influence how a room looks, feels and functions, so the right fitting should be selected according to both appearance and practical req...

Commercial Office Cleaning: Combining Routine Office Cleaning With Melbourne Service

Keeping a workplace clean requires a service that can accommodate everyday tasks as well as the particular needs of the business. Professional comme...

Caravan Sales in Queensland: How to Find the Right Caravan for Sale QLD

Caravan ownership is about more than having somewhere to sleep while travelling. For many Queenslanders, it is one of the best ways to explore regio...

What Sir Walter Buffalo Turf Actually Costs in 2026 (And Why Quotes Vary So Much)

Two quotes landed on a Hills District homeowner's kitchen table last spring for the exact same 80-square-metre backyard. One said $12 a metre. The o...

Nearly 1,300 NSW Hospital Beds Are Occupied By People Who Are Ready To Go Home

1,276 people in NSW hospitals have been medically cleared for discharge but remain in hospital because they're still waiting for NDIS or aged care sup...

National Survey Launched to Measure Operational Impacts of Federal NDIS Policy Reforms

The effects of recent NDIS reforms are beginning to move beyond policy papers and into day to day service delivery. A new national survey is asking ...

Beyond the Nappy Cake: Baby Shower Gifts That Get Used

What new Australian parents unwrap, keep, and quietly thank you for months later. Six weeks after my daughter was born, I did an audit of the baby sh...

Parent-Advocates Are Reshaping Frontline Disability Service Delivery

Parents have always been part of the disability sector. They advocate, coordinate services, challenge decisions and often become the person holding ev...

Vista Cruises Enters "Two-Flagship Era" as Vista Aurora Completes Inaugural Voyage

Vista Aurora Sets Sail along the Yangtze. (Photo courtesy of the company)YICHANG, China — August 5, 2026 — Vista Aurora, a high-end interprovinc...

A Digital Preparation Checklist For International Medical Conferences

An international medical conference compresses many responsibilities into a few days. A delegate may need to present research, move between venues, ...

The Growing Popularity of Lab Grown Diamonds in Sydney and Hong Kong

The diamond industry has changed significantly in recent years as more buyers seek ethical, affordable, and sustainable alternatives to mined diamon...