Jérôme Chappellaz

Nationality: French

EPFL Valais Wallis
EPFL ENAC IIE SENSE
Route des Ronquos 86
1951 Sion

Awards

Belgica 2023 Medal for polar exploration

Royal Academy of Belgium

2023

Medal of Honor for overseas commitment, Bronze level

French Ministry of Overseas

2022

Medal of the French Austral and Antarctic Territories

French Austral and Antarctic Territories (TAAF)

2022

Knight in the French National Order of Legion of Honour

French National Order of Legion of Honour

2021

Highly Cited Researcher

Thomson Reuters ISI

2016

Silver Medal

CNRS

2015

Niels Bohr Medal of Honor

University of Copenhagen - Denmark

2014

Fellow

Geochemical Society

2013

Fellow

European Association of Geochemistry

2013

Nicholas Shackleton Science Innovation Award

European Association of Geochemistry

2013

Knight in the French National Order of Merit

French National Order of Legion of Honour

2010

Jaffé Prize

French Academy of Sciences

2001

Bronze Medal

CNRS

1993

Paul Gast Lectureship

Geochemical Society and European Association of Geochemistry

2010

Member

Philomatic Society of Paris

2016

2023

A 2000-year temperature reconstruction on the East Antarctic plateau from argon-nitrogen and water stable isotopes in the Aurora Basin North ice core

A. P. M. ServettazA. J. OrsiM. A. J. CurranA. D. MoyA. Landais  et al.

Climate Of The Past. 2023. DOI : 10.5194/cp-19-1125-2023.

Synthesis Report on the Environmental Impacts of Polar Research and Logistics in the Polar Regions

P. ElshoutJ. ChappellazT. GibéryenC. HansenJ. Jania  et al.

2023

Southern Hemisphere atmospheric history of carbon monoxide over the late Holocene reconstructed from multiple Antarctic ice archives

X. FaïnD. M. EtheridgeK. FourteauP. MartinerieC. M. Trudinger  et al.

Climate of the Past. 2023. DOI : 10.5194/cp-19-2287-2023.

2020

Continuous in situ measurement of dissolved methane in Lake Kivu using a membrane inlet laser spectrometer

R. GrilliF. DarchambeauJ. ChappellazA. MugishaJ. Triest  et al.

Geoscientific Instrumentation, Methods and Data Systems. 2020. DOI : 10.5194/gi-9-141-2020.

Antarctic air bubbles and the long-term ice core record of CO2 and other greenhouse gases

D. RaynaudJ. BeemanJ. ChappellazF. ParreninJ. Shin

Past Antarctica: Paleoclimatology and Climate Change; Elsevier, 2020. p. 27 - 50.

2019

High-resolution underwater laser spectrometer sensing provides new insights into methane distribution at an Arctic seepage site

P. JanssonJ. TriestR. GrilliB. FerréA. Silyakova  et al.

Ocean Science. 2019. DOI : 10.5194/os-15-1055-2019.

2017

Is there 1.5-million-year-old ice near Dome C, Antarctica?

F. ParreninM. G. P. CavitteD. D. BlankenshipJ. ChappellazH. Fischer  et al.

Cryosphere. 2017. DOI : 10.5194/tc-11-2427-2017.

2014

A simplified permafrost-carbon model for long-term climate studies with the CLIMBER-2 coupled earth system model

K. A. CrichtonD. M. RocheG. KrinnerJ. Chappellaz

Geoscientific Model Development. 2014. DOI : 10.5194/gmd-7-3111-2014.

2013

A first chronology for the north greenland eemian ice drilling (NEEM) ice core

S. O. RasmussenP. M. AbbottT. BlunierA. J. BourneE. Brook  et al.

Climate of the Past. 2013. DOI : 10.5194/cp-9-2713-2013.

High-resolution glacial and deglacial record of atmospheric methane by continuous-flow and laser spectrometer analysis along the NEEM ice core

J. ChappellazC. StowasserT. BlunierD. Baslev-ClausenE. J. Brook  et al.

Climate of the Past. 2013. DOI : 10.5194/cp-9-2579-2013.

A new Himalayan ice core CH4 record: Possible hints at the preindustrial latitudinal gradient

S. HouJ. ChappellazD. RaynaudV. Masson-DelmotteJ. Jouzel  et al.

Climate of the Past. 2013. DOI : 10.5194/cp-9-2549-2013.

Where to find 1.5 million yr old ice for the IPICS "Oldest-Ice" ice core

H. FischerJ. SeveringhausE. BrookE. WolffM. Albert  et al.

Climate of the Past. 2013. DOI : 10.5194/cp-9-2489-2013.

An optimized multi-proxy, multi-site Antarctic ice and gas orbital chronology (AICC2012): 120-800 ka

L. BazinA. LandaisB. Lemieux-DudonH. T. M. KeleD. Veres  et al.

Climate of the Past. 2013. DOI : 10.5194/cp-9-1715-2013.

