AUSTRALIAN NUCLEAR SCIENCE & TECHNOLOGY ORGANISATION (ANSTO)
AIâENABLED, NATIONALâNUCLEARâCAPABILITY, CLEANâENERGY & BATTERYâTECH MODEL
Australians Unified – Nuclear Science, Energy Sovereignty, Medical Isotopes, Battery Manufacturing & National Radiation Capability Safety • Science • Sovereignty • Clean Energy • Innovation
OUR ROLE
ANSTO:
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Operates Australia’s nuclear research reactors and radiation facilities
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Produces nuclear medicines for hospitals and cancer treatment
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Provides national radiation safety, monitoring, and wasteâmanagement capability
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Supports scientific research, materials science, and advanced manufacturing
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Leads national nuclearâenergy research, safety frameworks, and reactorâreadiness
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Supports sovereign batteryâmaterials research, testing, and manufacturing capability
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Strengthens sovereign nuclear and cleanâenergy capability
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Provides geoscience, environmental, and materialsâtesting services
This model positions ANSTO as the backbone of Australia’s nuclearâenergy future and batteryâtechnology ecosystem.
OUR STRENGTHS
Nuclear & Scientific Strengths
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Worldâclass nuclear research facilities
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Australia’s primary producer of nuclear medicine
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Strong safety culture and regulatory compliance
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Deep scientific expertise across physics, materials, and radiation
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Trusted national radiationâprotection authority
CleanâEnergy & Battery Strengths (New Model)
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Advanced materials testing for battery chemistry
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Nuclearâpowered industrial heat and hydrogen potential
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AIâenabled reactorâperformance modelling
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Predictive batteryâmaterials analytics
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National capability for rareâearth and isotope processing
OUR WEAKNESSES (PREâAI)
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High operational and maintenance costs that burden financial resources significantly
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Ageing infrastructure that requires urgent upgrades for optimal performance
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Manual safety and compliance processes that are time-consuming and prone to human error
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Limited realâtime visibility that hampers effective decision-making and responsiveness
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No unified national nuclearâenergy roadmap that aligns stakeholders under a common vision
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Fragmented batteryâresearch ecosystem lacking collaboration and coordination among key players
OUR THREATS
External Threats
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Global competition for nuclear and battery supply chains
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Geopolitical pressures on uranium, isotopes, and critical minerals
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Increasing demand for clean energy and medical isotopes
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Climateâdriven environmental risks to facilities
Internal Threats
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Legacy systems
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Manual monitoring and reporting
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Workforce shortages in nuclear science and battery chemistry
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Infrastructure vulnerability
OUR OPPORTUNITIES (AIâENABLED)
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Develop national nuclearâenergy capability (SMRs, AMRs, microâreactors)
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Support sovereign battery manufacturing and materials processing
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Automate reactorâmonitoring and safety systems
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Deploy AIâenabled isotopeâproduction modelling
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Reduce administrative overhead
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Improve transparency and reporting
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Strengthen sovereign nuclear capability
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Reinvest savings into research, medicine, and cleanâenergy innovation
INTEGRITY & INDEPENDENCE SAFEGUARDS
(Ensuring nuclear and battery science remains safe, transparent, and free from political influence.)
1. AIâGoverned Safety & Energy Prioritisation
Transparent, auditable models ensure safety and compliance.
2. Immutable Audit Trails
All reactor, radiation, and energyâmodelling decisions logged and reviewable.
3. Independent Appointment Panels
Experts in nuclear science, engineering, energy systems, and safety.
4. Mandatory Publication of Ministerial Contacts
All interactions logged and published.
5. ConflictâofâInterest Rules
No political involvement for senior staff.
6. National Nuclear & Battery Integrity Framework
Ensures scientific independence, safety, and public trust.
