Active Climate, Earth & Environment Food & Agriculture

Interconnections of Past Greenhouse Climates: Lessons For the Future

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AI plain-English summary

The Earth has already warmed by 1°C, and rainfall patterns are shifting in ways that existing climate models struggle to predict. To test those predictions, scientists need climate records stretching back millions of years—far beyond the span of direct weather observation. This project will extract those records from deep-sea drill cores that contain both marine sediments and material washed or blown in from continents. By analysing layers of riverine sediment and wind-blown dust, the team will reconstruct how past interactions between tectonic shifts, solar radiation, ice sheets, and ocean currents drove regional climate responses. They will focus on three types of regions: places where models fail to reconstruct past climates (such as North Africa), places where future warming predictions are most alarming (the Mediterranean, California, Southern Africa), and past warm intervals—the Pliocene, Miocene, and the Eocene-Oligocene transition—when global climate changed radically but the response of these hotspots remains unknown. This is fundamental science. If successful, it will provide the long-term observational baseline needed to test and improve climate models, ultimately making predictions of future rainfall shifts more reliable for water management, agriculture, and infrastructure planning in vulnerable regions.

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Global warming has already reached 1C above pre-industrial levels because of greenhouse gas emissions. Rainfall patterns are shifting. To test divergent climate predictions for the future and to understand natural climate change in the past we need datasets much longer than those possible by direct observation. We will develop palaeoclimate records from deep sea drill cores that contain both marine and terrigenous sediments (riverine material and wind-blown dust). These will be used to study interactions between tectonics, insolation, ice-sheets and ocean circulation that control regional response to global change. Potential foci include: regions where climate model reconstructions of the past are poor (e.g. North Africa, see references); regions where predictions of the future are most alarming (e.g. the Mediterranean, California, Southern Africa) and past intervals where global climate changed radically but the response of these hotspots is unknown (e.g. the warm Pliocene, the warm Miocene and the Eocene-Oligocene transition).

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Researchers

Sebastian Bland (Student)

Related Research

Grants with similar aims, by meaning.

Interconnections of Past Greenhouse Climates
Greenhouse climates, ocean circulation and monsoon strength
Pliocene Gateways ('PlioGate')
QUEST Deglaciation: Climate and
Climate interconnections of the Pliocene greenhouse

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