[HTML][HTML] Emergent methane mitigation and removal approaches: A review

I Mundra, A Lockley - Atmospheric Environment: X, 2024 - Elsevier
Early control of atmospheric methane is essential to achieving a 1.5° C warming pathway.
This paper considers a range of academic and gray literature reviews of methane control …

[HTML][HTML] Perspectives on removal of atmospheric methane

T Ming, W Li, Q Yuan, P Davies, R De Richter… - Advances in Applied …, 2022 - Elsevier
Methane's contribution to radiative forcing is second only to that of CO 2. Though previously
neglected, methane is now gaining increasing public attention as a GHG. At the recent …

Environmental effects of stratospheric ozone depletion, UV radiation, and interactions with climate change: UNEP Environmental Effects Assessment Panel, Update …

PW Barnes, TM Robson, PJ Neale… - Photochemical & …, 2022 - Springer
Abstract The Environmental Effects Assessment Panel of the Montreal Protocol under the
United Nations Environment Programme evaluates effects on the environment and human …

Climate change favours large seasonal loss of Arctic ozone

P von der Gathen, R Kivi, I Wohltmann… - Nature …, 2021 - nature.com
Chemical loss of Arctic ozone due to anthropogenic halogens is driven by temperature, with
more loss occurring during cold winters favourable for formation of polar stratospheric …

Estimates of ozone return dates from Chemistry-Climate Model Initiative simulations

SS Dhomse, D Kinnison… - Atmospheric …, 2018 - acp.copernicus.org
We analyse simulations performed for the Chemistry-Climate Model Initiative (CCMI) to
estimate the return dates of the stratospheric ozone layer from depletion caused by …

Solar UV radiation in a changing world: roles of cryosphere–land–water–atmosphere interfaces in global biogeochemical cycles

B Sulzberger, AT Austin, RM Cory, RG Zepp… - Photochemical & …, 2019 - pubs.rsc.org
Global change influences biogeochemical cycles within and between environmental
compartments (ie, the cryosphere, terrestrial and aquatic ecosystems, and the atmosphere) …

[HTML][HTML] Atmosphere–ocean–aerosol–chemistry–climate model SOCOLv4. 0: Description and evaluation

T Sukhodolov, T Egorova, A Stenke… - Geoscientific Model …, 2021 - gmd.copernicus.org
This paper features the new atmosphere–ocean–aerosol–chemistry–climate model, SOlar
Climate Ozone Links (SOCOL) v4. 0, and its validation. The new model was built by …

The historical ozone trends simulated with the SOCOLv4 and their comparison with observations and reanalyses

A Karagodin-Doyennel, E Rozanov… - Atmospheric …, 2022 - acp.copernicus.org
There is evidence that the ozone layer has begun to recover owing to the ban on the
production of halogenated ozone-depleting substances (hODS) accomplished by the …

The methane isotopologues by solar occultation (miso) nanosatellite mission: spectral channel optimization and early performance analysis

D Weidmann, A Hoffmann, N Macleod, K Middleton… - Remote Sensing, 2017 - mdpi.com
MISO is an in-orbit demonstration mission that focuses on improving the representation of
the methane distribution throughout the upper troposphere and stratosphere, to complement …

The future ozone trends in changing climate simulated with SOCOLv4

A Karagodin-Doyennel, E Rozanov… - Atmospheric …, 2023 - acp.copernicus.org
This study evaluates the future evolution of atmospheric ozone simulated with the Earth
system model (ESM) SOCOLv4. Simulations have been performed based on two potential …