The Antarctic ice core chronology (AICC2012): An optimized multi-parameter and multi-site dating approach for the last 120 thousand years

D. VeresL. BazinA. LandaisH. T. M. KeleB. Lemieux-Dudon  et al.

Climate of the Past. 2013. DOI : 10.5194/cp-9-1733-2013.

Glacial-interglacial dynamics of Antarctic firn columns: Comparison between simulations and ice core air-δ15N measurements

E. CapronA. LandaisD. BuironA. CauquoinJ. Chappellaz  et al.

Climate of the Past. 2013. DOI : 10.5194/cp-9-983-2013.

Climate and atmospheric history of the past 420,000 years from the Vostok ice core, Antarctica

J. PetitJ. JouzelD. RaynaudJ. BarnolaI. Basile  et al.

The Future of Nature: Documents of Global Change; Yale University Press, 2013. p. 348 - 358.

2012

On the gas-ice depth difference (Δdepth) along the EPICA Dome C ice core

F. ParreninS. BarkerT. BlunierJ. ChappellazJ. Jouzel  et al.

Climate of the Past. 2012. DOI : 10.5194/cp-8-1239-2012.

2011

The last deglaciation: Timing the bipolar seesaw

J. B. PedroT. D. van OmmenS. O. RasmussenV. I. MorganJ. Chappellaz  et al.

Climate of the Past. 2011. DOI : 10.5194/cp-7-671-2011.

Abrupt rise in atmospheric CO2 at the onset of the Boølling/ Alleroød: In-situ ice core data versus true atmospheric signals

P. KoehlerG. KnorrD. BuironA. LourantouJ. Chappellaz

Climate of the Past. 2011. DOI : 10.5194/cp-7-473-2011.

TALDICE-1 age scale of the Talos Dome deep ice core, East Antarctica

D. BuironJ. ChappellazB. StenniM. FrezzottiM. Baumgartner  et al.

Climate of the Past. 2011. DOI : 10.5194/cp-7-1-2011.

2010

Millennial and sub-millennial scale climatic variations recorded in polar ice cores over the last glacial period

E. CapronA. LandaisJ. ChappellazA. SchiltD. Buiron  et al.

Climate of the Past. 2010. DOI : 10.5194/cp-6-345-2010.

Greenhouse gases and their isotopes in firn air and ice cores

J. Chappellaz

Geochimica Et Cosmochimica Acta. 2010.

2009

More constraints on the causes of the CO2 deglacial rise based on its stable carbon isotopic ratio : Results and applications for last and penultimate deglaciations

A. LourantouJ. V. LavricJ.-M. BarnolaP. KoehlerD. Paillard  et al.

Geochimica Et Cosmochimica Acta. 2009.

2005

delta C-13 of carbon dioxide in ancient air from ice core samples

J. V. LavricJ. M. BarnolaJ. ChappellazM. C. LeunbergerH. Fischer  et al.

Geochimica Et Cosmochimica Acta. 2005.

2004

N2O and CH4 variations during the last glacial path epoch: Insight into global processes

J. FlückigerT. BlunierB. StaufferJ. ChappellazR. Spahni  et al.

Global Biogeochemical Cycles. 2004. DOI : 10.1029/2003GB002122.

2002

Isotopic study of CO(2)and CH4 out-gassed from argillites investigated for radioactive waste repository

J. P. GirardC. FlehocE. GaucherA. PrinzhoferJ. Chappellaz

Geochimica Et Cosmochimica Acta. 2002.

1999

Phase lag of Antarctic and Greenland temperature in the last glacial and link between CO2 variations and Heinrich events

T. BlunierT. F. StockerJ. ChappellazD. Raynaud

1999. 6th International Conference on Paleoceanography, LISBON, Portugal, AUG 23-28, 1998. p. 121 - 138. DOI : 10.1007/978-1-4615-4197-4_8.

1995

Polar Ice - a Note on the Changes Affecting Greenhouse Gases

D. RaynaudJ. BarnolaJ. Chappellaz

Houille Blanche-Revue Internationale De L Eau. 1995. DOI : 10.1051/lhb/1995057.

1994

Polar Ice Bubbles as Recorders of Past Greenhouse-Gas Concentrations

J. Chappellaz

Analusis. 1994.

1993

Climate Instability During the Last Interglacial Period Recorded in the Grip Ice Core

M. AnklinJ. BarnolaJ. BeerT. BlunierJ. Chappellaz  et al.

Nature. 1993. DOI : 10.1038/364203a0.

Teaching & PhD

Courses

Sustainability

ENV-101

This course presents global sustainability issues. It introduces planetary boundaries, their systemic interconnections and social justice issues. The interdisciplinary approach introduces group work and systems thinking (interdependencies in a complex system).

Sustainability, climate and energy

ENV-421

The course provides students with a comprehensive scientific understanding of the links between climate and energy systems in the context of sustainability. It will cover topics related to natural and anthropogenic climate change, the fundamentals of energy systems and their efficiency.