Read The Times Australia

Daily Bulletin

What’s the difference between fusion and fission? A nuclear physicist explains

  • Written by: Matthew Hole, Professor, Mathematical Sciences Institute and School of Computing, Australian National University
What’s the difference between fusion and fission? A nuclear physicist explains

Globally, nuclear power accounts for roughly 10% of electricity generation. In some countries, such as France, this figure is nearly 70%.

Big tech companies such as Google are also turning to nuclear power to meet the huge power demands of their data centres.

The source of all nuclear power is the binding energy of an atom. The energy stored in an atom can be released in two main ways: fission or fusion. Fission involves splitting big heavy atoms into smaller, lighter ones. Fusion involves combining little atoms together into bigger ones.

Both processes release a lot of energy. For example, one nuclear fission decay of U235, an isotope of uranium typically used as the fuel in most power plants, produces more than 6 million times the energy per single chemical reaction of the purest coal. This means they are great processes for generating power.

What is fission?

Fission is the process behind every nuclear power plant in operation today. It occurs when a tiny subatomic particle called a neutron is slammed into an uranium atom, splitting it. This releases more neutrons, which continue colliding with other atoms, setting off a nuclear chain reaction. This in turn releases a tremendous amount of energy.

To convert this energy to electricity a heat exchanger is installed, which turns water to steam, driving a turbine to produce power.

The fission reaction can be controlled by suppressing the supply of neutrons. This is achieved by inserting “control rods” which soak up neutrons. Historically, nuclear accidents such as Chernobyl have occurred when the control rods fail to engage and quench the neutron supply, and/or coolant circulation fails.

So called “third generation” designs improve on early designs by incorporating passive or inherent safety features which require no active controls or human intervention to avoid accidents in the event of malfunction. These features may rely on pressure differentials, gravity, natural convection, or the natural response of materials to high temperatures.

The first third generation reactors were the Kashiwazaki 6 and 7 advanced boiling water reactors in Japan.

Aerial view of a power plant on the banks of the ocean.
The Kashiwazaki-Kariwa Nuclear Power Station in Japan. Tokyo Electric Power Co, CC BY-SA

An unresolved challenge for fission is that the byproducts of the reaction are radioactive for a long time, in the order of thousands of years. If reprocessed, the fuel source and waste can also be used to make a nuclear weapon.

Fission power is a demonstrated technology. It is also scalable from large scale (the largest is the 7.97 gigawatt Kashiwazaki-Kariwa Nuclear Power Plant in Japan) through to small-to-medium reactors that produce around 150 megawatts of electricity, as used on a ship or nuclear submarine. These are the reactors that will power Australia’s eight nuclear submarines promised as part of a trilateral security partnership with the United Kingdom and the United States.

What is fusion?

Fusion is the process that powers the Sun and stars. It is the opposite process to fission. It occurs when atoms are fused together.

The easiest reaction to initiate in the laboratory is the fusion of isotopes of hydrogen, deuterium and tritium. Per unit mass, the reaction produces 4 times more energy than the fission of U235.

The fuel ion deuterium is incredibly abundant on Earth and in the universe. Tritium is radioactive with a half-life of 12 years, so is very rare on Earth. The universe is 13.8 billion years old; the only isotopes of light nuclei (hydrogen, helium and lithium) found in nature are those that are stable on those time scales.

In a fusion power plant, tritium would be manufactured using a “lithium blanket”. This is a solid lithium wall in which fusion neutrons slow and ultimately react to form tritium.

However, at present it’s very difficult for scientists to create a fusion reaction outside of the laboratory. That’s because it requires incredibly hot conditions to fuse: the optimal conditions are 150 million degrees Celsius.

Bright orange, flaming ball. Fusion is the process that powers the Sun. SOHO (ESA & NASA)

At these temperatures the fuel ions exist in the plasma state, where electrons and (nuclear) ions are dissociated. The byproduct of this process isn’t radioactive; rather, it’s helium, an inert gas.

The leading technology path to demonstrate sustained fusion is called “toroidal magnetic confinement”. This is when the plasma is confined at extreme temperatures in a very large doughnut-shaped magnetic bottle.

Unlike fission, this technology path requires continuous external heating to reach fusion conditions and a strong confining field. Terminate either and the reaction stops. The challenge is not uncontrolled meltdown, but getting the reaction to occur at all.

A major unresolved challenge for toroidal magnetic confinement fusion, which attracts the majority of research interest, is the demonstration of a burning self-heated plasma. This is when the heating power produced by the reaction itself is primary. This is the objective of the publicly funded multi-national ITER project, the world’s largest fusion experiment, and the privately funded SPARC experiment at Massachusetts Institute of Technology.

However, the consensus of much of the scientific community is that fusion will not be commercially viable until at least 2050.

