A review of trends and drivers of greenhouse gas emissions by sector from 1990 to 2018

Обзор тенденций и факторов, определяющих выбросы парниковых газов по секторам в период с 1990 по 2018 год
Steven J. Davis, Klaus Hubacek, Yong Geng, Shobhakar Dhakal, Suzana Kahn Ribeiro, Thomas Wiedmann, Giulio Mattioli, Dominik Wiedenhofer, Joanna I. House, Jan C. Minx, Julia Pongratz, Raphael Slade, Shonali Pachauri, Robbie M. Andrew, J. G. J. Olivier, Monica Crippa, William F. Lamb, Alaa Al Khourdajie, Maria J. Figueroa, Yamina Saheb, Laixiang Sun, Smail Khennas, Stéphane de la Rue du Can, Lazarus Chapungu, I. Bashmakov, Hancheng Dai, Xianchun Tan, Baihe Gu
2021-03-12

AFOLU emissionsdecarbonisationfossil-based energy systemsgreenhouse gas emissionssectoral emissions trends
Abstract Global greenhouse gas (GHG) emissions can be traced to five economic sectors: energy, industry, buildings, transport and AFOLU (agriculture, forestry and other land uses). In this topical review, we synthesise the literature to explain recent trends in global and regional emissions in each of these sectors. To contextualise our review, we present estimates of GHG emissions trends by sector from 1990 to 2018, describing the major sources of emissions growth, stability and decline across ten global regions. Overall, the literature and data emphasise that progress towards reducing GHG emissions has been limited. The prominent global pattern is a continuation of underlying drivers with few signs of emerging limits to demand, nor of a deep shift towards the delivery of low and zero carbon services across sectors. We observe a moderate decarbonisation of energy systems in Europe and North America, driven by fuel switching and the increasing penetration of renewables. By contrast, in rapidly industrialising regions, fossil-based energy systems have continuously expanded, only very recently slowing down in their growth. Strong demand for materials, floor area, energy services and travel have driven emissions growth in the industry, buildings and transport sectors, particularly in Eastern Asia, Southern Asia and South-East Asia. An expansion of agriculture into carbon-dense tropical forest areas has driven recent increases in AFOLU emissions in Latin America, South-East Asia and Africa. Identifying, understanding, and tackling the most persistent and climate-damaging trends across sectors is a fundamental concern for research and policy as humanity treads deeper into the Anthropocene.
1
Agricultural expansion into carbon-dense tropical forests increased AFOLU emissions in Latin America, South-Eastern Asia, and Africa.
2
Europe and North America experienced moderate energy-system decarbonisation through fuel switching and increasing renewable-energy penetration.
3
Fossil-based energy systems continued expanding in rapidly industrialising regions, although their growth only recently began to slow.
4
Global progress in reducing greenhouse gas emissions has been limited, with few signs of reduced demand or a deep shift toward low- and zero-carbon services.
5
Rising demand for materials, floor area, energy services, and travel drove emissions growth in industry, buildings, and transport, especially across Eastern, Southern, and South-Eastern Asia.
6
The review estimates greenhouse gas emissions trends across energy, industry, buildings, transport, and AFOLU sectors from 1990 to 2018 across ten global regions.

Greenhouse gas (GHG) emissions by economic sector (energy, industry, buildings, transport, and AFOLU) from 1990 to 2018

Sectoral and regional emission trends, their underlying drivers, and patterns of growth, stability, decline, and decarbonisation

Publication Details
Publication Date
2021-03-12
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Authors
Steven J. Davis
Klaus Hubacek
Yong Geng
Shobhakar Dhakal
Suzana Kahn Ribeiro
Thomas Wiedmann
Giulio Mattioli
Dominik Wiedenhofer
Joanna I. House
Jan C. Minx
Julia Pongratz
Raphael Slade
Shonali Pachauri
Robbie M. Andrew
J. G. J. Olivier
Monica Crippa
William F. Lamb
Alaa Al Khourdajie
Maria J. Figueroa
Yamina Saheb
Laixiang Sun
Smail Khennas
Stéphane de la Rue du Can
Lazarus Chapungu
I. Bashmakov
Hancheng Dai
Xianchun Tan
Baihe Gu
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