Professor of Atmospheric Science

Observational studies of atmospheric structure and photochemistry: from climate change to air pollution and human health

In our group we use a wide range of measurement and modelling techniques to study the chemical composition and physical structure of the earth’s atmosphere.

The atmosphere controls much of the complex environment in which we live. Ozone in the stratosphere protects us from harmful shortwave solar radiation, while changes in CO2 and other greenhouse gases are influencing the world’s changing climate. In the troposphere, chemical processes act to remove many unwanted species, while at the same time contributing to poor air quality, impacting the health of many, and leading to millions of premature deaths, particularly in the developing world. 

 

Low cost sensors for monitoring urban pollution

We develop low cost air quality sensors which allow us to probe urban pollution in unprecedented detail.  You can find out more by watching our short video above. 

 NO and NO2 levels in Cambridge on one afternoon, illustrating how complex urban air pollution can be.

As part of our research we are demonstrating how these low cost air quality sensor networks can be used to address important scientific and political questions. Studies include low cost sensor network deployments at Heathrow airport, in Beijing and in Delhi. 

Results from a recent sensor network deployment at Heathrow Airport, used to both quantify airport emissions and provide a prediction of the likely impact of an airport expansion.

Air quality and human health 

We use portable air quality sensors to test the linkages between exposure to pollution and health impacts. These units allow us to develop activity models which we can use to predict air pollution dose far more accurately than before.  They are now used for studies of Chronic Obsructive Pulmonary Disease (COPD) in London, and wider health impacts (Beijing and elsewhere).

A portable air quality sensor used by the group, which includes GPS and accelerometers, with illustration of measurements.

Other projects

Other projects within the group range from using cavity ringdown spectroscopy and its variants for making ultrasensitive (sub-ppt level) airborne and ground based measurements of radical species (using the FAAM aircraft), balloon borne measurements of GHGs, volcanic emissions and many more.

Selected Presentations

AAMG Presentation 2016

Further information

If you are interested in joining us as a graduate student or postdoctoral researcher, please contact me at rlj1001@cam.ac.uk.  

Publications

Evaluation of balloon and satellite water vapour measurements in the Southern tropical UTLS during the HIBISCUS campaign
N Montoux, A Hauchecorne, J-P Pommereau, G Durry, B Morel, RL Jones, F Lefèvre, H Bencherif
Atmospheric Chemistry and Physics Discussions
(2007)
7
An overview of the HIBISCUS campaign
J-P Pommereau, A Garnier, G Held, A-M Gomes, F Goutail, G Durry, F Borchi, A Hauchecorne, N Montoux, P Cocquerez, G Letrenne, F Vial, A Hertzog, B Legras, I Pisso, JA Pyle, NRP Harris, RL Jones, A Robinson, G Hansford, L Eden, T Gardiner, N Swann, B Knudsen, N Larsen, J Nielsen, T Christensen, F Cairo, M Pirre, V Marécal, N Huret, E Rivière, H Coe, D Grosvenor, K Edvarsen, G Di Donfrancesco, P Ricaud, J-J Berthelier, M Godefroy, E Seran, K Longo, S Freitas
Atmospheric Chemistry and Physics Discussions
(2007)
7
The water vapour budget of the stratosphere studied using LIMS and SAMS satellite data
RL Jones, JA Pyle, JE Harries, AM Zavody, JM Russell, JC Gille
Quarterly Journal of the Royal Meteorological Society
(2006)
112
A compact broadband cavity enhanced absorption spectrometer for detection of atmospheric NO 2 using light emitting diodes
JM Langridge, SM Ball, RL Jones
The Analyst
(2006)
131
The North Atlantic Marine Boundary Layer Experiment(NAMBLEX). Overview of the campaign held at Mace Head, Ireland, in summer 2002
DE Heard, KA Read, J Methven, S Al-Haider, WJ Bloss, GP Johnson, MJ Pilling, PW Seakins, SC Smith, R Sommariva, JC Stanton, TJ Still, T Ingham, B Brooks, G De Leeuw, AV Jackson, JB McQuaid, R Morgan, MH Smith, LJ Carpenter, N Carslaw, J Hamilton, JR Hopkins, JD Lee, AC Lewis, RM Purvis, DJ Wevill, N Brough, T Green, G Mills, SA Penkett, JMC Plane, A Saiz-Lopez, D Worton, PS Monks, Z Fleming, AR Rickard, MR Alfarra, JD Allan, K Bower, H Coe, M Cubison, M Flynn, G McFiggans, M Gallagher, EG Norton, CD O'Dowd, J Shillito, D Topping, G Vaughan, P Williams, M Bitter, SM Ball, RL Jones, IM Povey, S O'Doherty, PG Simmonds, A Allen, RP Kinnersley, DCS Beddows, M Dall'Osto, RM Harrison, RJ Donovan, MR Heal, SG Jennings, C Noone, G Spain
Atmospheric Chemistry and Physics
(2006)
6
An ozone monitoring instrument based on the tungsten trioxide (WO 3) semiconductor
SR Utembe, GM Hansford, MG Sanderson, RA Freshwater, KFE Pratt, DE Williams, RA Cox, RL Jones
Sensors and Actuators B Chemical
(2006)
114
Modelling molecular iodine emissions in a coastal marine environment: The link to new particle formation
A Saiz-Lopez, JMC Plane, G McFiggans, PI Williams, SM Ball, M Bitter, RL Jones, C Hongwei, T Hoffmann
Atmospheric Chemistry and Physics
(2006)
6
Lightweight dew-/frost-point hygrometer based on a surface-acoustic-wave sensor for balloon-borne atmospheric water vapor profile sounding
GM Hansford, RA Freshwater, L Eden, KFV Turnbull, DE Hadaway, VP Ostanin, RL Jones
Review of Scientific Instruments
(2006)
77
A broadband cavity ringdown spectrometer for in-situ measurements of atmospheric trace gases
M Bitter, SM Ball, IM Povey, RL Jones
Atmospheric Chemistry and Physics
(2005)
5
Small scale structure in the atmosphere: implications for chemical composition and observational methods
RL Jones, SM Ball, DE Shallcross
Faraday Discussions
(2005)
130

Research Group

Research Interest Group

Telephone number

01223 336466

Email address