A climate solution?

I am often asked if nuclear power could save Earth from climate change. I have many colleagues in climate science, and indeed my late wife was a high-profile climate scientist.

The science is clear: it is too late to stop climate change. The world needs to do everything it can to reduce carbon dioxide emissions and minimise catastrophic damage, and it needs to have done it decades ago.

For the planet, fission is part of that global solution, together with widespread rollout and adoption of renewable sources of power such as wind and solar.

On a longer time scale, one hopes that fusion might replace fission. The fuel supply is much larger and ubiquitously distributed, the waste problem is orders of magnitude smaller in volume and timescale, and the technology cannot be weaponised.

Authors: Matthew Hole, Professor, Mathematical Sciences Institute and School of Computing, Australian National University

Read more https://theconversation.com/whats-the-difference-between-fusion-and-fission-a-nuclear-physicist-explains-240438

Business News

How Industrial Drying Equipment Supports Efficient Processing

Many industrial processes require moisture to be removed from compressed air, products or process materials before they move to the next stage. Excess moisture can affect equipment performance, produc...

Daily Bulletin - avatar Daily Bulletin

Practical Ways a Whiteboard Can Improve Workplace Communication

Effective communication helps teams stay organised, share ideas and keep track of important information. While digital tools are now common in many workplaces, a whiteboard continues to provide a simp...

Daily Bulletin - avatar Daily Bulletin

Designing Eco-Friendly Custom Water Bottles for Your Next Event

The Evolution of Sustainable Event Merchandise Event planning has undergone a massive transformation over the last decade. Gone are the days when organizers could hand out cheap, single use plastic...

Daily Bulletin - avatar Daily Bulletin

Why Choosing a Professional Florist Melbourne Makes Flower Delivery Impactful

Flowers have a great power to speak when humans cannot express their feelings with right words. Flowers are the best gifts when you are celebrating a birthday or welcoming a newborn child into your fa...

Daily Bulletin - avatar Daily Bulletin

The Business Case for Choosing Australian Fabricators Over Imported Alternatives

For a long time, you might have defaulted to overseas suppliers when sourcing fabricated metal components for a project. The unit price was lower on paper, and the maths seemed straightforward. That...

Daily Bulletin - avatar Daily Bulletin

Australian organisations are relying on business continuity plans built for a far more predictable world

Tariff escalations, supply chain fragility, geopolitical events, and the ongoing threat of cyber disruption have reshaped the risk environment facing Australian organisations. The problem is that ma...

Daily Bulletin - avatar Daily Bulletin

How to Rent a Car for Uber in Melbourne: What Every New Driver Needs to Know

Starting out as an Uber driver in Melbourne is not as complicated as it sounds but getting the vehicle right is where most new drivers get stuck. Uber has strict requirements around vehicle age, condi...

Daily Bulletin - avatar Daily Bulletin

When Should You Speak to a Lawyer About a Legal Issue?

Legal issues can begin with a simple question, then become harder to manage once formal steps are involved. Many people wait until a matter feels urgent before seeking guidance, even though earlier ...

Daily Bulletin - avatar Daily Bulletin

The strategic rise of Bali as Australia’s next essential healthcare support hub

As Australian healthcare providers grapple with unprecedented operational bottlenecks, a new nearshore model is quietly transforming patient care delivery. Forward-thinking organisations,  including...

Daily Bulletin - avatar Daily Bulletin

The Daily Magazine

Top Garment Steamers for Busy Professionals in Australia

The gap between garment steamers built for a quick touch-up and ones built to keep pace with a wor...

Correct Sleeping Posture to Minimize Back Strain

Most people don’t pay much attention to how they sleep until they start waking up with a stiff bac...

Why Product Longevity Matters for Sustainable Australian Buildings

Sustainability in building design is often associated with recycled materials, renewable resources a...

NDIS Support Coordination Explained: What Does a Support Coordinator Actually Do?

NDIS support coordination explained means understanding how a professional can help participants n...

When Should You Speak with Divorce Lawyers in Sydney?

Divorce involves more than completing an online application. It can affect parenting arrangements, p...

How to Choose a Reliable Hot Water System Installer on the Gold Coast

Choosing a reliable installer is just as important as choosing the right hot water system. A qualifi...

How Microtask Platforms Support Modern Digital Promotion

Digital promotion has become increasingly complex. Businesses communicate with customers through w...

Cosmetic Dentistry Options From a Brisbane-Based Dental Team

You cover your mouth when you laugh. You skip the group photo. Maybe you edit pictures to soften a...

Essential Steps to Handle Sudden Tooth Pain and Dental Crises

A sudden, throbbing toothache can totally stop your whole day, with no warning. When severe pain, ...