Submitted:
24 October 2025
Posted:
24 October 2025
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Abstract
Achieving national greenhouse gas (GHG) emissions reduction goals requires recognising the lived experiences and knowledge systems of remote Aboriginal communities, who contribute least but are most affected by climate change. This study explored awareness and perceptions of GHG emissions in a very remote Aboriginal community in Central Australia. A qualitative, cross-sectional study was conducted using a staged communication approach that combined visual tools (videos and posters) with a yarning circle. Nine community members (67% women; aged 28–82 years) participated in a session co-led by a local Aboriginal cultural navigator and an Aboriginal researcher. The study examined community understanding of GHG emissions, local emission sources, environmental changes, and the role of Traditional Ecological Knowledge (TEK) in shaping responses to climate change. Participants noted shifts in local weather patterns, particularly more intense heat events, and did not initially link local environmental changes to GHG emissions. Visual prompts helped participants connect emissions with key local sources, including diesel generators, poorly maintained vehicles, and waste burning. TEK was emphasised as central to interpreting environmental change and maintaining health and cultural continuity; however, extreme hot weather has disrupted TEK practices. Despite having limited familiarity with Western scientific terminology, participants demonstrated an intuitive understanding of climate change and its drivers. Building GHG literacy grounded in TEK and co-designed with communities can strengthen culturally relevant community-led mitigation strategies in remote Aboriginal contexts.
Keywords:
1. Introduction
2. Materials and Methods
3. Results
3.1. Community Observations of Climate Change
“…longer the winter times … start to warm up, not as cold as what it used to be.” [P1; Female, 75]
“…if it's really hot … it stays hot and for longer;the weather is changing.” [P8; Male 70]
“No nature, we are not protected.” [P2; Female 82]
“Without nature, people might struggle.” [P4; Female, 70]
3.2. Visual Tools Bridging Understanding: Interpreting Smoke as Emissions
“…things are familiar in picture, but we never have been thinking about this, the first time I get to know about this….” [P9; Female, 28]
“It’s not something our mob think about or knows about.” [P5; Female 68]
“I can link bush fire smoke with greenhouse gases… when the sun comes out… those gases get heated and emit more temperature…” [P9; Female, 28]
“Yeah, smoke (bush fire smoke) makes everything worse.” [P2; Female, 82]
3.3. Sources of Smoke in Remote Community Life
“Cars moving around the community and going to town that are not well serviced and produce more smoke.” [P4; Female, 70]
“Diesel generator out in the community makes some smoke.” [P7; Female, 35]
“When they (community members) do that rubbish burn makes a lot of smoke.” [P5; Female, 68]
3.4. Mitigation Through Traditional Practices and More Education
“We take kids to the bush visits, we show them country, teach them how to pick bush medicines.” [P1; Female, 75]
“I use more bush medicine than clinic, and our mob is still going for hunting, but it's difficult now in this weather.” [P3; Male 75]
“The people need more education around so they can understand greenhouse gas and other things around climate change.” [P6; Male, 65]
4. Discussion
4.1. Community Perceptions and Climate Science
4.2. Mitigation Approaches and Knowledge Systems
4.3. Culturally Grounded Engagement
4.4. Role of Traditional Ecological Knowledge
4.5. Implications for Remote Health Practice and Policy
4.6. Strengths, Limitations and Future Research
5. Conclusions
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Acknowledgments
Conflicts of Interest
Abbreviations
| GHG | Greenhouse Gas |
| TEK | Traditional Ecological Knowledge |
| NT | Northern Territory |
| ReCLAIM | Resilient Communities and Livelihoods Asset Integration Model |
| HREC | Human Research Ethics Commitee |
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| Community insight (this study) | Corroborating dataset/evidence | Source |
|---|---|---|
| “…if it’s really hot…, it stays hot for longer…” [ P8] | Australia has warmed by ~1.5 °C since 1910; Central Australia has experienced an average of 113 days with temperatures of 35 °C or higher and 33 days with temperatures of 40 °C or higher annually during the period 2020–2024. | BoM & CSIRO State of the Climate 2024 [12]; BoM Climate data of Alice Springs [13]. |
| “Diesel generator... makes smoke” [P7] | Remote communities across NT use about 25 million L of diesel annually for electricity generation (~67,000 t CO₂). Diesel for power generation is the largest component of the remote community emission profile (2.7 t CO2-e/capita/yr). | Infrastructure Australia [6]; Stewart et al. 2016 [5]. |
| “Cars… not well serviced… produce more smoke” [P4] | Motor vehicle use was another major source in community carbon profiles (4.84 tCO2-e/capita/yr). | Stewart et al. 2016 [5]. |
| “…rubbish burn makes a lot of smoke” [P5] | Waste burning contributes to particulate pollution; more than 70% of remote communities in NT lack formal waste management systems. | Clifford et al. 2015 [14]; NT EPA reports. |
| “…bush fire smoke makes everything worse” [P2] | Indigenous-led fire management in the Central Western Desert has been modelled to abate ~ 1000,000 t CO₂-e annually from a project area of 500,000 km² through cool-season burning and reduced high-intensity wildfires. | Burrows 2014 [15]. |
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