Analysis: Why children must emit eight times less CO2 than their grandparents
Global emissions of CO2 need to decline precipitously over the next few decades, if the world is to meet the Paris Agreement goals of limiting global warming to “well below 2C” and, ideally, below 1.5C.If these goals are to be met, young people would have to live the greater part of their lives without contributing significantly to global emissions. Essentially, they would have fewer “allowable” CO2 emissions during their lifetime, compared with older generations.To determine just how much smaller their personal CO2 limits would be, Carbon Brief has combined historical data on emissions and population with projections for the future. In a world where warming is limited to 1.5C, the average person born today can emit only an eighth of the lifetime emissions of someone born in 1950.The interactive tool, below, shows the size of each person’s “carbon budget” during their lifetime – based on when and where they were born.It looks at two different scenarios: one where the world limits warming to well below 2C above pre-industrial levels by 2100; and one were warming is limited to 1.5C.It also considers two different ways of sharing future allowable emissions: one where each country tracks “optimal” pathways taken from models; and another, focused on equality, where each person can use the same portion of future emissions, no matter where they live.In all cases, younger generations will have to make do with substantially smaller lifetime carbon budgets than older generations, if the Paris limits are to be respected. This is because most of the allowable emissions have already been used up, meaning young people will not have the luxury of unmitigated emissions enjoyed by older generations.The idea for this analysis was first proposed to Carbon Brief by Dr Ben Caldecott at the University of Oxford. The methodology used – and its limitations – are explained in detail at the end of this article. Carbon Brief is now working to further develop the analysis with Dr Caldecott and his colleagues.§ The global picture
quickly declinenegative emissions§ Divvying up emissions
dividedImage (note)
Integrated assessment modelsGlossary
Integrated Assessment Models: IAMs are computer models that analyse a broad range of data – e.g. physical, economic and social – to produce information that can be used to help decision-making. For climate research, specifically, IAMs are typically used to project future greenhouse gas emissions and climate impacts, and the benefits and costs of policy options that could be implemented to tackle them.
Integrated Assessment Models: IAMs are computer models that analyse a broad range of data – e.g. physical, economic and social – to produce information that can be used to help decision-making. For climate research, specifically,… Read More
| Pre-Boomer (pre-1946) | Boomers (1946-1964) | Gen X (1965-1980) | Millennials (1981-1996) | Gen Z (1997-2012) | Post-Gen Z (post-2012) | |
|---|---|---|---|---|---|---|
| Global | 275 | 325 (348) | 276 (322) | 202 (264) | 118 (191) | 56 (134) |
| US | 1494 | 1464 (1530) | 1191 (1342) | 846 (1052) | 472 (709) | 238 (489) |
| Europe | 686 | 698 (733) | 582 (668) | 398 (521) | 218 (363) | 105 (259) |
| China | 119 | 255 (291) | 256 (334) | 220 (326) | 151 (279) | 71 (213 |
| India | 38 | 64 (71) | 61 (74) | 52 (69) | 23 (54) | 18 (39) |
§ Some limitations
previously examined§ Methodology
per-capitatypical of JapanGlobal Carbon ProjectWorld Population Prospects 2017SSP2IAMIIASAMESSAGE-GLOBIOMchosen to representIAMC 1.5C Scenario ExplorerArticle information
Interactive by Rosamund Pearce for Carbon Brief