STRATEGIC ROADMAP — ANSTO (NUCLEAR + BATTERY)
PHASE 1 — FOUNDATION (Years 1–2)
Stabilise & Modernise
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Consolidate nuclear and batteryâresearch systems
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Deploy workflow automation
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Begin AI pilots for safety, isotope, and battery modelling
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Build unified nuclearâenergy and batteryâdata architecture
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Establish independent governance board
PHASE 2 — ACCELERATION (Years 2–4)
Automate & Enhance
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AIâenabled reactorâmonitoring engine
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Automated radiationâsafety analytics
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Batteryâchemistry modelling platform
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National nuclearâenergy feasibility studies
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Cyberâresilience upgrades
PHASE 3 — EXPANSION (Years 4–6)
Strengthen National Capability
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National nuclearâenergy intelligence network
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Realâtime reactor and battery dashboards
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Workforce augmentation tools
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Enhanced transparency and public reporting
PHASE 4 — FUTUREâREADY (Years 6–10)
Transform & Protect
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Fully automated safetyâmonitoring cycles
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Predictive nuclearâenergy demand modelling
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AIâenabled batteryâindustry analytics
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Integrated national nuclear + battery ecosystem
DIVISIONAL MODEL — ANSTO (UPDATED)
1. Nuclear Medicine & Isotope Production Division
Supporting Australia’s Health System
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Production of nuclear medicines
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Supply chain for hospitals and cancer centres
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AIâenabled isotopeâproduction optimisation
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National medicalâisotope security
2. Reactor Operations, Nuclear Energy & CleanâPower Division
Building Australia’s NuclearâEnergy Future
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Operation of research reactors
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SMR/AMR feasibility, modelling, and safety frameworks
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Nuclearâpowered industrial heat and hydrogen research
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Predictive reactorâperformance modelling
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National nuclearâinfrastructure stewardship
3. Battery Materials, Chemistry & Advanced Manufacturing Division
Strengthening Sovereign Battery Capability
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Batteryâmaterials testing and certification
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AIâenabled batteryâchemistry modelling
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Support for lithium, sodium, and solidâstate battery development
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National batteryâsupplyâchain capability building
4. Radiation Safety, Monitoring & Waste Division
Protecting People & the Environment
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National radiationâsafety services
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Environmental monitoring
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Wasteâmanagement and storage
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AIâenabled safety analytics
5. Materials Science, Research & Innovation Division
Driving Scientific Discovery
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Advanced materials research
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Neutron scattering and imaging
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Support for industry and universities
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Innovation and commercialisation pathways
6. Data, Analytics & Performance Division
Driving Transparency & System Improvement
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National nuclear and battery datasets
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Realâtime dashboards and modelling
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Evidenceâbased policy support
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National reporting frameworks
COSTING TILES — ANSTO (NUCLEAR + BATTERY)
20% reduction in operating cost, offset by AIâenabled efficiency
TILE 1 — BASELINE FUNDING (REDUCED)
$0.36B per year
(Reduced from $0.45B — 20% efficiency gain)
TILE 2 — PHASE 1 (Years 1–2)
$0.58B – $0.82B
Stabilise & Modernise
TILE 3 — PHASE 2 (Years 2–4)
$1.20B – $1.60B
Automate & Enhance
TILE 4 — PHASE 3 (Years 4–6)
$0.90B – $1.30B
Strengthen Capability
TILE 5 — PHASE 4 (Years 6–10)
$2.40B – $3.20B
Transform & Protect
TILE 6 — PEOPLE & COMMUNITY
Safety • Science • Clean Energy
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Nuclearâliteracy uplift
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Community safety programs
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Digital nuclearâeducation tools
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Batteryâindustry workforce development
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Environmentalâmonitoring transparency
TILE 7 — TOTAL INVESTMENT
6âYear Total:
$3.44B – $4.72B
10âYear Total:
$6.86B – $8.92B
OUTCOME
A lean, AIâenabled, safetyâdriven ANSTO that strengthens national nuclear capability, supports cleanâenergy transition, accelerates sovereign battery manufacturing, and protects public health and scientific excellence.